Showing posts with label Templates. Show all posts
Showing posts with label Templates. Show all posts

Friday, 19 December 2025

Templates of Openings

 If you have an irregular opening to fill, it is best to take a tracing of the opening. Usually this will be in larger openings and a helper may be necessary to assist.

Materials

The material used to take the template must have a few characteristics:

    • It must be stiff enough to have the minimum possible bend over the width or height of the opening

    • It must be easy to mark with a pencil or other implement

    • It must be easy to cut or shape

    • It should be light to make it easy to lift it to the opening for the many adjustments that will be required.

A number of materials can be used: stiff card, mounting board, corrugated cardboard, thin plywood, and many other sheet materials. I have found double walled stiff corrugated cardboard easy to use.

Irregular rectangles

If you have found or can see that the opening is not a true rectangle and cannot determine where any right angles are, you need to take a template.

The objective is to make a piece that will fit into the opening without bending or being too small for the space. It will be the same size as the finished panel and so you will be able to put the finished panel into the opening without needing to trim or expand the panel.

First, trim the sheet of material you have chosen to use to a size a little larger than the measured size. Place the uncut side along one of the long sides of the opening. If the opening is a portrait format, place it on the right or left side as convenient to you.

Next, adjust the bottom by marking a line on the sheet. This is where a second person is very useful. One person can hold the sheet in place on outside of the opening and the other do the marking from the inside –in the case of the rebate being on the outside and vice versa if the rebate is on the inside. The marked line should be as close to the edge of the rebate as possible. The special case of an opening in stone will be dealt with separately.

Then take the sheet to a place where it can be safely cut. A long metal straight edge and craft or “Stanley” knife are often the best aids to cutting straight lines. Replace the sheet into the opening after cutting, and make any adjustments to the size and angles of the sheet at the bottom by marking and cutting as necessary.

When the side and bottom are adjusted, start on the other side. Proceed as for the bottom. When the side is finished, start on the top. Finally, present the whole sheet to the opening to make sure it slips into place with no snags, or bending of the sheet.

It may be that the opening is too large for a single sheet. In that case you will need to work with two or more sheets and try them together for the final fitting into the opening. You can put them together in the window. You can fasten them together with tape or other fasteners to make one sheet. You can also make two parallel lines both at angles and at intervals across the sheet so that when you get back to the studio you can exactly reproduce the full sheet by matching the marks and then firmly fastening them together. This makes transport of large templates much easier.

You will know that a panel made to a template made in this way will fit into the opening, no matter how irregular the opening may be.

Circles

Occasionally the window is circular and sometimes an oval. In both cases a template is important. The circles and ovals are rarely is exact or symmetrical. Take the template in the normal way and then ensure you mark the verticals and horizontals for the opening. You often can use the jointing in the woodwork to help with these. Also mark any other reference points from the opening. Finally, mark which is the outside and which the inside.

Round heads

Round headed openings can be considered as a special case of a circle. The horizontal you must find is the shoulder of the window. This is the place from which the curve springs on each side. The opening is generally vertical up to this point and then begins the curve.

You need to make sure you have marked where this shoulder is on the template. You should indicate any reference points from the frame onto the template.

The join to the lower part of the window must be made obvious. Normally there will be an overlap between the lower rectangular template and this approximate half circle. You need to mark where this overlap occurs, if you do not fasten the two sheets together. This can be done by marking across the two sheets in a few places. This will enable you to join them exactly back at the studio.

Irregular openings

Irregular openings such as trefoils and other tracery need to have templates taken with consideration on how the final panel can be put into the opening. In the cases where the whole of the rebate is exposed, it is normally possible to put the panel in as a single whole piece.

So, the template is taken as for any other opening. It is more complex and time consuming as there are so many more sides than in a simple rectangular or circular opening.

Stone

When the opening is in stone, slight variations occur in the process of taking a template. The main difference is that the rebates are concealed. The rebates are slots into the stone. Thus, the template must slip into the slotted rebate. In these cases, the stiffer the material being used to take template, the better. Usually, thin plywood is the best material, as it has to be manipulated many times and in ways similar to the final panel.

Things are further complicated, as tracery is more common in stone than in timber framed openings. A complex opening shape may require two or more parts to enable the panel to be inserted. The taking of a template will help greatly in figuring out how the panel will be inserted into the opening.

Additionally, when the template is in position, you should mark the visible portion of the opening onto the template. Mark which is the inside and which the outside. Finally, mark on each template which side has the deeper slot as this will help in installation.



Using these methods of taking templates will make restoration or drawing up a new design much easier and more accurate, leading to an easier installation.

Tuesday, 18 September 2012

Measuring openings


Measurements
There are a number of measurements that are critical for a good design and a sound installation of window panels.

1. Tight Size: This is the full size of the glass opening with no allowances for expansion and contraction. In a wood or metal rebate frame one would measure from steel to opposing steel or wood to wood; in a stone groove installation, from the bottom of one groove to the bottom of the opposing groove. Depending on the size of the opening, this measurement should be checked in multiple areas; at a minimum at the top, bottom and middle horizontally and at the left and right jamb.

2. Sight Size is the daylight opening or the largest opening that allows light to pass through.

3. Rebate or groove details. With a rebate frame, the depth and the width of the rebate must be measured, as well as the interior return if round bars will be used (this dictates what size bar will fit and how long the bar should be). These dimensions are also necessary to determine the dimensions of the retaining moulding if one is to be used. If it is a groove, the depth of the groove and the width of the groove (measured from interior to exterior) are important.

4. Panel Size. This is the ideal size of a panel that will be installed into the opening in question. Typically, this will be a function of the tight size less 3mm in both width and height for a leaded glass panel, to allow for expansion and contraction. One must also recognize if the size varies throughout the frame and make allowance for this as well. With dalle de verre, you need a deep rebate or groove and allow at least 5mm in both directions for expansion.

5. The depth of the rebate or the width of the groove are also critical measurements. To allow for a proper installation, allow a minimum of 13mm to be added to the thickness of the panel to provide room for a proper putty fillet.

Based on comments from Art Femenella


When measuring older openings and especially doors, measure the diagonals in addition to all the other measurements. This provides a check of all your other measurements and also tells you whether the opening is a true rectangle or parallelogram.


Measuring a Rectangular Opening

Measure sight and tight sizes at top and bottom, and left and right. You should also measure the middle of the horizontals and verticals in addition to the details of the rebate.

Measure the diagonals to determine if the opening is “square” - all angles square. If these measurements are equal or +/- 5mm you can consider the opening to be a rectangle.

With bigger variations you may set out the cartoon using the measurements for the opening. Still, you need to know where the right angles are, if there are any, to be able to set out the cartoon to properly fit the opening. You can check for ”squareness” with a try square, although that is not completely accurate. If it is difficult to determine where the right angle(s) are, you need to take a template of the opening.


Templates

If it is not possible to tell where the right angles of the opening are, a template is called for. The material to be used for taking templates should be stiff, easy to cut, unaffected by moisture, and relatively inexpensive. This eliminates paper and some cardboards. If you can find stiff corrugated cardboard this works well. Mounting board works well too, but is expensive. Foam board is excellent, but also expensive. Hard board or other thin pressed board is inexpensive but difficult to cut with a knife. Thin plywood is also a good material for templates, especially if the opening is relatively regular. The more complicated the opening, the more cardboard, mounting board, or foam board becomes useful for its ease of shaping to the opening.

What ever material you use, you must mark which is the interior and exterior and for further checks, which is left and right. Fit this template into the opening to make sure it fits into the opening smoothly. This template will form the external extent of the built window when it is installed into an opening with a rebate.

Where the window is to be fitted into a channel, as in stone, you need to make the template of stiff material so you can determine the panel can be installed and that there will be enough of the panel within the stone channels to ensure the stability of the window in the future and still be able to manipulate the leaded panel into the opening.


Irregular rectangles

If you have found or can see that the opening is not a true rectangle and cannot determine where any right angles are, you need to take a template.

The objective is to make a piece that will fit into the opening without bending or being too small for the space. It will be the same size as the finished panel and so you will be able to put the finished panel into the opening without needing to trim or expand the panel.

  • First, trim the sheet of material you have chosen to use to a size a little larger than the measured size. Place the uncut side along one of the long sides of the opening. If the opening is a portrait format, place it on the right or left side as convenient to you.
  • Next, adjust the bottom by marking a line on the sheet. This is where a second person is very useful. One person can hold the sheet in place on outside of the opening and the other do the marking from the inside –in the case of the rebate being on the outside and vice versa if the rebate is on the inside. The marked line should be as close to the edge of the rebate as possible. The special case of an opening in stone will be dealt with separately.
  • Then take the sheet to a place where it can be safely cut. A long metal straight edge and craft or “Stanley” knife are often the best aids to cutting straight lines. Replace the sheet into the opening after cutting, and make any adjustments to the size and angles of the sheet at the bottom by marking and cutting as necessary.
  • When the side and bottom are adjusted, start on the other side. Proceed as for the bottom.
  • When the side is finished, start on the top.
  • Finally, present the whole sheet to the opening to make sure it slips into place with no snags, or bending of the sheet.


It may be that the opening is too large for a single sheet. In that case you will need to work with two or more sheets and try them together for the final fitting into the opening. You can put them together in the window. You can fasten them together with tape or other fasteners to make one sheet. You can also make two parallel lines both at angles and at intervals across the sheet so that when you get back to the studio you can exactly reproduce the full sheet by matching the marks and then firmly fastening them together. This makes transport of large templates much easier.

You will know that a panel made to a template made in this way will fit into the opening, no matter how irregular the opening may be.


Circles

Occasionally the window is circular and sometimes an oval. In both cases a template is important. The circle rarely is exact. Take the template in the normal way and then ensure you mark the verticals and horizontals for the opening. You often can use the jointing in the woodwork to help with these. Also mark any other reference points from the opening. Finally, mark which is the outside and which the inside.

This procedure will ensure that you will be able to fit the panel into the opening.

Round headed openings can be considered as a special case of a circle.

The horizontal you must find is the shoulder of the window. This is the place from which the curve springs on each side. The opening is generally vertical up to this point and then the curve begins. In stone, there is most often a joint at this point. This is often the case in wood too, if you can find the joint under the paint.

You need to make sure you have marked where this shoulder is on the template. You should indicate any reference points from the frame onto the template.

The join to the lower part of the window must be made obvious. Normally there will be an overlap between the lower rectangular template and this approximate half circle. You need to mark where this overlap occurs, if you do not fasten the two sheets together. This can be done by marking across the two sheets in a few places. This will enable you to join them exactly back at the studio.

Stone openings

When the opening is in stone, slight variations occur in the process of taking a template. The main difference is that the rebates are concealed. The rebates are slots into the stone. Thus, the template must slip into the slotted rebate. In these cases, the stiffer the material being used to take template, the better. Usually, thin plywood is the best material, as it has to be manipulated many times and in ways similar to the final panel.

Things are further complicated, as tracery is more common in stone than in timber framed openings. A complex opening shape may require two or more parts to enable the panel to be inserted. The taking of a template will help greatly in figuring out how the panel will be inserted into the opening.

Additionally, when the template is in position, you should mark the visible portion of the opening onto the template. Mark which is the inside and which the outside. Finally, mark on each template which side has the deeper slot as this will help in installation.

Saturday, 18 August 2012

Lampshade Processes


Contents
Design of Panel Lampshades
Design - Pattern/Cartoon Tools
Pattern Construction
Soldering 3-D Pieces
Reinforcing Lamp Shades
Vase Caps
Fibre blanket Moulds for Shaped Panel Lamps



Design of Panel Lampshades
Lamp Panel Dimensions

Lamp Panel Lengths
If you have determined the length of the shade and the diameters of the top and bottom, you can determine the length of the panel by maths or by a scale drawing.

Calculation of length
The maths is about right angle triangles. The dimension of the vertical part of the right angle triangle is the height of the lampshade. The horizontal dimension is the radius of the bottom minus the radius of the top. The length of the angle is the square root of the sum of the square roots of the vertical and horizontal sides.

E.g., a lampshade 200mm high with a 50mm vase cap and 400mm bottom width:
The vertical of the triangle is 200mm.
The horizontal is 400/2 = 200mm – 25mm (half the diameter of the vase cap) = 175mm.
The length of the panel is equal to the square root of the sum of the squares of the sides.

In this example, 40000+30625=70625 of which the square root is 265. So the panel is 265mm long.


Measuring the length
If you don’t want to do the maths, do a scaled or full size drawing. It only needs to be one side of the shade, but it can be the full shade.
Draw a vertical the height of the finished shade. Draw a horizontal line at the top and bottom of the measured vertical.

At the top mark off the radius of the vase cap on each side of the vertical. At the bottom also mark the radius of the shade on each side of the vertical.

Join the two end points of the horizontal lines on each side of the vertical.
Measure this diagonal line to determine the length of the panel.

This drawing method does have the advantage of allowing you to see the angle of the proposed shade and adjust it if necessary.


Calculating the top and bottom widths
When doing custom lamp sizes is not too hard to calculate the panel sizes. You need to remember the value for pi (ca. 3.1417)

Start with the bottom diameter you want. Multiply it by pi. Divide this distance by the number of panels required for the lamp. This gives the size of the bottom of the panel.

Worked example
Bottom diameter: 200mm
Top diameter: 50mm
Panels: 8
Pi: 3.1417
Glass thickness: 3mm

Formula for bottom: dia. * pi = circumference / no. of panels = width of panel
Bottom diameter: 200*3.1417 = 628mm/8 = 79mm for the base of each panel.

Do the same for the top, but make one more calculation. As the top has to fit into the size of the vase cap, you need to take account of the thickness of the glass. So, subtract twice the thickness of the glass (the glass thickness is on both sides of the circle) from the diameter of the vase cap and use that as the diameter for determining the width of the top of the panel.

Worked example
Formula for top: dia. - glass thickness *2 * pi = circumference / no. of panels = width of panel
Top diameter: 50-6= 44 * 3.1417 = 138mm / 8 = 17mm

Determine the shape of the panel
When you have determined the widths of the top and bottom of the panel, you are ready to draw up the shape of the panel. Set up a horizontal line that is the calculated width of the bottom of the panel. Divide it and draw a vertical from the centre of the line. This line should be as long as the panel you are making. This is determined by the method outlined in the Panel Length tip. At the top of the vertical line draw another horizontal. Measure off one half the calculated top distance on each side of the vertical line. Join the points on the lower and upper horizontals to give the shape of the panel.


Design of shaped Lampshades
Pattern/Cartoon Tools

The items you need to have for creating your own pattern are not extensive or unusual. The essential ones are:
Craft knife or razor blade
Baby/talcum powder
Fine pointed felt tipped pen
Highlighting pen
Pencil
Eraser
Carbon paper
Drawing paperMasking tape
Lampshade form
End/vase cap


Pattern Construction

The first stage of the process is to prepare the design on flat paper. The second stage is to get the design onto the prepared mould and make adjustments to give a balanced and pleasing appearance

Trace the pattern onto the template
Prepare the lampshade mould by covering it in masking tape.

Take your design elements and trace them onto the masking tape on the form. The use of carbon paper enables you to put the design element and trace right on top of the taped mould so that the image is transferred onto the tape.

An alternative method is to use a pounce wheel to perforate the design element. The element is placed on the form and dusted along the perforated line with a bag of dark coloured powder such as powdered poster paint. This will leave a temporary trace on the form that can be changed easily, but needs to be pencilled in before too much other work smudges the shape.

Do this tracing with each design element, flipping and rotating them around so that you don't repeat any element exactly. Fill up major sections of the form using this method. Drawing the main features first and filling with the minor elements helps provide a pleasing composition.

Fill in background areas
Now that the key design elements are onto the masking tape template, create background pieces by linking your design elements. Use pencil, since you will probably need to do corrections. Remember, avoid creating large horizontal pieces. Larger vertical pieces are usually better. However, try to keep all the pieces of similar size.

Correct any pieces and number them
Once you are satisfied with the design, go over every line with a fine felt tip pen or other ink pen so that each is clear and distinct. Number each piece and mark colour and glass textures as necessary.

Based on work by Christie A. Wood, Art Glass Ensembles


Templates

Cut the finished template into sections (if you are using a 360 degree form)
The masking tape template will need to be cut off the curved form and laid out flat. This is easier to do if you can logically separate the template into smaller sections. To do this you need to find lines running almost vertically from the top to bottom of the template. Mark these separation lines in a different colour. Also label each section.

Remove the template(s) from the form and press it out flat
Take a craft knife or razor blade and trim away excess masking tape from the end cap mark. Do the same for the bottom edge. Carefully remove the excess.

Prepare a section of your work surface by sprinkling some talcum powder on it, and onto your hands as well. This will help keep the sticky side of the masking tape from sticking where you don't want it later.

Using a craft knife, slice through the middle of each separation line that you marked in a special colour. Try to stay in the exact middle of the line. Be careful that you don’t tear the underlying masking tape, or pull it away as you cut through the line. Do this with each separation line.

Starting with the top edge, use the craft knife to gently pull the masking tape template off the form. If the masking tape starts to separate, stop and repair it. As each section is taken off the form, put it sticky side down into the talcum powder and press it flat. Do this for each section.

Scan/copy the template(s)
At this stage you can scan each section into Glass Eye or other image software. This allows you to:
  • select and change colour/glass choices very easily
  • print out or email colour proofs to the client
  • keep them in an electronic form for future reference or manipulation

You don't have to scan your pattern, but you do need to make at least two copies of the pattern.
  • One copy is fastened back onto the form so that you know where to put your glass pieces.
  • The other copy is cut out using pattern shears (the three-bladed scissors) and glued onto the glass for cutting.
Based on work by Christie A. Wood, Art Glass Ensembles


Soldering 3-D pieces
When soldering 3-D pieces together, first tack the panels together with a single tack at each end. If it later turns out that there is an alignment problem, it is much easier to dis-assemble a few tacks, with a piece of paper inserted into the space between the pieces of glass and moved up into the molten solder while your iron is at the tack joint. The paper will strong enough to move through the solder, separating the two piece of glass.

Once your 3-D piece is tacked together and looks OK, turn the piece over on its side, and, using 50/50 or 40/60 solder, fill in the inner seams, moving the piece around. Be careful to support the piece with boxes or blocks and by holding it at the top part above where you are soldering, to prevent the piece collapsing.

Once the inside of the piece - say a panel lamp - has been soldered smoothly with the solder with a higher lead content, turn the lamp over and prepare to do the outside. Arrange boxes or similar supports to prop the lamp upon, and orient it make a level joint to solder. Using the 50/50 or 40/60 solder again, fill in the seam. It doesn't have to be perfect, at first. Do all of the seam filling first, to ensure the stability of the piece. Then go back with 60/40 – the higher tin content - solder and, again making sure the lamp seams are level, finish by smoothly soldering each seam.


Reinforcing Lamp Shades

When constructing large or heavy lamp shades, reinforcement needs to be an integral consideration in the construction. With panel lamps the reinforcement is relatively simple – it can be along the seam lines. In fact, if you do not bevel your glass at the panel edges, it can be in the upper seam lines, as the solder filling the open joint will cover the wire. If the panels are bevelled, the wire can just go on the inside along the joint.

The wire should end at the edge of the bottom of the skirt so that it does not extend beyond, but will still be in contact with the edge reinforcement. The upper wire should extend beyond the top of the shade, so that it can be soldered to the vase cap. If there is not one, the wire should be dealt with as for the bottom, and there should be edge reinforcing.

The wire that is easiest to use is single strand copper or brass. It should be of a size to fit at the bottom of the “V” of each joining panel.

The bottom edge of a lampshade can be reinforced in various ways depending on the shape.

If the bottom edge is straight or only slightly undulating, brass “U” channel or other hard metals can be used.
Where the edges have points or acute angles on the edge, you need to use copper or brass wire. Again, single strand wire is better than twisted. It needs to be thin enough to conform to all the angles of the edge.

Choose a starting point. The best is where a reinforcing wire comes to the edge. Also you can begin at the base of an internally facing angle, so there is no opportunity for a wire end to stick out.

Tack solder or sweat the wire to the bottom edge of the panel where you decided to start. Then bend the wire to conform to the angles and curves of a portion of the lamp. If it is a panel lamp, bending the wire to conform to the edge of one panel at a time should be enough. Tack or sweat the wire to the panel at the bottom of each inward facing angle, as it is more difficult to keep the wire down in those areas than on outward facing angles. Once you have tacked the wire all around the panel, you will come to the start where you need to make sure you do not un-solder the beginning of the wire while trying to fix the end. It can be a help to overlap the end of the wire along the beginning. Alternatively, you can take the end up along the vertical reinforcing wire and fix it there.

Now you can begin to run a bead along the bottom edge of the panel to cover the wire. Make sure the wire and foil are both fluxed all along their length. Then orient the soldering surface is horizontal as you apply the solder. Move the shade frequently to keep the area to be soldered horizontal to avoid the liquid solder running into uneven lumps.

Vase Caps

Attaching the vase cap securely is important as often the whole lampshade hangs from the attachment points between the cap and the solder seams of the shade.

Once you have assembled the shade and tack soldered it together, perch the vase cap on the top covering the opening and apply solder so it joins the vase cap with the solder seams. It is a good practice to turn the lampshade over and apply solder from the seam to the inside of the vase cap. A good strong joint at each seam will be perfectly strong enough to hold the shade in position for many years.


Vase Cap Fitting

There are at least three ways to get the right vase cap size. 



Make up your shade in a cardboard mock-up. Use 3mm thick card or foam board to represent the glass, as the thickness of the glass is important in determining which vase cap is the correct size. Try your vase cap against the cardboard model, then if you need, alter the pattern so the glass pieces meet at just the right place to make the lip of the vase cap fit just over the top of the glass. You can do this by either shortening or lengthening the pattern a little at the top edge. 



The second also involves making a cardboard mock up. After making this maquette, choose a vase cap that overlaps the top opening, covering all the edges. 



The third option is to use two vase caps, one above and one below the opening to clamp them together trapping the edges of glass between them. Use a furling and lock nuts with no solder at all to hold the lampshade together.


Tinning brass vase caps

Tinning brass vase caps can help in obtaining a secure joint without long dwells at each joint, risking the overheating of the glass.

Heat your vase cap with a torch of one kind or another. You can heat until it becomes a dull red. The quickly brush or rub (with a cloth) flux onto the inside and outside of the rim of the vase cap. Apply a little solder to the fluxed area while everything is still hot. This will tin all the areas where the flux was placed.

This method gives a strong solder to solder joint that requires much less time when soldering the cap to the rest of the lamp shade.

Tinning Brass
Brass transmits heat much more quickly than lead, so a considerable length or the whole of the piece, e.g., a vase cap needs to be heated to avoid the cap acting as a heat sink and so not allowing even tinning of the object.

When tinning any brass pieces, like a lamp cap, rub it with fine grade steel wool (often labeled 000) until bright, then wash the residue off and dry. Apply flux with a fresh flux brush, and hold the piece with a pair of pliers.  Brass transmits heat much faster than lead or solder, so this is a precaution against getting burnt.

At this point you can heat the brass or vase cap with a low heat blow torch to warm the whole piece. When warm, turn off the blow torch and begin applying the solder with the soldering iron.  Touch the piece with your hot soldering iron, pause and then start moving the iron slowly and smoothly over where you have applied the flux, applying a little solder all the time.

Alternatively you can work without the blow torch. Apply a bit of solder to the tip of the iron. Touch the piece with your hot soldering iron, let the piece heat up a little, and then start moving the iron slowly and smoothly over where you have applied the flux.

When the whole piece has been covered, wash it, dry, and then inspect for any missed spots or unsightly solder blobs. Apply a little bit more flux and touch with your soldering iron. If you are doing a lot of this kind of work, an 800 degree iron tip will speed up your work.


Fibre blanket moulds

It is possible to make moulds from fibre blanket which will last for a number of firings if handled carefully.

Pre-wetted fibre blanket is available - Moist Pack is one brand name.
Or you can make the mould yourself from fibre blanket and hardener. You need:
- ceramic fibre blanket. It should be 3 mm or thicker, but 25 mm needs to be compressed when wet. It is possible to use two layers of 3 mm fibre blanket, but they do not stick together well unless thoroughly wetted.
- colloidal silica - often is called mould hardener. Paint this onto the fibre blanket liberally, both sides if possible.

Process
You must protect the master with cling film, Vaseline, or other waterproof separator. Be sure about whether you want a draping or slumping mould, as the inside needs to be smoothest for a slumping mould and the outside smoothest for a draping mould.

Press the wet fibre blanket to the master. Then let it dry for a couple of days to become stiff enough to remove from the master. Let the negative dry for another period.

If you are short of time, you can dry it in the kiln at about 200C. Once dry, you can then fire to a minimum of 760C to harden the mould. The point is to get the glass which has been in suspension to soften and stick together. Upon cooling the mould will be hard, as it is held together by the glass structure within the fibre blanket.

Then sand to smooth. Wear a dust mask during this process and do it out doors if possible. Otherwise a well-ventilated room is necessary. If unhardened blanket is exposed during the sanding process, soak in the colloidal silica and dry and fire again. Alternatively you can make a paste of the sanded material and the hardener and apply it to the mould before firing it again

Before use, the mould needs to be kiln washed, or have alumina hydrate powder sprinkled over mould, otherwise glass will stick to mould.
With delicate treatment, the mould can be reused many times.

Example of a lamp panel mould from fibre blanket




Sunday, 12 February 2012

Cutting Glass

Techniques and Safety

Use of the Glass Cutter 

When cutting glass your are first scoring the surface to weaken the glass and then second, breaking along the score line. The glass will always follow the path of least resistance. It is important to keep this in mind when “cutting” glass as it has significant implications for scoring and breaking.

Use the cutter by moving it away from you, so you can see the cartoon lines as you score. When using a straight edge, you can pull the cutter toward yourself or push it away, whichever suits you.

Grasp of the cutter
The classic or traditional grasp is for use with a pencil cutter. The cutter is placed between the first/index and second /ring fingers with the thumb at the back of the cutter. This initially is awkward. Its advantages are that it transfers most of the work to your arm rather than fingers and wrist, and it restricts the movement of your wrist, leading to smoother curves.

Basic cutter in traditional grasp


Oil filled pencil cutter in traditional grasp



The modified grasp is also for use with pencil cutter. The cutter is placed between the thumb and first/index finger. The second /ring finger is also most often used beside the first/index finger. The fingers should be straight to avoid excessive strain on the fingers and possible carpal tunnel problems later.

Modified grasp with straight fingers

The fist grip for use with pistol grip cutters. The cutter is held similar to a gun, with the first/index finger pointing down the shaft holding the cutter head. This pointing action seems to aid the accuracy of cutting. This applies to cutters with right angle handle attachments also.

The palm grasp is for the small Toyo and other palm cutters. The cutter is placed on the pad beneath the thumb and held with the first/index finger and thumb.

Scoring Glass

Cutting glass is done by “scoring” the surface of the glass with a glass cutter, then breaking it along the score line. The break you make will always follow the path of least resistance, so you want to be sure that the score you make becomes that easy path and glass breaks the way you want it to.

Moving the Cutter
Generally, you use the cutter by moving it away from you, so you can see the cartoon lines as you score. When using a straight edge such as a cork-backed ruler to guide your cutter, you can pull the cutter toward you, or push it away as suits you. The cutter should always be held at a 90 degree angle (left to right). You can determine this by looking down the cutter to the wheel and to the cartoon line below.


Alignment
The cutter should be held so that your dominant eye looks along the cutter to the cut line just in front of the wheel. This ensures you are looking directly to the line and that your cutter is not tilted to one side or the other. Looking down the side of the cutter only ensures that it is tilted with the effects indicated above.



Tilted Cutter Effects*

A tilted glass cutter has the effect of changing the angle of the cutter wheel. It narrows the angle on one side and increases it on the other side. So on the side tilted away from vertical (which is what happens when you look down the side of the cutter) has an sharper angle with the glass. This is likely to produce chips along the cutting line. The side which is tilted toward the glass has a more blunt or shallow angle with the glass. This produces high stress along the line.

The combination of these two effects make for a rough edge when broken and for break failures because of the stresses being at angles to the desired vertical fissure line.

Steering the Cutter

It is important that the work be done from the forearm rather than the fingers or the wrist. The elbow should be held closely to the body. This reduces the freedom of movement, giving clean flowing score lines. It also reduces the actions that can lead to repetitive stress injuries. Of course, for long cuts your arm will have to extend from you body in a parallel direction with the score line.


All these instructions about holding the cutter are reasonably straight forward when cutting straight lines, but become more difficult when applied to curves. The temptation is to use your wrist to make the curve. However this both tilts the cutter – giving the results described – and risks the cutter sliding across the glass.

You should attempt to be behind the cutter at all times. This means that the steering action should be from your body. Most times, turning your torso from the waist is sufficient to enable the cutter to follow the curve. On curves which are deep or go through more than 90 degrees, it is best to place the glass at a corner of the work bench and “walk” around the piece by both twisting at the waist and moving your feet around so that you can make a 270 degree cut without moving your forearm from your side.

Scoring Pressure

The second and very important element in scoring glass is the amount of pressure used. Very little pressure is required. You should hear no more than a quiet hiss on transparent glass and almost no sound on opalescent glass. However some manufacturer's transparent glass has almost no sound either. So the important element is the pressure, not the sound. Most people start with applying far too much pressure. Tests have shown that only about 4 kg of pressure is required for a clean score.

You can test the effect of this amount of pressure on a bathroom scale. Place a piece of clear glass on the scale and without touching the glass with your other hand, score it noticing how much weight is being recorded. Keep trying until you are consistently at the 4 kg area of pressure. Try breaking the glass. Score a curve with the original amount of pressure and break the glass. Then using the same curve score the glass with the 4 kg pressure and break the glass. You will see and feel the lesser scoring pressure provides a clean break.

Excessive pressure leads to breaks showing significant stress marks on the edge of the glass. Too little pressure has no effect on the glass, making it impossible to break along the score line. The correct pressure (ca. 4 kg.) leads to almost vertical stresses being put into the glass which assists the breaking along the score line. Too heavy pressure creates stress marks which are at increasingly large angles with the increasing pressure. This will still break cleanly on straight lines, but when working around curves the glass can follow one of the lateral stress marks away from the score line. Excessive pressure is often the cause of glass breaking away from the score line on a curve, especially a tight one.

The pressure needs to be applied consistently throughout the length of the score. Uneven pressure leads to inconsistent breaks.


Scoring Opalescent Glass

Cutting opalescent glass often gives difficulties in getting clean breaks along the score line. You need to remember that the opals do not make much if any sound when cut with the correct pressure. If you are scoring so that you hear the ziiip sound, you probably are pressing too hard. When the score is too hard, the opals do not break easily or truly. Only the same pressure as used on transparents is required. Feel the pressure rather than listen for the sound.


Speed

The speed of the cutter needs to be consistent too. If the speed is not nearly constant, different pressures are transmitted to the glass. This also leads to inconsistent breaks.


Where to Start Cuttng the Glass

As a general rule, always make the hardest cut first. Glass tends to run in a straight line. This means inside curves should be done before any other cut is made. This avoids excessive wastage should the break come away from the score line.

Glass placed to make the inside cut at the right first

It will be most efficient to place the glass to be cut with the inside curve facing the raw edge of the glass. If something goes wrong, the glass can be moved and tried again, resulting in less glass and time wasted.

It is also hard to run very thin strips of glass without getting ragged, chipped edges. Allow a 6mm minimum distance from the edge of the glass when placing the glass on the cartoon unless the edge glass is going to be used for the whole edge of the cut piece.



Direct or Trace cutting

Place the glass over the pattern and run the cutter along the cartoon lines you see by looking through the glass. There's no need to draw lines on the glass. For translucent glass you may need a light box.

You should be aiming to cut glass efficiently and accurately. Trace cutting is the most efficient, as it completes in a single operation what other methods – such as drawing on the glass or making templates from the cartoon - take several steps to accomplish.

It is more accurate because each extra step required for other methods increases the possibility for error. The fewer times you copy the original pattern lines, the less likely you are to diverge from the original pattern.

It is very important to keep the cutter at right angles to the glass - as seen from side to side, not vertical. This of course is true of all cutting. It makes the cutting inaccurate, because the light is bent when coming through the glass much like water changes the apparent angle of sight into its depths. Tilted cutters also have undesirable effects when breaking the glass.


Cutting with Patterns or Templates

When scoring around a paper pattern it is necessary to steer (turn) the cutter in the proper direction. The paper will not turn the cutter for you. You should steer the cutter by turning your upper body rather than your fingers, wrist or elbow. Failing to do this may allow the cutter to run over the pattern and so fail to score the glass.

Alternatives to using the paper pattern directly as a guide in cutting glass are to outline the pattern paper on the glass with a pen or to draw the pattern on the glass while it overlays the drawing. You follow the inside edge of the pen line with the cutter. However this results in cutting glass much as when cutting directly over the cartoon and so merely introduces an additional step in cutting glass.



This shows a set of templates in use for repetitive cutting. The template is drawn around for subsequent cutting

Directly cutting the glass over the cartoon avoids the time spent in making patterns, and the difficulties and inaccuracies in multiple transfers of the shape. Often a light source is required under the cartoon to enable the lines to be seen through the glass. There will always be times when the glass is so dark or opalescent that the lines cannot be seen and therefore a pattern is required.

Keep the pattern cutting restricted to the times when nothing else will do. The only times I use patterns for cutting are when the glass is too dense for the cartoon lines to be seen through the glass with light behind or for repeat shapes where a pattern can speed the process.


I draw around the pattern pieces, as that avoids the possibility of the cutter riding up on the card that I use for templates. This comes from several occasions when the cutter did go over the template which prevented the score and so created a bad break. Others do score successfully around the template stuck to the glass.



Pattern Scissors Usage

The purpose of pattern shears/scissors is to cut out the space between pattern pieces equivalent to the came heart or the space needed for foil.

The scissors come in two thicknesses – one for leaded and the thinner for copper foil.



If you must use pattern scissors, use them in short cutting motions. Use only the first 50mm of the blades which are closest to the pivot point. Otherwise the paper jams in between the blades. It remains difficult to cut long straight lines without quickly having an “accordion” of paper blocking the cutting action.



Some suggestions to make things easier:

  • Clean the blades regularly. If you are cutting anything with adhesives, clean the blades after each use with spirits.

  • Often running a little soap along the blades helps to lubricate and smooth the action of the blades.

  • Use stiff high quality paper so you do not catch fibres in the scissors. Waxed paper or stencil card are good materials to use.



Organising pattern pieces.
You have made a second and third copy of the cartoon haven’t you?
 Now that you have a lot of pieces need to decide how to organise them
  • Mark any grain direction before you cut the pieces apart.
  • You need to code the pieces in some way. 
Numbering with reference to the main cartoon is most common. 

  • It is a good idea to colour code the pieces and if the surface will take it, a shading of the colour makes a quick visual reference.

Keeping the pieces together
Envelopes are easy to write on for colours, or areas such as borders, background, etc.
  • Freezer bags that are transparent and have a band to write on are very good, as you can see the pieces without opening the bag.
  • You need a labelled bag or container to keep all the envelopes together.




Alternatives to pattern scissors
For copper foil, you can use normal scissors, by cutting to the inside of the pencil or inked line. You can also use a scalpel or craft knife to cut to the insides of the marked lines.


For leaded glass you can use a felt tip pen (a bullet point is almost exactly the right width when new). Cut with scissors or craft knife at the sides of the line.



Alternative to pattern pieces


Use the European or trace cutting method as described here.


Breaking glass with your fists 

For scores with significant, but not necessarily equal, amounts of glass on each side of the score this is a quick simple approach to breaking glass. After scoring, raise one edge of the glass and put your fingers under the glass on each side of the score. Curl you fingers into your palm, and put your thumbs on top of the glass. Turn your wrists outward while holding the glass firmly, and the glass will break cleanly.

With practice, the initial part of a curved score can be run by applying light pressure. Then you can turn the glass around and run the score from the other end to the opened score. This avoids lots of tapping and gives clean edges to the cut glass. It is just as simple as using cut running pliers and avoids the flare often associated with using cut running pliers.

This technique works best with glass that has at least 50 mm each side of the score and on gently curved lines. For tight curves and narrow strips other methods need to be used.

Breaking Pieces from Large Sheets  


Breaking a piece of glass from a large sheet is often a frightening prospect. It doesn't have to be. It is better to cut a straight line piece from your larger sheet than it is to try to cut a curve.

Use a cutting square or other non-slip straight edge to guide the cutter. You can push as in normal stained glass cutting, or you can draw the cutter toward you as glaziers do. In either case, the pressure needs to be even and the speed consistent.

When moving large scored sheets, avoid pulling the sheet by one end. The score may run suddenly and not always along the line. Instead, move the sheet with support on both sides of the score.

After the glass is scored, you have choices about how to run the score.

One easy way to break off large pieces is to move the sheet so the scored line is just inside the edge of the bench. The biggest piece will be on the bench and the smaller piece in your hands. Give a quick, sharp downward push with both hands on the overhanging glass. This action will separate the piece from the main sheet. Having the glass score inside the bench edge gives you a place for the broken off piece to rest, rather than pivoting toward the floor.

Or you can slide the straight edge under the glass on one side of the score, and press firmly, but not sharply on each side of the score. The glass will break evenly along the score line. This is a more gentle method of breaking the glass. A variation on this is to place a couple of matchsticks or glass painting brushes at each end of the score and apply the pressure.


If the glass sheet is of a size that you can hold it in both hands with the score between, you can draw it off the bench, let it hang vertically, and bring your knee up briskly to hit the score line, and it will break easily. This is a showman’s way of breaking glass sheets when the score line is approximately centred on the sheet.


Cut running pliers often do not work very well for long straight scores on large sheets of glass. However, if you use this method, tapping at the start and at the end the score line before squeezing the running pliers will help the score to run the way you intend. This is sometimes the only way to achieve the break of the score.

Refining rough cuts and sharp edges


You can make the freshly cut glass safer to handle by gently wiping the edges of the cut piece with the waste piece. This removes the sharpest edges without chipping the glass.

After the glass is scored and broken, you can remove small, unwanted chips with grozing pliers. The serrated jaws of these pliers are used to gently nibble away at the jagged edges.

Rough edges can also be smoothed with a carborundum stone. You rub the stone along each edge, upper and lower, to remove any sharp edges. You can remove more glass with the stone if you wish by a little more aggressive grinding action or just a more sustained light rubbing of the stone against the edges.

A diamond smoothing pad removes glass in much the same way as a carborundum stone, but does it more quickly with the coarser grades. You can use a number of grades to get an almost bright polish to the edges. These pads must be used with water.

A glass grinder is used by many people. Many models of grinders are available. The grinding surface of the bit is covered with fine diamonds, which grind away unwanted glass very quickly without chipping the edges. In addition, they are water-fed which keeps the glass from cracking due to heat, prolonging the life of the diamond bit, and preventing the powdery ground glass form flying around.

A glass grinder is NOT a substitute for accurate cutting.


*This section has been prepared from information provided by the Fletcher-Terry company: http://www.fletcherviscom.com/home.shtml




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