Design, Make and Test a Warren Girder: Difference between revisions
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==== What to Make: ==== | ===== What to Make: ===== | ||
Design Make and Test a Warren Girder | Design Make and Test a [http://en.wikipedia.org/wiki/Girder '''Warren Girder'''] truss frame 450mm wide to span a 400mm wide gap and support a centrally applied load of 1kg | ||
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====What to Use:==== | =====What to Use:===== | ||
* Material available is restricted to 3mm thick medium density Balsa Wood. | * Material available is restricted to 3mm thick medium density [http://en.wikipedia.org/wiki/Ochroma_pyramidale '''Balsa Wood''']. | ||
* Use any suitable adhesive to make connections but adhesive tape is not allowed | * Use any suitable '''[[Adhesive Types|adhesive]]''' to make connections but '''[[Adhesive Tapes|adhesive tape]]''' is not allowed. | ||
====Things to find out and think about:==== | =====Things to find out and think about:===== | ||
* Draw full-size a Warren Girder exactly 450mm wide | * Draw full-size a Warren Girder exactly 450mm wide | ||
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====Some ideas:==== | =====Some ideas:===== | ||
[[File:FramePlan.png|400px]][[File:WarrenFrame.png|400px]] | [[File:FramePlan.png|400px]][[File:WarrenFrame.png|400px]] | ||
=====Ways of Making:===== | |||
====Ways of Making:==== | |||
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[[File:FrameTestRig.png|400px|right]] | [[File:FrameTestRig.png|400px|right]] | ||
====Testing:==== | =====Testing:===== | ||
* Carefully weigh the completed truss frame ''(ideally to 1/10<sup>th</sup> of a gram)''. | * Carefully weigh the completed truss frame ''(ideally to 1/10<sup>th</sup> of a gram)''. | ||
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====Further Work:==== | =====Further Work:===== | ||
* Continue to load the | * Continue to load the frame until it fails and record the maximum load before failure. | ||
* Divide the maximum load before failure by self-weight to gain a revised measure of the frame's efficiency. | * Divide the maximum load before failure by self-weight to gain a revised measure of the frame's efficiency. | ||
* Observe how the frame failed : which '''[[Structural Member|Member]]''' failed first? Was it a '''[[Strut]]''' or a '''[[Tie]]'''? Did just one '''[[Structural Member|Member]]''' fail or several all at once - and what would this indicate? | * Observe how the frame failed : which '''[[Structural Member|Member]]''' failed first? Was it a '''[[Strut]]''' or a '''[[Tie]]'''? Did just one '''[[Structural Member|Member]]''' fail or several all at once - and what would this indicate? | ||
{{Stripwood Frames Buyers Guide}} | |||
[[Category:Topics, Projects and Tasks]] | |||
[[Category:Structures Projects]] | [[Category:Structures Projects]] | ||
[[Category:Bridges]] |
Latest revision as of 10:15, 1 March 2017
What to Make:
Design Make and Test a Warren Girder truss frame 450mm wide to span a 400mm wide gap and support a centrally applied load of 1kg
What to Use:
- Material available is restricted to 3mm thick medium density Balsa Wood.
- Use any suitable adhesive to make connections but adhesive tape is not allowed.
Things to find out and think about:
- Draw full-size a Warren Girder exactly 450mm wide
- Analyse the forces acting within a Warren Girder and determine which Members will be Struts and which will be Ties.
- Apply Bow's Notation and use Force Diagrams to determine the Forces in the Frame when the 1kg load is applied.
- Determine the Tensile Strength of medium density Balsa Wood either by testing or looking up in tables and from this establish how wide to cut Ties from 3mm thick sheet Balsa (e.g. U.T.S. should be around 15Nmm2 - use this figure if in doubt or to check magnitude of test results).
- Apply Euler's Buckling Equation to inform an estimate of how wide to cut the Struts from 3mm thick sheet Balsa (e.g. assume a figure for Young's Modulus (E) of 4000Nmm2 or determine by experiment by measuring the Deflection of a balsa sample beam for example).
Some ideas:
Ways of Making:
- Conduct some tests to establish which is the most effective adhesive and consider how each joint can be provided with an adequate gluing surface area.
- Take care when shaping and finishing the Structural Members to avoid any nicks or sharp indentations which might cause a Stress Concentration.
- Use the full-size drawing to position the Structural Members accurately and glue them in place.
Note: Cover the drawing with tracing paper to enable the truss frame to release after gluing.
Testing:
- Carefully weigh the completed truss frame (ideally to 1/10th of a gram).
- Mount the completed truss frame in the testing rig as shown
- Suspend a mass set hanger from the centre as shown
- Add masses carefully to avoid generating a Dynamic Load until the specified load of 1kg is reached.
- Divide 1kg by the truss frame self-weight to gain a measure of the frame's efficiency (i.e. high numbers win!)
Further Work:
- Continue to load the frame until it fails and record the maximum load before failure.
- Divide the maximum load before failure by self-weight to gain a revised measure of the frame's efficiency.
- Observe how the frame failed : which Member failed first? Was it a Strut or a Tie? Did just one Member fail or several all at once - and what would this indicate?
- Structures and Frames can also be modelled using the Construction Kits listed in the Truss Bridges and Looking at Bridges articles.
Safety Point! Take great care with hot glue guns and all hot-melt glues. The melted glue can stick to the skin and cause severe burns.
Junior Hacksaw | Clamp-on Hobby Vice | Stripwood | Balsa Wood | Medium card coloured | Thick card coloured | Cutting Mat | 10mm Squared Paper | PVA glue | Glue Gun | Bamboo Flower Sticks |
Notes:
- Choose metal cutting hacksaw blades - the teeth are small which suits this scale of work and they are safer for young children
- School PVA glue is best for young children because it is non-toxic and washes off : PVA Wood Glue is strongest but must be used with care.
- Try to get natural Flower Sticks or wear gloves because the green stain comes off on hands!