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Undergraduate Design and Modification of a Tensile Testing Fixture for Biomaterials

机译:生物材料拉伸试验夹具的本科设计和改造

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摘要

In the freshman materials class of a Mechanical Engineering Technology program, students run tensile tests on a 270 kN universal test machine using standard metal specimens having a cross- sectional area of 130 mm2. A Biology professor studying the development of crabs asked the MET program for help with measuring mechanical properties of crab shells. This material is a natural, porous composite. Very small test specimens with a cross-sectional area of 5 mm2 are cut from the crab shells because larger specimens have too much curvature. With expected loads below 75 N, the 270,000 N universal testing machine was not suitable. Instead, a 250 N tabletop tensile tester was purchased. This tester pulls specimens 80 mm long, so it required modification to test crab shell material. The MET students were asked to design clamps to hold the crab shell securely without crushing it, at a predetermined gauge length. In an upcoming semester, a new class of students will customize the software to produce meaningful results. This project was good training for future engineers because it helped students learn to work on an interdisciplinary problem for an external customer (the Biology professor) where the inputs were not all known at the beginning.
机译:在机械工程技术课程的新生材料课上,学生在270 kN通用试验机上使用横截面积为130 mm2的标准金属试样进行拉伸试验。一位研究螃蟹发育的生物学教授向MET程序寻求帮助,以测量螃蟹壳的机械性能。该材料是天然的多孔复合材料。从蟹壳上切下横截面积为5 mm2的非常小的试样,因为较大的试样曲率太大。由于预期负载低于75 N,因此不适合使用270,000 N通用测试机。取而代之的是,购买了250 N的台式拉伸测试仪。该测试仪可拉长80毫米的样本,因此需要修改以测试蟹壳材料。要求MET学生设计夹具,以预定的标尺长度牢固地固定蟹壳而不会压碎蟹壳。在即将到来的一个学期中,一班新的学生将定制该软件以产生有意义的结果。这个项目对未来的工程师来说是一个很好的培训,因为它帮助学生学习了外部客户(生物学教授)的跨学科问题,而这些客户在一开始就并不了解。

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    Dupen Barry;

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  • 年度 2012
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