首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >DYNAMIC BEHAVIOR OF MONOLITHIC AND COMPOSITE MATERIALS BY SPLIT HOPKINSON PRESSURE BAR TESTING
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DYNAMIC BEHAVIOR OF MONOLITHIC AND COMPOSITE MATERIALS BY SPLIT HOPKINSON PRESSURE BAR TESTING

机译:霍普金森压力棒法测试单体材料和复合材料的动态行为。

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A Split Hopkinson Pressure Bar (SHPB), an experimental apparatus for testing of solid materials at high strain rates, was in-house designed and realized by the Mechanical Engineering Dept. of WSU: it can test different types of materials and provide their dynamic mechanical properties (e.g. Young's modulus, hardening or plasticization coefficients, yield strength). This SHPB works at strain rate levels between 1000 and 3000 s-1 and impact speeds between 6 and 9 m/s. The specimen is simply a 6 mm dia. 3 mm long cylinder. The apparatus and its software were benchmarked by means of tests on Aluminum and Titanium, whose mechanical properties are well known, and later successfully applied to non-metallic materials like Nylon, Epoxy, Carbon fiber and glass fiber reinforced composites.
机译:WSU机械工程系自行设计和实现了斯普利特霍普金森压力棒(SHPB),这是一种用于测试高应变率固体材料的实验设备:它可以测试不同类型的材料并提供其动态机械性能。特性(例如杨氏模量,硬化或增塑系数,屈服强度)。该SHPB的应变速​​率为1000至3000 s-1,冲击速度为6至9 m / s。标本直径仅为6毫米。 3毫米长的圆柱体。该设备及其软件通过在铝和钛上的测试进行了基准测试,这些材料的机械性能众所周知,后来成功应用于尼龙,环氧树脂,碳纤维和玻璃纤维增​​强复合材料等非金属材料。

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