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Experimental investigation of the dynamic response of graphite-epoxy composite laminates under compression

机译:石墨-环氧复合材料层合板在压缩状态下动态响应的实验研究

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摘要

In this study, the dynamic stress strain response of graphite-epoxy composite laminates is investigated. The laminates are in- terposed in a section of a split Hopkinson apparatus. A quasi-rectangular wave is generated at one end of the incident bar by striking it with another bar of known length. This bar is accelerated using a compressed air gun. Approximate average stresses and strains can be obtained by measuring the incident, reflected and transmitted waves in the split bar. The dynamic behavior is evaluated for a range of impact velocities. The dependence of the response on impact velocity is analyzed and discussed. Three different specimen thicknesses have been used. These are obtained by increasing the repetition factor of a base stacking sequence: (+45°,-45°, 0°, 90°). This process is called sublaminate scaling; it is preferred to ply scaling since it has been shown that the ac- cumulation of layers of the same orientation decreases the failure load to such an extent that residual stresses may crack the specimen before any external load is applied. The laminates considered are : (+45°, -45°, 0°, 90°)_ns, n = 2, 3,4. The scale effects observed in the experimental response are analyzed and discussed.
机译:在这项研究中,研究了石墨-环氧树脂复合层压板的动态应力应变响应。叠层板插入在霍普金森分离设备的一部分中。通过用另一根已知长度的棒撞击入射棒的一端来产生准矩形波。该杆使用压缩空气枪加速。通过测量分光条中的入射波,反射波和透射波,可以获得近似的平均应力和应变。针对一系列撞击速度评估动态行为。分析和讨论了响应对冲击速度的依赖性。已经使用了三种不同的样本厚度。这些可以通过增加基本堆叠序列的重复因子来获得:(+ 45°,-45°,0°,90°)。此过程称为分层分层。最好进行层比例缩放,因为已经表明,相同方向的层的累积将破坏载荷降低到一定程度,使得残余应力可能会在施加任何外部载荷之前使试样破裂。所考虑的层压板为:(+ 45°,-45°,0°,90°)_ns,n = 2、3、4。分析和讨论了在实验响应中观察到的尺度效应。

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