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首页> 外文期刊>Polymer Composites >Effect of Compressive Loading Speed and Stacking Sequence on Mechanical Characteristics of Satin Weave E-Glass/Epoxy Composites
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Effect of Compressive Loading Speed and Stacking Sequence on Mechanical Characteristics of Satin Weave E-Glass/Epoxy Composites

机译:压缩加载速度和堆垛顺序对缎纹编织电子玻璃/环氧复合材料力学性能的影响

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摘要

This article experimentally investigated the in-plane loading speed dependent mechanical properties and failure modes of satin weave E-glass/epoxy composite laminates [45/-45/0/90]_(ns). Two types of E-glass fabric/ epoxy pre-impregnated tapes were used to manufacture the composite laminates specimens. The low strain rate tests were conducted with an INSTRON~(TM) testing machine, and the high strain rate tests done using a pulse shape modified compressive Split Hop-kinson Pressure Bar apparatus. From the experimental result, it was concluded that under different strain rate loading, compressive strength, modulus, and strain at peak stress were rate sensitive. Optical and microscopic photos of the specimens were taken to determine operative failure modes. Within the studied strain rate regimes, the failure mode changed from splitting followed by fiber kink buckling to predominantly delamination and shear fracture as strain rate increases from quasi-static to high strain rates. Compressive properties and failure modes were severely affected by strain rate, stacking sequence, and fabric material.
机译:本文通过实验研究了缎纹编织电子玻璃/环氧树脂复合层压板[45 / -45 / 0/90] _(ns)的面内加载速度依赖性的机械性能和破坏模式。两种类型的电子玻璃纤维布/环氧树脂预浸渍带被用于制造复合材料层压板样品。低应变率测试是使用INSTRONTM测试机进行的,而高应变率测试是使用脉冲形状改良的压缩式Split Hop-kinson压力棒设备进行的。从实验结果可以得出结论,在不同的应变速率载荷下,峰值应力下的抗压强度,模量和应变对速率敏感。拍摄标本的光学和显微镜照片以确定操作失败模式。在所研究的应变率范围内,随着应变率从准静态应变率增加到高应变率,破坏模式从分裂随后是纤维扭结屈曲变为主要分层和剪切断裂。压缩率和堆积顺序和织物材料严重影响了压缩性能和破坏模式。

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