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Investigation of strain rate effects on in-plane shear properties of glass/epoxy composites

机译:应变速率对玻璃/环氧树脂复合材料面内剪切性能影响的研究

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Fiber-reinforced polymeric composites exhibit excellent mechanical properties over conventional engineering materials especially due to their great weight saving. Therefore, by considering the specific attributes of these materials, having a proper knowledge of dynamic behavior as well as static behavior of them is necessary. In order to study the effects of strain rate on the behavior of the materials, special testing machines are needed. Most of the researches in this field are focused on applying real loading and gripping boundary conditions on the testing specimens. This paper discusses the experimental study on the in-plane shear behavior of unidirectional glass fiber-reinforced polymeric composite under quasi-static and intermediate strain rate loading conditions. The symmetric and balanced ±45° composite laminates are manufactured for characterization of the in-plane shear properties (modulus and strength) at various strain rates. Specimens are tested under uni-axial tensile loading using a servo-hydraulic testing apparatus. For performing the practical tests, jig and fixture are designed and manufactured. The performance of the test jig is evaluated and found to be adequate for composites testing. Dynamic tests results are compared with static tests carried out on specimens with identical geometry. The experimental results show that the mechanical shear properties are quite sensitive to strain rate. Under dynamic loading, the failure shear strength increased with increasing the strain rate but the shear modulus decreased. Based on the results obtained from the experiments, empirical functions for expressing the mechanical shear properties are proposed in terms of shear strain rate.
机译:纤维增强的聚合物复合材料比传统的工程材料表现出优异的机械性能,特别是由于它们的重量减轻。因此,通过考虑这些材料的特定属性,有必要对它们的动态行为和静态行为有适当的了解。为了研究应变速率对材料性能的影响,需要专用的测试机。该领域中的大多数研究都集中在对试样施加实际载荷和抓紧边界条件上。本文讨论了单向玻璃纤维增​​强聚合物复合材料在准静态和中等应变速率载荷条件下的面内剪切行为的实验研究。制造对称且平衡的±45°复合层压板,以表征各种应变速率下的面内剪切性能(模量和强度)。使用伺服液压测试设备在单轴拉伸载荷下测试样品。为了进行实际测试,设计并制造了夹具和夹具。评估了测试夹具的性能,发现该性能足以用于复合材料测试。将动态测试结果与对具有相同几何形状的样本进行的静态测试进行比较。实验结果表明,机械剪切性能对应变率非常敏感。在动态载荷下,破坏剪切强度随着应变率的增加而增加,但剪切模量却下降。根据实验结果,提出了根据剪切应变率来表示机械剪切性能的经验函数。

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