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Characterization of CFRP and GFRP composite materials at high strain rate tensile loading.

机译:高应变速率拉伸载荷下CFRP和GFRP复合材料的表征。

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摘要

High strength-to-weight ratio, directional strength and stiffness are the significant factors, forcing polymer composites into the Aerospace, Marine and Automotive industries. Due to these major factors fuel efficiency and crashworthiness properties are the significant outcomes from use of these advanced materials. This present thesis work deals with experimental study of the in-plane tensile properties of polymer matrix composite materials reinforced by high modulus fibers under Quasi-Static and Hiagh Strain Rate tensile tests. Behavior of Glass fiber-reinforced (GFRP) and Carbon fiber reinforced (CFRP) composite materials is studied. The test coupons are balanced and symmetric in fiber orientation with respect to the test direction. The related experiments are performed with a MTS 810 high rate test machine to determine the mechanical properties of tension test coupons. The specimens were tested separately under quasi-static and high-speed conditions with stroke rates of up to 500 in/s. All specimens were tested to failure in order to characterize the effect of high strain rate on failure strength of the material.; In this work, a new method to obtain stress-strain curves for the tensile tests is proposed. The strain rate nature of composite laminates in tensile loadings clearly show that unlike in metals these materials do not exhibit the constant strain rate behavior in case of high strain rate tests. Throughout the test, the strain rate values change due to the dynamics of the system and directional stiffness of the composite laminates. In case of 0° fiber oriented specimens, the fiber properties dominate the matrix properties as fiber strength is much higher than that of matrix materials. For different fiber orientations of the laminates the strain rate varies for the same stroke rate tests as the matrix material starts playing role in case of higher fiber angles.; The results show that high strain rates have a significant effect on the properties of the composites coupons. The increment of the ultimate strength with high strain rate is proportional to the strain rate. In the future developments the stress-strain curves obtained from these various tensile tests can be used to insert in a finite element code to develop a material model for computational simulations.
机译:高强度重量比,方向强度和刚度是重要的因素,迫使聚合物复合材料进入航空,船舶和汽车行业。由于这些主要因素,燃油效率和耐撞性是使用这些先进材料的重要结果。本文的工作是在准静态和高应变速率拉伸试验下对高模量纤维增强的聚合物基复合材料面内拉伸性能的实验研究。研究了玻璃纤维增​​强(GFRP)和碳纤维增强(CFRP)复合材料的行为。测试试样在纤维方向上相对于测试方向是平衡且对称的。使用MTS 810高速率测试机进行相关实验,以确定拉伸测试试样的机械性能。分别在准静态和高速条件下分别以500 in / s的冲程速率测试样品。所有样品都进行了破坏测试,以表征高应变率对材料破坏强度的影响。在这项工作中,提出了一种获得拉伸试验应力-应变曲线的新方法。复合层压板在拉伸载荷下的应变速率特性清楚地表明,与金属不同,这些材料在高应变速率测试的情况下不会表现出恒定的应变速率行为。在整个测试过程中,应变率值会由于系统的动力学和复合材料层板的方向刚度而发生变化。对于0°纤维取向的样品,由于纤维强度远高于基质材料,因此纤维性能在基质性能中占主导地位。对于层压材料的不同纤维取向,对于相同的冲程速率测试,应变率会有所变化,因为在纤维角度较高的情况下,基体材料开始起作用。结果表明,高应变速率对复合材料试样的性能有显着影响。高应变率时极限强度的增加与应变率成正比。在未来的发展中,从这些各种拉伸试验获得的应力-应变曲线可用于插入有限元代码中,以开发用于计算仿真的材料模型。

著录项

  • 作者

    Deshpande, Anand B.;

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2006
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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