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Monotonic and cyclic responses of impact polypropylene and continuous glass fiber-reinforced impact polypropylene composites at different strain rates

机译:冲击聚丙烯和连续玻璃纤维增​​强的冲击聚丙烯复合材料在不同应变速率下的单调和循环响应

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摘要

Impact copolymer polypropylene (IPP), a blend of isotactic polypropylene and ethylene-propylene rubber, and its continuous glass fiber composite form (glass fiber-reinforced impact polypropylene, GFIPP) are promising materials for impact-prone automotive structures. However, basic mechanical properties and corresponding damage of IPP and GFIPP at different rates, which are of keen interest in the material development stage and numerical tool validation, have not been reported. Here, we applied monotonic and cyclic tensile loads to IPP and GFIPP at different strain rates (0.001/s, 0.01/s and 0.1/s) to study the mechanical properties, failure modes and the damage parameters. We used monotonic and cyclic tests to obtain mechanical properties and define damage parameters, respectively. We also used scanning electron microscopy (SEM) images to visualize the failure mode. We found that IPP generally exhibits brittle fracture (with relatively low failure strain of 2.69-3.74%) and viscoelastic-viscoplastic behavior. GFIPP [90](8) is generally insensitive to strain rate due to localized damage initiation mostly in the matrix phase leading to catastrophic transverse failure. In contrast, GFIPP [+/- 45](s) is sensitive to the strain rate as indicated by the change in shear modulus, shear strength and failure mode. (C) 2016 Elsevier Ltd. All rights reserved.
机译:冲击共聚物聚丙烯(IPP)是全同立构聚丙烯和乙丙橡胶的混合物,其连续的玻璃纤维复合材料形式(玻璃纤维增​​强的冲击聚丙烯,GFIPP)是易于冲击的汽车结构材料。但是,尚未报道在材料开发阶段和数值工具验证中引起人们极大关注的IPP和GFIPP在不同速率下的基本力学性能以及相应的破坏。在这里,我们以不同的应变率(0.001 / s,0.01 / s和0.1 / s)对IPP和GFIPP施加单调和循环拉伸载荷,以研究机械性能,破坏模式和损伤参数。我们使用单调和循环测试分别获得机械性能和定义损伤参数。我们还使用扫描电子显微镜(SEM)图像来可视化故障模式。我们发现IPP通常表现出脆性断裂(具有2.69-3.74%的相对较低的破坏应变)和粘弹性-粘塑性行为。 GFIPP [90](8)通常对应变率不敏感,这是因为局部破坏的开始主要在基体阶段,导致灾难性的横向破坏。相反,GFIPP [+/- 45](s)对应变率敏感,如剪切模量,剪切强度和破坏模式的变化所示。 (C)2016 Elsevier Ltd.保留所有权利。

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