复合材料的形状变形:来源、表征和补救措施

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Mehran University Research Journal of Engineering and Technology Pub Date : 2023-07-21 DOI:10.22581/muet1982.2303.01
Iqra A. Rashid, K. Shaker, Yasir Nawab
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引用次数: 0

摘要

本文综述了聚合物复合材料中的形状畸变、其来源、表征技术和补救措施。形状变形可能包括翘曲、弹入或扁平、倾斜和圆形零件的封闭直径变化。残余应力被认为是层合复合材料形状变形(尺寸不稳定性)的主要来源。这些应力是不同层的热膨胀行为或基体和加强件之间热膨胀行为差异的结果。此外,复合材料中还会产生纤维屈曲、横向裂纹和分层,影响其拉伸、弯曲和压缩等力学性能。产生的残余应力是通过不同的技术来确定的,如对称层压板的层去除、第一层失效和x射线衍射。文献中报道的形状变形的常见补救措施包括添加纳米颗粒和在底部或凸缘处的可变厚度。
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Shape distortion in composites: sources, characterization, and remedies
This paper reviews the shape distortions in a polymer composite, its sources, characterization techniques, and remedies. The shape distortion may include warpage, spring-in, or change in enclosed diameter for flat, angled, and circular parts. Residual stresses are considered to be the major source of shape distortion (dimensional instability) in laminated composites. These stresses are the result of the difference in thermal expansion behavior of the different plies or between matrix and reinforcement. Additionally, fiber buckling, transversal cracking, and delamination are also produced in the composite, affecting its mechanical properties like tensile, flexural, and compression. The produced residual stresses are determined through different techniques like layer removal of symmetrical laminates, first ply failure, and x-ray diffraction. The common remedies for shape distortion reported in the literature include nanoparticle addition and variable thickness at the base or flanges.
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发文量
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审稿时长
40 weeks
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