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High strain rate compressive response of syntactic foams:Trends in mechanical properties and failure mechanisms

机译:复合泡沫的高应变速率压缩响应:力学性能和破坏机理的趋势

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摘要

Syntactic foams are composite materials comprising hollow particles dispersed in a matrix material. Available studies on high strain rate compressive response of polymer matrix syntactic foams are critically analyzed to identify the strain rate effects with respect to the material composition. Syntactic foams reinforced with micro- and nano-sized fibers and particles are also covered in the study. Polymer matrix syntactic foams demonstrate strain rate sensitivity in compressive strength over a wide range of strain rates. The compressive strength in the strain rate range of 500-1500s-1 is usually seen to be higher than the quasi-static strength. Reinforced syntactic foams also show similar trends. Compared to the quasi-static compressive failure mechanism of shear cracking, the high strain rate failure occurs by crack propagation in the direction of compression. Compressive properties are not available for syntactic foams in the intermediate strain rate range of 1 -400 s-1 due to a lack of appropriate test methods for this range. Absence of modeling and simulation of high strain rate properties of syntactic foams in the published literature is noted. Increasing applications of syntactic foams in automobiles and potential applications in armor structures can benefit by these findings because the mechanical properties and failure criteria selected in the design process should account for the strain rate sensitivity.
机译:句法泡沫是包括分散在基质材料中的中空颗粒的复合材料。严格分析了聚合物基体复合泡沫塑料的高应变速率压缩响应的现有研究,以确定相对于材料组成的应变速率影响。该研究还涵盖了用微米和纳米尺寸的纤维和颗粒增强的句法泡沫。聚合物基体复合泡沫材料在很宽的应变速率范围内均显示出抗压强度中的应变速率敏感性。通常认为在500-1500s-1应变速率范围内的抗压强度要高于准静态强度。强化复合泡沫塑料也显示出类似的趋势。与剪切开裂的准静态压缩破坏机理相比,高应变率破坏是由裂纹在压缩方向上的扩展引起的。在1 -400 s-1的中间应变速率范围内,对于复合泡沫塑料,压缩性能不可用,因为该范围缺少适当的测试方法。注意到在已发表的文献中没有建模和模拟语法泡沫的高应变速率特性。由于在设计过程中选择的机械性能和破坏准则应考虑应变速率敏感性,因此,在汽车中复合泡沫塑料的日益广泛的应用以及在装甲结构中的潜在应用可能会受益。

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  • 来源
    《Materials Science and Engineering》 |2011年第26期|p.7596-7605|共10页
  • 作者单位

    Composite Materials and Mechanics Laboratory,Department of Mechanical and Aerospace Engineering,Polytechnic Institute of New York University,Brooklyn,NY 11201,United States;

    Composite Materials and Mechanics Laboratory,Department of Mechanical and Aerospace Engineering,Polytechnic Institute of New York University,Brooklyn,NY 11201,United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    composites; cellular materials; failure; tomography;

    机译:复合材料;细胞材料;失效;断层扫描;

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