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The Influence of a Surface Coating on the High-rate Fragmentation of a Ductile Material

机译:表面涂层对韧性材料高速破碎的影响

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摘要

A bifurcation analysis of a layered ductile structural element undergoing homogeneous, high-rate extension is presented. Formation of multiple strain localization sites provides a precursor to ductile fragmentation, and the objective of the analysis is to investigate the effect of an added surface layer on resistance of the structural element to fragmentation. The analysis shows that, in addition to dissipating plastic work, the outer layer can increase the total energy dissipation prior to fragmentation by increasing bifurcation strain. The analysis also shows that the strain hardening exponent of the outer layer plays an important role in increasing the bifurcation strain; higher values of hardening exponent result in higher bifurcation strain. Strength and density of the outer layer play a secondary role in increasing bifurcation strain. Once a material with a high hardening exponent is chosen for the outer material, its strength plays an important role in increasing the total dissipated energy. The analysis also reveals that, for certain combinations of strength and hardening exponent of the outer layer, the sandwich structure can dissipate more energy than a homogeneous core structure of the same total thickness and length. This is so even when the outer layer is weaker than the core. Energy dissipated per unit mass can be significantly improved by choosing a softer outer layer which displays high-strain hardening. Thus, the bifurcation analysis presented here provides a quantitative guideline for material selection in designing layered structures optimized for resistance to fragmentation.
机译:提出了层状延性结构元件经历均质,高速率延伸的分叉分析。多个应变定位位点的形成提供了韧性断裂的先兆,分析的目的是研究添加的表面层对结构元件抵抗断裂的影响。分析表明,除了耗散塑性功之外,外层还可以通过增加分叉应变来增加破碎前的总能量耗散。分析还表明,外层的应变硬化指数在增加分叉应变方面起着重要作用。较高的硬化指数值会导致较高的分叉应变。外层的强度和密度在增加分叉应变中起次要作用。一旦选择具有高硬化指数的材料作为外部材料,其强度就将在增加总耗散能量方面发挥重要作用。分析还显示,对于外层强度和硬化指数的某些组合,夹层结构比相同总厚度和长度的均质芯结构可耗散更多的能量。即使外层比芯弱,情况也是如此。通过选择显示高应变硬化的较软外层,可以显着改善每单位质量的耗散能量。因此,此处介绍的分叉分析为设计分层结构以优化抗碎裂性提供了材料选择的定量指导。

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