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Brittle materials at high-loading rates: an open area of research

机译:高负荷率下的脆性材料:一个开放的研究领域

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摘要

Brittle materials are extensively used in many civil and military applications involving high-strain-rate loadings such as: blasting or percussive drilling of rocks, ballistic impact against ceramic armour or transparent windshields, plastic explosives used to damage or destroy concrete structures, soft or hard impacts against concrete structures and so on. With all of these applications, brittle materials are subjected to intense loadings characterized by medium to extremely high strain rates (few tens to several tens of thousands per second) leading to extreme and/or specific damage modes such as multiple fragmentation, dynamic cracking, pore collapse, shearing, mode II fracturing and/or microplasticity mechanisms in the material. Additionally, brittle materials exhibit complex features such as a strong strain-rate sensitivity and confining pressure sensitivity that justify expending greater research efforts to understand these complex features. Currently, the most popular dynamic testing techniques used for this are based on the use of split Hopkinson pressure bar methodologies and/or plate-impact testing methods. However, these methods do have some critical limitations and drawbacks when used to investigate the behaviour of brittle materials at high loading rates. The present theme issue of Philosophical Transactions A provides an overview of the latest experimental methods and numerical tools that are currently being developed to investigate the behaviour of brittle materials at high loading rates.This article is part of the themed issue ‘Experimental testing and modelling of brittle materials at high strain rates’.
机译:脆性材料广泛用于涉及高应变率载荷的许多民用和军事应用中,例如:岩石的爆破或冲击钻,对陶瓷装甲或透明挡风玻璃的弹道冲击,用于破坏或破坏混凝土结构(软或硬)的塑料炸药对混凝土结构的冲击等。在所有这些应用中,脆性材料承受着中等至极高的应变速率(每秒几万到几万几千次)为特征的强烈载荷,从而导致极端和/或特定的破坏模式,例如多次破碎,动态破裂,孔隙材料中的塌陷,剪切,II型断裂和/或微塑性机制。此外,脆性材料还具有复杂的特征,例如很强的应变率敏感性和有限的压力敏感性,这证明需要花费更多的精力来理解这些复杂的特征。当前,用于此目的的最流行的动态测试技术是基于分裂式Hopkinson压力棒方法和/或板撞击测试方法的使用。但是,这些方法在用于研究高负载率下脆性材料的行为时确实具有一些关键的局限性和缺点。本期《哲学交易》 A主题概述了目前正在研究的最新实验方法和数值工具,以研究高载荷率下脆性材料的行为。本文是“实验测试和模型建模”主题的一部分。高应变率的脆性材料”。

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