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Raman spectroscopy mapping of amorphized zones beneath static and dynamic Vickers indentations on boron carbide

机译:在碳化硼上静态和动态维氏压痕下的非晶区的拉曼光谱映射

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摘要

Three-dimensional models of amorphized zones beneath quasistatic and dynamic Vickers indentations on boron carbide were constructed using micro-Raman spectroscopy. The square of amorphized zone depth varied linearly with load and the maximum amorphized area occurred beneath the indentation imprint in accord with the maximum shear stress under Hertzian contact. Reduced measurements of amorphization intensity at loads above 10N may be due to a loss of subsurface amorphized material through lateral cracks. Utilizing an expanding cavity model with power-law (n=0.79-0.80) and linear (E-p =0.39-0.45) strain hardening responses, finite element simulations were conducted to determine the critical values of stress and strain required to cause amorphization. These simulations suggest that amorphization may initiate at von Mises stresses and equivalent plastic strains above 6.6 GPa and 0.026,. respectively. These results may be useful for validating computational models of boron carbide under complex loading scenarios (e.g., ballistic impact). (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用微拉曼光谱构建碳化硼在碳化硼的Quasistatic和动态维氏压痕下的三维模型。无态区域深度的正方形与负载线性变化,并且在赫兹触点下的最大剪切应力符合最大剪切应力下,在压痕印记下发生最大的非晶面积。在10N高于10N的负载下减少的载荷强度的测量值可能是由于通过横向裂缝的地下无体化材料的损失。利用具有电力法的膨胀腔模型(n = 0.79-0.80)和线性(E-P = 0.39-0.45)应变硬化响应,进行有限元模拟以确定引起非晶化所需的应力和菌株的临界值。这些模拟表明,无杂化可以在6.6GPa和0.026以上的Von Mises Regress和同等塑料菌株发起。分别。这些结果对于在复杂的加载方案下验证碳化硼的计算模型(例如,弹道撞击)。 (c)2017 Elsevier Ltd.保留所有权利。

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