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首页> 外文期刊>Applied composite materials >Synergistic Effects among the Structure, Martensite Transformation and Shear Band in a Shape Memory Alloy-Metallic Glass Composite
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Synergistic Effects among the Structure, Martensite Transformation and Shear Band in a Shape Memory Alloy-Metallic Glass Composite

机译:形状记忆合金金属玻璃复合材料结构,马氏体转化和剪切带中的协同效应

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In this work, we use the finite element method to investigate the free volume evolution, as well as the martensite transformation effect and its connection with the pretreatment strain, in a shape memory alloy-metallic glass composite. Our simulation results show that the martensite phase transformation can enhance the blocking effect while relieving the free volume localization. The synergistic effect among the martensite transformation effect, blocking effect, and shear band interaction in the composite is responsible for the tensile plasticity and work-hardening capability. In addition, we design a Sierpinski carpet-like fractal microstructure so that the composite exhibits improved tensile performance as a result of the enhanced synergistic effect. However, the tensile performance of the composite deteriorates with increasing pretreatment strain since the martensite transformation effect is weakened.
机译:在这项工作中,我们使用有限元方法来研究自由体积演化,以及马氏体转化效果及其与预处理应变的连接,在形状记忆合金 - 金属玻璃复合材料中。 我们的仿真结果表明,马氏体相变可以提高阻塞效果,同时缓解自由量定位。 复合材料中马氏体转化效果,阻断效果和剪切带相互作用之间的协同效应负责拉伸可塑性和工作 - 硬化能力。 此外,我们设计了Sierpinski地毯状分形微观结构,使得复合材料由于增强的协同效应而表现出改善的拉伸性能。 然而,由于马氏体转化效果减弱,复合材料的拉伸性能随着预处理菌株的增加而劣化。

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