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首页> 外文期刊>Engineering >Probabilistic Modelling of Microstructural Evolution in Zr Based Bulk Metallic Glass Matrix Composites during Solidification in Additive Manufacturing
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Probabilistic Modelling of Microstructural Evolution in Zr Based Bulk Metallic Glass Matrix Composites during Solidification in Additive Manufacturing

机译:Zr基块状金属玻璃基复合材料在增材制造过程中凝固过程中微观结构演化的概率模型

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摘要

Bulk metallic glass and their composites (BMGMCs) are a new class of materials which possess superior mechanical properties as compared to existing conventional materials. Owing to this, they are potential candidates for tomorrow’s structural applications. However, they suffer from poor ductility and little or no toughness which render them brittle and they manifest catastrophic failure under applied force. Their behavior is dubious, unpredictable and requires extensive experimentation to arrive at conclusive results. In present study, an effort has been made to design bulk metallic glass matrix composites by the use of modeling and simulation. A probabilistic cellular automaton (CA) model is developed and described in present study by author which is used in conjunction with earlier developed deterministic model to predict microstructural evolution in Zr based BMGMCs in additive manufacturing liquid melt pool. It is elaborately described with an aim to arrive at quantitative relations which describe process and steps of operations. Results indicate that effect of incorporating all mass transfer and diffusion coefficients under transient conditions and precise determination of probability number play a vital role in refining the model and bringing it closer to a level that it could be compared to actual values. It is shown that proposed tailoring can account for microstructural evolution in metallic glasses.
机译:块状金属玻璃及其复合材料(BMGMC)是一类新型材料,与现有的常规材料相比,它们具有出色的机械性能。因此,它们是未来结构应用的潜在候选者。但是,它们的延展性差,韧性差或几乎没有韧性,这使它们变脆,并且在施加的力下表现出灾难性的破坏。他们的行为是可疑的,不可预测的,需要大量的实验才能得出结论。在当前的研究中,已经通过建模和仿真来设计大块金属玻璃基复合材料。作者在本研究中开发并描述了概率细胞自动机(CA)模型,该模型与较早开发的确定性模型一起用于预测增材制造液体熔池中基于Zr的BMGMC的微观结构演变。为了达到描述操作过程和步骤的定量关系,对其进行了详细描述。结果表明,在瞬态条件下结合所有传质系数和扩散系数以及精确确定概率数的作用在精炼模型并使模型更接近可与实际值进行比较的过程中起着至关重要的作用。结果表明,建议的剪裁可以解释金属玻璃的微观结构演变。

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