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Numerical Simulations of As-Extruded Mg Matrix Composites Interpenetrated by Metal Reinforcement

机译:金属加固互挤出的Mg基质复合材料的数值模拟

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The interpenetrating magnesium composites reinforced by three-dimensional braided stainless steel wire reinforcement were fabricated and investigated. The extrusion processes of the composites in different conditions were carried out and simulated by finite element method using the DEFORM-3D software. The results show that the matrix and reinforcement of the composites form a good interfacial bonding and the grains were refined by extrusion and the influence of reinforcement, which are in accordance with the enhanced strength and degraded plasticity. The combined quality between the matrix and reinforcement can be strengthened in extrusion chamber where occurred large strain and suffered intense stress, and the effective stress of the material increases continuously with the increase in extrusion ratio and the decrease in extrusion speed until it reaches a stable value.
机译:通过三维编织不锈钢线加强件加强的互穿镁复合材料制造和研究。使用Deform-3D软件通过有限元方法进行不同条件中复合材料的挤出过程。结果表明,复合材料的基质和增强形成良好的界面键合,晶粒通过挤出和增强的影响,这是根据增强的强度和降解的可塑性。在挤出室中,可以加强基质和加强件之间的组合质量,其中发生大应变和遭受强应力,并且材料的有效应力随着挤出比率的增加而连续增加,挤出速度降低直至其达到稳定值。

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