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Processing of advanced Al/SiC particulate metal matrix composites under intensive shearing – A novel rheo process

机译:在强力剪切下加工高级Al / SiC颗粒金属基复合材料–一种新型流变工艺

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摘要

Particulate Metal Matrix Composites (PMMCs) have attracted interest for application in numerous fields. The current processing methods often produce agglomerated particles in the ductile matrix and as a result these composites exhibit extremely low ductility. The key idea to solve the current problem is to adopt a novel Rheo-process allowing the application of sufficient shear stress () on particulate clusters embedded in liquid metal to overcome the average cohesive force or the tensile strength of the cluster. In this study, cast A356/SiCp composites were produced using a conventional stir casting technique and a novel Rheo-process. The microstructure and properties were evaluated. The adopted Rheo-process significantly improved the distribution of the reinforcement in the matrix. A good combination of improved Ultimate Tensile Strength (UTS) and tensile elongation (ε) is obtained.
机译:颗粒金属基复合材料(PMMC)在许多领域中引起了人们的兴趣。当前的加工方法经常在延性基体中产生附聚的颗粒,因此这些复合材料表现出极低的延性。解决当前问题的关键思想是采用新颖的Rheo工艺,允许在嵌入液态金属的颗粒团簇上施加足够的剪切应力(),以克服团簇的平均内聚力或拉伸强度。在这项研究中,铸造A356 / SiCp复合材料是使用常规搅拌铸造技术和新型Rheo工艺生产的。评估了组织和性能。采用的流变工艺显着改善了增强材料在基体中的分布。获得了改进的极限拉伸强度(UTS)和拉伸伸长率(ε)的良好组合。

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