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Mechanical behavior and microstructure characterization of sinter-forged SiC particle reinforced aluminum matrix composites

机译:烧结锻造SiC颗粒增强铝基复合材料的力学行为和微观结构表征

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摘要

A novel, low-cost sinter-forging approach to processing particle reinforced metal matrix composites for high-performance applications was examined. The microstructure of the sinter-forged composites exhibited relatively uniform distribution of SiC particles, which appeared to be somewhat aligned perpendicular to the forging direction. The degree of alignment and interparticle bond strength was not as high as that observed for the extruded composite. The sinter-forged composite exhibited higher Young's modulus and ultimate tensile strength than the extruded material, but lower strain-to-failure. The higher modulus and strength were attributed to the absence of any significant processing-induced particle fracture, while the lower strain-to-failure was caused by poorer matrix interparticle bonding compared to the extruded material. Fatigue behavior of sinter-forged composites was similar to that of the extruded material. Fe-rich inclusions were extremely detrimental to fatigue life. Cleaner processing, which eliminated the inclusions, enhanced the fatigue life of the sinter-forged composites to levels similar to that of the extruded material.
机译:研究了一种新颖,低成本的烧结锻造方法,以处理用于高性能应用的颗粒增强金属基复合材料。烧结锻造复合材料的微观结构表现出相对均匀的SiC颗粒分布,SiC颗粒似乎垂直于锻造方向排列。取向度和颗粒间结合强度不如挤出复合材料所观察到的高。烧结锻造的复合材料比挤出材料具有更高的杨氏模量和极限抗拉强度,但断裂应变更低。与挤出材料相比,较高的模量和强度归因于不存在任何明显的加工引起的颗粒破裂,而较低的应变破坏是由较差的基质颗粒间键合引起的。烧结锻造复合材料的疲劳行为与挤压材料的相似。富含铁的夹杂物对疲劳寿命极为不利。清洁工艺消除了夹杂物,将烧结锻造复合材料的疲劳寿命提高到与挤出材料相似的水平。

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