Research on Performance Characteristics of Aluminum-based Composite Materials by Equal Channel Angular Pressing Process
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摘要:
通过多道次等径角挤压工艺( ECAP )制备了铝基复合材料,通过金相、扫描电子显微镜和能谱分析对复合材料的显微组织进行了表征,并对该复合材料的力学性能、摩擦磨损性能进行了测试分析.研究结果表明,在三道次等径角挤压加工后, SiC 颗粒在铝基体中分散性较好,且晶粒细小.多道次等径角挤压工艺可以有效改善SiC颗粒在铝基体的分布和细化晶粒,从而提高复合材料的机械性能.在相同的摩擦磨损实验条件下,三道次的样品展现出优于单道次的摩擦磨损性能,这表明加工道次的增加可以改善复合材料的耐磨性.
Abstract:
Aluminum-based composite materials were prepared by a multi-pass equal channel angular pressing (ECAP) process. The microstructure of the composite material was characterized by metallography, scanning electron microscopy, and energy spectrum analysis, and their mechanical properties as well as friction and wear properties of the composite material were tested and analyzed. The research results indicate that SiC particles have good dispersion in the aluminum matrix after three ECAP passes, and the grain size is small. The multi-pass ECAP process can effectively improve the distribution of SiC particles in the aluminum matrix and refine the grain size, thereby simultaneously enhancing the mechanical properties of composite materials. At the same time, under the same friction and wear test conditions, the samples with three ECAP passes show better friction and wear performance than those with a single pass, indicating that increasing the number of processing passes can improve the wear resistance of composite materials.