Development of pressure infiltration preparation of metal matrix composites

Hao-feng Zhao, Lingfeng Zhang, Yiheng He, Zhiguo Ma
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Abstract

This paper summarizes the process of metal matrix composites from pressure infiltration preparation to pressure ultrasonic assisted infiltration to pressure solvent assisted infiltration. The advantages of preparing metal matrix composites by pressure infiltration alone are low cost and convenient for mass production. However, the equipment and process requirements are too high, and the quality of composite materials can not be guaranteed. Because of the high pressure of ultrasound, ultrasonic infiltration has become an auxiliary physical method for the preparation of metal matrix composites by pressure infiltration. But this method tends to damage the fibers. Therefore, the fibers need to be coated. The coating on the fiber surface is divided into metal coating and non-metal coating. Some people mixed SiC particles or whiskers in continuous carbon fibers to prepare aluminum alloy composite materials, forming a hybrid assisted infiltration method. Later, people began to pay attention to the flux-assisted role of pressure infiltration. Therefore, solvent-assisted infiltration of fiber-reinforced metal matrix composites has become an important research field.
金属基复合材料压力渗透制备的研究进展
综述了金属基复合材料从压力渗透制备到压力超声辅助渗透再到压力溶剂辅助渗透的过程。单采用压力渗透法制备金属基复合材料具有成本低、便于批量生产等优点。但是对设备和工艺要求太高,复合材料的质量无法保证。由于超声波的高压,超声波渗透已成为压力渗透制备金属基复合材料的辅助物理方法。但这种方法容易损伤纤维。因此,需要对光纤进行涂层处理。光纤表面的涂层分为金属涂层和非金属涂层。有人将SiC颗粒或晶须混合在连续碳纤维中制备铝合金复合材料,形成混杂辅助渗透法。后来,人们开始关注压力渗透的通量辅助作用。因此,溶剂辅助渗透纤维增强金属基复合材料已成为一个重要的研究领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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