高温度耐久性上的进一步的改进除了高特定的力量是最重要的目的之一,高特定的僵硬,并且优秀穿抵抗,增强了钛矩阵 composites (DRTMC ) 不连续地设计并且制作。他们的优异性质使他们变为广泛在太空和军事工业的申请潜力由于对有无足轻重的人,高力量,高僵硬和高度的特征的材料的迫切要求温度耐久性。与制造方法和房间温度性质上的开发,测试,描绘,评估并且进一步增加 DRTMC 的高温度性质正在变得越来越重要支持他们的应用。这评论在高温度上提供卓见和理解张力的性质, superplastic 张力的性质,爬行为,和 DRTMC 的高温度氧化行为,和研究建议改进 DRTMC 的高温度性质推进被给。
Further improvement on high temperature durability is one of the most important aims except for high specific strength, high specific stiffness, and excellent wear resistance, to design and fabricate discontinuously reinforced titanium matrix composites (DRTMCs). Their superior properties render them extensive application potential in aerospace and military industries due to the urgent demand for the materials with characteristics of lightweight, high strength, high stiffness and high temperature durability. With development on fabrication methods and room temperature properties, testing, characterizing, evaluating and further increasing high temperature properties of DRTMCs are becoming more and more important to promote their applications. This review provides insights and comprehensions on the high temperature tensile properties, superplastic tensile properties, creep behaviors, and high temperature oxidation behaviors of DRTMCs,