2) particle reinforced Cu-matrix composites
颗粒增强铜基复合材料
1.
The development of particle reinforced Cu-matrix composites is reviewed.
回顾了颗粒增强铜基复合材料的发展和常用颗粒增强相;简介了新型三元层状陶瓷材料Mn+1AXn,并将其主要成员与常用铜基复合材料增强相进行比较;介绍了Mn+1AXn陶瓷与铜的复合材料目前的研究进展;展望了该类复合材料的发展和应用前景。
3) particle reinforced aluminum matrix composites
颗粒增强铝基复合材料
1.
In order to recover aluminum from aluminum matrix composites,the appropriate compound salt was prepared and the removal behavior of reinforcing materials from particle reinforced aluminum matrix composites was investigated experimentally by using molten salt process.
为了回收铝合金基体材料 ,配制了合适的混合盐熔剂 ,采用熔融盐法去除颗粒增强铝基复合材料中的增强材料。
4) PR MMCs
颗粒增强铁基复合材料
1.
Abrasion property was mainly investigated for the particulates reinforced metal matrix composites(PR MMCs) under different friction velocity.
研究了颗粒增强铁基复合材料(PRMMCs)在不同摩擦速度下的性能。
2.
Abrasion property of the particulates reinforced metal matrix composites(PR MMCs)under different loads was mainly investigated in this article.
研究了颗粒增强铁基复合材料(PR MMCs)在不同载荷下的摩擦性能。
5) particulate reinforced titanium matrix composites
颗粒增强钛基复合材料
1.
The advantages and dis- advantages of these methods for manufacturing fiber reinforced titanium matrix composites(FTMCs)and particulate reinforced titanium matrix composites(PTMCs)are pointed out.
综述了钛基复合材料及其制备技术,重点介绍了纤维增强钛基复合材料(FTMCs)和颗粒增强钛基复合材料(PTMCs)的制备技术,分析了各种制备技术的优缺点。
6) particles reinforced steel matrix composite
颗粒增强钢基复合材料
1.
The development trend of rolls was analyzed and the mechanical properties of particles reinforced steel matrix composite were also explored.
分析了轧辊的发展趋势,探究了颗粒增强钢基复合材料的力学性能,揭示了颗粒增强钢基复合材料轧辊的性能优势;概述了颗粒增强钢基复合材料轧辊的发展现状和各种制备工艺,并简要分析了轧辊材料的发展。
补充资料:颗粒
分子式:
CAS号:
性质:指小而圆的物质。最简单的颗粒形状是圆球。粒径在40~500μm范围内,气固密度差在1400~4000kg/m3之间的颗粒称粗颗粒(coarse particle);粒径在20~100μm范围内,气固密度差小于1400kg/m3的颗粒称细颗粒(fime particle);由许多个粒度间隔不大的粒级颗粒构成的颗粒系统称颗粒群(particle swarm)。
CAS号:
性质:指小而圆的物质。最简单的颗粒形状是圆球。粒径在40~500μm范围内,气固密度差在1400~4000kg/m3之间的颗粒称粗颗粒(coarse particle);粒径在20~100μm范围内,气固密度差小于1400kg/m3的颗粒称细颗粒(fime particle);由许多个粒度间隔不大的粒级颗粒构成的颗粒系统称颗粒群(particle swarm)。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条