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1)  Mg-Zn-based composite
镁锌基复合材料
1.
The microstructure and mechanical properties of Mg2Si reinforced Mg-Zn-based composite before and after equal channel angular pressing(ECAP) were studied.
研究了573K温度下等通道转角挤压前后Mg2Si增强镁锌基复合材料的显微组织和力学性能。
2)  Mg Matrix Composites
镁基复合材料
1.
The microstructure of interface for Mg matrix composites with different enhances were summarized, and the optimization way of interface was discussed.
论述了采用不同增强物增强的镁基复合材料的界面微观结构,并对界面优化的方法进行了探讨。
2.
The advantages of the in situ synthesized composites,as well as the principles,merits and disadvantages and the present research progress at home and abroad of the in situ synthesized Mg matrix composites are presented.
阐述了镁及镁合金的特性,介绍了原位复合材料的优点及原位制备镁基复合材料的方法原理、优缺点和国内外的研究进展。
3)  magnesium matrix composites
镁基复合材料
1.
Review on the friction and wear performances of magnesium matrix composites;
镁基复合材料磨损性能研究进展
2.
Optimization of Preparing Technology for SiCp/AZ61 Magnesium Matrix Composites;
SiC_p/AZ61镁基复合材料制备工艺的优化
3.
Problems of the Gr(C)/Mg interface in Gr(C) fiber reinforced magnesium matrix composites;
石墨(碳)纤维增强镁基复合材料的界面问题
4)  magnesium matrix composite
镁基复合材料
1.
Study on SiC particulate reinforced AZ91 magnesium matrix composite;
SiC颗粒增强AZ91镁基复合材料的研究
2.
Deformed microstructures and mechanical properties of magnesium matrix composites by powder metallurgy;
粉末冶金制备镁基复合材料的变形组织及性能
3.
The present status of particulate reinforced magnesium matrix composites;
颗粒增强镁基复合材料的研究现状
5)  Mg Li composites
镁锂基复合材料
6)  zinc matrix composites
锌基复合材料
1.
The present status of developments and research of zinc matrix composites, especially in the fabrication technique and properties of the composites, are reviewed.
介绍了近年来锌基复合材料的发展和研究概况,重点介绍了几种制备锌基复合材料的工艺,并对各种工艺的优缺点进行了评价,最后对锌基复合材料的研究方向和发展前景进行了展望。
补充资料:玻璃基复合材料
分子式:
CAS号:

性质:以玻璃材料为基体,并以陶瓷、碳、金属等纤维、晶须、晶片为增强体,通过复合工艺所构成的复合材料。目的在于使原基体材料经复合后改善韧性和强度。玻璃基复合材料的基体主要有硼硅玻璃(600℃)、铝硅玻璃(700℃)和高硅玻璃(1150℃),可适用于不同温度,有时也将玻璃陶瓷(微晶玻璃)划入该复合材料范畴。玻璃基复合材料比原玻璃基体的韧性有明显改善。例如以短纤维增强玻璃的强度为50~150MPa,断裂功为600~800J·m-2,断裂韧性为7MPa·ml/2,而一般玻璃强度为100MPa,断裂功为2~4J·m1/2,断裂韧性为0.5J·ml/2。可应用于制造各种耐化学腐蚀器具和耐热部件等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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