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1)  porous ceramics composite on cast iron basis
铸铁基多孔陶瓷复合材料
1.
The effect of heat treatment on the structure and properties of porous ceramics composite on cast iron basis has been studied.
研究了热处理对铸铁基多孔陶瓷复合材料组织与性能的影响。
2)  porous hydroxyapa tite ceramics-polylactic acid composite
多孔羟基磷灰石陶瓷-聚乳酸复合材料
3)  ceramic matrix composites
陶瓷基复合材料
1.
Discussion on strategies of sustainable development of continuous fiber reinforced ceramic matrix composites;
连续纤维增韧陶瓷基复合材料可持续发展战略探讨
2.
Fabrication of Al_2O_3-TiB_2 Porous Ceramic Matrix Composites by Combustion Synthesis;
燃烧合成法制备Al_2O_3-TiB_2多孔陶瓷基复合材料
3.
Progress in joining ceramic matrix composites to metals;
陶瓷基复合材料与金属连接的研究进展
4)  ceramic matrix composite
陶瓷基复合材料
1.
Progress in research work of continuous fiber reinforced ceramic matrix composite;
连续纤维增强陶瓷基复合材料的研究进展
2.
Welding study status quo of ceramic matrix composite and metal;
陶瓷基复合材料/金属焊接研究现状
3.
Preparation and microstructure of Al(Cr)_2O_3-Cr(Mo) ceramic matrix composites;
Al(Cr)_2O_3-Cr(Mo)陶瓷基复合材料的制备与组织
5)  CMC
陶瓷基复合材料
1.
The several fabrication processes of C_f/SiC ceramic matrix composite(CMC) were introduced.
对当前Cf/SiC复合材料研究存在的问题进行了分析,指出提高Cf/SiC陶瓷基复合材料抗氧化性仍是未来发展的一个重要研究方向。
2.
Ceramic Matrix Composites(CMC) has excellente capabilities such as high strength, high rigidity, high elastic modulus and good chemical stabilization and was considered as the perfect high temperature structural material to be used on the aero engine of which the ratio of thrust to weight is high than 10.
陶瓷基复合材料(CMC)具有高强度、高硬度、高弹性模量、热化学稳定性等优异性能,被认为是推重比10以上航空发动机的理想耐高温结构材料。
6)  CMCs
陶瓷基复合材料
1.
C f/SiC CMCs, the major candidate materials used for high temperature structure parts, have the potential applications in aircraft propulsion parts.
Cf/SiC陶瓷基复合材料作为高温结构材料,在高性能发动机上具有潜在的应用前景。
2.
Currently,there are many ways to enhance CMCs,and they have made grant achievement.
但是采用钢纤维作为增强相联合其他增韧因素协同增韧陶瓷基复合材料的研究还比较少见。
补充资料:多孔羟基磷灰石陶瓷-聚乳酸复合材料
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CAS号:

性质:有聚乳酸浸渍涂层的多孔羟基磷灰石(HA)复合材料。将多孔珊瑚状的HA陶瓷浸入DL-聚乳酸的丙酮溶液中(丙酮:聚乳酸=3:1~30:1),取出干燥8~12h而制得。该复合材料较之未涂层材料,其压缩强度提高近4倍,压缩刚性提高30%,断裂吸收也提高30%左右。动物实验结果表明,这种复合材料已具有类似于来涂层的多孔HA陶瓷的成骨性能,但其初始强度已大大提高。

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