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1)  Multiferroic composite material
多铁性复合材料
2)  multiferroics
多铁性材料
1.
The Magnetic-field-induced Electric Polarization Flop in Multiferroics;
多铁性材料中磁场感应的电极化翻转
2.
The preparation, structure and DC magnetization of ErMnO_3The single phase multiferroics ErMnO_3 is successfully prepared by solid-state reaction method.
多铁性材料就是这样的一种多功能材料,目前正受到广泛关注。
3)  multiferroic material
多铁性材料
1.
As a typical single-phase multiferroic material,Bismuth ferrite(BiFeO_3,BFO) with perovskite structure has attracted increasing research interest during the past several years,because it could be widely used in micro-electronic devices such as filter,sensor,performer,executor,information storage and non-linear optical hardware.
多铁性材料是一种同时具有铁电性(反铁电性)、铁磁性(反铁磁性)、铁弹性的多功能材料。
4)  multiferroic materials
多铁性材料
1.
In this paper,the history of multiferroic materials,properties of single-phase multiferroic materials and multiphase multiferroic materials are introduced,together with method of the improving their performance.
综述了多铁性材料的发展,介绍了单相多铁性材料和复合多铁性材料的特点、改善单相多铁性材料和复合多铁性材料性能的途径,并对其发展前景进行了展望。
5)  ferrous matrix composites
铁基复合材料
1.
Microstructure and Properties of In-situ Synthesized VC Particles Reinforced Ferrous Matrix Composites;
原位合成VC颗粒增强铁基复合材料的微观组织与性能
2.
At present, the research about the fabrication technics of in situ synthesized ferrous matrix composites has become grown up , but the reports about heat treatment of ferrous matrix composites is few.
采用中频感应电磁炉,根据原位反应铸造原理(in situ)制备颗粒增强铁基复合材料。
6)  Iron Matrix Composite
铁基复合材料
1.
Present condition and prospects of SiC particulate reinforced iron matrix composites;
SiC颗粒增强铁基复合材料的现状及展望
2.
Microstructure and properties of in-situ synthesized WC_p/W wires reinforced iron matrix composites
原位合成WC_p/W丝增强铁基复合材料的组织与性能
3.
The SiC particulate reinforced iron matrix composite prepared by powder metallurgy method was studied.
文章论述了采用粉末冶金方法制备了 Si C颗粒增强铁基复合材料 ,通过实验观察分析了 Si C颗粒对材料致密度、硬度、强度及耐磨性的影响。
补充资料:颗粒增强铁基复合材料
分子式:
CAS号:

性质:铁或铁合金基体以TiC和WC等碳化物、TiN等氮化物、TiB2等硼化物颗粒增强复合材料。其耐磨性、抗蚀性和热性能良好,硬度高,广泛用于磨削工具材料和耐磨结构部件。经烧结而成的颗粒增强铁基复合材料的性能为:硬度可高达300GPa,工作温度可达1000℃。制造方法主要有粉末冷压法、热压法和热等静压法,烧结温度在1000~1600℃之间。烧结而成的复合材料的性能依基体和增强体百分数不同而不同。在切削工具和耐磨部件中,铁基体含量通常在50%~70%之间,而在某些耐高温耐磨损部件的金属陶瓷中,铁含量可少至百分之几。

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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