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1)  silicide metallization
硅化物金属化
2)  metal silicide
金属硅化物
1.
Microstructure and wear resistance of laser melt deposited Mo/Mo_(2)Ni_(3)Si metal silicide alloys;
激光熔化沉积Mo/Mo_2Ni_3Si金属硅化物合金显微组织与耐磨性
2.
A wear resistant Cr-Cu-Si metal silicide alloy having a microstructure consisting of the primary dual-phase dendrite with a Cr5Si3 core encapsulated by CrSi phase and the interdendritic ductile Cu-based solid solution was fabricated by the laser melting process.
利用激光熔炼材料制备技术,制得了由铜基固溶体增韧的Cr5Si3/CrSi金属硅化物新型耐磨合金,分析了合金的显微组织结构,测定了合金的显微硬度,考察了合金在室温干滑动磨损条件下的耐磨性能。
3.
Wear resistant Cu_(ss)/Cr_5Si_3 metal silicide composite coating was fabricated on a substrate of an austenitic stainless steel 1Cr18Ni9Ti by laser cladding process.
利用激光熔覆技术在奥氏体1Cr18N i9Ti不锈钢表面制备出由Cuss增韧铜基固溶体(Cr5S i3)金属硅化物新型耐磨复合涂层,分析了其显微组织,并在室温干滑动摩损条件下评价其耐磨性能。
3)  Metallic silicide
金属硅化物
4)  ternary metal silicide
三元金属硅化物
1.
High-temperature sliding wear resistant Cr_(13)Ni_5Si_2/γ-Ni ternary metal silicide composite;
Cr_(13)Ni_5Si_2/γ-Ni三元金属硅化物高温耐磨复合材料
2.
It is found that the average hardness of Cr13Ni5Si2/γ alloy, the volume fraction of Cr13Ni5Si2 primary dendrite and the individual hardness of Cr13Ni5Si2 ternary metal silicide, all decreased with increasing the Ni content.
研究了Ni含量对镍基固溶体(γ)增韧Cr13Ni5Si2三元金属硅化物合金组织及高温耐磨性的影响。
3.
The ternary metal silicide Co3Mo2Si is expected to be a promising wear resistant material due to its inherent high hardness, strong anomalous hardness-temperature dependence and covalent-dominated strong atomic bonds.
为改善三元金属硅化物Co3Mo2Si耐磨合金的室温韧性,利用激光熔化沉积方法制备了钴基固溶体增韧的Co3Mo2Si三元金属硅化物合金。
5)  transition metal silicide
过渡金属硅化物
6)  multilevel silicide
耐熔金属硅化物
补充资料:硅化物
分子式:
分子量:
CAS号:

性质:某些金属(如锂、钙、镁、铁等)和某些非金属(如硼等)与硅形成的二元化合物。一般是晶体,有金属光泽,硬而有高熔点。一种金属或非金属能生成多种硅化物。如铁能生FeSi、FeSi2、Fe2Si5、Fe3Si2、Fe5Si3等。可由金属(或非金属)氧化物或金属硅酸盐用硅在电炉中还原而得。

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