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1)  corrosion-resistant intermetallic compound
耐蚀金属间化合物
2)  Intermetallic Compound
金属间化合物
1.
Preparation of SbSn intermetallic compound with Al addition and desulfurization behavior for emulsion of crude oil;
金属间化合物SbSn的掺Al制备及原油乳液脱硫
2.
Status of intermetallic compound coatings synthesized by laser cladding;
激光熔覆在金属间化合物涂层材料制备中的应用
3.
Preparation,characterization and viscosity reduction for crude oil of single-phase SbSn intermetallic compound;
单相金属间化合物SbSn的制备、表征及其对原油降黏
3)  IMC
金属间化合物
1.
Effect of the IMC in Sn-Ag-Cu Solders on Soldering Properties;
Sn-Ag-Cu焊料中金属间化合物对焊接性能的影响
2.
The Effects of High Magnetic Field on the Growth Behaviors of Tin-copper Intermetallic Compounds (IMC) Layers;
强磁场对锡铜金属间化合物生长行为的研究
3.
Growth behavior of intermetallic compounds (IMC) at SnAgCu/Cu interfaces under two kinds of thermal cycling and thermal aging condition was investigated.
通过对等温时效与温度循环两种条件下钎料与基板间金属间化合物(IMC)生长的对比,研究了界面IMC生长的规律。
4)  intermetallic compounds
金属间化合物
1.
Refinement of intermetallic compounds of Zn-2Ni alloy;
Zn-2Ni合金金属间化合物的细化
2.
Effects of intermetallic compounds on the properties of Sn-Ag-Cu lead-free solder joints;
金属间化合物对Sn-Ag-Cu无铅钎料钎焊接头性能的影响
3.
The growth behaviors of intermetallic compounds between Sn-3.5Ag and Cu substrate;
Sn-3.5Ag/Cu界面金属间化合物的生长行为研究
5)  Ni2Al3 intermetallic compound
Ni2Al3金属间化合物
1.
Ni2Al3 intermetallic compound coating was formed on the surface of Ni plating.
采用浆料包渗法在Cu基体Ni镀层表面渗铝,制备出了Ni2Al3金属间化合物渗层,研究了包渗温度对渗层组织、厚度、扩散系数和显微硬度的影响。
2.
The experimental results showed that a single-phase Ni2Al3 intermetallic compound coating wa prepared on the Ni layer after active aluminizing.
研究表明:Ni镀层表面经过活性渗铝后,形成了单相Ni2Al3金属间化合物渗层。
6)  intermetallic [,intə(:)mi'tælik]
金属间化合物
1.
Desulfurization in petroleum using intermetallic compound of SbSn prepared by fusion-spraying;
喷雾快冷制备SbSn金属间化合物用于石油脱硫
2.
Study of Single Track Laser Cladding Fe_3Al Intermetallic on the Steel Base;
钢基表面单道激光熔覆Fe_3Al金属间化合物的研究
3.
Developments in TiAl based intermetallics research;
TiAl基金属间化合物研究进展
补充资料:耐蚀金属间化合物
分子式:
CAS号:

性质:抗溶液腐蚀的金属间化合物。Fe3Si在腐蚀溶液中可形成SiO2钝化膜,因而在不同浓度的硫酸溶液中耐蚀性与0Cr13相当,优于1Cr13。Ni3Al在50%硫酸或者50%磷酸溶液中的耐蚀性良好。

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