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1)  Cr-Ni alloy
Cr-Ni合金
1.
The results of XRD indicated that, phase constitution of Cr-Ni alloy as cast wereα,γandσphases, quantity ofγphase increase with the increase in Ni content, and acicular Cr-Ni intermetallic compound was precipitated inαphase.
相组成研究表明,铸态Cr-Ni合金主要由α、γ和σ相组成,随Ni含量的增加,γ相明显增加,α相内有针状CrNi金属间化合物析出。
2)  Ni-Cr alloy
Ni-Cr合金
1.
Interface microstructure and mechanical properties of Ni-Cr alloy porcelain materials;
Ni-Cr合金烤瓷材料界面组织结构和力学性能
2.
Influences of firing parameters on properties and microstructure of Ni-Cr alloy and porcelain interface;
工艺参数对Ni-Cr合金与陶瓷界面组织性能的影响
3.
Process of pulse electrodeposition of nanocrystalline Ni-Cr alloy from trivalent chromium bath;
三价铬脉冲电沉积纳米晶Ni-Cr合金工艺
3)  Cu-Ni-Cr Alloy
Cu-Ni-Cr合金
1.
Influence of Heat Treatment Specification on Microstructure and Properties of Cu-Ni-Cr Alloy;
热处理制度对Cu-Ni-Cr合金组织和性能的影响
2.
The Cu-Ni-Cr alloy strip was made using medium frequency smelting-iron mould cast-hot rolling-solution-cold rolling-aging treatment.
采用中频熔炼-铁模铸造-热轧-固溶-冷轧-时效处理工艺,制备了Cu-Ni-Cr合金板材。
4)  Ni-Al-Cr alloy
Ni-Al-Cr合金
1.
Microscopic phase-field simulation for the temperature effects on the precipitation of Ni-Al-Cr alloy
温度对Ni-Al-Cr合金沉淀影响的微观相场模拟
5)  Fe-Ni-Cr alloy
Fe-Ni-Cr合金
1.
Electrochemical behaviors of electrodepositing Fe2+,Ni2+,Cr3+ solely and Fe-Ni-Cr alloy have been studied by linear potential scan and cyclic voltammetry and the alloy plating were characterized by means of SEM and XRD in this study.
利用线性电势扫描法和循环伏安法分别讨论了配位剂对Fe2+、Ni2+、Cr3+单独电沉积和Fe-Ni-Cr合金共沉积电化学行为的影响,并采用SEM和XRD技术对合金镀层表面形貌和结构进行了表征。
2.
Fe-Ni-Cr alloy electrodepositing experiment on iron substrate in chlorid-sulfate solution by barrel plating was performed.
在氯化物-硫酸盐混合体系中,在铁基上进行滚镀Fe-Ni-Cr合金实验,结果表明:滚镀所得的Fe-Ni-Cr合金镀层铬的含量只有2%左右,难以提高,且镀层表面质量不佳,常出现滚桶眼子印现象。
3.
The progress of Fe-Ni-Cr alloy plating is summarized.
概述电镀Fe-Ni-Cr合金的发展进程,从电沉积Fe-Ni-Cr合金的基本条件、镀液体系、电镀的类型以及镀层晶体结构类型等几个方面对电镀Fe-Ni-Cr合金的特点进行阐述。
6)  nickel-iron-chromium alloy
Ni–Fe–Cr合金
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

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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