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1)  metal dusts
金属粉尘
2)  metallurgical dust
冶金粉尘
1.
Study on the desulfurization of metallurgical dust in different reaction atmosphere;
不同反应气氛下冶金粉尘的脱硫研究
2.
The co-pyrolysis processes of different proportions of coking-coal, plastic, metallurgical dust (MD) were investigated using thermal analyzer (Setaram Labsys YM) under a neutral atmosphere of N 2 at the sweep rate of 30mL/min, the linear heating rate and the final pyrolysis temperature were 5 ℃/min and 1000℃ respectively in this study.
在以N2 载气 ,其流量为 30mL/min、升温速率为 5℃ /min、热解终温为 1 0 0 0℃的条件下 ,运用SetaramLab sysYM热重分析仪系统分析了塑料、冶金粉尘和焦煤的热解过程以及它们之间的相互影响 。
3)  metal dusting
金属尘化
1.
Finite element simulation for internal stress of metal dusting corrosion layer
金属尘化腐蚀层内应力的有限元模拟计算
2.
The metal dusting process of heat-furnace tube material Cr5Mo at 600 ℃,in 50%CO-H2-3%H2O mixture had been studied by experiment.
金属尘化是化工设备发生在高温碳氢环境下的一种灾难性腐蚀,通过试验研究加热炉管材料Cr5Mo在600℃、50%CO-H2-3%H2O气氛下的尘化腐蚀,通过热力学原理讨论了低合金材料在高温碳氢气氛下的尘化腐蚀条件,以称重法、微观形貌分析等结果分析了Cr5Mo钢的尘化腐蚀过程,从而得到了该材料在尘化腐蚀过程中的劣化规律。
3.
Based on Hochman-Grabke′s research on metal dusting,according to the data of metal dusting experiments for iron and low alloy steels at 650℃,the kinetics problems of these metals were studied,and a corrected equation of wastage rate for metal was modified.
金属尘化是Fe基、Ni基合金在高温碳氢环境下发生的一种灾难性腐蚀。
4)  RDX ['ɑ:di:'eks]
黑索金粉尘
1.
Contrast Studies on the Behaviors of Dust Explosion of Aluminum and RDX Powders;
铝粉与黑索金粉尘爆炸特性的对比实验研究
5)  metal powder
金属粉末
1.
Discussion on the damage of metal powder to bus bar of insulation Al-smelting pots;
浅谈金属粉末对铝电解槽母线绝缘的危害
2.
State-of-the-arts in metal powder rapid prototyping;
金属粉末激光烧结快速原型制造技术发展现状
3.
Application and Developmeat of ultrasonic in nanosized metal powder preparation;
超声波在纳米金属粉末制备中的应用与发展
6)  bimetallic powders
双金属粉
1.
Preparation of core-shell Cu-Ag bimetallic powders via electroless plating
化学镀法制备核壳型银-铜双金属粉
2.
Cu-Ag bimetallic powders whose grain size was similar to the copper powders,were prepared by reduction reaction with hydrazine as the reducing agent by means of inhibiting substitution reaction.
反应体系中引入强还原剂水合肼,通过反应条件的控制抑制置换反应,使银氨溶液优先发生液相还原反应,制备了与原铜粉粒径和形貌大致相同的铜-银双金属粉;采用XRD、EDX、激光粒度分析仪等检测方法对包覆双金属粉的晶相组成及含量、表面包覆层相组成及含量以及粒径分布等加以研究。
补充资料:贵金属精密轧制装置(昆明贵金属研究所)


贵金属精密轧制装置(昆明贵金属研究所)


嫉蘸一’瓜.峨蘸颧翼鑫黝当渊狱贵金属精“轧“装置(昆明贵金属研“所)
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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