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[化学]表面反应
界面反应
1、placid surface───平静表面
2、unfailing reaction───经久不衰的反应
3、cationization reaction───阳离子化反应
4、surface data───曲面数据;表面数据;地面资料
5、hot surface───热表面; 放热地面
6、reaction───n.反应,感应;FanDong,复古;反作用
7、natural reaction───自然反应
8、surface───vi.浮出水面;vt.使浮出水面;使成平面;adj.表面的,肤浅的;n.表面;表层;外观;n.(Surface)人名;(英)瑟菲斯
9、mixed reaction───[经] 意见不一;各种不同反应
1、The experimental study on the anti-pull boundary surface reaction property between reinforcement and soil by the large model───加筋与土体间界面反应特性的大型拉拔试验研究
2、surface reaction of water atomized austenitic stainless steel powder during sintering has been studied.───水雾化奥氏体不锈钢粉末在烧结时的表面反应。
3、The surface reaction of water atomized 304L austenitic stainless steel powder during sintering has been studied.───研究了水雾化奥氏体不锈钢粉末在致密时的表面化学反应。
4、The microstructure and thermal physical properties of the surface reaction al layer determine the range of strength improvement.───材料表面反应物层的微观形貌及热物理性能决定了材料抗弯强度的提高幅度。
5、Temperature-Programmed Surface Reaction of Butadiene on Molybdenum Nitride Catalyst───氮化钼催化剂上丁二烯吸附物种的程序升温表面反应
6、The surface reaction is performed in the grid simulation reactor.───而表面反应通过格子模拟反应器进行。
7、The Surface Reaction of Sulfide Minerals and Its Application to the Study of Mine Environment───硫化物矿物的表面反应及其在矿山环境研究中的应用
8、This paper has studied the surface reaction of iron-based matrix materials during different temperature hot pressed.───本文研究了铁基金刚石胎体材料经不同温度热压时的表面反应。
9、The surface reaction kinetics experiments showed that the variable-viscosity acid had a faster reaction rate.───反应动力学实验研究表明,变黏酸具有很高的表面反应速率。
1、The surface reaction of water atomized 304 L austenitic stainless steel powder during sintering has been studied.
2、In the short-time regime surface reaction mechanism is dominant and larger effective super-cooling is obtained.
3、The surface reaction of water atomized austenitic stainless steel powder during sintering has been studied.
4、This surface reaction of oxygen and carbon releases carbon monoxide which migrates outward and upon encountering oxygen burns to carbon dioxide.
5、However, competing electrode surface reactions and surface film formation can disrupt the surface reaction and reproducible electrochemical transduction may be compromised.