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1)  Power dissipation
功率耗散
1.
It was found that different transitions which were related with the electrical power dissipation took place in the course of increase in rf power and gas flow rate respectively.
发现在放电射频功率增加和反应气体流量升高的过程中 ,其等离子体状态分别发生性质不同的转变 ,这种转变联系到射频功率耗散机制的变化。
2)  Dissipation power
耗散功率
1.
The result showed that the conductivity of NR compound filled with super conductive black was significantly better than that of NR compound filled with acetylene black; the appropriate loading level of the super conductive black was 30 phr; the AC resistance of the conductive NR compound was lower than its DC resistance i the dissipation power wh.
结果表明;填充高导电炭黑的天然橡胶的导电性能明显优于填充乙炔炭黑的天然橡胶,高导电炭黑的适宜填充量为30份;导电天然橡胶交流电阻低于直流电阻;导致导电天然橡胶受热迅速破坏的耗散功率为20—30W,高导电炭黑天然橡胶正常使用的耗散功率不宜超过4W。
3)  dissipated power
耗散功率
4)  power dissipation map
功率耗散图
1.
The power dissipation map is developed on the basis of the flow stress data as a function of temperature,strain rate,and strain.
3Si合金绝热剪切和局部流动行为的影响,并采用基于动态材料模型的功率耗散图分析了Ti-6。
2.
The flow stress was corrected by the constitutive equation and the power dissipation map was obtained using the corrected stress.
由试验得出变形过程中的真应力真应变曲线,并利用本构方程对流变应力值进行修正,进而根据修正后的应力值绘制功率耗散图。
3.
A power dissipation map is developed on the basis of flow stress data and by using the principles of dynamic material model.
3Si合金进行等温恒应变速率压缩实验,分析高温流动行为,构建基于动态材料模型的功率耗散图,并结合微观组织观察对其β加工的动态再结晶行为进行研究。
5)  power dissipation
功率损耗,功率耗散;功率消耗
6)  Joule dissipation
焦耳耗散,功率耗散
补充资料:010耗散
分子式:
分子量:
CAS号:

性质:见010损失。

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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