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1)  Electric resistance welding
电阻溶接
2)  Solution resistance
溶液电阻
1.
By this way,the influence of the solution resistance to the measurement was eliminated.
5 mmol/L的NaHCO_3a溶液中的阳极极化曲线进行了修正,消除了溶液电阻R_(sol)对测量结果的影响,利用修正后的结果可以方便地求出Q345钢在三种不同浓度NaHCO_3溶液中的Tafel斜率b_a和腐蚀电流密度I_(corr)等动力学参数。
3)  resistance of pore solution
孔溶液电阻
1.
It was shown that resistance of pore solution(R_s) and resistance of electrochemistry reaction(R_~ct ) increased with the prolongation of hydration ages but R_s decreased with the augment of coal stone.
研究结果表明,孔溶液电阻随着水化龄期的延长而增大,但随着煤矸石掺量的增大而减小;电化学反应电阻随着水化龄期的延长而增大,且可以间接地反映水泥浆体的水化程度;分形维数值随着水化龄期的延长而减小,但随着煤矸石掺量的增大而增大。
4)  contact resistance
接触电阻
1.
Stable distribution analysis to statistical evaluation of contact resistance in aluminum alloy spot welding;
基于稳定分布的铝合金点焊接触电阻
2.
On the contact resistance between graphite/polypropylene composite plate and carbon paper;
石墨/聚丙烯复合板与碳纸间的接触电阻
3.
Study of prediction method for contact resistance based on experiment constitutive relation;
基于实验本构关系的接触电阻预测方法研究
5)  interfacial contact resistance
接触电阻
1.
The electrochemical methods were investigated in a simulated PEMFC environment and the volt-ampere technique was applied to measure interfacial contact resistance between the sample and carbon paper.
以304不锈钢为研究对象,采用电化学方法测定其在模拟PEMFC环境下的极化曲线和对应于PEMFC工作电位下的恒电流极化曲线,用伏安法测量304不锈钢表面氧化膜/钝化膜与碳纸之间的接触电阻。
2.
The 304 stainless steel treated by electroplating Cr and plasma-assisted nitriding processes was investigated by electrochemical methods in the simulated PEMFC environments, and interfacial contact resistance between the samp.
测定了经过镀铬后再离子氮化的304不锈钢在模拟PEMFC环境下的电化学性能,测量了氮化层与碳纸之间的接触电阻。
3.
The interfacial contact resistance between the sample and carbon paper are measured with volt-ampere technique.
以304不锈钢做为研究对象,测定了其在模拟PEMFC环境下的极化曲线,极化时间分别为4 h和10 h的交流阻抗谱,用伏安法测量了304不锈钢表面氧化膜/钝化膜与碳纸之间的接触电阻。
6)  resistance welding
电阻焊接
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
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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