Abstract Compression creep of copper under electric current studied by a spark plasma sintering (SPS) apparatus
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Compression creep of copper under electric current studied by a spark plasma sintering (SPS) apparatus

机译:火花等离子体烧结(SPS)装置研究铜在电流下的压缩蠕变

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摘要

AbstractA spark plasma sintering (SPS) apparatus was successfully employed to perform uniaxial compressive creep tests on pure copper under a stress of 30MPa in the 400–600°C temperature range. By utilizing two different configurations, the creep experiments were conducted without or with a low-density pulsed direct electric current (~ 6–7A/mm2) passing through the samples. It was found that under the influence of the applied electric current, the creep rate increased significantly, while the extent of the effect diminished with temperature. The apparent activation energy for creep with applied current decreased from 110 to 66kJ/mol. This was attributed to the effect of current on the thermally-activated process and dislocations motion. No distinct evidence that the electric current affects the microstructure was observed.
机译: 摘要 2 )的情况下进行。样品。发现在施加的电流的影响下,蠕变速率显着增加,而影响的程度随温度降低。在施加电流的情况下,蠕变的表观活化能从110降低至66kJ / mol。这归因于电流对热激活过程和位错运动的影响。没有观察到明显的电流影响微观结构的证据。

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