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1)  pulse discharge treatment
脉冲放电处理
2)  High Voltage Pulsating Discharge through Liquid
高压脉冲放电处理
3)  electropulsing treatment
电脉冲处理
1.
In order to further improve the shape memory effect(SME) and process efficiency of FeMnSiCrNiNbC alloy,the effects of different electropulsing treatment on microstructure and SME of the alloy were investigated.
为了进一步提高FeMnSiCrNiNbC合金的形状记忆性能以及提高其处理的效率,研究不同电脉冲处理对合金显微组织及形状记忆效应的影响。
2.
In order to further enhance shape memory effect (SME) and improve treatment process in Fe-based shape memory alloys, a pre-deformed Fe-Mn-Si-Cr-Ni-Nb-C alloy was subjected to a electropulsing treatment.
研究了电脉冲处理对FeMnSiCrNiNbC合金形状记忆效应的影响,并对其微观机理进行初步探讨。
3.
Changes of the dislocations in the TiC_p-reinforced Ni-Cr alloy under the electropulsing treatment;
TiC颗粒增强Ni80 Cr2 0 合金经电脉冲处理后 ,位错组态发生规整化、平直化排列 ,位错堆积形成位错墙。
4)  EPM
电脉冲孕育处理
1.
Inoculation Fading of Electric Pulsed Modification (EPM) on Al-22Si Alloy;
电脉冲孕育处理Al-22Si合金衰退性的研究
2.
Effects of electric pulse magnetic field (EPM)on morphology and fracture of primary Si phase in KS282 alloy have been observed by SEM and DSC.
结果发现,电脉冲孕育处理对多元高硅铝合金有变质作用,增加了合金凝固过程的热力学过冷度,提高了初生硅相形核率。
3.
The effects of electric pulse modification(EPM) on the hot cracking tendency of Al-5Cu alloy have been investigated.
研究了不同电脉冲孕育处理参数对Al-5Cu合金热裂倾向的影响。
5)  Electric pulse modification
电脉冲孕育处理
1.
Effects of electric pulse modification on aging process of AI-Cu-Mn alloy;
电脉冲孕育处理对Al-Cu-Mn合金时效过程的影响
2.
Effect of electric pulse modification on the structure and mechanical properties of Al-5%Cu-0.8%Mn alloy;
电脉冲孕育处理对Al-5%Cu-0.8%Mn合金组织及性能的影响
3.
Effects of electric pulse modification(EPM)parameters on aging process of AI-Cu-Mu alloy were investigated.
考察了不同电脉冲孕育处理参数对 Al-Cu-Mn 合金时效过程的影响,结果表明:电脉冲孕育处理加速了 Al-5%Cu-0。
6)  Electric Pulse
电脉冲孕育处理
1.
Effect of electric pulse modification on the solidification structure of pure aluminum;
电脉冲孕育处理对纯铝凝固组织的影响
2.
Hereditary Characterization of Electric Pulse Modified Aluminum Melt;
通过对电脉冲孕育处理试样的重熔试验,研究了铝熔体在该条件下的遗传特征。
补充资料:电容放电脉冲加热法
分子式:
CAS号:

性质:提高原子吸收石墨炉升温速率的方法。以电容放电供电方式,对石墨管原子化器供给瞬间大电流,进行脉冲加热,实现快速升温(100K/ms)。用各向异性热解石墨管产生等温条件。保证试样迅速原子化的技术。

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