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首页> 外文期刊>Journal of nanoscience and nanotechnology >Annealing characteristics of nanostructured cu-fe-p alloy processed by accumulative roll-bonding
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Annealing characteristics of nanostructured cu-fe-p alloy processed by accumulative roll-bonding

机译:累积轧制工艺处理的纳米结构Cu-Fe-P合金的退火特性

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Annealing characteristics of a nanostructured copper alloy processed by accumulative roll-bonding (ARB) were studied. A nano-grained Cu-Fe-P alloy processed by 8 cycles of the ARB was annealed at various temperatures ranging from 100 to 400 degrees C for 0.6 ks. The sample still showed an ultrafine grained (UFG) structure up to 250 degrees C, however above 300 degrees C it began to replace by equiaxed and coarse grains due to an occurrence of the conventional static recrystallization. The hardness of the annealed copper decreased largely above 300 degrees C. These annealing characteristics of the UFG copper alloy were compared to those of a high purity copper.
机译:研究了通过累积辊压结合(ARB)处理的纳米结构铜合金的退火特性。将经过8个循环的ARB处理的纳米晶粒Cu-Fe-P合金在100至400摄氏度的各种温度下退火0.6 ks。样品在高达250摄氏度的温度下仍显示出超细晶粒(UFG)结构,但在300摄氏度以上,由于发生了常规的静态重结晶,它开始被等轴晶粒和粗晶粒代替。高于300摄氏度时,退火铜的硬度大大降低。将UFG铜合金的这些退火特性与高纯度铜的退火特性进行了比较。

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