首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Microstructural Characteristics of Cu-Fe-P Alloys Severely Deformed By Accumulative Roll Bonding Process
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Microstructural Characteristics of Cu-Fe-P Alloys Severely Deformed By Accumulative Roll Bonding Process

机译:累积辊压焊接工艺严重变形的Cu-Fe-P合金的显微组织特征

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The accumulative roll bonding (ARB) process is one of the methods to refine the grain size of metallic materials. The ARB process up to 8 cycles was performed for the pure Cu and Cu-Fe-P (PMC-90) alloy at ambient temperature under no lubricant conditions. In the pure Cu, the nano-sized grains were formed after third cycle with an average grain size of 200nm. Once the 200 nm grains formed, further reduction in the grain size was not observed up to the 8 ARB process cycles. On the other hand, the formation of the stable nano-sized grains in PMC-90 alloy was retarded compared to the pure Cu due to the alloying elements. For both alloys, the tensile strength values increased drastically in the initial stage of ARB process. The tensile strength values of both alloys tended to saturate after the third ARB process cycle. The tensile elongation value greatly decreased by 1 cycle of ARB process due to the strain hardening. After the third cycle of ARB process, each alloy showed a gradual increase in tensile elongation due to the dynamic recovery. For PMC-90 alloy, the strength value is higher than that of OFC due to addition of the alloying elements.
机译:累积辊压结合(ARB)工艺是精炼金属材料晶粒尺寸的方法之一。在无润滑剂条件下于环境温度下对纯Cu和Cu-Fe-P(PMC-90)合金进行了多达8个循环的ARB处理。在纯铜中,在第三次循环后形成了纳米晶粒,平均晶粒尺寸为200nm。一旦形成了200 nm的晶粒,直到8个ARB工艺循环,都没有观察到晶粒尺寸的进一步减小。另一方面,由于合金元素的存在,与纯铜相比,PMC-90合金中稳定的纳米级晶粒的形成受到阻碍。对于两种合金,抗张强度值在ARB过程的初始阶段都急剧增加。在第三次ARB工艺循环之后,两种合金的抗拉强度值趋于饱和。由于应变硬化,ARB工艺的1个循环的拉伸伸长率值大大降低。在ARB过程的第三个循环之后,由于动态恢复,每​​种合金的拉伸伸长率都逐渐增加。对于PMC-90合金,由于添加了合金元素,其强度值高于OFC。

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