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Cyclic deformation behavior of ultra-fine grained copper processed by accumulative roll-bonding

机译:累积轧辊加工超细粒状铜的循环变形行为

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The cyclic deformation behavior of ultra fine grained copper after 7 cycles of accumulative roll bonding (ARB) have been systematically investigated under both load controlled and total strain controlled tests. The composite microstructure found in the as-ARBed samples has lead to unique behavior of this material. Cyclic softening as well as cyclic creep has been observed in asymmetrical cyclic tests. Grain coarsening was observed under both load controlled and total strain controlled tests. Cyclic softening behavior has been attributed to the grain coarsening phenomenon in the material. Surface damage due to shear banding was found to be the major failure mechanism. In addition, the coarsened grains have been detected to locate near and along the pre existent shear bands. The coarse grains already formed during the ARB-processing were shown to accommodate cyclic plastic strain by the formation of slip bands in their interior.
机译:在累计控制和总应变控制测试中系统地研究了7个累积辊键合(ARB)之后的超细粒度铜的环状变形行为。在AS-anded样品中发现的复合微观结构导致该材料的独特行为。在不对称的环状测试中观察到循环软化以及循环蠕变。在负荷控制和总应变控制测试中观察到晶粒粗化。循环软化行为已归因于材料中的晶粒粗化现象。发现由于剪切带引起的表面损坏是主要的故障机制。此外,已经检测到粗糙的晶粒以定位近乎和沿着预先存在的剪切带。示出了在ARB处理期间已经形成的粗颗粒通过在其内部形成滑条来适应循环塑性应变。

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