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Microstructure and Mechanical Properties of a Cu-Fe-P Copper Alloy Sheet Processed by Differential Speed Rolling

机译:差速轧制Cu-Fe-P铜合金薄板的组织和力学性能

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The microstructure and mechanical properties of a Cu-Fe-P copper alloy processed by differential speed rolling (DSR) were investigated in detail. The copper alloy, with a thickness of 3 mm, was rolled to 50% reduction at ambient temperature without lubrication with a differential speed ratio of 2.0:1 and then annealed for 0.5h at various temperatures ranging from 100 to 800°C. Conventional rolling was performed under the same rolling conditions for comparison. The shear strain introduced by the conventional rolling process showed positive values at the positions of the upper roll side and negative values at the positions of the lower roll side. However, the result was zero or positive values at all positions for samples rolled by DSR. The effects of DSR on the microstructure and mechanical properties of the as-rolled and subsequently annealed samples are discussed.
机译:详细研究了差速轧制(DSR)处理的Cu-Fe-P铜合金的显微组织和力学性能。将厚度为3毫米的铜合金在环境温度下以2.0:1的速比在不润滑的情况下轧制成50%的压下率,然后在100至800°C的各种温度下退火0.5小时。为了比较,在相同的轧制条件下进行常规轧制。由常规轧制过程引入的剪切应变在上辊侧的位置处显示正值,而在下辊侧的位置处显示负值。但是,对于DSR滚动的样品,结果在所有位置均为零或正值。讨论了DSR对轧制和随后退火的样品的组织和力学性能的影响。

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