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Mechanical properties of electrodeposited nanocrystalline copper using tensile and shear punch tests

机译:电沉积纳米晶体铜的机械性能,使用拉伸和剪切冲头测试

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摘要

Characterization of the mechanical properties of electrodeposited nanocrystalline Cu with an average grain size of 74 nm was carried out using two different testing techniques, shear punch tests and tensile tests. The grain size distribution was broad and the volume fraction of larger grains was appreciable. The electrodeposited Cu had a high yield strength combined with moderate ductility and strain hardening. Scatter in the ductility values was attributed to residual porosity and inhomogeneity in the microstructure. Measurements of the strain rate sensitivity showed a significant increase in the rate sensitivity and a decrease in the activation volume for the deformation of nanocrystalline Cu compared with similar tests on coarse,,rained cold worked Cu.
机译:使用两种不同的测试技术(剪切冲头测试和拉伸测试)对平均晶粒度为74 nm的电沉积纳米晶Cu的机械性能进行了表征。晶粒尺寸分布宽,较大晶粒的体积分数可观。电沉积的铜具有高的屈服强度以及适度的延展性和应变硬化。延展性值的散布归因于微观结构中的残余孔隙率和不均匀性。应变速率敏感性的测量结果表明,与对粗,雨淋的冷加工Cu进行的类似测试相比,纳米晶Cu变形的速率敏感性显着提高,活化体积降低。

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