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The effect of pulsed current on the shear deformation behavior of Ti-6Al-4V alloy

机译:脉冲电流对Ti-6Al-4V合金剪切变形行为的影响

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摘要

Pulse current-assisted forming is a new technology to improve the plastic deformability of titanium alloy. In this work, Shearing tests of Ti-6Al-4V alloy were conducted using hat-shaped specimens under pulsed current (electroplastic shearing) and constant temperature (isothermal shearing). The actual deformation in shear zone of electroplastic shearing was larger than that of isothermal shearing. The shear load is also decreased by the pulsed current. Microstructure variation in the shear zone was investigated by scanning electron microscopy. An evident straight shear band was observed in the electroplastic shearing specimens. The deformation model of shear zone was established. Intracrystalline deformation was markedly easier for the grains with the pulsed current and induced larger deformation of the grains along the shear direction. Microcracks were observed in the shear zone of isothermal shearing, but none were found in the shear zone of electroplastic shearing. Evident crack healing was found in the crack tip of the shear zone of electroplastic shearing.
机译:脉冲电流辅助成形是一种提高钛合金塑性变形能力的新技术。在这项工作中,使用帽形试样在脉冲电流(塑性剪切)和恒温(等温剪切)下进行了Ti-6Al-4V合金的剪切试验。塑性剪切的实际剪切区变形要大于等温剪切。剪切负载也因脉冲电流而减小。通过扫描电子显微镜研究剪切区的微观结构变化。在塑性剪切试样中观察到明显的直剪切带。建立了剪切带的变形模型。脉冲电流使晶粒内的晶内变形明显更容易,并引起晶粒沿剪切方向的较大变形。在等温剪切的剪切区域中观察到微裂纹,而在塑性剪切的剪切区域中未发现微裂纹。在塑性剪切的剪切区的裂纹尖端发现明显的裂纹愈合。

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