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Effect of electropulsing on springback during V-bending of Ti-6Al-4V titanium alloy sheet

机译:Ti-6AL-4V钛合金板V型求施加对回弹的影响

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Effect of frequency and peak current density of electropulsing on springback behaviors of Ti-6Al-4V titanium alloy was investigated during electrically assisted V-bending tests. The experiments were carried out by controlling variable parameters with a frequency of 0-450 Hz and peak current density of 0-62.5 A/mm(2). The results show that springback angle and V-bending load value decrease with increasing frequency and peak current density. Springback can almost be eliminated at 450 Hz and 43.1 A/mm(2). Based on neutral layer offset and microstructure analysis, it demonstrates that the reductions of neutral layer radius, bending moment, and residual stress are responsible for the springback reduction. In addition, the refined beta phase particles, dissolution of clustered beta phase, the reduction of beta particle spacing at outer layer, and enhancement of beta particle spacing at inner layer contribute to the balance of tensile and compression residual stress, contributing to springback reduction. Effect of peak current densities on the springback behavior under similar RMS current density was carried out and it was found that athermal effect could promote the dislocation motion and unraveling of dislocation pile-ups, further promoting to the springback reduction.
机译:在电辅助V型弯曲试验期间研究了频率和峰值电流电流对Ti-6Al-4V钛合金的回弹行为的影响。通过控制频率为0-450Hz的可变参数和0-62.5a / mm(2)的峰值电流密度进行实验。结果表明,回弹角度和V弯曲载荷值随着频率和峰值电流密度的增加而降低。回弹几乎可以在450 Hz和43.1 A / mm(2)中消除。基于中性层偏移和微观结构分析,表明中性层半径,弯矩和残余应力的减少负责回弹。此外,细胞β相的溶解,内层在外层的β颗粒间距的溶解,内层的增强有助于回弹和压缩残余应力的平衡有助于回弹和压缩残余应力的平衡。峰值电流密度对类似RMS电流密度下的回弹行为的影响,发现热体效应可以促进位错运动和解开位错堆积,进一步促进回弹减少。

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