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Effect of die design parameters on the deformation behavior in pure shear extrusion

机译:模具设计参数对纯剪切挤压变形行为的影响

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摘要

Influences of die design parameters in terms of diameter ratio and length of the deformation zone on the distribution of effective strain, filling fraction of the die exit channel and pressing load in pure shear extrusion (PSE) are studied using finite element method (FEM). Dimensional stability, pressing load and hardness measurements are used to validate the predictions of the simulation. Acceptable agreements between the predictions of simulation and experimental results are observed. It is found that strain is inhomogeneously distributed which increases from the center to the corners. Effective strain, inhomogeneity of strain, filling fraction of the die exit channel and pressing load are increased with increasing diameter ratio. In addition, the work-piece is deformed more homogeneously at lower pressing load by increasing the length of deformation zone. However, filling fraction of the die exit channel initially increases by the length of the deformation zone up to 60 mm after which it reduces. The optimum die design parameters covering a range of acceptable effective strain and strain homogeneity, filling fraction of the die exit channel and pressing load are proposed as being 60 mm and 2 for length of the deformation zone and diameter ratio, respectively.
机译:利用有限元方法(FEM)研究了模具设计参数在直径比和变形区长度方面对有效剪切力分布,模具出口通道的填充率以及纯剪切挤压(PSE)中的挤压载荷的影响。尺寸稳定性,冲压载荷和硬度测量值用于验证模拟的预测。可以观察到模拟的预测与实验结果之间的可接受的一致性。发现应变是不均匀分布的,其从中心到角落增加。随着直径比的增加,有效应变,应变的不均匀性,模具出口通道的填充率和挤压载荷都增加了。另外,通过增加变形区的长度,工件在较低的压力下更均匀地变形。但是,模具出口通道的填充率最初会增加变形区的长度,直至60 mm,然后减小。对于变形区域的长度和直径比,建议的最佳模具设计参数分别为60 mm和2,覆盖可接受的有效应变和应变均匀性,模具出口通道的填充率和压制载荷。

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