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Mechanical solutions for hot forward extrusion under plane strain conditions by upper bound method

机译:上限法在平面应变条件下热前挤压的机械解决方案

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摘要

This paper present a study focused on hot forward extrusion by upper bound method. In particular, hot forward extrusion of plates through square face dies under plane strain conditions. Slater defines the models used for large fractional reduction. Different models have been taken in account; they are dissimilar in relation to the dead metal zone (if covers or not the entire die face, partially or totally). Triangular rigid patterns of velocity discontinuities have been validated by analytical methods and a range of use for the selected configurations has been established. This methodology has been applied to other process with good results. Thus, the mechanical parameters analysed are fractional reduction, dead metal zone, length die and friction. Finally the calculation of the energy has been achieved by upper bound method. The results allow researching an optimisation of use of upper bound method in hot forward extrusion.
机译:本文提出了一项研究,以上限方法进行热前向挤压。特别地,在平面应变条件下,通过方形模具将钢板热向前挤出。 Slater定义了用于大比例减少的模型。考虑了不同的模型;它们相对于死角金属区域是不同的(如果覆盖或不覆盖整个模具表面,则部分或全部覆盖)。速度不连续性的三角形刚性模式已通过分析方法进行了验证,并且已确定所选配置的使用范围。该方法已应用于其他过程,效果良好。因此,所分析的机械参数为分数减少,死金属区域,模具长度和摩擦。最终,通过上限方法实现了能量的计算。结果允许研究在热前向挤出中使用上限方法的优化。

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