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An Approach to Optimize Size Parameters of Forging by Combining Hot-Processing Map and FEM

机译:热加工图与有限元相结合的锻件尺寸参数优化方法

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摘要

The size parameters of 6061 aluminum alloy rib-web forging were optimized by using hot-processing map and finite element method (FEM) based on high-temperature compression data. The results show that the stress level of the alloy can be represented by a Zener-Holloman parameter in a hyperbolic sine-type equation with the hot deformation activation energy of 343.7 kJ/mol. Dynamic recovery and dynamic recrystallization concurrently preceded during high-temperature deformation of the alloy. Optimal hot-processing parameters for the alloy corresponding to the peak value of 0.42 are 753 K and 0.001 s(-1). The instability domain occurs at deformation temperature lower than 653 K. FEM is an available method to validate hot-processing map in actual manufacture by analyzing the effect of corner radius, rib width, and web thickness on workability of rib-web forging of the alloy. Size parameters of die forgings can be optimized conveniently by combining hot-processing map and FEM.
机译:基于高温压缩数据,通过热加工图和有限元方法(FEM),优化了6061铝合金肋腹板锻件的尺寸参数。结果表明,该合金的应力水平可以用Zener-Holloman参数表示为双曲正弦型方程,其热变形活化能为343.7 kJ / mol。在合金的高温变形期间,动态恢复和动态再结晶同时进行。对应于0.42峰值的合金的最佳热处理参数是753 K和0.001 s(-1)。失稳域发生在低于653 K的变形温度下。有限元分析是一种可用于通过分析拐角半径,肋宽度和腹板厚度对合金肋腹板锻件可加工性的影响来验证实际制造中的热加工图的方法。 。结合热加工图和有限元可以方便地优化模锻件的尺寸参数。

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