Development of Technologies for Hot Pressing of Rods Made From 7075 Aluminum Alloy on a Radialshear Mill of a New Design – Numerical Modeling

S. Mashekov, Yerik Nugman, A. Mashekova, Aimangul Sekerbek, N. Sembayev, S. Akparova
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引用次数: 1

Abstract

The paper proposes a radial shear mill (RSM) of a new design, which allows manufacturing metal rods of small diameters or wires with a fine-grained structure. The paper presents the results of modeling the evolution of the structure during hot rolling-pressing of aluminum alloy 7075 on the RSM. Mathematical modeling of the technological process was carried out using the MSC. SuperForge, and the empirical Johnson-Mehl-Avrami-Kolmogorov equation was used to predict the passage of softening processes. Due to the absence of the coefficients of the Avrami equation, a series of experiments on physical modeling of the rolling-pressing technological process were conducted on an STD 812 torsion rheometer. The experiments were conducted at the temperature range of 250–450 ℃ and a strain rate of 1.0–20 s-1. By using physical modeling, it was proved that during processing on the RSM, it is necessary to develop a torsional deformation over the entire section of the workpiece, which leads to effective refinement of the structure. The derived formulas and simulation modeling of the obtained values of the stress-strain state (SSS) were used to simulate the technology of the combined process. Moreover, rational temperature-rate conditions were determined to deform the workpiece on the RSM. It was proved by mathematical modeling that shear deformations develop along the entire section of the workpiece during processing on the RSM, which leads to effective refinement of the structure and the formation of a fine-grained structure in the rods, i. e. products of the required quality are manufactured.
7075铝合金棒材在新型径向剪切轧机上热压工艺的发展——数值模拟
本文提出了一种新设计的径向剪切轧机(RSM),它可以制造小直径的金属棒或细粒度结构的线材。本文介绍了7075铝合金在RSM上热轧成形过程中组织演变的模拟结果。利用MSC对工艺过程进行了数学建模。采用SuperForge和经验Johnson-Mehl-Avrami-Kolmogorov方程对软化过程进行预测。由于没有Avrami方程的系数,在STD 812扭转流变仪上进行了一系列的滚压工艺过程物理建模实验。实验温度范围为250 ~ 450℃,应变速率为1.0 ~ 20 s-1。通过物理建模,证明了在RSM上加工过程中,有必要在工件的整个截面上产生扭转变形,从而导致结构的有效细化。利用所得应力应变状态(SSS)数值的推导公式和仿真建模,对复合工艺进行了仿真。在此基础上,确定了工件在RSM上变形的合理温度速率条件。通过数学建模证明,在RSM加工过程中,剪切变形沿工件的整个截面发展,导致结构的有效细化和棒材中形成细晶结构,即制造出所需质量的产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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