刀具特殊形状回转锻造坯料应力-应变状态分析

R. Asfandiyarov, G. Raab, D. Aksenov
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引用次数: 2

摘要

本文对工业纯铜级M2用标准砧和异型砧进行了旋锻工艺研究,并给出了数值模拟和物理模拟的研究结果。研究证实,在多循环加工条件下,使用具有特殊几何形状的顶砧可以提供更高水平的累积应变,形成更分散的具有相同延伸率的结构状态[1]。精细结构的形成反过来又增加了材料的硬度和强度。此外,特殊的顶砧形状使试样截面的Lode-Nadai系数呈正场,主要在0.3-0.7范围内,相应的,更“舒适”的应力状态接近于不均匀的全方位压缩,这有助于提高工艺塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Stress-Strained State of Billets Processed by Rotary Forging with Special Shape of the Tool
In this paper, we investigated the process of rotary forging of commercially pure copper grade M2 using standard and special-shaped anvils and presented the results of studies obtained by the method of numerical and physical modeling. It is established that the use of anvils with special geometric shapes provides a higher level of accumulated strain and the formation of more dispersed structural states with the same elongation ratio under conditions of multi-cycle processing [1]. The formation of a finer structure in its turn increases the hardness and strength of the material. In addition, the special shape of the anvils provides a positive field of values of the Lode-Nadai coefficient in the cross section of the samples, predominantly in a range of 0.3-0.7 and, correspondingly, a more "comfortable" stress state close to non-uniform all-round compression, which contributes to increasing technological plasticity.
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