高压扭转中砧对和砧粗糙度对流型发展的影响研究

Yi Huang, M. Kawasaki, T. Langdon
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引用次数: 1

摘要

高压扭转(HPT)是一种将样品置于高压和扭转应变下的加工技术。顶砧对准和顶砧粗糙度是影响HPT加工技术成功应用的两个重要因素。以两相双相不锈钢为模型材料,通过放置不同初始偏差量的砧进行了实验。实验表明,HPT中的流动模式(双旋流模式的发展)依赖于HPT设备内砧的排列。通过精心设计的实验,表明双旋流的存在是HPT加工的一个特征,当砧的初始位置有一个小的横向错位。定量评价了双旋流模式对硬度演变的影响。通过比较在固定砧不对准的情况下,使用粗糙砧和光滑砧在圆盘上表面上形成的流动模式,证明了流动模式存在一些差异,这取决于砧表面粗糙度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating Anvil Alignment and Anvil Roughness on Flow Pattern Development in High-Pressure Torsion
High-pressure torsion (HPT) is a processing technique in which samples are subjected to a high pressure and torsional straining. Anvil alignment and anvil roughness are two important factors related to the successful application of the HPT processing technique. Using a two-phase duplex stainless steel as a model material, experiments were conducted by placing the anvils in different amounts of initial misalignment. Experiments show that the flow patterns (the development of double-swirl patterns) in HPT are dependent upon the alignment of the anvils within the HPT facility. Through carefully designed experiments, it is shown that the presence of a double-swirl is a feature of HPT processing when the initial positions of the anvils have a small lateral misalignment. The effect of the double-swirl patterns on the hardness evolution was also evaluated quantitatively. By comparing the flow patterns developed on the disc upper surface using both rough and smooth anvils with a fixed anvil misalignment, it was demonstrated that there are some differences in the flow patterns which are dependent upon the anvil surface roughness.
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