The Influence of the Solid-State Bonding Process on the Mechanical Integrity of Longitudinal Weld Seams

S. Edwards, A. Bakker, J. Neijenhuis, W. Kool, L. Katgerman
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引用次数: 14

Abstract

For production of complex hollow 6xxx series aluminium extrusions, porthole dies are the predominant tooling set up. In porthole dies, the billet is divided into multiple metal streams, which are rejoined in the weld chamber to form ‘longitudinal weld seams’. Fundamental understanding of the solid state bonding process, as well as the ability to detect a well bonded (or a defective) weld seam are important for the production of high quality structural hollow extrusions. A study is being conducted to investigate the solid state bonding and weld seam formation processes during extrusion. The method chosen was to use a thermo-mechanical simulator (Gleeble 3500), thereby having the ability to vary process parameters such as strain, strain rate and temperature. The alloy investigated was primary and remelt AA6082. It was determined that the key parameter for bonding is surface stretching (creation of new surface at the interface) and bonding time.
固相结合工艺对纵向焊缝机械完整性的影响
对于复杂的中空6xxx系列铝型材的生产,舷窗模具是主要的工具设置。在舷窗模具中,坯料被分成多个金属流,这些金属流在焊接室中重新连接,形成“纵向焊缝”。对固态键合工艺的基本了解,以及检测良好键合(或缺陷)焊缝的能力,对于生产高质量的结构空心挤压件非常重要。研究了挤压过程中的固态结合和焊缝形成过程。所选择的方法是使用热机械模拟器(Gleeble 3500),从而能够改变工艺参数,如应变,应变率和温度。所研究的合金为初熔体和重熔体AA6082。确定了键合的关键参数是表面拉伸(在界面处产生新表面)和键合时间。
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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