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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Influence of the Tool Shoulder Contact Conditions on the Material Flow During Friction Stir Welding
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Influence of the Tool Shoulder Contact Conditions on the Material Flow During Friction Stir Welding

机译:搅拌摩擦焊接中刀肩接触条件对材料流动的影响

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摘要

Friction stir welding (FSWing) is a solid-state joining process of special interest in joining alloys that are traditionally difficult to fusion weld. In order to optimize the process, various numeric modeling approaches have been pursued. Of importance to furthering modeling efforts is a better understanding of the contact conditions between the workpiece and the weld tool. Both theoretical and experimental studies indicate the contact conditions between the workpiece and weld tool are unknown, possibly varying during the FSW process. To provide insight into the contact conditions, this study characterizes the material flow in the FSW nugget by embedding a lead (Pb) wire that melted at the FSWing temperature of aluminum alloy 2195. The Pb trace provided evidence of changes in material flow characteristics which were attributed to changes in the contact conditions between the weld tool and workpiece, as driven by temperature, as the tool travels the length of a weld seam.
机译:搅拌摩擦焊(FSWing)是固态连接工艺,在传统上难以熔焊的合金连接中尤为重要。为了优化过程,已经追求了各种数值建模方法。对于进一步建模工作而言,重要的是更好地了解工件与焊接工具之间的接触条件。理论和实验研究均表明,工件与焊接工具之间的接触条件未知,可能在FSW过程中有所变化。为了提供对接触条件的了解,本研究通过嵌入在铝合金2195的FSWing温度下熔化的铅(Pb)线来表征FSW熔核中的材料流动。Pb迹线提供了材料流动特性变化的证据,即这归因于随着温度在焊缝行进时焊缝与工件之间的接触条件发生变化。

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