• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (4): 89-94.

• 论文 • 上一篇    下一篇

搅拌摩擦焊焊缝金属塑性流动的抽吸—挤压理论

柯黎明;潘际銮;邢丽;王善林   

  1. 南昌航空大学材料科学与工程学院;清华大学先进成形制造教育部重点实验室
  • 发布日期:2009-04-15

Sucking-extruding Theory for the Material Flow in Friction Stir Welds

KE Liming PAN Jiluan;XING Li;WANG Shanlin   

  1. School of Materials Science and Engineering, Nanchang Hangkong University Key Laboratory for Advanced Materials Processing Technology of Ministry of Education, Tsinghua University
  • Published:2009-04-15

摘要: 通过镶嵌多层铜箔作为标识材料,利用带螺纹和表面光滑的圆柱形搅拌针进行搅拌摩擦焊试验,确定了焊接时金属在焊缝厚度方向存在剧烈的塑性流动,搅拌针表面的螺纹是驱动焊缝塑化金属在焊缝厚度方向流动的主要因素。在试验基础上提出了焊缝塑化金属厚度方向流动的“抽吸—挤压”理论,认为当搅拌头旋转引起塑化金属沿螺纹表面轴向流动时,在螺纹的一端形成一瞬时空腔,周围塑化金属将被吸向此空腔,形成所谓抽吸效应;在螺纹的另一端,塑化金属将改变流向并挤压周边金属,形成所谓挤压效应;正是由于空腔对塑化金属朝焊缝中心的抽吸作用和挤压区往外对塑化金属的挤压作用,使高温塑化金属在焊缝厚度方向形成剧烈的环形迁移运动。用抽吸—挤压理论分析了焊缝中洋葱瓣花纹的形成,洋葱瓣中心的位置及隧道型缺陷的位置与由此理论分析的结果一致。通过工艺试验观察洋葱瓣花纹尺寸变化及他人的试验结果,验证了用“抽吸—挤压”理论预测焊缝成形的正确性。

关键词: 抽吸—挤压理论, 搅拌摩擦焊, 塑性流动, 洋葱瓣花纹

Abstract: By using column pin with thread or without thread on the pin surface, friction stir welding is conducted on the lamella structure plates piled up with several thin copper foils, acting as a marker material, and aluminum sheets. The information about the flow field on the weld cross section is collected and analyzed. It is shown that there is a serious material translation in the thickness of the weld, if using a pin with screw thread surface. The thread on the pin is the main cause to drive the weld metal flow in the thickness of the weld. On the basis of the experimental results, a sucking-extruding theory is suggested to explain the metal flow in the thickness of the weld. That is, when the plastic material around the pin flows along the axis direction of the pin with the rotation of the stir tool, a transient cavity is formed at one end of the threaded pin and the plastic metal around the end will be pulled to the cavity, producing a sucking effect. At another end of the pin, the plastic metal will change its flowing direction and extrude the plastic metal around this end, producing an extruding effect. It is due to these effects, i.e. the sucking effect of the cavity on the plastic metal around it and the extruding effect of the flowing metal on the pin on the surrounding metal, that drive the thermal plastic metal translate circularly in the thickness direction. By using the sucking-extruding theory, the onion ring formation is explained and the center location of the onion ring, the location of the channel defects in the weld can be predicted and experimentally confirmed. The effect of the welding parameters on the size of the onion ring can be predicted by applying this theory and is confirmed by this and other author’s experiments.

Key words: Friction stir welding, Onion ring, Plastic flow, Sucking-extruding theory

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