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The Study on the Ineffective Mechanism of Aluminum Alloy Spot Welding Electrode

机译:铝合金点焊电极无效机理研究

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This study explored the electrode excessive burning reason caused by aluminum resistance spot welding and proposed a new electrode failure mechanism. The test shows that the oxide film of aluminum alloy workpieces causes the contact of non-uniform points between electrode and workpieces and instantaneously leads to a local explosion when setting up an electric circuit, bringing about the plastic deformation of the electrode surface in the local area, which will in turn exacerbate the contact of non-uniform points between electrode and workpieces so as to result in the serious burnout of electrodes under the interaction between local explosions and Cu-Al alloying. Cu-Al alloying and brittle material on the electrode surface caused by the contact of non-uniform points will firstly detach from the surface of electrode under the tearing force of mechanical, so that the electrode surface becomes more uneven.
机译:本研究探索了铝能光斑焊接引起的电极过度燃烧原因,并提出了一种新的电极破坏机构。该测试表明,铝合金工件的氧化膜导致电极和工件之间的非均匀点的接触,并在设置电路时瞬间导致局部爆炸,从而引起局部电极表面的塑性变形,这将加剧电极和工件之间的非均匀点的接触,从而导致局部爆炸与Cu-al合金化之间的相互作用下的电极严重烧坏。由非均匀点的接触引起的电极表面上的Cu-Al合金和脆性材料将首先在机械的撕裂力下从电极表面脱离,使得电极表面变得更加不均匀。

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