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Role of welding speed on keyhole-induced porosity formation based on experimental and numerical study in fiber laser welding of Al alloy

机译:基于实验性和数值研究的焊接速度对基于实验性和数值研究的胶束激光焊接胶合孔隙率的作用

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摘要

The keyhole behaviors were observed directly by laser welding experiment with quartz glass. Based on Fresnel absorption of laser beam and multi-reflection combined with volume of fluid (VOF) method, a three-dimensional mathematical model was established to study the role of welding speed on keyhole behaviors and keyhole-induced porosity formation in laser welding of aluminum alloy. The keyhole behaviors and weld pool fluid flow were discussed, and the result shows that, although the welding speed varies, the mechanism of keyhole collapse was similar. However, the keyhole stability at higher welding speed was improved due to reduced weld depth fluctuations, spatter number, keyhole depth to width ratio, and keyhole collapse frequency. Furthermore, the improved keyhole stability impeded the keyhole collapse, and the lower weld depth and solidification rate facilitated bubble escaping from the weld pool easily, which are the main factors for suppression of porosity at higher welding speed.
机译:通过用石英玻璃直接通过激光焊接试验观察锁孔行为。 基于激光束的菲涅耳吸收和多反射与流体体积(VOF)方法,建立了三维数学模型,研究了焊接速度对铝激光焊接锁孔行为和锁孔诱导孔隙率形成的作用 合金。 讨论了锁孔行为和焊接池流体流动,结果表明,尽管焊接速度变化,锁孔塌陷的机制相似。 然而,由于焊接深度波动,飞溅数,锁孔深度到宽度比和锁孔塌陷频率,因此提高了较高焊接速度下的锁孔稳定性。 此外,改善的锁孔稳定性阻碍了锁孔塌陷,并且较低的焊接深度和凝固速率容易易于从焊接池逸出,这是抑制较高焊接速度下孔隙率的主要因素。

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