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Underwater laser weld bowing distortion behavior and mechanism of thin 304 stainless steel plates

机译:薄水304不锈钢板的水下激光焊接凸起行为及机理

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Underwater laser weld bowing distortion behavior and mechanism of thin 304 stainless steel plates are studied in the paper. The influence of underwater laser welding parameters (such as laser power, welding speed, defocusing distance and gas flow rate) on weld bowing distortion was investigated through central composite rotatable design and an orthogonal test. A quadratic response model was established to evaluate the underwater laser weld bowing distortion by central composite rotatable design and the order of the impacts of the welding parameters on weld bowing distortion was studied by an orthogonal test. The weld bowing distortion after welding was determined by the digital image correlation technique. The weld bowing distortion of in-air laser welding and underwater laser welding were compared and it revealed that the shape of the in-air and underwater laser welded specimens are the same, but the weld bowing distortion amount of in-air welding is larger than that of underwater welding. Weld bowing distortion mechanism was studied by the digital image correlation technique, and it was demonstrated that weld bowing distortion is associated with the welding plate temperature gradient during laser welding. The wider weld width also resulted in larger weld bowing distortion. (C) 2018 Elsevier Ltd. All rights reserved.
机译:纸张研究了薄304不锈钢板的水下激光焊接凸起行为和机构。通过中央复合可旋转设计和正交试验研究了水下激光焊接参数(例如激光功率,焊接速度,散焦距离和气体流速)对焊接弯曲变形的影响。建立了二次响应模型,以评估中央复合可旋转设计的水下激光焊接弯曲变形,并通过正交试验研究了焊接参数对焊接弯曲变形的影响的顺序。通过数字图像相关技术确定焊接后的焊接弯曲失真。比较了空中激光焊接和水下激光焊接的焊接弯曲变形,并显示出空中和水下激光焊接样品的形状相同,但空内焊接的焊接弯曲变形量大于水下焊接。通过数字图像相关技术研究了焊接弓形失真机构,并且证明了在激光焊接期间焊接弯曲变形与焊接板温度梯度相关联。更宽的焊接宽度也导致较大的焊接弯曲变形。 (c)2018年elestvier有限公司保留所有权利。

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