...
首页> 外文期刊>Lasers in Manufacturing and Materials Processing >Effect of Welding Speed on the Prediction Accuracy of Residual Stress in Laser Welded 1.2 mm Thick Dual Phase Steel
【24h】

Effect of Welding Speed on the Prediction Accuracy of Residual Stress in Laser Welded 1.2 mm Thick Dual Phase Steel

机译:焊接速度对激光焊接1.2 mm厚双相钢残余应力预测精度的影响

获取原文
获取原文并翻译 | 示例

摘要

Post-weld residual stress and distortion are significant issues in laser welding as they reduce fatigue strength and toughness. In the present work, cold rolled dual phase steel sheets of 1.2 mm thickness were laser welded in both bead on plate and butt configurations. The optimum heat input was observed to be approximately 25 kJ/m for visually defect free weld with narrow weld bead and through-thickness penetration. A novel attempt was made to increase the welding speed whilst maintaining the optimum heat input. It was observed that, high welding speed led to high residual stress, resulting in longitudinal cracks, whereas the speed at a limiting value of 0.08 m/s was found to be beneficial for welding without longitudinal cracks. Literature suggests researchers have already proposed different mathematical models on keyhole mode laser welding that can predict the residual stress and deformation. However, most of them failed to predict it repetitively, especially for thin sheets. This work tried to find out the rationality of this argument. For low-speed condition, the range of residual stress values was substantially wide, making it difficult to predict actual residual stress with the aid of mathematical models. The range of residual stress values was found to be much lower for the optimum heat input and high-speed condition, resulting into better prediction accuracy. Residual stress values were also validated using kernel average misorientation (KAM) study.
机译:焊接后残余应力和变形是激光焊接中的重要问题,因为它们会降低疲劳强度和韧性。在目前的工作中,将厚度为1.2mm的冷轧双相钢板激光焊接在板和对接结构的焊道中。观察到最佳的热输入约为25 kJ / m,适用于焊缝较窄且贯穿厚度贯穿的无视觉缺陷的焊接。进行了新颖的尝试,以在保持最佳热量输入的同时提高焊接速度。观察到,高焊接速度导致高残余应力,从而导致纵向裂纹,而发现极限值为0.08 m / s的速度有利于无纵向裂纹的焊接。文献表明,研究人员已经针对锁孔模式激光焊接提出了不同的数学模型,可以预测残余应力和变形。但是,他们中的大多数人都无法重复预测它,尤其是对于薄板。这项工作试图找出这种说法的合理性。对于低速条件,残余应力值的范围相当宽,因此很难借助数学模型预测实际残余应力。对于最佳的热量输入和高速条件,发现残余应力值的范围要低得多,从而可以提高预测精度。残余应力值也使用核平均取向错误(KAM)研究进行了验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号