先进高强度S650MC汽车钢脉冲喷射气体金属电弧焊

A. Srivastava, P. K. Patra
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摘要

随着对更安全、更环保车辆的需求不断增加,低碳钢和高强度钢正在被更强、更薄规格的先进高强度钢所取代。然而,先进高强度钢的焊接工艺却没有与之同步发展。这些焊接的汽车结构件的性能在很大程度上取决于焊件的外部和内部质量。气体金属电弧焊(GMAW)是汽车工业中连接不同高强度钢的车身部件最常用的方法之一。它的多功能性和速度也得到了认可。本文在综述了先进高强钢GMAW焊接工艺及存在问题的基础上,采用三种不同强度的填充焊丝,采用喷雾和脉冲喷雾传递GMAW方法进行了不同热输入下的焊接实验。实验结果包括焊接试样的宏观组织、力学性能和显微硬度。S650MC具有良好的可焊性,焊缝效率> 90%;焊接接头或热影响区内无弯曲裂纹,拉伸试样无断裂,热影响区内无软化现象。脉冲喷射具有较好的热影响区宽度和较细的微观组织。填充丝强度对可焊性的影响不显著。然而,高强度填充焊丝(ER100SG)可根据标准焊接实践的匹配强度选择。
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Pulse spray gas metal arc welding of advanced high strength S650MC automotive steel
With an increasing demand for safer and greener vehicles, mild steel and high strength steel are being replaced by much stronger advanced high strength steels of thinner gauges. However, the welding process of advanced high strength steels is not developed at the same pace. The performance of these welded automotive structural components depends largely on the external and internal quality of weldment. Gas metal arc welding (GMAW) is one of the most common methods used in the automotive industry to join car body parts of dissimilar high strength steels. It is also recognized for its versatility and speed. In this work, after a review of GMAW process and issues in welding of advanced high strength steels, a welding experiment is carried out with varying heat input by using spray and pulse-spray transfer GMAW method with filler wires of three different strength levels. The experiment results, including macro-microstructure, mechanical properties, and microhardness of weld samples, are investigated in detail. Very good weldability of S650MC is demonstrated through the weld joint efficiency > 90%; no crack in bending of weld joints, or fracture of tensile test sample within weld joint or heat affected zone (HAZ), or softening of the HAZ. Pulse spray is superior because of thinner HAZ width and finer microstructure on account of lower heat input. The impact of filler wire strength on weldability is insignificant. However, high strength filler wire (ER100SG) may be chosen as per standard welding practice of matching strength.
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