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Tensile–Shear Fracture Behavior Prediction of High-Strength Steel Laser Overlap Welds

机译:高强度钢激光搭接焊缝的拉伸剪切断裂行为预测

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A wider interface bead width is required for laser overlap welding by increasing the strength of the base material (BM) because the strength difference between the weld metal (WM) and the BM decreases. An insufficient interface bead width leads to interface fracturing rather than to the fracture of the BM and heat-affected zone (HAZ) during a tensile–shear test. An analytic model was developed to predict the tensile–shear fracture location without destructive testing. The model estimated the hardness of the WM and HAZ by using information such as the chemical composition and tensile strength of the BM provided by the steel makers. The strength of the weldments was calculated from the estimated hardness. The developed model considered overlap weldments with similar and dissimilar material combinations of various steel grades from 590 to 1500 MPa. The critical interface bead width for avoiding interface fracturing was suggested with an accuracy higher than 90%. Under all the experimental conditions, a bead width that was only 5% larger than the calculated value could prevent the fracture of the interface.
机译:由于增加了焊接金属(WM)和BM之间的强度差,因此通过增加基材(BM)的强度,激光交叠焊接需要更宽的焊道宽度。界面珠宽度不足会导致界面断裂,而不是在拉伸剪切试验中导致BM和热影响区(HAZ)断裂。开发了一个分析模型来预测拉伸剪切断裂位置,而无需进行破坏性测试。该模型使用钢厂提供的信息,例如化学成分和BM的抗拉强度来估算WM和HAZ的硬度。焊件的强度由估算的硬度计算得出。所开发的模型考虑了重叠焊件,这些焊件具有从590到1500 MPa的各种钢种的相似和相异材料组合。建议避免界面破裂的临界界面珠宽度,其准确度应高于90%。在所有实验条件下,仅比计算值大5%的胎圈宽度可以防止界面破裂。

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