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薄板对接焊缝焊接间隙对大型复杂箱形结构固有应变及焊接变形的影响

Effect of Welding Gap of Thin Plate Butt Welds on Inherent Strain and Welding Deformation of a Large Complex Box Structure.

作者信息

Zhang Liping, Peng Genchen, Yang Fan, Meng Zhengyu, Yuan Xiaoming, Fan Yangyang, Li Wen, Zhang Lijie

机构信息

Hebei Key Laboratory of Heavy Machinery Fluid Power Transmission and Control, Yanshan University, Qinhuangdao 066004, China.

Jiangsu XCMG Construction Machinery Research Institution Ltd., Xuzhou 221000, China.

出版信息

Materials (Basel). 2024 Apr 23;17(9):1934. doi: 10.3390/ma17091934.

Abstract

In this study, an effective numerical model was developed for the calculation of the deformation of laser-welded 3 mm 304L stainless steel plates with different gaps (0.2 mm, 0.5 mm, and 1.0 mm). The welding deformation would become larger when the welding gaps increased, and the largest deformation values along the Z direction, of 4 mm, were produced when the gap value was 1.0 mm. A larger plastic strain region was generated in the location near the weld seam, since higher plastic deformation had occurred. In addition, the tensile stress model was also applied at the plastic strain zone and demonstrated that a larger welding gap led to a wider residual stress area. Based on the above results, inherent deformations for butt and corner joints were calculated according to inherent strain theory, and the welding formation for the complex structure was calculated with different gaps. The numerical results demonstrated that a larger deformation was also produced with a larger welding gap and that it could reach the highest value of 10.1 mm. This proves that a smaller welding gap should be adopted during the laser welding of complex structures to avoid excessive welding deformation.

摘要

在本研究中,开发了一种有效的数值模型,用于计算不同间隙(0.2毫米、0.5毫米和1.0毫米)的激光焊接3毫米304L不锈钢板的变形。焊接间隙增大时,焊接变形会变大,当间隙值为1.0毫米时,沿Z方向产生的最大变形值为4毫米。由于发生了较高的塑性变形,在焊缝附近区域产生了较大的塑性应变区。此外,还在塑性应变区应用了拉伸应力模型,结果表明较大的焊接间隙会导致残余应力区域更宽。基于上述结果,根据固有应变理论计算了对接接头和角接头的固有变形,并计算了不同间隙下复杂结构的焊接成型。数值结果表明,较大的焊接间隙也会产生较大的变形,其最大值可达10.1毫米。这证明在复杂结构的激光焊接过程中应采用较小的焊接间隙,以避免过度的焊接变形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9331/11084677/a9534f5635bd/materials-17-01934-g001.jpg

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