Zhang Liping, Peng Genchen, Chi Jinze, Bi Jiang, Yuan Xiaoming, Li Wen, Zhang Lijie
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.
Materials (Basel). 2023 Jun 8;16(12):4253. doi: 10.3390/ma16124253.
Thick plate steel structure is widely used in the construction machinery, pressure vessels, ships, and other manufacturing fields. To obtain an acceptable welding quality and efficiency, thick plate steel is always joined by laser-arc hybrid welding technology. In this paper, Q355B steel with a thickness of 20 mm was taken as the research object, and the process of narrow-groove laser-arc hybrid welding was studied. The results showed that the laser-arc hybrid welding method could realize one-backing and two-filling welding with the single-groove angles of 8-12°. At different plate gaps of 0.5 mm, 1.0 mm, and 1.5 mm, the shapes of weld seams were satisfied with no undercut, blowhole, or other defects. The average tensile strength of welded joints was 486~493 MPa, and the fracture position was in the base metal area. Due to the high cooling rate, a large amount of lath martensite formed in heat-affected zone (HAZ) and this zone exhibited higher hardness values. The impact roughness of the welded joint was almost 66-74 J, with different groove angles.
厚板钢结构广泛应用于建筑机械、压力容器、船舶等制造领域。为了获得可接受的焊接质量和效率,厚板钢通常采用激光电弧复合焊接技术进行连接。本文以厚度为20mm的Q355B钢为研究对象,研究了窄间隙激光电弧复合焊接工艺。结果表明,激光电弧复合焊接方法可以实现单坡口角度为8-12°的单面封底双面填充焊接。在0.5mm、1.0mm和1.5mm的不同板间隙下,焊缝形状良好,无咬边、气孔等缺陷。焊接接头的平均抗拉强度为486~493MPa,断裂位置在母材区域。由于冷却速度快,热影响区(HAZ)形成了大量板条马氏体,该区域硬度较高。不同坡口角度下,焊接接头的冲击韧性约为66-74J。