Sanhong Heavy Industry

Chemical vessel manufacturing

Container circumferential seam welding work area: Container longitudinal seam welding (high-efficiency deep-penetration welding); Container head plate longitudinal seam joining (high-efficiency deep-penetration welding + submerged arc welding); Container circumferential seam welding (submerged arc welding); Container circumferential seam welding (high-efficiency deep-penetration welding) 01 Chemical Equipment Manufacturing Application Information: Welding Methods: K-TIG/P+T/SAW; Workpiece Materials: Q245R, Q345R, 304, 308, 316L, Ni, Ti, etc.; Workpiece Diameter: ≤¢4500mm; Workpiece Length: ≤13000mm; Weld Seam Types: Lap longitudinal seams, butt circumferential seams, etc.; K-TIG/P+T Workpiece

2018.05.05


Four common welding defects in boiler pressure vessels

The welding quality directly affects the performance and safety of the boiler structure. Poor welding quality of the boiler may lead to leakage or even explosion accidents, causing significant losses to people's lives and property. Therefore, exploring the causes of welding defects in boilers, mastering their preventive measures, and effectively improving the welding quality of boilers are of great significance for ensuring the safe operation of boilers.

2018.05.03


Analysis of the Causes of Terminal Cracks in Longitudinal Welds in Submerged Arc Welding and Preventive Measures

I. Overview In the manufacturing of pressure vessels, when submerged arc welding is used to join the longitudinal weld seams of cylindrical shells, cracks—hereinafter referred to as end-terminal cracks—often occur at or near the ends of these longitudinal welds. Many researchers have already studied this issue and concluded that the primary cause of end-terminal cracks is as follows: As the welding arc approaches the end of the longitudinal weld seam, the weld undergoes axial expansion and deformation, while simultaneously experiencing lateral tensile deformation perpendicular to the axial direction. Moreover, during the rolling and fabrication processes, the cylindrical shell itself experiences cold-work hardening stresses and assembly stresses. During welding, due to the restraint effect of the end-positioning welds and arc-starting plates, significant stresses accumulate at the weld’s end terminal.

2018.05.03


A Brief Analysis of Common Problems and Countermeasures in Gas-Shielded Welding

With the continuous improvement of welding technology in Chinese enterprises, gas-shielded welding processes have been steadily developing thanks to their advantages such as high quality, efficiency, energy savings, low costs, and minimal environmental pollution. In recent years, following the CO2 welding technology promotion and application exchange conferences, gas-shielded welding technology has been vigorously promoted and applied in the mechanical and metal structures industry, laying a solid foundation for the sustained, stable, and robust development of CO2 welding technology. Gas-shielded welding not only meets the demands of automation but also drives enterprise advancement and industrial upgrading, thus becoming the dominant welding method in many mechanical manufacturing and construction enterprises. However, in the...

2018.05.03


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