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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Weld morphology and mechanical performance of marine structural steel welded underwater in a real marine environment
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Weld morphology and mechanical performance of marine structural steel welded underwater in a real marine environment

机译:焊接形态与真正海洋环境水下水下焊接水下的力学性能

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摘要

Grade AH36 ship steel plate, frequently used in offshore applications, was joined underwater by shielded metal arc welding (SMAW) using two different types of electrodes (E6013 and E7014). The ship steel plate was also joined under atmospheric conditions in order to compare both joints in terms of mechanical and metallurgical properties. The E6013 rutile electrode was isolated by wrapping before use, and the underwater welding process was carried out at a depth of 8 m under the sea. The joints were first subjected to visual inspection and then liquid penetrant, ultrasonic, and radiographic tests were performed. In order to determine the mechanical properties of the joints, tensile, bending, and impact toughness tests were also carried out. In addition to the microhardness test on the weld zones, microstructural examination was also performed on the joints. As a result of the nondestructive tests, weld defects like slag remaining between the passes, gas porosities, burn-through, and lack of penetration were seen on the joints welded underwater with the two different electrodes. The study determined that these defects had significantly influenced the mechanical properties and width of the weld zone of the joints.
机译:AH36船舶钢板经常用于海上应用,使用两种不同类型的电极(E6013和E7014)通过屏蔽金属弧焊(SMAW)连接水下。船钢板也在大气条件下加入,以便在机械和冶金性能方面进行比较。通过使用前包装分离E6013金红石电极,并且水下焊接过程在海底下的8米深处进行。首先进行接头进行视觉检查,然后进行液体渗透,超声波和放射线检查。为了确定接头的机械性能,也进行了拉伸,弯曲和冲击韧性试验。除了在焊接区上的显微硬度测试之外,还对关节进行微观结构检查。由于非破坏性测试,在用两个不同电极焊接水下的接头上看到了剩余的炉渣等炉渣等熔渣。该研究确定这些缺陷显着影响了关节焊接区的机械性能和宽度。

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