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Fatigue life of underwater wet welded low carbon steel SS400

机译:水下湿焊​​低碳钢SS400的疲劳寿命

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摘要

Underwater welding is widely used for maintenance and repairs of underwater structures such as undersea pipes, offshore structures and nuclear power plants. In practice, underwater welding has the disadvantage related to high cooling rate and unstable welding arc due to the water hydrostatic pressure. This affects the microstructure and mechanical properties of underwater welded joints. Many of previous research works on underwater welding have been carried out only on a laboratory scale in shallow water depth, whereas underwater welding was used to weld in the depth of the water with a metre scale. Undersea structures experience fatigue load due to the fluctuation force of water flow. Therefore, this study aims to determine the effect of water depth on the fatigue life of underwater welded joints. Low carbon steel SS400 specimens were welded underwater with depths of 2.5 m, 5 m and 10 m. The air welded joint was also evaluated for comparison purposes. Fatigue life was evaluated according to the ASTM E466 standard by using a rotary bending machine. Furthermore, tensile test, micro hardness measurement and microstructure evaluation were also conducted for gathering supporting data. The fatigue and tensile strength of the air welded joints were higher than those of the underwater welded joints. The porosities caused by the dissolved hydrogen gas, carbon (monoxide and dioxide) gases and water vapor in weld metal of the underwater welded joints decreased the fatigue and tensile strength. An interesting phenomenon on the underwater welded joints was that the deeper the water level, the higher became the fatigue, tensile strength as well as hardness. Based on the microstructure analysis, the number of acicular ferrite structures in weld metal increased as the water level depth increased.
机译:水下焊接被广泛用于水下结构的维护和修理,例如水下管道,海上结构和核电站。实际上,水下焊接具有由于水静水压力而导致的高冷却速度和不稳定的焊接电弧的缺点。这会影响水下焊接接头的微观结构和力学性能。以前许多关于水下焊接的研究工作仅在浅水深度的实验室规模上进行,而水下焊接用于以米为单位在水深处进行焊接。海底结构由于水流的波动力而承受疲劳载荷。因此,本研究旨在确定水深对水下焊接接头疲劳寿命的影响。低碳钢SS400标本在水下焊接深度为2.5 m,5 m和10 m。为了比较目的,还评估了空气焊接接头。通过使用旋转弯曲机根据ASTM E466标准评估疲劳寿命。此外,还进行了拉伸试验,显微硬度测量和显微组织评估,以收集支持数据。空气焊接接头的疲劳强度和拉伸强度高于水下焊接接头。水下焊接接头的焊接金属中溶解的氢气,碳(一氧化碳和二氧化碳)气体和水蒸气引起的孔隙降低了疲劳强度和拉伸强度。水下焊接接头的一个有趣现象是,水位越深,疲劳,拉伸强度和硬度就越高。根据显微组织分析,随着水位深度的增加,焊缝金属中针状铁素体组织的数量增加。

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