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Effect of weld defects on the mechanical properties of stainless-steel weldments on large cruise ship

机译:焊缝缺陷对大型游轮上不锈钢焊焊机力学性能的影响

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摘要

AISI 316L stainless-steel is the main material used in large cruise ship, and the quality of the welds significantly affects the service performance of the components. In this study, the effect of weld defects on the mechanical properties of 316L welded joints was investigated. To this end, welds without defects, as well as welds with burn-through defects and incomplete penetration defects were welded by manual TIG. Subsequently, the microstructure of the weld zone and heat affected zone of the three weld types was characterized, and the mechanical property tests such as tensile, bend, impact, and micro-hardness were performed. Then, the fracture morphology of the welded joints after the tensile and impact tests was observed. The results showed that the weld zone and heat affected zone of the three weld types were all aus-tenite and ferrite structures. Compared to welds without defects, the average ultimate tensile strength of welds with burn-through defects was lower by 2.7% and the average impact strength was higher by 6.5%, the average ultimate tensile strength and average impact strength of welds with incomplete penetration defects was lower by 35.1% and 14.1% respectively. In terms of hardness, the two types of defects had almost no impact on the welds.
机译:AISI 316L不锈钢是大型游轮中使用的主要材料,焊缝的质量显着影响组件的服务性能。在该研究中,研究了焊接缺陷对316L焊接接头的机械性能的影响。为此,通过手动TIG焊接没有缺陷的焊缝,以及具有燃烧缺陷和不完全穿透缺陷的焊缝。随后,表征了三种焊接类型的焊接区和热影响区域的微观结构,并且进行了诸如拉伸,弯曲,撞击和微硬度的机械性能试验。然后,观察到拉伸和冲击试验后焊接接头的断裂形态。结果表明,三种焊接类型的焊接区和热影响区都是Aus-Tenite和铁氧体结构。与没有缺陷的焊缝相比,燃烧缺陷的焊缝的平均终极抗拉强度较低2.7%,平均冲击强度较高6.5%,平均抗拉强度和具有不完全渗透缺陷的焊缝的平均冲击强度降低35.1%和14.1%。在硬度方面,两种类型的缺陷几乎没有对焊缝产生影响。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2073-2073|共1页
  • 作者

    Y. Wang; Z. Guo; X. Bai; C. Yuan;

  • 作者单位

    Key Laboratory of Marine Power Engineering & Technology (Ministry of Transport) Wuhan University of Technology Wuhan 430063 China;

    Key Laboratory of Marine Power Engineering & Technology (Ministry of Transport) Wuhan University of Technology Wuhan 430063 China;

    Key Laboratory of Marine Power Engineering & Technology (Ministry of Transport) Wuhan University of Technology Wuhan 430063 China;

    Key Laboratory of Marine Power Engineering & Technology (Ministry of Transport) Wuhan University of Technology Wuhan 430063 China;

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