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首页> 外文期刊>Journal of Manufacturing Processes >Effects of welds distribution and high-low temperature humidity alternating aging on sealing performance of weld-bonded stainless steel structures
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Effects of welds distribution and high-low temperature humidity alternating aging on sealing performance of weld-bonded stainless steel structures

机译:焊缝分布和高低温湿交替时效对焊接结构不锈钢结构密封性能的影响

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摘要

A sealant is introduced in the resistance spot welding (RSW) process to solve the poor sealing performance of stainless steel metro vehicles. The effects of welds distribution and high-low temperature humidity alternating aging on sealing performance are systematically studied by specially-designed pillow specimens and sealing tests apparatus. Study shows that the distributed RSW welds act as pinning points play a decisive role in sealant spreading and corresponding sealing performance. The sealing performance exhibits a maximal value when RSW spots centerline coincides with the gumming centerline and is inversely proportional to the weld pitch. Substrate deformation, sealant burning around the welds, and sealant thickness together contribute to the continuous invading of the high-pressure gas, and the initial failure prefers to happen adjacent to RSW welds. On the other hand, the sealing performance of the specimens has an inflection point at 240 h, which corresponds to the morphology evolution of the sealant, and should be attributed to the sealant state changes from non-drying state to set to touch state due to the degradation of the sealant. Hence, the sealant used in the current study is technically feasible to improve the sealing performance of metro stainless steel bodies.
机译:在电阻点焊(RSW)过程中引入了密封剂,以解决不锈钢地铁车辆密封性能差的问题。通过专门设计的枕形试样和密封试验装置,系统地研究了焊缝分布和高低温湿气交替时效对密封性能的影响。研究表明,分散的RSW焊缝作为钉扎点在密封胶扩散和相应的密封性能中起着决定性的作用。当RSW点中心线与涂胶中心线重合且与焊接间距成反比时,密封性能将显示出最大值。基材变形,密封胶在焊缝周围燃烧以及密封胶的厚度共同导致高压气体的连续侵入,并且初始故障倾向于发生在RSW焊缝附近。另一方面,样品的密封性能在240 h有一个拐点,这与密封剂的形态演变相对应,并且应归因于由于以下原因密封剂状态从非干燥状态变为接触状态:密封胶的降解。因此,当前研究中使用的密封剂在技术上是可行的,以提高地铁不锈钢车体的密封性能。

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