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Defect tolerance of friction stir welds in DH36 steel

机译:DH36钢中搅拌摩擦焊的缺陷公差

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Friction stir welding of steel is in the early stages of development. The aim to commercialise this process creates a trade-off between welding time, cost and quality of the joint produced. Therefore, it becomes critical to analyse the lower quality bound of steel friction stir welds in conventional square edge butt welding configuration. Work has been undertaken to evaluate the microstructure and fatigue performance of 6 mm thick DH36 steel plates friction stir welded with sub-optimal process conditions, resulting in the development of embedded and surface breaking flaws. The defective weldments were characterised to understand the nature of the flaws and a programme of mechanical testing was undertaken (including fatigue assessment) to determine the relationship between the flaw geometry, location and weld quality. A number of characteristic flaws were identified and seen to interact with the samples' fatigue fracture mechanisms. Samples with wormholes at the weld root produced the lowest fatigue performance. Fracture from incomplete fusion paths at the retreating side of the welds' top surface was seen to correspond to the highest recorded fatigue lives. The work provides an insight into the complex nature of characteristic flaws in steel friction stir welds and their interaction with fatigue behaviour.
机译:钢的摩擦搅拌焊还处于发展的早期阶段。商业化此过程的目的是在焊接时间,成本和所生产接头的质量之间进行权衡。因此,分析传统方形边角对接焊缝中钢质搅拌摩擦焊的质量下限变得至关重要。已经进行了工作,以评估在次优工艺条件下搅拌摩擦焊接的6毫米厚DH36钢板的显微组织和疲劳性能,从而导致了嵌入缺陷和表面断裂缺陷的产生。对有缺陷的焊件进行表征以了解缺陷的性质,并进行了一项机械测试程序(包括疲劳评估)以确定缺陷几何形状,位置和焊接质量之间的关系。鉴定出许多特征性缺陷,并发现它们与样品的疲劳断裂机理相互作用。焊缝根部有虫洞的样品的疲劳性能最低。可以看到,在焊缝顶面后退侧的不完全熔合路径导致的断裂与记录的最高疲劳寿命相对应。这项工作提供了对钢制搅拌摩擦焊缝特征性缺陷的复杂性质及其与疲劳行为的相互作用的见解。

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