首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >THE EFFECT OF RESIDUAL STRESS AND MICROSTRUCTURE ON DISTORTION IN THIN WELDED STEEL PLATES
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THE EFFECT OF RESIDUAL STRESS AND MICROSTRUCTURE ON DISTORTION IN THIN WELDED STEEL PLATES

机译:残余应力和显微组织对薄钢板焊接变形的影响

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The current trend in ship construction is to reduce the thickness of the ship panels, in order to minimize weight and maximize vessel speed. The ship panels of interest consist of 4 mm thick butt welded plates. This reduction in panel thickness may lead to excessive plate distortion during welding, resulting in significant additional costs during assembly. A ferritic-pearlitic DH-36 steel is used, in which phase transformations during welding may affect the distortion and stress states observed. Two large plates, representative of ship panels, have been butt welded using a metal inert gas (MIG) process. The temperature histories have been recorded during welding and the resulting distortion profile has been obtained using digital photography. Neutron diffraction measurements have been performed to determine the residual stress state in the plates before welding, due to e.g. processing and laser cutting, and after butt welding of the plates. Reference matchsticks from the weld, heat affected zone (HAZ) and parent plate have been taken from similar locations in nominally identical plates and measured to obtain the strain/stress free lattice parameter, a_0. A Rietveld analysis has been performed on the diffraction data. Post welding, hardness surveys have indicated the microstructural variation in the weld, parent plate and HAZ. Results from these on-going studies are presented which identify the key factors responsible for thin plate distortion.
机译:船舶建造中的当前趋势是减小船舶面板的厚度,以最小化重量并最大化船舶速度。感兴趣的船板由4毫米厚的对接焊板组成。面板厚度的这种减小可能导致焊接期间过度的板变形,从而导致组装期间的大量额外成本。使用铁素体-珠光体DH-36钢,其中焊接过程中的相变可能会影响观察到的变形和应力状态。已使用金属惰性气体(MIG)工艺对接了代表船舶面板的两块大板。在焊接过程中已经记录了温度历史记录,并使用数字摄影技术获得了最终的变形曲线。已经进行了中子衍射测量,以确定例如在焊接之前板中的残余应力状态。加工和激光切割,以及对接后的板材。来自焊缝,热影响区(HAZ)和母板的参考火柴是从名义上相同的板中的相似位置获取的,并进行测量以获得无应变/无应力晶格参数a_0。已对衍射数据进行了Rietveld分析。焊接后,硬度调查显示了焊缝,母板和热影响区的微观结构变化。提供了这些正在进行的研究的结果,这些结果确定了造成薄板变形的关键因素。

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