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Notch impact toughness of laser beam welded thick sheets of cryogenic nickel alloyed steel X8Ni9

机译:激光束焊接厚板低温镍合金钢X8NI9

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The paper deals with the investigations of the impact toughness of laser beam welded 14.5 mm thick sheets made of cryogenic steel X8Ni9 as a function of preheating. This 9% nickel alloyed steel is widely used in the liquefied natural gas (LNG) industry. An application of highly efficient welding processes such as high-power laser beam welding (LBW) in LNG sector requires an understanding of the interactions between the LBW process parameters and weld properties, in particular the impact toughness. The results show that the original fine-grained martensitic microstructure of the base metal (BM) is significantly changed by melting and crystallization during the LBW, what can lead to a decrease in the impact toughness of the weld metal (WM) below the required level. An optimal preheating temperature range leads to the favorable thermal welding cycle and is of remarkable importance for maintaining the notch impact toughness of laser beam welded joints of these thick steel sheets. A parameter window was identified in which V-notch impact toughness comparable to that of the BM at -196°C was achieved.
机译:本文涉及激光焊接焊接14.5毫米厚片材的冲击韧性作为预热的函数。该9%镍合金钢广泛用于液化天然气(LNG)行业。 LNG扇区中高功率激光束焊接(LBW)等高效焊接过程的应用需要了解LBW工艺参数和焊接性能之间的相互作用,特别是冲击韧性。结果表明,在LBW期间熔化和结晶,原始细粒度马氏体微观结构显着改变,可以导致焊接金属(WM)的焊接韧性降低以下所需水平。最佳预热温度范围导致有利的热焊接循环,并且对于维持这些厚钢板的激光束焊接接头的凹口冲击韧性具有显着的重要性。鉴定了参数窗口,其中实现了与-196℃的BM的V-Notch冲击韧性。

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