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Friction Stir Welding of High Phosphorus Weathering Steel —Weldabilities, Microstructural Evolution and Mechanical Properties

机译:摩擦搅拌焊接高磷风化钢 - 疏松,微观结构演化和机械性能

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Phosphorus (P) addition is expected to simultaneously increase the strength and corrosion resistance of weathering steels. However, P causes solidification cracking in the fusion welding process and reduces the toughness of the steel. To avoid these problems, the P content of weldable SMA490AW weathering steel is currently limited to below 0.035 mass%. High P steels which are impossible to be joined by the fusion welding process, can be joined by a solid-state joining process, i.e. , friction stir welding (FSW). Because the stir zone obtained by FSW contained very fine grains, its toughness was expected to improve. This study applies FSW to high-P weathering steels and examines the weldability of the product. The microstructural evolution and mechanical properties of the stir zone were investigated at different welding temperatures. The macroscopic cross-sectional observations of the FSW joints revealed crack-free structures even in steel containing 0.3 mass% P. Moreover, FSW significantly refined the grain structure in the stir zone. Consequently, the ductile-to-brittle transition temperature of the stir zone was approximately 150°C lower in the steel containing 0.3 mass% P and welded below A _(1) (average grain size = 2.5 μ m) than in the base material (average grain size = 23 μ m). It appears that the grain refinement by FSW overcomes the embrittlement caused by excessive P content.
机译:预期磷(P)加法是同时增加风化钢的强度和耐腐蚀性。然而,P在熔融焊接过程中引起凝固裂缝,降低了钢的韧性。为避免这些问题,可焊接SMA490AW耐候钢的P含量目前限制在0.035质量%以下。不可能通过熔融焊接工艺连接的高P钢可以通过固态连接过程连接,“I”。 ,摩擦搅拌焊接(FSW)。因为通过FSW获得的搅拌区含有非常细粒的晶粒,因此预期其韧性将改善。本研究将FSW应用于高P风化钢,并检查产品的可焊性。在不同的焊接温度下研究了搅拌区的微观结构演化和机械性能。 FSW接头的宏观横截面观察均匀地显示出含有0.3质量%P的钢的无裂缝结构。此外,FSW显着地精制搅拌区中的晶粒结构。因此,在含有0.3质量%P的钢中搅拌区的搅拌区的脆性转变温度下降约150℃并焊接在下方

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