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Microstructural Transformation in a Root Pass of Superduplex Stainless Steel Multipass Welding

机译:超双相不锈钢多道次焊根焊道的组织转变

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The microstructure of the root pass in a superduplex stainless steel multipass welding was investigated.Results showed that the welding metal has an austenite matrix with particles of sigma phase formed in the ferrite/austenite interface and intragranularly.Eventhough the filler metal is intended to keep the phase balance after welding,the welding metal presented a considerable decrease in the ferrite content and a high proportion of sigma phase. Despite the exposition to thermal cycles on every pass, the heat affected zone presented a microstructure consisting of ferrite and austenite with a small proportion of sigma phase.Therefore,the thermal cycles of every welding pass allowed the decomposition of ferrite into austenite and sigma phase in points close to the heat source, changing the final microstructure.
机译:研究了超双相不锈钢多道次焊中根部焊道的显微组织,结果表明,焊接金属具有奥氏体基体,在铁素体/奥氏体界面中以及在晶内形成有σ相的颗粒。焊接后的相平衡,焊接金属的铁素体含量显着降低,σ相比例较高。尽管每次焊道都暴露出热循环,但热影响区仍呈现出由铁素体和奥氏体组成的,具有少量σ相的微结构。点靠近热源,改变了最终的微观结构。

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