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Metallurgy of welding stainless steels

机译:焊接不锈钢冶金

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Based primarily on microstructure, five stainless steel types are recognized: ferritic, martensitic, austenitic, duplex and precipitation-hardening. The major problem in ferritic stainless steels is the tendency to embrittlement, aggravated by various causes. During welding, control of heat input is essential and, in some cases, also a postweld heat treatment. The austenitic type is the easiest to weld, but two important issues are involved in the welding of these steels: hot cracking and formation of chromium carbide and other secondary phases on thermal exposure. The nature of the problems and remedial measures are discussed from a metallurgical perspective. Duplex stainless steels contain approximately equal proportions of austenite and ferrite. The article discusses the upset in phase balance during welding both in the weld metal and heat-affected zone and the formation of embrittling secondary phases during any thermal treatment. Martensitic stainless steels are susceptible to hydrogen-induced cracking. Welding thus involves many precautions to prevent it through proper preheat selection, postweld heat treatment, etc. In the welding of precipitation-hardening stainless steels, it is usually necessary to develop in the weld metal strength levels matching those of the base metal. This is achieved by applying a postweld heat treatment appropriate to each type of alloy.
机译:主要基于微观结构,认识到五种不锈钢类型:铁素体,马氏体,奥氏体,双链体和沉淀硬化。铁素体不锈钢中的主要问题是脆化的趋势,因各种原因而加剧。在焊接期间,对热输入的控制是必不可少的,在某些情况下,也是焊接热处理。奥氏体类型是最容易的焊接,但是两个重要问题涉及这些钢的焊接:热裂纹和碳化铬的形成和热暴露的其他二次相。从冶金角度讨论了问题和补救措施的性质。双相不锈钢含有大约等于奥氏体和铁氧体的比例。本文在焊接金属和热影响区域中焊接期间探讨了相平衡的扰乱,以及在任何热处理期间形成壁的次次相。马氏体不锈钢易受氢诱导的裂缝的影响。因此,焊接涉及在沉淀硬化不锈钢焊接中通过适当的预热选择,焊接热处理等许多预防措施来防止它。在焊接金属强度水平匹配的焊接金属强度水平中,通常需要开发。这是通过施加适合于每种类型的合金的焊接热处理来实现。

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