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The Improvement of Stainless Steels Processing by Annealing

机译:退火改善不锈钢处理

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The paper presents a study about the structural modifications induced by heat treatment at the stainless steels, like AISI 321 and AISI 304, frequently used in industrial applications. The principal characteristic of these steels is their bigger corrosion resistance, conferred by chrome and nickel. The addiction of other elements is made for the improvement of corrosion resistance in humid environments (molybdenum and cooper), mechanical characteristics at low and high temperatures (tungsten, molybdenum, niobium and cobalt). The necessary condition to obtaining a high corrosion resistance is that all chrome content to be in forms of solid solution. The precipitation of carbides from solid solution causing a decrease under 12% of chrome content, the structure become bi-phase and the corrosion resistance decrease. For the improvement of machinability may be applied an annealing, with respect of all the treatment parameters, obtaining a micro-hardness decrease. The heating for annealing was made in an electric furnace, type UTTIS, with fixed hearth. The imposed heating speed was 10°C/minute. The decrease of micro-hardness by annealing, permit an easy processing for high alloy steels.
机译:本文提出了一种关于在不锈钢诱导通过热处理结构修饰的研究中,像AISI 321和AISI 304,经常在工业应用中使用。这些钢的主要特征是它们更大的耐腐蚀性,通过铬和镍赋予的。其它元素的成瘾用于在潮湿环境中(钼和铜),在低温和高温下(钨,钼,铌,钴等)的机械特性的耐腐蚀性的改善作出。的必要条件,以获得高的耐腐蚀性的是,所有的铬含量在固体溶液的形式。从固体溶液引起下铬含量的12%的减少碳化物的析出,该结构成为双相和耐腐蚀性降低。对于机械加工性的改善也可以应用于退火,相对于所有的治疗参数,从而获得微硬度降低。用于退火的加热是在一个电炉中制成,键入UTTIS,固定炉床。所施加的加热速度为10℃/分钟。显微硬度的通过退火减少,允许用于高合金钢的易加工。

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