首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Factors Affecting Impact Toughness in Stabilized Intermediate Purity 21Cr Ferritic Stainless Steels and Their Simulated Heat-Affected Zones
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Factors Affecting Impact Toughness in Stabilized Intermediate Purity 21Cr Ferritic Stainless Steels and Their Simulated Heat-Affected Zones

机译:影响稳定中间纯度21Cr铁素体不锈钢及其模拟热影响区的影响韧性的因素

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The correlation between simulated weld heat-affected zone microstructures and toughness parameters has been investigated in four intermediate purity 21Cr ferritic stainless steels stabilized with titanium and niobium either separately or in combination. Extensive Charpy V impact toughness testing was carried out followed by metallography including particle analysis using electron microscopy. The results confirmed that the grain size and the number density of particle clusters rich in titanium nitride and carbide with an equivalent circular diameter of 2 mu m or more are statistically the most critical factors influencing the ductile-to-brittle transition temperature. Other inclusions and particle clusters, as well as grain boundary precipitates, are shown to be relatively harmless. Stabilization with niobium avoids large titanium-rich inclusions and also suppresses excessive grain growth in the heat-affected zone when reasonable heat inputs are used. Thus, in order to maximize the limited heat-affected zone impact toughness of 21Cr ferritic stainless steels containing 380 to 450 mass ppm of interstitials, the stabilization should be either titanium free or the levels of titanium and nitrogen should be moderated. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:已经在四种中间纯度21Cr铁素体不锈钢中研究了模拟焊接热影响区域微结构和韧性参数之间的相关性。分别或组合稳定用钛和铌稳定。进行了广泛的夏比V碰撞韧性试验,然后进行了包括使用电子显微镜的颗粒分析的金相。结果证实,粒度和粒子簇的数量密度富含氮化钛和等效圆直径为2μm或更高的碳化物是统计学上的最关键因素,影响韧性至脆化转变温度。其他夹杂物和颗粒簇以及晶界沉淀物被证明是相对无害的。用铌稳定避免了富含富含钛的夹杂物,并且在使用合理的热输入时,还抑制了热影响区域中的过度晶粒生长。因此,为了最大化含有380至450质量ppm的间质性的21Cr铁素体不锈钢的有限热影响区域的冲击韧性,稳定应是无钛的或钛和氮的水平应进行调节。 (c)2017年矿物质,金属和材料协会和ASM国际

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