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Influence of high pressure normalizing heat treatment on microstructure and creep strength of high Cr steels

机译:高压正火热处理对高Cr钢组织和蠕变强度的影响

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摘要

Chromium is an effective element for improvement in the oxidation resistance of steels. However, chromium addition to ferritic creep resistant steel is restricted to around 9-10 wt.%, since excess addition of chromium results in formation of delta-ferrite which decreases creep strength and toughness. In this study, influence of normalizing heat treatment under high pressure on microstructure and creep strength has been investigated in a steel containing 15 wt.% of chromium, since austenite single phase region is extended up to about 20 wt.% of chromium under high pressure of about 4 GPa. In contrast to a ferritic microstructure of the steel normalized under atmospheric pressure of 100 kPa, the martensitic one was found in steel normalized under high pressure of 4 GPa. Hardness in the as tempered condition of the steels subjected to normalizing heat treatment at 1273 and 1173 K under 4 GPa was 290 and 289 HV, respectively. This is significantly higher than the value of 182 HV for the steel normalized at 1273 K under atmospheric pressure of 100 kPa. Creep rate of the steel normalized under high pressure of 4 GPa was significantly smaller than that of the steel normalized under pressure of 100 kPa. It has been concluded that high pressure normalizing heat treatment is effective to suppress a formation of delta-ferrite and to improve both creep strength and oxidation resistance.
机译:铬是改善钢的抗氧化性的有效元素。然而,将铬添加到铁素体抗蠕变钢中的含量限制在9-10重量%左右,因为过量添加铬会导致形成δ铁素体,从而降低蠕变强度和韧性。在这项研究中,由于在高压下奥氏体单相区可扩展到约20 wt。%的铬,因此对含15 wt。%铬的钢进行了高压正火热处理对组织和蠕变强度的影响的研究。约4 GPa。与在100 kPa的大气压下归一化的钢的铁素体显微组织相反,在4 GPa的高压下归一化的钢中发现了马氏体。在4 GPa下于1273 K和1173 K进行正火热处理的钢在回火条件下的硬度分别为290和289 HV。这大大高于在100 kPa的大气压下归一化为1273 K的钢的182 HV的值。在4 GPa的高压下归一化的钢的蠕变速率明显小于在100 kPa的压力下归一化的钢的蠕变速率。已经得出结论,高压正火热处理对于抑制δ-铁素体的形成并改善蠕变强度和抗氧化性都是有效的。

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