首页> 外文期刊>Science and Technology of Welding & Joining >Effect of carbon content on creep rupture strength and microstructure in heat affected zone of heat resistant ferritic steel: alleviation of decrease in creep rupture strength in heat affected zone of heat resistant ferritic steel
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Effect of carbon content on creep rupture strength and microstructure in heat affected zone of heat resistant ferritic steel: alleviation of decrease in creep rupture strength in heat affected zone of heat resistant ferritic steel

机译:碳含量对耐热铁素体钢热影响区蠕变断裂强度和显微组织的影响:减轻耐热铁素体钢热影响区蠕变断裂强度的降低

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The effect of the carbon content on the creep rupture strength and the microstructural change in weld heat affected zone (HAZ) during high temperature services was investigated in order to alleviate the decrease in the creep rupture strength in HAZ of heat resistant ferritic steels. The test specimens were prepared from 9Cr-3Co-3-W-V, Nb ferritic steel plates with carbon content ranging from 0˙005 to 0˙1%. After the simulated HAZ thermal cycle treatments at the peak temperature of 1273 K was applied on these specimens, creep rupture tests, aging tests and microstructural examinations were conducted. As a result, it was clarified that the creep rupture time of simulated HAZ became longer and the decrease in the creep rupture strength in HAZ was alleviated by decreasing the carbon content. Then the mechanism to explain the effect of the carbon content was discussed from a viewpoint of the growth of precipitates, such as M23C6 and MX, during long term heating.
机译:为了减轻耐热铁素体钢在热影响区中蠕变断裂强度的降低,研究了碳含量对高温服务期间焊缝热影响区(HAZ)的蠕变断裂强度和微观结构变化的影响。用9Cr-3Co-3-W-V,Nb铁素体钢板制备试样,碳含量为0˙005至0˙1%。在对这些样品进行了模拟的热影响区热循环处理(峰值温度为1273 K)之后,进行了蠕变断裂试验,老化试验和微观结构检查。结果表明,模拟的HAZ的蠕变断裂时间变长,并且通过降低碳含量减轻了HAZ中的蠕变断裂强度的降低。然后从长期加热过程中M 23 C 6 和MX等析出物的生长角度探讨了解释碳含量影响的机理。

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