首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Fatigue Crack Growth Rate in Low △K Range according to the Microstructure and Temperature in P122 Alloy Weldment
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Fatigue Crack Growth Rate in Low △K Range according to the Microstructure and Temperature in P122 Alloy Weldment

机译:P122合金焊缝组织和温度的低△K值下疲劳裂纹扩展速率。

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摘要

There exists strong environmental and economic pressure to increase the thermal efficiency of fossil fuel power stations and this has led to a steady increase in operating temperature and pressure resulting in the world wide construction plans for ultra super-critical power plants. Consequently, in order to improve the thermal efficiency of power plant, there has been a strong drive to develop more advanced heat resistant steels with excellent creep, high temperature fatigue and thermal fatigue resistant properties as well as superior oxidation and corrosion resistant properties. In this study, the test material was P122 alloy which was developed for ultra super-critical power plant. To measure the fatigue crack growth rate in low △K range, fatigue tests were performed on the P122 alloy welds by △K decreasing method at three different microstructure (Base metal, HAZ, Weld metal) regions. Microstructure observation and micro-hardness tests performed for all three regions to find the relationship among the crack growth rate, microstructure and hardness. Fatigue tests were performed with compact tension specimens at 600℃, 650℃ and 700℃ at the loading frequency of 20Hz.
机译:存在提高化石燃料发电站的热效率的强大的环境和经济压力,这导致运行温度和压力稳定增加,从而导致了超超临界发电厂的全球建设计划。因此,为了提高发电厂的热效率,强烈地要求开发更高级的耐热钢,该钢具有优异的蠕变,高温疲劳和耐热疲劳性能以及优异的抗氧化和腐蚀性能。在这项研究中,测试材料是为超超临界电厂开发的P122合金。为了测量低△K范围内的疲劳裂纹扩展率,采用△K减小法对P122合金焊缝进行了三种不同组织(贱金属,热影响区,焊接金属)区域的疲劳试验。对这三个区域进行了显微组织观察和显微硬度测试,以发现裂纹扩展速率,显微组织和硬度之间的关系。用紧凑型拉伸试样在20Hz的加载频率下分别于600℃,650℃和700℃进行疲劳试验。

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