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REHEAT CRACKING SENSITIVITY OF CGHAZ IN VANADIUM-MODIFIED 2.25CR1MO WELDS

机译:钒修饰的2.25CR1MO焊条中CGHAZ的再热裂解敏感性

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Over the past few years, some reheat cracks have been detected in the welding coarse grained heat affected zones (CGHAZ) of Vanadium-modified (V-mod) 2.25CrlMo reactor. Focusing on this problem, a series of Gleeble high temperature tensile tests were carried out on the simulation CGHAZ specimens of V-mod 2.25CrlMo at different temperature and strain rate, the reheat cracking sensitivity of CGHAZ has been assessed according to the reduction of area (RoA) of the specimens. Microstructural observation, hardness test and fractographic analysis also have been employed to ascertain possible causes for the effects of temperature and strain rate on the reheat cracking sensitivity. The results of tests show that the reheat cracking sensitivity of CGHAZ increases with a decreasing strain rate, it first increases and then decreases with a rising test temperature. The RoA presents a minimum value around 675 °C, corresponding to the most sensitive temperature to reheat cracking. The comprehensive analysis reveals that the ductility of the simulated CGHAZ at elevated temperature is closely related to the tensile strength and the hardness of fractured tensile specimen. In the intermediate temperature range or at a slower strain rate, a relatively high hardness and relatively low tensile strength together results in a low RoA of the specimen and high reheat cracking sensitivity of CGHAZ metal.
机译:在过去的几年中,在钒改性(V-mod)2.25CrlMo反应堆的焊接粗粒热影响区(CGHAZ)中发现了一些再热裂纹。针对这一问题,在不同温度和应变速率下,对V-mod 2.25CrlMo的CGHAZ模拟试样进行了一系列的Gleeble高温拉伸试验,根据面积的减小来评估CGHAZ的再热开裂敏感性( RoA)的标本。显微组织观察,硬度测试和分形分析也已被用来确定温度和应变速率对再热开裂敏感性的影响的可能原因。试验结果表明,CGHAZ的再加热开裂敏感性随应变率的降低而增加,随温度的升高先升高后降低。 RoA的最小值约为675°C,对应于对再热裂解最敏感的温度。综合分析表明,模拟的CGHAZ在高温下的延展性与断裂拉伸试样的拉伸强度和硬度密切相关。在中等温度范围或较低的应变速率下,较高的硬度和较低的拉伸强度共同导致样品的RoA较低,而CGHAZ金属的再加热裂纹敏感性较高。

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