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EFFECT OF HEAT TREATMENT ON THE MICROSTRUCTURE AND PROPERTIES OF 9Cr2WVTa REDUCED ACTIVATION STEELS

机译:热处理对9Cr2WVTA减少活化钢的微观结构和性能的影响

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The creep property of 9Cr2WVTa reduced activation steels (RAS) was studied after the optimized heat treatment, which was chosen based on the microstructure and tensile property under different heat treatment process. The microstructure and tensile fracture surfaces were observed by optical microscopy (OM) and SEM. The results show that there were significantly difference in the microstructure and tensile property of the 9Cr2WVTa RAS after different heat treatment process. According to the assessment method of static toughness, the optimized heat treatment process was chosen, which got the best static toughness on the promise of good ductility. The minimum creep rate and creep life of 9Cr2WVTa RAS under the optimized heat treatment was analyzed, the results show that the stress exponent was 27, indicating the dislocation creep mechanism. By using the extrapolation, the creep limit was estimated to be 209MPa when the minimum creep rate was 10~(-7)%/h at 813K, which was comparable to EUROFER steels.
机译:在优化的热处理后,研究了9Cr2WVTA减小活化钢(Ras)的蠕变性能,其基于不同热处理过程中的微观结构和拉伸性能选择。通过光学显微镜(OM)和SEM观察微观结构和拉伸裂缝表面。结果表明,在不同热处理过程中9Cr2WVTA Ras的微观结构和拉伸性能显着差异。根据静态韧性的评估方法,选择了优化的热处理过程,这对良好延展性的承诺得到了最佳的静态韧性。分析了9Cr2WVTA Ras的最小蠕变率和蠕变寿命,结果表明,应力指数为27,表明位错蠕变机制。通过使用外推,当最小蠕变率为10〜( - 7)%/ h时估计蠕变极限为209MPa,在813K中,与Eurofer Steels相当。

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