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Precipitation Characterization and Creep Strength at 600°C for Creep Resistant Cr-Mo Steel

机译:600℃下的沉淀表征和蠕变强度用于抗蠕变CR-MO钢

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摘要

The creep strength of 5Cr-0.5Mo steel was determined at 600°C and 78-170 MPa, as well as its relation to the microstructural changes during the creep tests. The microstructural characterization showed that the creep tests were conducted under the presence of a mixture of both intergranular and intragranular M7C3 and M_(23)C_6 carbides dispersed in the ferrite matrix. The n exponent of Norton-Bailey law suggested that the creep deformation process occurred through the ferrite grains, which conducted to a transgranu-lar ductile- fracture mode after creep testing. The creep strength of this steel is directly related to the average radius and number density of carbides present during the test. The ferrite grain size of 5 μm seemed to cause an enhancement of the creep strength for this steel in comparison to that of other similar steels reported in the literature.
机译:5Cr-0.5mo钢的蠕变强度在600℃和78-170MPa处测定,以及其与蠕变试验期间的微观结构变化的关系。微观结构表征显示蠕变试验在晶间和腔内M7C3和分散在铁氧体基质中分散在铁氧体基质中的M_(23)C_6碳化物的混合物的存在下进行。 Norton-Bailey法的N指数表明,蠕变变形过程通过铁氧体晶体发生,该颗粒在蠕变试验后进行到ransgranu-Lar延性模式。该钢的蠕变强度与试验期间存在的碳化物的平均半径和数量密度直接相关。与文献中报道的其他类似钢的相比,铁氧体晶粒尺寸为5μm似乎引起这种钢的蠕变强度。

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