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EFFECT OF POSTWELD HEAT TREATMENT CONDITIONS ON MICROSTRUCTURE OF 9CR-1MO-V STEEL WELDS FOR PRESSURE VESSEL

机译:焊后热处理条件对压力容器用9CR-1MO-V钢焊缝组织的影响

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We investigated the effects of post-weld heat treatment conditions on the microstructure of the multi-pass submerged arc weld metal of 9Cr-1Mo-V steel used in pressure vessels. The microstructural properties were analyzed under three conditions (as-weld, Larson-Miller parameter (LMP) = 21.38 × 10~3, and LMP = 21.99 × 10~3). The precipitation behavior was observed using scanning electron microscopy, and the difference in precipitation behavior in the "as-welded" and "reheated" regions of the prepared multi-pass weld metal was clarified at the different LMP values. The precipitate was analyzed using scanning transmission electron microscopy. An oxide and two types of precipitates were identified, and a dislocation network pinned by MX-type carbides was visualized under the low-LMP condition. The effects of LMP on the effective grain size and dislocation amount were also evaluated using electron back-scattering diffraction. All microstructural change along the LMP had a positive effect on the toughness of weld metal.
机译:我们研究了焊后热处理条件对压力容器中9Cr-1Mo-V钢多道次埋弧焊金属组织的影响。在三种条件下分析了显微组织性能(按焊接条件,Larson-Miller参数(LMP)= 21.38×10〜3,LMP = 21.99×10〜3)。使用扫描电子显微镜观察到析出行为,并且在不同的LMP值下澄清了所制备的多道次焊接金属的“焊接”和“再加热”区域中的析出行为的差异。使用扫描透射电子显微镜分析沉淀物。鉴定出氧化物和两种沉淀物,并在低LMP条件下观察到由MX型碳化物钉扎的位错网络。还使用电子背散射衍射评估了LMP对有效晶粒尺寸和位错量的影响。沿着LMP的所有微观结构变化均对焊缝金属的韧性产生积极影响。

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