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首页> 外文期刊>Journal of Materials Research and Technology >Effect of nickel-based filler metal types on creep properties of dissimilar metal welds between Inconel 617B and 10% Cr martensitic steel
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Effect of nickel-based filler metal types on creep properties of dissimilar metal welds between Inconel 617B and 10% Cr martensitic steel

机译:镍基填料金属类型对617B和10%Cr马氏体钢的不同金属焊缝蠕变性能的影响

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摘要

Creep rupture behaviors of dissimilar metal welds (DMWs) between Inconel 617B and 10% Cr martensitic steel with two different filler metals Inconel 617 and 82 were comparatively investigated at 600 °C to study the effect of nickel-based filler metal types on creep properties. Both the crept DMWs ruptured on the steel side prematurely compared to steel base metal (BM). The failure mode of DMW shifts from interfacial failure at weld metal (WM)/ steel interface to Type Ⅳ crack in the intercritical heat-affected zone (ICHAZ) of steel with longer rupture life at the same creep condition by replacing Inconel 617 filler metal with Inconel 82. Type Ⅳ crack was related to matrix softening and fine prior austenite grain boundaries (PAGBs) scarcely decorated by precipitates in the ICHAZ. Interfacial failure was controlled by creep voids nucleation, growth and coalescence at the interface, while oxide notch only triggered crack initiation. The failure mode shift is because Inconel 82 filler metal compared to Inconel 617 can achieve slighter creep deformation concentration in the HAZ closely adjacent to interface and avoid interfacial failure of the DMW due to the lower creep strength gradient across the interface it induced. Based on this study, creep strength compatibility should be considered when selecting nickel-based filler metals for similar DMWs to obtain prolonged creep life.
机译:在617b和10%Cr马氏体钢之间的异种金属焊接(DMWs)的蠕变破裂行为在600℃下进行了两种不同的填料金属的817和82,研究了镍基填充金属类型对蠕变性质的影响。与钢基础金属(BM)相比,爪子均在钢侧破裂。 DMW在焊接金属(WM)/钢界面的界面故障转移到钢中的界面故障转变为ⅳ横裂,在钢的跨临界热影响区域(ICHAZ)中,通过更换617个填充金属,在相同的蠕变条件下寿命更长的寿命Inconel 82.Ⅳ型裂缝与基质软化,细微奥氏体晶界(PAGBS)与ICHAZ中沉淀物无关。界面失效由裂缝空隙核心成核,生长和聚结控制,而氧化物凹口仅引发裂纹启动。失效模式移位是因为与Inconel 617相比的82个填充金属的Inconel,可以在与界面紧密相邻的HAZ中实现较小的蠕变变形浓度,并避免由于其诱导的界面上的较低蠕变强度梯度导致DMW的界面故障。基于该研究,应在选择类似DMW的镍基填充金属时考虑蠕变强度相容性,以获得延长的蠕变寿命。

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