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首页> 外文期刊>Materials Characterization >Effects of W on creep behaviors of novel Nb-bearing high nitrogen austenitic heat-resistant cast steels at 1000 degrees C
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Effects of W on creep behaviors of novel Nb-bearing high nitrogen austenitic heat-resistant cast steels at 1000 degrees C

机译:W在1000摄氏度下新型NB高氮奥氏体耐热铸钢蠕变行为的影响

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摘要

Recently, there is an urgent demand from automotive industries to develop new austenitic heat-resistant cast steels that withstand exhaust gas temperatures as high as 1000 degrees C. In this study, the effect of W additions on the creep behavior of a series of Nb-bearing high nitrogen austenitic heat-resistant cast steels was investigated at 1000 degrees C and 50 MPa. Microstructures before and after creep rupture tests were carefully characterized to illustrate the microstructural evolution during creep deformation. Microstructural analyses revealed that the W addition did not affect the formation of primary Nb(C,N), whereas significantly promoted the precipitation of primary (Cr, W)-rich phases, particularly those cellular structures along grain boundaries. The W solid solution strengthening and the secondary precipitation strengthening of submicron-scale (Cr, W)-rich phase improved the creep resistance of the alloys through increasing the hardness of gamma-austenite and pinning the dislocations. However, the primary cellular (Cr, W)-rich structures significantly accelerated the nucleation and propagation of creep cracks along grain boundaries, thereby increasing the creep rate and decreasing the creep life.
机译:最近,汽车行业的迫切需要开发新的奥氏体耐热铸钢,可承受高达1000℃的废气温度。在本研究中,W添加对一系列NB的蠕变行为的影响在1000℃和50MPa下研究轴承高氮奥氏体耐热铸钢。仔细描述蠕变破裂试验前后的微观结构,以说明蠕变变形期间的微观结构演变。微观结构分析表明,W添加不影响原发性Nb(C,N)的形成,而显着促进了初级(Cr,W) - 阶段的沉淀,特别是沿晶界的细胞结构。通过增加γ-奥氏体的硬度并固定脱位,改善了亚微米(Cr,W)的亚微米(Cr,W)的二次沉淀强化改善了合金的蠕变性。然而,主要细胞(Cr,W)-RICH结构显着加速了沿晶界的蠕变裂缝的成核和传播,从而增加了蠕变率并降低了蠕变寿命。

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