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Effect of Nitrogen Addition on Microstructure and Mechanical Properties of As-Cast High-Chromium Cast Iron Containing Niobium

机译:氮肥对含铌铸铁微观结构和力学性能的影响

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摘要

This work was conducted to study the effect of four different nitrogen additions on as-cast microstructure, hardness and impact toughness as well as abrasion wear resistance of high-Cr cast iron containing niobium. The results showed that as nitrogen content increased, the austenitic dendrites matrix became less elongated and the eutectic M(7)C(3)carbides were gradually refined in size. EDS analysis demonstrated that N element preferentially accumulated in the NbC particles and substitute part of C to form Nb nitrides (NbN) or Nb cabonitrides Nb(C,N). Such nitrides or carbonitride particles were relatively hard compared to matrix and eutectic carbides resulting in an increase in hardness with increasing N content. The optimum toughness (12 J) was obtained for the iron containing 0.093 wt%N with an enhancement of 33%. The wear resistance increased with increasing N addition, in which the maximum wear resistance was reported for the alloy containing 0.15 wt% N. There was an enhancement in wear resistance of 47% by adding 0.15 wt%N to HCCI at low applied load (30 N), and it decreased to 17.5% at high applied load (60 N). Hence, the highest wear resistance and moderate toughness of HCCI could be achieved by adding 0.15 wt%N.
机译:进行了这项工作以研究四种不同的氮气添加对含有铌的高Cr铸铁的耐磨性,硬度和冲击韧性的影响。结果表明,随着氮含量的增加,奥氏体树突基质变得较小,并逐渐精制了共晶M(7)C(3)碳化物。 EDS分析证明,N个元素优先在NBC颗粒中累积,并替代C的一部分以形成Nb氮化物(NBN)或Nb山硝化物Nb(C,N)。与基质和共晶碳化物相比,这种氮化物或碳氮化物颗粒相对较硬,导致含量增加的硬度增加。获得含有0.093wt%N的铁的最佳韧性(12J),增强33%。随着N添加增加,耐磨性增加,其中报道了含有0.15wt%N的合金的最大耐磨性。通过在低施加的载荷下向HCCI加入0.15wt%n至Hcci,耐磨性的增强(30 n),高施加负荷下降至17.5%(60 n)。因此,通过加入0.15wt%n可以实现HCCI的最高耐磨性和中等韧性。

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