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Design for Novel Hot-Work Die Steel by Thermodynamic Calculation and Microstructural Examination

机译:热力学计算和微观结构检查新型热工作模具钢设计

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摘要

In this paper, a new type of hot-work die steel with excellent high-temperature mechanical properties at 700 °C was designed based on the traditional 25Cr3Mo3NiNb steel with the help of Thermo-calc software. The effects of C, Cr, Mo, W and V on the types and mass fractions of carbides were studied. Phase diagram calculation revealed that with the increase of V and W contents and the decrease of Cr content, the precipitation temperature and the mass fraction of M23C6 carbides decreased. Meanwhile, the mass fraction of MC carbides increased as the Mo content decreased. Based on the thermodynamic calculation, new material 25Cr3Mo2NiWVNb steel was designed. Compared to the 25Cr3Mo3NiNb steel, more finely dispersed MC and M2C carbides with high thermal stability, as well as fewer M23C6 carbides with low thermal stability, were precipitated in the new steel. The high-temperature tensile showed that the new steel showed high thermal stability and strength even at 700 °C. The high-temperature strengthening effect might be ascribed to the fine and stable nano-scale MC and M2C carbides which precipitated during tempering.
机译:本文采用热量计算器软件,设计了一种新型的高温机械性能,以700°C为基于传统的25Cr3mo3Ninb钢,设计了新型的高温机械性能。研究了C,Cr,Mo,W和V对碳化物类型类型和质量分数的影响。相图计算显示,随着V和W含量的增加和Cr含量的降低,析出温度和M23C6碳化物的质量分数降低。同时,随着MO含量降低,MC碳化物的质量分数增加。基于热力学计算,设计了新材料25Cr3mo2niwvnb钢。与25Cr3MO3NinB钢相比,在新钢中沉淀出具有高热稳定性的更精细分散的MC和M2C碳化物,以及具有低热稳定性的M23C6碳化物。高温拉伸表明,即使在700℃下,新钢也显示出高热稳定性和强度。高温强化效果可能归因于在回火期间沉淀的细且稳定的纳米级MC和M2C碳化物。

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