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首页> 外文期刊>Metallurgist >'BAINITIC REFINEMENT' OF MACHINE STEELS MICROALLOYED WITH VANADIUM AND NITROGEN
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'BAINITIC REFINEMENT' OF MACHINE STEELS MICROALLOYED WITH VANADIUM AND NITROGEN

机译:用钒和氮气微合金化的机钢“贝氏体细化”

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摘要

The effect of microalloying additions of N, V, Ti, Al, and Nb on structure formation and properties of medium-carbon steels alloyed mainly with chromium (30Kh2AF-40Kh2FABT type) is considered. Steel microalloying makes it possible to provide marked austenite structure refinement due to grain growth limitation by (Ti, V)N particles, retardation of austenite recrystallization and grain growth during stamping by Nb(C, N) particles (and Nb in solid solution), which leads to the formation of a fine final steel structure, as a result of which there is improvement of both strength properties and impact strength. Steel of the class in question may be produced by economic controlled stamping technology with cooling from rolling heating and subsequent tempering instead of heat treatment with quenching and separate heating and tempering. As a result, a unique set of properties is achieved: mechanical properties, brittle failure resistance, corrosion resistance, seismic resistance, fire resistance of long rolled product, building structure components, engineering components, oil recovery equipment, etc.
机译:考虑微合金加入N,V,Ti,Al和Nb的影响和主要用铬(30kH2AF-40kH2Fabt型)合金化的中碳钢的结构形成和性质。钢微合金化使得可以提供由于(Ti,V)N颗粒的晶粒生长限制而提供标记的奥氏体结构细化,奥氏体重结晶的延迟和通过Nb(C,N)颗粒(固体溶液中的NB)的冲压期间抑制奥氏体重结晶和晶粒生长。这导致形成精细的最终钢结构,因此有强度性能和冲击强度的提高。有问题的钢钢可以通过经济控制冲压技术产生,通过轧制加热和随后的回火而不是热处理和单独的加热和回火来生产。结果,实现了独特的性能:机械性能,脆性损失阻力,耐腐蚀,抗震性,长轧制产品的耐火性,建筑结构部件,工程部件,石油回收设备等。

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