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Microstructures, Heat Treatment, and Properties of Boron‐Alloyed Tool Steels

机译:硼合金工具钢的微观结构,热处理和性能

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摘要

> To enable the development of novel Fe–C–B–Cr and Fe–C–B–Cr–Mo cold work tool steels, the microstructures and hardness‐tempering behaviors of hypoeutectic laboratory melts are investigated. The results show that increasing Cr content enhances the thermodynamic stability of the ultrahard M 2 B borides. The formation of carboborides is suppressed by adjusting the B/(C?+?B) ratio, Cr content, and austenitization temperature. A secondary hardenability at 500?°C is achieved by Mo addition. In addition, Mo stabilizes the M 23 (C,B) 6 phase and at higher contents the M 3 B 2 boride. Based on these investigations, Fe0.4C1B–Cr alloys are designed which, inspired by the microstructure of the steel X153CrMoV12‐1, feature a α′‐Fe hardenable matrix but 15?vol% of eutectic M 2 B borides instead of M 7 C 3 for wear protection. The Fe0.4C1B–Cr steels are produced by casting and hot rolling as well as powder metallurgy and hot isostatic pressing. The (tribo‐) mechanical properties are investigated and compared with X153CrMoV12‐1. Fracture toughness, bending strength, wear resistance, and hardness of the novel Fe0.4C1B–Cr alloys are found to be similar or superior to the steel X153CrMoV12‐1, at decreased material cost.
机译: <第XML:ID =“SRIN201900416-SEC-0001”> > 为了实现新型Fe-C-B-Cr和Fe-C-B-Cr-Mo冷工具钢的开发,研究了低植物实验室熔体的微观结构和硬度浇灌行为。结果表明,增加Cr含量增强了超级仓的热力学稳定性 2 B硼胺。通过调节B /(C-+ + B)的比率,Cr含量和奥氏体化温度来抑制碳硼化物的形成。通过Mo加入实现500℃的二次淬透性。此外,Mo稳定了m 23 (c,b) 6 阶段和更高的内容M 3 B. 2 婆罗娘。基于这些研究,设计了Fe0.4C1B-Cr合金,其灵感来自钢X153Crmov12-1的微观结构,具有α'-Fe硬化基质,但共晶的α-FOR% 2 b borides而不是m 7 C 3 用于磨损保护。 Fe0.4c1b-cr钢由铸造和热轧以及粉末冶金和热等静压产生。研究(摩擦)机械性能,并与X153CRMOV12-1进行比较。裂缝韧性,新型Fe0.4C1B-Cr合金的抗骨骼韧性,抗弯强度,耐磨性和硬度都被发现与钢X153Crmov12-1相似或优于钢材成本。

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