...
首页> 外文期刊>Journal of Materials Engineering and Performance >Composition Optimization and Experimental Characterization of a Novel Steel Based on CALPHAD
【24h】

Composition Optimization and Experimental Characterization of a Novel Steel Based on CALPHAD

机译:基于CALPHAD的新型钢成分优化与实验表征

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A new steel with high Cr and low W, Mo contents for forged cold work roll was designed based on the composition system of traditional high-speed steel roll. The Fe-C isopleths of the steel and the mass fraction of equilibrium phases versus temperature were calculated by Thermo-Calc, and the effects of different alloying elements (W, Mo, Cr, V) on austenite, ferrite, and carbides (MC, M6C, M7C3, M23C6) were also established to optimize the composition and structure. The designed and optimized specimens were both quenched at 1100 degrees C and then tempered twice at 560 degrees C. The hardness and wear resistance of the samples were measured. The microstructures of quenched tempered and forged specimens were studied. The results show that ferrite crystallization, peritectic reaction, austenite crystallization, and the precipitation of MC, M6C, M7C3, M23C6 occur during equilibrium solidification process. The alloying elements W, Mo mainly affect the precipitation of M6C, while Cr affects the precipitated region and mass fraction of M7C3. Higher V content widens the high-temperature region of the peritectic reaction and results in a large amount of MC precipitation. The optimized composition (wt.%) for cold work roll steel is 1.30-1.35% C, 9-10% Cr, 2.53.0% Mo, 0.5-1.0% W, 2.5-3.0% V, 0.5-0.6% Mn, 0.5-0.6% Si. The hardness of the steel after quenching and tempering is 60.8 HRC and weight loss after 120 min is 6.2 mg. This meets the requirement of hardness and wear resistance requirements for cold work roll. The ledeburite in the optimized steel disappears after forging and the carbide network break into a large amount of tiny blocky ones dispersed in the matrix without cracks, which shows a good forgeability of the steel and rationality of the optimized composition.
机译:在传统高速钢轧辊成分体系的基础上,设计了一种高Cr低W,Mo含量的新型锻造冷轧辊钢。通过Thermo-Calc计算出钢的Fe-C等值线以及平衡相的质量分数随温度的变化,以及不同合金元素(W,Mo,Cr,V)对奥氏体,铁素体和碳化物(MC,还建立了M6C,M7C3,M23C6以优化组成和结构。设计和优化的样品均在1100摄氏度下淬火,然后在560摄氏度下回火两次。测量了样品的硬度和耐磨性。研究了淬火回火和锻造试样的显微组织。结果表明,在平衡凝固过程中发生了铁素体结晶,包晶反应,奥氏体结晶以及MC,M6C,M7C3,M23C6的析出。合金元素W,Mo主要影响M6C的析出,而Cr影响M7C3的析出区域和质量分数。较高的V含量会扩大包晶反应的高温区域,并导致大量的MC沉淀。冷作轧钢的最佳成分(wt。%)为1.30-1.35%C,9-10%Cr,2.53.0%Mo,0.5-1.0%W,2.5-3.0%V,0.5-0.6%Mn, 0.5-0.6%的硅。淬火和回火后钢的硬度为60.8 HRC,120分钟后的失重为6.2 mg。这满足了冷作轧辊的硬度和耐磨性要求。优化后的钢中的莱氏体在锻造后消失,碳化物网络破裂成大量细小的块状颗粒,分散在基体中而无裂纹,这表明钢具有良好的可锻性和优化后的成分合理性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号