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CALPHAD-based alloy design for advanced automotive steels - Part I: Development of bearing steels with enhanced strength and optimized microstructure

机译:先进汽车钢基于CALPHAD的合金设计-第一部分:具有增强的强度和优化的显微组织的轴承钢的开发

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摘要

Alloy design is of prime importance for automotive steels to achieve desired properties, such as strength, hardenability and wear resistance. In the present study, CALPHAD-based computational techniques have been successfully utilized to develop advanced steels for automotive applications. The first part of this series describes an integrated computational approach for the compositional modification of bearing steels. A conventional 100CrMn6 bearing steel has been precisely redesigned to achieve strength enhancement with optimized cementite size distribution. The strength of the modified bearing steel was further improved by the addition of 0.2 wt% V using fine vanadium carbide precipitates. Experimental verification of the calculated results confirmed the reliability of the computational method employed in this study. (C) 2016 Elsevier Ltd. All rights reserved.
机译:合金设计对于汽车钢实现所需的性能(例如强度,淬透性和耐磨性)至关重要。在本研究中,基于CALPHAD的计算技术已成功用于开发用于汽车应用的高级钢。本系列的第一部分描述了轴承钢成分改性的综合计算方法。对传统的100CrMn6轴承钢进行了精确的重新设计,以通过优化的渗碳体尺寸分布实现强度增强。通过使用细的碳化钒沉淀物添加0.2 wt%的V,可以进一步提高改性轴承钢的强度。对计算结果的实验​​验证证实了本研究中使用的计算方法的可靠性。 (C)2016 Elsevier Ltd.保留所有权利。

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