淬火配分次数对cmalsi淬火配分钢奥氏体稳定性和拉伸性能的影响

IF 2.2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Engineering and Performance Pub Date : 2024-10-23 DOI:10.1007/s11665-024-10310-2
Chintada Umasankar, Apoorv Sobti, S. Sankaran, Uday Chakkingal
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引用次数: 0

摘要

淬火和划分(Q&;P)钢已成为汽车应用中极具前景的竞争者,因为它们通过与残余奥氏体(RA)相关的转化诱导塑性实现了高强度和延展性的卓越混合。因此,确保精确剪裁RA含量和形态对Q&钢至关重要。本研究旨在研究淬火和分配次数对0.26C-1.87Mn-0.99Al-0.45Si钢热轧直接淬火和分配(DQP)后RA稳定性和力学性能的影响。本研究介绍了一种新的基于微观结构的方法,用于确定最佳淬火和分配时间,以实现由马氏体板条之间的板条间奥氏体薄膜组成的微观结构。淬火时间较长的DQP钢表现出较小尺寸的块状RA岛。另一方面,淬火时间越短,微观组织中RA含量越高,且RA以膜状RA为主,并伴有小尺寸块状RA岛。这导致了优异的机械性能组合(UTS为1250±39 MPa, %伸长率为16%)。拉伸后的微观结构也用透射电镜检查,薄膜型RA似乎更耐应变诱导转变。
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Influence of Quenching and Partitioning Times on Austenite Stability and Tensile Properties of CMnAlSi Quenching and Partitioning Steel

Quenching and partitioning (Q&P) steels have emerged as highly promising contenders for automotive applications due to their exceptional blend of high strength and ductility, achieved through transformation-induced plasticity associated with retained austenite (RA). Hence, ensuring precise tailoring of RA content and morphology is crucial for Q&P steels. The present investigation aims to study the effect of quenching and partitioning times on RA stability, and the mechanical properties of 0.26C-1.87Mn-0.99Al-0.45Si steel subjected to hot rolling followed by direct quenching and partitioning (DQP). This present research introduces a new microstructural-based approach for identifying the optimal quenching and partitioning times to achieve a microstructure comprising of thin films of inter-lath austenite between martensite laths. DQP steels with longer quenching time exhibit blocky RA islands of smaller sizes. On the other hand, with a shorter quenching time, the microstructure contains a larger fraction of RA with higher carbon content, and this RA is predominantly film type along with small-sized blocky RA islands. This results in an excellent combination of mechanical properties (UTS of 1250 ± 39 MPa and % elongation to failure of 16%). The post-tensile microstructures were also examined using transmission electron microscopy, and film-type RA appears more resistant to strain-induced transformation.

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来源期刊
Journal of Materials Engineering and Performance
Journal of Materials Engineering and Performance 工程技术-材料科学:综合
CiteScore
3.90
自引率
13.00%
发文量
1120
审稿时长
4.9 months
期刊介绍: ASM International''s Journal of Materials Engineering and Performance focuses on solving day-to-day engineering challenges, particularly those involving components for larger systems. The journal presents a clear understanding of relationships between materials selection, processing, applications and performance. The Journal of Materials Engineering covers all aspects of materials selection, design, processing, characterization and evaluation, including how to improve materials properties through processes and process control of casting, forming, heat treating, surface modification and coating, and fabrication. Testing and characterization (including mechanical and physical tests, NDE, metallography, failure analysis, corrosion resistance, chemical analysis, surface characterization, and microanalysis of surfaces, features and fractures), and industrial performance measurement are also covered
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