Affiliation:
1. Rudny Industrial Institute
2. Karaganda State Industrial University
Abstract
One of ways to increase the strength of a structural material is to grind its microstructure to an ultra-fine-grained state. But with the simultaneous increase in strength properties in ultrafine materials, there is an inevitable decrease in its plastic properties. The use of metal materials with a gradient structure is an effective way to solve the problem of increasing the plasticity of metal products in general. This work is devoted to the study of the possibility of a gradient structure forming in austenitic stainless steel AISI-321 using radial-shear rolling. The results of the studies showed that the UFG-structure extends in the bar from its surface to a depth of at least a quarter of the radius of the bar. The transition zone is in the region between 0.5 R and 0.25 R of the bar section. Anything deeper is rolling texture. Due to the structural heterogeneity of the cross-section of the bar, there is a smooth drop in the micro-hardness of the central zone of the bar by 10.2 %. All this testifies to the gradient character of the structure formed in bars of AISI-321 steel deformed on the radial-shear rolling mill.
Publisher
Trans Tech Publications, Ltd.
Subject
Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics
Reference20 articles.
1. C.C. Koch, I.A. Ovid'ko, S. Seal, S. Veprek, Structural nanocrystalline materials: Fundamentals and applications, Cambridge, Cambridge University Press, (2007).
2. P. Verleysen, H. Lanjewar, Dynamic high pressure torsion: A novel technique for dynamic severe plastic deformation, Journal of Materials Processing Technology, 276 (2020) 116393.
3. P. Wang, T. Yin, S. Qu On the grain size dependent working hardening behaviors of severe plastic deformation processed metals, Scripta Materialia, 178 (2020) 171-175.
4. Y. Qi, A. Kosinova, A.R. Kilmametov, B.B. Straumal, E. Rabkin, Stabilization of ultrafine-grained microstructure in high-purity copper by gas-filled pores produced by severe plastic deformation, Scripta Materialia, 178 (2020) 29-33.
5. G.K. Manjunath, G.V. Preetham Kumar, K. Udaya Bhat, Evolution of Tribological Properties of Cast Al–10Zn–2Mg Alloy Subjected to Severe Plastic Deformation, Lecture Notes in Mechanical Engineering, 2020 165-175.
Cited by
8 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献