Capability Process Assessment of Radial-Displacement Rolling of Heat-Resistant Alloy HN73MBTYU

被引:9
作者
Patrin P.V. [1 ]
Karpov B.V. [1 ]
Aleshchenko A.S. [1 ]
Galkin S.P. [1 ]
机构
[1] National University of Science and Technology NUST MISIS, Moscow
关键词
heat resistance; heat-resistant alloy; macro- and microstructures; mechanical properties; quality; radial-displacement rolling;
D O I
10.3103/S096709122001009X
中图分类号
TG2 [铸造];
学科分类号
080201 ; 080503 ;
摘要
Abstract—: The paper presents an experimental study on the technological capabilities of radial-displacement rolling of small diameter rods. These are made of heat-resistant alloy HN73MBTYU on pilot mills MISIS specifying the ingot rolling schedule with a diameter of 60 mm for a 22-mm-diameter rod. The following was conducted: a quality assessment of the rod obtained, as well as a compliance with the requirements of the current normative and technical documentation. The production possibility of small diameter rods of HN73MBTYU alloy from ingots with a 60-mm diameter that meets the technical documentation requirements, with the use of technology and radial displacement rolling mills, has been proved. The tested technological solutions have a high degree of readiness for industrial introduction in mini- and micro-metallurgical plant environment. © 2020, Allerton Press, Inc.
引用
收藏
页码:42 / 45
页数:3
相关论文
共 18 条
[11]  
Naizabekov A.B., Lezhnev S.N., Dyja H., The effect of cross rolling on the microstructure of ferrous and non-ferrous metals and alloys, Metalurgija, 56, pp. 199-202, (2017)
[12]  
Sheremetyev V., Kudryashova A., Dubinskiy S., Structure and functional properties of metastable beta Ti–18Zr–14Nb (at %) alloy for biomedical applications subjected to radial shear rolling and thermomechanical treatment, J. Alloys Compd, 737, pp. 678-683, (2018)
[13]  
Karpov B.V., Patrin P.V., Galkin S.P., Radial-shear rolling of titanium alloy VT-8 bars with controlled structure for small diameter ingots (≤200 mm), Metallurgist, 61, pp. 884-890, (2018)
[14]  
Karpov B.V., Skripalenko M.M., Galkin S.P., Studying the nonstationary stages of screw rolling of billets with profiled ends, Metallurgist, 61, pp. 257-264, (2017)
[15]  
Vol'Ratkh K., Production of round rolling using three-roll mills, Chern. Met., 12, pp. 23-24, (2004)
[16]  
Nussbaum G., Kramer W., Bittner G., Schnell G., Erfahrungen und Ergebnisse nach dreijahrigem Betrieb eines 3-Walzen-Reduzier- und Kalibrierblocks, Stahl Eisen, 126, pp. 27-36, (2006)
[17]  
Radyuchenko Y.S., Rotatsionnaya Kovka (Rotational Forging), (1962)
[18]  
Andreev V.A., Yusupov V.S., Perkas M.M., Prosvirnin V.V., Shelest A.E., Prokoshkin S.D., Khmelevskaya I.Y., Korotitskii A.V., Bondareva S.A., Karelin R.D., Mechanical and functional properties of commercial alloy TN-1 semiproducts fabricated by warm rotary forging and ECAP, Russian Metallurgy (Metally), 2017, 10, pp. 890-894, (2017)