Effect of thermomechanical processing of building stainless wire to increase its durability

被引:24
作者
Volokitina, Irina [1 ]
Volokitin, Andrey [1 ]
Denissova, Anastasia [1 ]
Fedorova, Tatiana [1 ]
Lawrinuk, Dmitry [1 ]
Kolesnikov, Alexandr [2 ]
Yerzhanov, Almas [1 ]
Kuatbay, Yerbol [1 ]
Liseitsev, Yury [3 ]
机构
[1] Karaganda State Ind Univ, Dept Met forming, Republ Ave 30, Temirtau 101400, Kazakhstan
[2] M Auezov South Kazakhstan Univ, Dept Life Safety & Environm Protect, Tauke Khan Ave, 5, Shymkent 160012, Kazakhstan
[3] Far Eastern Fed Univ, Vladivostok 690922, Russia
关键词
Drawing; Mechanical properties; Microstructure; Stainless steel; Thermomechanical treatment; Wire; MECHANICAL-PROPERTIES; MICROSTRUCTURE; DEFORMATION; EVOLUTION; BEHAVIOR; STEEL; COLD;
D O I
10.1016/j.cscm.2023.e02346
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A traditional use of high cumulative reduction ratios is not effective for manufacturing wire with high performance and mechanical properties, since cold plastic deformation reduces the wire diameter, while hot deformation has its own limitations. Thus, thermomechanical treatment of rolled steel has a huge potential to reduce costs and improve product quality when used in the construction industry. Such processing allows metalworking industries to increase the economic effect due to a more complete satisfaction of the requirements for the mechanical properties of finished rolled products. The article developed a new technology for thermomechanical processing of stainless steel wire, consisting of preliminary heat treatment to obtain an austenitic structure and traditional drawing followed by cryogenic cooling. As a result of such treatment, an ultrafine-grained structure was obtained, consisting of a mixture of austenite and & alpha;-martensite, with high strength and plastic properties. To analyze the features of the obtained microstructures, modern methods of metallographic analysis were used, such as scanning electron microscopy, transmission electron microscopy, and analysis of backscattered electron diffraction patterns. The microstructure is obtained after deformation at both temperatures and consists of a mixture of & alpha;-martensite and austenite. A structure with an average grain size of 0.5 & mu;m was obtained by drawing using cryogenic cooling, and a microstructure of 1 & mu;m was obtained at room temperature. The results obtained allow us to expect an increase in the performance and durability of stainless steel wire, which can be used for various purposes.
引用
收藏
页数:8
相关论文
共 59 条
[1]   Evaluation of Mode II Fracture Toughness of Hybrid Fibrous Geopolymer Composites [J].
Abid, Sallal R. ;
Murali, Gunasekaran ;
Amran, Mugahed ;
Vatin, Nikolai ;
Fediuk, Roman ;
Karelina, Maria .
MATERIALS, 2021, 14 (02) :1-14
[2]   Electrical, Corrosion, and Mechanical Properties of Aluminum-Copper Joints Produced by Explosive Welding [J].
Acarer, Mustafa .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2012, 21 (11) :2375-2379
[3]   Long-term durability properties of geopolymer concrete: An in-depth review [J].
Amran, Mugahed ;
Al-Fakih, Amin ;
Chu, S. H. ;
Fediuk, Roman ;
Haruna, Sani ;
Azevedo, Afonso ;
Vatin, Nikolai .
CASE STUDIES IN CONSTRUCTION MATERIALS, 2021, 15
[4]   Palm Oil Fuel Ash-Based Eco-Efficient Concrete: A Critical Review of the Short-Term Properties [J].
Amran, Mugahed ;
Murali, Gunasekaran ;
Fediuk, Roman ;
Vatin, Nikolai ;
Vasilev, Yuriy ;
Abdelgader, Hakim .
MATERIALS, 2021, 14 (02) :1-33
[5]  
ANGEL T, 1954, J IRON STEEL I, V177, P165
[6]   Severe Plastic Deformation and Thermomechanical Processing: Nanostructuring and Properties [J].
Bachmaier, Andrea ;
Grosdidier, Thierry ;
Ivanisenko, Yulia .
METALS, 2020, 10 (10)
[7]   Influence of heat treatment on the microstructure of steel coils of a heating tube furnace [J].
Bazhin, Vladimir Yu. ;
Issa, Bashar .
JOURNAL OF MINING INSTITUTE, 2021, 249 :393-400
[8]   Influence of interfacial structure development on the fracture mechanism and bond strength of aluminum/copper bimetal plate [J].
Chen, Chih-Yuan ;
Chen, Hao-Long ;
Hwang, Weng-Sing .
MATERIALS TRANSACTIONS, 2006, 47 (04) :1232-1239
[9]  
Chukin M., 2012, Pat. RF
[10]   Forming ultrafine-grain structure in steel wire by continuous deformation [J].
Chukin M.V. ;
Korchunov A.G. ;
Polyakova M.A. ;
Emaleeva D.G. .
Steel in Translation, 2010, 40 (06) :595-597