Interface Structure Change and Carbon Diffusion of Stainless Steel-Carbon Steel-Laminated Composite under High-Temperature Condition

被引:2
作者
Li, Hao [1 ]
Zhang, Qingdong [2 ]
Yu, Mingyang [2 ]
机构
[1] Zhengzhou Univ, Sch Mech & Power Engn, Zhengzhou 450001, Henan, Peoples R China
[2] Univ Sci & Technol Beijing, Sch Mech Engn, Beijing 100083, Peoples R China
关键词
carbon diffusion; carbon steel; high temperature; interface structure; stainless steel; MECHANICAL-PROPERTIES; CLAD PLATE; MICROSTRUCTURE; SENSITIZATION; BEHAVIOR;
D O I
10.1007/s11665-023-08829-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, the interface structure and carbon diffusion of stainless steel-carbon steel-laminated composites after heating at different temperatures and times are studied. The experimental results show that the interface structure of the stainless steel-carbon steel-laminated composite is composed of a decarburization layer of carbon steel, an intermetallic compound layer and a carburization layer of stainless steel. When the heating temperature is lower than 500 degrees C, the interface structure basically does not change over heating time. When the heating temperature is between 550 and 850 degrees C, as the heating time increases, the stainless steel undergoes sensitization, and the carbon diffuses from carbon steel to stainless steel. The diffusion rate is positively related to the susceptibility to the intergranular corrosion of stainless steel, resulting in an increase in the thickness of the decarburization layer of carbon steel, the further carburization of stainless steel and an increase in the degree of sensitization of the stainless steel surface. When the heating temperature is larger than 900 degrees C, as the heating time increases, carbon steel undergoes austenitization, stainless steel undergoes solid solution strengthening, and carbon diffuses from the stainless steel to the carbon steel, resulting in the disappearance of the decarburization layer of carbon steel and the carburization layer of stainless steel. In this paper, a reference is provided for the heat treatment temperature set and the service temperature upper limit of the stainless steel-carbon steel-laminated composite.
引用
收藏
页码:12297 / 12311
页数:15
相关论文
共 30 条
[1]  
B. S. E. N, 2006, ISO 12732
[2]   Effects of thermal history on sensitization behavior and Charpy impact property of type 316L and 316 stainless steels for applications in a fired heater [J].
Bunchoo, N. ;
Wongpinkaew, K. ;
Kukiatkulchai, E. ;
Kaewkumsai, S. ;
Viyanit, E. .
ENGINEERING FAILURE ANALYSIS, 2022, 141
[3]   Formation of metallurgical bonding interface in aluminum-steel bimetal parts by thixotropic-core compound forging [J].
Chen, Gang ;
Chang, Xusheng ;
Liu, Guobin ;
Chen, Qiang ;
Han, Fei ;
Zhang, Shun ;
Zhao, Zude .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2020, 283
[4]   Mechanical bonding properties and interfacial morphologies of austenitic stainless steel clad plates [J].
Dhib, Zina ;
Guermazi, Noamen ;
Ktari, Ahmed ;
Gasperini, Monique ;
Haddar, Nader .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 696 :374-386
[5]   A novel reduction-bonding process to fabricate stainless steel clad plate [J].
Jing, Yu-an ;
Qin, Yi ;
Zang, Xiaoming ;
Shang, Qiuyue ;
Song, Hua .
JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 617 :688-698
[6]   Eddy current technique as a nondestructive method for evaluating the degree of sensitization of 304 stainless steel [J].
Kelidari, Yeganeh ;
Kashefi, Mehrdad ;
Mirjalili, Mostafa ;
Seyedi, Mahla ;
Krause, Thomas W. .
CORROSION SCIENCE, 2020, 173
[7]   The importance of steel chemistry and thermal history on the sensitization behavior in austenitic stainless steels: Experimental and modeling assessment [J].
Kolli, Satish ;
Javaheri, Vahid ;
Ohligschlager, Thomas ;
Komi, Jukka ;
Porter, David .
MATERIALS TODAY COMMUNICATIONS, 2020, 24
[8]   Effect of solution treatment on slurry erosive wear performance of martensitic and nitrogen strengthened austenitic stainless steel [J].
Kumar, Naveen ;
Arora, Navneet .
MATERIALS LETTERS, 2021, 284
[9]   Effect of substrate on metallographic corrosion of cladding in stainless/carbon steel bimetal plate [J].
Li, Hao ;
Zhang, Liyuan ;
Zhang, Boyang ;
Zhang, Qingdong .
RESULTS IN PHYSICS, 2020, 16
[10]   Interfacial fracture behavior of a stainless/carbon steel bimetal plate in a uniaxial tension test [J].
Li, Hao ;
Zhang, Liyuan ;
Zhang, Boyang ;
Zhang, Qingdong .
RESULTS IN PHYSICS, 2019, 14