Author:
Wang Dongsheng,Sun Xiaohan,Jiang Yingchang,Chang Xueting,Yonglei Xin
Abstract
Purpose
Stainless-clad bimetallic steels (SCBS) are widely investigated in some extremely environmental applications areas, such as polar sailing area and tropical oil and gas platforms areas, because of their excellent anticorrosion performance and relatively lower production costs. However, the properties of SCBS, including the mechanical strength, weldability and the anticorrosion behavior, have a direct relation with the manufacturing process and can affect their practical applications. This paper aims to review the application and the properties requirements of SCBS in marine environments to promote the application of this new material in more fields.
Design/methodology/approach
In this paper, the manufacturing process, welding and corrosion-resistant properties of SCBS were introduced systematically by reviewing the related literatures, and some results of the authors’ research group were also introduced briefly.
Findings
Different preparation methods, such as rolling composite, casting rolling composite, explosive composite, laser cladding and plasma arc cladding, as well as the process parameters, including the vacuum degree, rolling temperature, rolling reduction ratio, volume ratios of liquid to solid, explosive ratio and the heat treatment, influenced a lot on the properties of the SCBS through changing the interface microstructures. Otherwise, the variations in rolling temperature, pass, reduction and the grain size of clad steel also brought the dissimilarities of the mechanical properties, microhardness, bonding strength and toughness. Another two new processes, clad teeming method and interlayer explosive welding, deserve more attention because of their excellent microstructure control ability. The superior corrosion resistance of SCBS can alleviate the corrosion problem in the marine environment and prolong the service life of the equipment, but the phenomenon of galvanic corrosion should be noted as much as possible. The high dilution rate, welding process specifications and heat treatment can weaken the intergranular corrosion resistance in the weld area.
Originality/value
This paper summarizes the application of SCBS in marine environments and provides an overview and reference for the research of stainless-clad bimetallic steel.
Reference53 articles.
1. Geometrical, microstructural and mechanical characterization of pulse laser welded thin sheet 5052-H32 aluminum alloy for aerospace applications;Transactions of Nonferrous Metals Society of China,2019
2. Experimental study of corrosion resistance of stainless-clad bimetallic steel and welded connections;Journal of Tianjin University,2021
3. A new method to determine the synergistic effects of area ratio and microstructure on the galvanic corrosion of LASA508/309 L/308 L SS dissimilar metals weld;Journal of Materials Science & Technology,2021
4. Bonding behavior of 25Cr5MoA/Q235 hot rolled clad plates;J Univ Sci Technol B,2007
5. Study on corrosion resistance of welded joint of 304L/SA516Gr70 stainless steel composite plate;Petrochemical Corrosion and Protection,2012