高强度低合金钢多层多道焊接的腐蚀行为及机理

Huixia Zhang, Fuyao Hao, Yu Zhang, Xiang-bo Li, Han Guo
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引用次数: 2

摘要

采用扫描开尔文探针、电化学测量等方法研究了多层多道焊接法制得的高强度低合金钢焊接接头的腐蚀行为和机理。结果表明:第一层焊接区组织以粒状贝氏体和针状铁素体为主,细小均匀,耐蚀性能最好;由于平均冷却速率随焊道次的增加而减小,第二层和第三层焊缝的晶粒尺寸逐渐增大,伏打电位逐渐减小。热影响区(HAZ)的组织在传热作用下由平衡相的回火索氏体组织转变为非平衡相的粒状贝氏体或贝氏体组织。由于基体金属、焊缝金属和热影响区之间的非平衡组织和电偶作用,热影响区成为焊接接头腐蚀的最薄弱环节。
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Corrosion behavior and mechanism of the high‐strength low‐alloy steel joined by multilayer and multipass welding method
The corrosion behavior and mechanism of the high‐strength low‐alloy steel‐welded joint fabricated by the multilayer and multipass welding method were investigated using a scanning Kelvin probe, electrochemical measurements, and so forth. The results revealed that the microstructure of the first layer welding zone was dominated by granular bainite and acicular ferrite and was fine and uniform, which exhibited the best corrosion resistance. Whereas, since the average cooling rate decreased with the increase of welding pass, the grain size of the second and third layer weldings gradually grew, and the voltaic potential gradually decreased. In addition, the microstructure of the heat‐affected zone (HAZ) changed from the tempered sorbite structure of the equilibrium phase to the granular bainite or bainite structure of the nonequilibrium phase under the action of heat transfer. The HAZ became the weakest link for corrosion of welded joint, on account of the nonequilibrium organization and galvanic coupling among base metal, weld metal and HAZ.
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