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Corrosion behaviour of a dissimilar joint TIG weld between austenitic AISI 316L and ferritic AISI 444 stainless steels

机译:奥氏体AISI 316L和铁素体AISI 444不锈钢之间的不同关节TIG焊接的腐蚀行为

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The AISI 444 stainless steel (SS) has become an option to substitute the AISI 316L SS because of its low cost and satisfactory corrosion resistance. However, the use of AISI 444 alloy tubes in heat exchangers causes the welding of a dissimilar joint. The aim of this study was evaluate the corrosion resistance of the tube-to-tubesheet welded by a TIG process composed of AISI 316L and AISI 444. Preparation of samples was executed through replication of tube-to-tubesheet joints. In order to test the corrosion resistance of the welded joint, the following tests were applied: sensitisation, mass loss from room temperature up to 90 °C and electrochemical corrosion tests in 0.5 mol/L HCI and 0.5 mol/L H_2SO_4 electrolytes.The results have shown that the dissimilar joint suffers galvanic corrosion with increased degradation of the heat-affected zone of the AISI 444 tube. Nevertheless, the mechanisms of localised corrosion (pit and intergranular) were more active in the AISI 316L alloy. It is concluded that the dissimilar joint showed better corrosion resistance than the welded joint composed solely of AISI 316L at temperatures up to 70 °C, as the conditions observed in this work.
机译:AISI 444不锈钢(SS)已成为替代AISI 316L SS的选项,因为其成本低,耐腐蚀性良好。然而,在热交换器中使用AISI 444合金管导致不同的关节焊接。本研究的目的是评价由AISI 316L和AISI 444组成的TIG工艺焊接的管对管板的耐腐蚀性。通过对管胸部关节的复制进行样品的制备。为了测试焊接接头的耐腐蚀性,采用以下试验:敏化,从室温的质量损失高达90°C,电化学腐蚀试验在0.5mol / L HCl和0.5mol / L H_2SO_4电解质中。结果已经表明,不同的关节遭受了电压腐蚀,随着AISI 444管的热影响区域的降解而增加。然而,局部腐蚀(坑和晶间)的机制在AISI 316L合金中更活跃。得出结论:不同的关节显示出比在这项工作中观察到的条件的情况下,焊接关节比仅在高达70℃的温度范围内的焊接接头显示出更好的耐腐蚀性。

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