Effects of Temperature and Pressure on Stress Corrosion Cracking Behavior of 310S Stainless Steel in

来源 :Chinese Journal of Mechanical Engineering | 被引量 : 0次 | 上传用户:pandengwei
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310S is an austenitic stainless steel for high temperature applications, having strong resistance of oxidation, hydrogen embrittlement and corrosion. Stress corrosion cracking(SCC) is the main corrosion failure mode for 310 S stainless steel. Past researched about SCC of 310 S primarily focus on the corrosion mechanism and influence of temperature and corrosive media, but few studies concern the combined influence of temperature, pressure and chloride. For a better understanding of temperature and pressure’s effects on SCC of 310 S stainless steel, prepared samples are investigated via slow strain rate tensile test(SSRT) in different temperature and pressure in NACE A solution. The result shows that the SCC sensibility indexes of 310 S stainless steel increase with the rise of temperature and reach maximum at 10 MPa and 160℃, increasing by 22.3% compared with that at 10 MPa and 80 ℃. Instead, the sensibility decreases with the pressure up. Besides, the fractures begin to transform from the ductile fracture to the brittle fracture with the increase of temperature. 310 S stainless steel has an obvious tendency of stress corrosion at 10 MPa and 160℃ and the fracture surface exists cleavage steps, river patterns and some local secondary cracks, having obvious brittle fracture characteristics. The SCC cracks initiate from inclusions and tiny pits in the matrix and propagate into the matrix along the cross section gradually until rupture. In particular, the oxygen and chloride play an important role on the SCC of 310 S stainless steel in NACE A solution. The chloride damages passivating film, causing pitting corrosion, concentrating in the cracks and accelerated SSC ultimately. The research reveals the combined influence of temperature, pressure and chloride on the SCC of 310 S, which can be a guide to the application of 310 S stainless steel in super-heater tube. 310S is an austenitic stainless steel for high temperature applications, strong resistance of oxidation, hydrogen embrittlement and corrosion. Stress corrosion cracking (SCC) is the main corrosion failure mode for 310 S stainless steel. the corrosion mechanism and influence of temperature and corrosive media, but few studies concern the combination influence of temperature, pressure and chloride. For a better understanding of temperature and pressure’s effects on SCC of 310 S stainless steel, prepared samples were investigated via slow strain rate tensile test (SSRT) in different temperature and pressure in NACE A solution. The result shows that the SCC sensibility indexes of 310 S stainless steel increase with the rise of temperature and reach maximum at 10 MPa and 160 ° C, increasing by 22.3% compared with that at 10 MPa and 80 ° C. Instead, the sensibility decreases with the pressure up. Besides, the fractures begin to transform from the ductile fracture to the brittle fracture with the increase of temperature. 310 S stainless steel has an obvious tendency of stress corrosion at 10 MPa and 160 ° C and the fracture surface has cleavage steps, river patterns and some local secondary cracks, having obvious brittle fracture characteristics. The SCC abs in inclusions and tiny pits in the matrix along the cross section gradually until rupture. The oxygen and chloride play an important role on the SCC of 310 S stainless steel in NACE A The research shows the combined influence of temperature, pressure and chloride on the SCC of 310 S, which can be a guide to the application of 310 S stainless steel in super-heater tube.
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