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STRESS CORROSION CRACKING AND HYDROGEN EMBRITTLEMENT OF THICK SECTION HIGH STRENGTH LOW ALLOY STEEL

机译:厚截面高强度低合金钢的应力腐蚀开裂及氢脆性

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An experimental study was conducted to evaluate the corrosion performance of weldments of a high strength low alloy (HSLA) steel in a simulated seawater environment. This steel, designated HSLA 80, was developed by the United States Navy for use in ship structural applications. Stress corrosion cracking (SCO and hydrogen embrittlement (HEM) were investigated by conducting 42 Wedge-Opening Load (WOL) tests as a function of stress intensity and corrosion potential and 33 Slow Strain Rate (SSR) tests as a function of strain rate and corrosion potential. The corrosion potentials were chosen to simulate the environmental conditions of free corrosion, cathodic protection and hydrogen generation.nThe results from this investigation indicated that HSLA 80 base metal and weldments were susceptible to hydrogen assisted cracking (HAC) in a seawater environment under conditions of continuous plastic deformation and triaxial stress in the presence of hydrogen.

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