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Hydrogen embrittlement of cathodically protected high strength steel in sea water and seabed sediment

机译:阴极保护高强度钢在海水和海床沉积物中的氢脆

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摘要

Hydrogen embrittlement tests were corned out using double cantilever beam and slow strain rate tensile specimens to measure the susceptibility of a 900 MPa yield strength steel in different marine environments, ranging from sterile sea water and filtered natural sea water to open sea water and seabed sediment. The cathodic protection potential and the presence of biologically generated sulphides in seabed sediment were shown to be important factors that controlled the extent of hydrogen uptake and embrittlement. Threshold stress intensities K_(th) were measured for each condition and the optimum cathodic protection potential to control corrosion with the minimum risk of embrittlement was established.
机译:使用双悬臂梁和慢应变速率拉伸试样进行氢脆测试,以测量900 MPa屈服强度钢在不同海水环境中的敏感性,范围从无菌海水和过滤后的天然海水到开阔海水和海底沉积物。阴极保护的潜力和海底沉积物中生物生成的硫化物的存在被证明是控制氢吸收和脆化程度的重要因素。测量每种条件下的阈值应力强度K_(th),并建立了以最小的脆化风险控制腐蚀的最佳阴极保护电位。

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