首页> 外文会议>Corrosion conference and expo >POTENTIAL EFFECT OVER THE STRESS CORROSION CRACKING BEHAVIOR OF A X-70 MICROALLOYED PIPELINE STEEL IN DILUTE NaHCO_3 SOLUTIONS
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POTENTIAL EFFECT OVER THE STRESS CORROSION CRACKING BEHAVIOR OF A X-70 MICROALLOYED PIPELINE STEEL IN DILUTE NaHCO_3 SOLUTIONS

机译:对稀释NaHCO_3溶液中X-70微合金管钢的应力腐蚀开裂行为的潜在影响

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Studies were carried out to evaluate the stress corrosion cracking (SCC) behavior of a X-70 microalloyed pipeline steel, with different microstructures by means of the slow strain rate testing (SSRT) technique at 50 °C. Tests solutions consisted of 0.1, 0.05, 0.01 and 0.005 M sodium bicarbonate (NaHCO_3) with KCI, CaCl_2 and MgSO_4-7H2_O additions. Different anodic and cathodic potentials were applied. Additionally, experiments using the SSRT technique but with pre-charged hydrogen samples and potentiodynamic curves at different sweep rates were also done to elucidate hydrogen effects in this type of steel. The results showed that the different microstructures in conjunction with the anodic applied potentials shift the cracking susceptibility of the steels evaluated. On the other hand the closest cathodic potentials to their respectively steels rest potentials lower SCC susceptibility no matter the microstructure being tested. Contrary to this behaviour higher cathodic potentials promote SCC in all steel conditions. The fracture mechanisms actuating on the SSRT samples were promoted by anodic dissolution and protective film rupture. The results at different sweep rates indicate that certain microstructures are more susceptible to present anodic dissolution corrosion mechanism. Meanwhile more concentrated solution promotes ductile (no brittle) fracture surfaces on SSRT specimens.
机译:研究进行了评价应力腐蚀开裂通过在50℃下缓慢应变率测试(SSRT)技术的装置一个X-70微管线钢(SCC)行为,具有不同的微观结构。试验溶液由0.1,0.05,0.01和0.005 1M碳酸氢钠(NaHCO_3)与KCl,CaCl_2和MgSO_4-7H2_O相加。不同的阳极和阴极电位被应用。另外,使用SSRT技术但具有预充电氢样品和电位曲线在不同的扫描速率的实验也都是为在这种类型的钢的阐发氢的效果。结果表明,与所述阳极一起使用时的不同的微观结构施加的电势偏移评价钢的裂纹敏感性。在另一方面最接近阴极电位他们分别钢材休息潜力降低SCC敏感性不管被测试的微观结构。与此相反的行为较高的阴极电位促进SCC全钢条件。致动上SSRT样品的断裂机理是由阳极溶解和保护膜破裂促进。在不同的扫描速率的结果表明,某些微观结构是存在阳极溶解腐蚀机理更敏感。同时更浓缩的溶液促进延性(无脆性)上SSRT断裂表面标本。

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