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HYDROGEN EMBRITTLEMENT OF 2205 DUPLEX STAINLESS STEEL IN SYNTHETIC KRAFT WHITE LIQUOR

机译:合成牛皮笋2205双相不锈钢氢脆化合物

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Duplex stainless steels (DSS) may experience environmental assisted cracking (EAC) under certain conditions in the kraft white liquor solutions used by the pulp and paper industry. Previous work showed that hydrogen absorption is possible in these solutions under applied cathodic potentials (CP) at room temperature, which is a concern because DSSs may become susceptible to hydrogen embrittlement (HE) under certain conditions; however, the effect of a CP on the EAC behavior of DSS in kraft white liquor solutions is currently unknown. Microhardness was used to evaluate the change in hardness upon exposure to white liquor (WL) composed of 150 g/L NaOH and 50 g/L Na_2S at room temperature under CP. The hydrogen microprint technique (HMT) was used to observe the hydrogen distribution on the sample surface. Slow strain rate testing (SSRT) was conducted on grade 2205 DSS at a strain rate of 2 × 10~6 s~(-1) in the range of -1500 mV vs SCE to the corrosion potential (E_(corr)) at room temperature. The affect of CP on the EAC susceptibility was evaluated as a function of the reduction in area and the time to failure. The fracture morphology was examined with scanning electron microscopy (SEM). The results indicate that an increase in the CP will enhance the severity of EAC below a threshold potential, which was found to be ~-1100 Mv_(SCE). These findings suggest that care must be taken when DSS are used in pulping applications where there is a risk for galvanic coupling with a more active material, such as carbon or low alloy steel, or in plant equipment where cathodic protection is used.
机译:双相不锈钢(DSS)可能在纸浆和造纸工业使用的牛皮纸白液溶液中的某些条件下体验环境辅助开裂(EAC)。以前的工作表明,在室温下在施加的阴极电位(CP)下的这些溶液中可能在施加氢吸收,这是一个问题,因为DSSS在某些条件下可能会易于氢气脆化(HE);然而,CP对牛皮白酒溶液中DSS的EAC行为的影响目前未知。用于在CP室温度下在室温下在接触150g / L NaOH和50g / L Na_2s的接触到白液(WL)时,用于评估硬度变化。氢微胶印技术(HMT)用于观察样品表面上的氢气分布。慢应变速率测试(SSRT)在2205级DSS上以2×10〜6 s〜(-1)的应变速率在-1500mV与腐蚀电位(e_(ecr))的范围内的应变速率进行温度。 CP对EAC敏感性的影响被评估为面积减少和失败时间的函数。用扫描电子显微镜(SEM)检查骨折形态。结果表明,CP的增加将增强EAC的严重程度低于阈值潜力,这被发现为-1100 mV_(SCE)。这些发现表明,当DSS用于制浆应用时,必须采取小心,其中在使用具有更具活性材料的电流耦合的风险,例如碳或低合金钢,或在使用阴极保护的植物设备中。

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