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Microbial Effects On Heat Treated 316L Weldments In Marine Water

机译:对海水热处理316L焊料的微生物作用

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Austenitic stainless steels are susceptible to microbiologically influenced corrosion (MIC) when they are in contact with sea water. This is due to the changes in the chemistry of the environment at the metal surface because of the settlement and activities of microorganisms. The thrust of our work was in understanding the changes in the electrochemical behaviour of a type 316L stainless steel in the presence of a natural biofilm as well as the influence of metallurgical characteristics on microbial adhesion and MIC. The presence of a biofilm on material surface can influence the corrosion behaviour since the value of a given parameter such as temperature, pressure, concentration of a solute and pH at the water /substrate interface under the biofilm may be different from that in the bulk environment. The non-uniform nature of biofilm thus helps in generating heterogeneity in the environment at the surface. Thus, biofilms are known to aid in the initiation of corrosion, change the mode of corrosion or cause changes in the corrosion rate. Bacteria Arthobacter nicotinae (An) and algae Chlorella pyrenoidosa (Cp) were used for the study and bio film formed due to these showed pit initiation and increase in corrosion rate as time proceeds. 316L base metal (BM) and weld metal (WM) as received and after heat treated at 450°C for 10000 hours were studied and corrosion evaluation was done. Heat treated WM showed severe response to corrosion compared to as received WM.
机译:当它们与海水接触时,奥氏体不锈钢易受微生物学过的腐蚀(MIC)。这是由于金属表面的环境化学的变化,因为微生物的沉降和活性。我们的作品的推力是在天然生物膜存在下理解316L不锈钢的电化学行为的变化以及冶金特性对微生物粘附和MIC的影响。在材料表面上的生物膜的存在可以影响腐蚀行为,因为在生物膜下的水/衬底界面的温度,压力,pH的温度,压力,pH的溶质和pH的溶液和pH的浓度如温度,压力,pH的值可能与散装环境中的值不同。因此,生物膜的不均匀性有助于在表面的环境中产生异质性。因此,已知生物膜有助于腐蚀的开始,改变腐蚀模式或导致腐蚀速率的变化。细菌Arthobacter Nicotinae(AN)和藻类小球藻Pyrenoidosa(CP)用于研究和生物膜,由于这些显示坑引起并随着时间的流动而增加腐蚀速率。研究了316L基础金属(BM)和焊接金属(WM),并研究了在450℃下热处理10000小时后进行热量,并进行腐蚀评价。与接受的WM相比,热处理的WM对腐蚀的严重反应显示。

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