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Sea water Corrosion of Nickel based Plasma Spray Coating

机译:基于镍等离子体喷涂的海水腐蚀

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Different types of erosion resistant coatings are applied/deposited on aero components, depending on the operating/working temperatures. Nickel based coating are applied on the air craft (compressor) components, which can sustain up to working temperature of 650°C. In the present investigation, to improve the compatibility between substrate (i.e. the machine component) and the top coat, application of bond coat is there. The application of Nickel based coating by thermal plasma spray technique has proven to be a satisfactory means of producing acceptable sealing surface with excellent abradability. Before the corrosion study, coated sample is subjected to hardness, thickness and porosity testing. Hence the result is being evaluated. The corrosion behavior of coating was studied by sea water immersion with a time period of 16 weeks. It is observed that, up to 9 weeks increase in weight of coating occurs in a sharp trend and then takes a decreasing trend. The weight gain of the samples has varied from 37.23% (with one week immersion in sea water) to a maximum of about 64.36% for six weeks immersion. Coating morphology and composition analysis of the coatings are studied using SEM and EDS. This behavior shows adsorption/deposition of the foreign particles with polygonal shape on the coating surface by sea water interaction. Foreign particles with polygonal shape deposited on the coating and with increase in immersion/treatment time, washing out of the deposited materials starts, which reflects the decreasing trend of weight gain of the specimen.
机译:根据操作/工作温度,施加/沉积不同类型的抗腐蚀涂层。基于镍的涂层施加在空气工艺(压缩机)部件上,可维持高达650℃的工作温度。在本研究中,为了提高衬底(即机器部件)和顶部涂层之间的相容性,在那里粘合涂层的应用。通过热等离子体喷涂技术施加镍涂层的应用是一种令人满意的制造可接受的密封表面,具有优异的防水性。在腐蚀性研究之前,涂覆的样品经受硬度,厚度和孔隙率测试。因此正在评估结果。通过海水浸渍研究涂层的腐蚀行为,时间为16周。观察到,在尖锐的趋势中,涂层重量增加至多9周,然后趋势降低。样品的体重增加在37.23%(海水中浸没)的57.23%(浸泡)变化至最大约64.36%,六周浸泡。使用SEM和EDS研究涂料的涂层形态和组成分析。该行为显示通过海水相互作用在涂层表面上具有多边形形状的外来颗粒的吸附/沉积。具有多边形形状的外来颗粒沉积在涂层上并随着浸入/处理时间的增加,从沉积的材料中洗涤开始,这反映了样本的重量增长趋势的降低。

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