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首页> 外文期刊>Coatings >High Temperature Corrosion Studies of a Zirconia Coating: Implications for Waste-to-Energy (WTE) Plants
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High Temperature Corrosion Studies of a Zirconia Coating: Implications for Waste-to-Energy (WTE) Plants

机译:氧化锆涂层的高温腐蚀研究:对垃圾发电厂(WTE)的影响

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Corrosion of functional parts within waste-to-energy (WTE) plants significantly reduces their efficiency with respect to maintenance costs. Currently, nickel-based alloy claddings, several millimeters thick, are the state of the art as anti-corrosion coating. Another approach is to utilize thermally sprayed multilayer coatings with a zirconia top-coat. Lab-scale experiments under simulated WTE plant conditions and in situ tests within a WTE plant revealed a partially reduced porosity of the zirconia top-coat after the experiments, enabling the coating to act as a barrier against aggressive gases. In a lab-scale experiment sample the pores are filled up with zirconia, while the pores of the in situ samples are filled up with newly formed metal (Cr, Ni, Fe) oxides.
机译:垃圾发电工厂中功能部件的腐蚀大大降低了维护成本的效率。当前,几毫米厚的镍基合金熔覆层作为防腐蚀涂层是最新技术。另一种方法是利用带有氧化锆外涂层的热喷涂多层涂层。在模拟的WTE工厂条件下进行的实验室规模实验以及在WTE工厂内进行的原位测试表明,实验后氧化锆顶涂层的孔隙率得以部分降低,从而使涂层能够充当抵抗腐蚀性气体的屏障。在实验室规模的实验样品中,孔充满了氧化锆,而原位样品的孔中充满了新形成的金属(Cr,Ni,Fe)氧化物。

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