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Development of thermal sprayed layers for high temperature areas in waste incineration plants

机译:为废物焚化厂的高温区域开发热喷涂层

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Corrosion and wear in the hot gas area of thermal energy plants are severe problems, which often cause premature damage of components. In general, the most components of plants are made of materials, which are not stable under corrosive conditions. For corrosion protection (and also wear protection) and lifetime extension of these components, coatings with more resistant materials are applied. Because of the high concentration of corrosive species and the alternating composition of the atmosphere near to the components, the waste incineration plant is the "worst case" of high temperature corrosion. Nowadays, the most usual coating process to protect pipes in the waste incineration plants is cladding. In the last few years, alternative processes are under investigation because cladding is very cost-intensive. The specific costs of thermal spraying are much lower than those of cladding. In addition, the coating by thermal spraying reduces the risk of the dilution of substrate and coating material, different materials can be combined (e.g. metal alloys, ceramics) and the thickness of the layer for an acceptable resistance according to corrosion and wear can be drastically reduced. Thermal spraying has the potential to create cost-efficient coatings to protect components in the critical zones of incineration plants. Since many years, ATZ Entwicklungszentrum is involved in the development and/or advancement of materials, technologies and applications of thermal spraying for corrosion and/or wear protection in thermal energy plants. The main focuses of the investigations are layers for components in high temperature areas of waste incineration plants. On the basis of the present results, different coatings (metal alloys, ceramics) and different spray technologies (e.g. HVOF, APS) have been tested by different strategies (corrosion tests under laboratory scale, air cooled material probes inside the hot gas area of an incineration plant and coated pipes in operation as part of the superheater of incineration plants). This paper will give an overview about the current results of these corrosion tests, in which the focus are the investigations with material probes. First results showed that with the combination of different thermal sprayed layers a significant corrosion protection can be achieved.
机译:热电厂热气区域的腐蚀和磨损是严重的问题,通常会导致组件过早损坏。通常,植物的大部分组件都是由在腐蚀性条件下不稳定的材料制成。为了防腐蚀(以及防磨损)和延长这些组件的使用寿命,使用了具有更高耐性的材料涂层。由于腐蚀性物质的浓度很高,并且靠近组件的气氛交替变化,废物焚烧厂是高温腐蚀的“最坏情况”。如今,在垃圾焚烧厂中用于保护管道的最常用涂层工艺是覆层。在过去的几年中,由于覆层成本非常高,正在研究替代工艺。热喷涂的具体成本远低于熔覆成本。此外,通过热喷涂进行的涂层降低了稀释基材和涂层材料的风险,可以组合使用不同的材料(例如金属合金,陶瓷),并且可以显着提高根据腐蚀和磨损获得可接受电阻的涂层厚度减少。热喷涂有潜力创建具有成本效益的涂层,以保护焚烧厂关键区域中的组件。多年来,ATZ Entwicklungszentrum致力于热喷涂材料,热喷涂技术和应用的开发和/或进步,以用于热电厂的腐蚀和/或磨损保护。研究的主要重点是废物焚烧厂高温区域中的组件层。根据目前的结果,已经通过不同的策略(实验室规模的腐蚀测试,热气区域内的风冷材料探头)测试了不同的涂层(金属合金,陶瓷)和不同的喷涂技术(例如HVOF,APS)。焚化厂和涂覆的管道作为焚化厂过热器的一部分)。本文将概述这些腐蚀测试的当前结果,其中重点是材料探针的研究。最初的结果表明,结合使用不同的热喷涂层,可以获得显着的腐蚀防护。

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