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Corrosion Resistance of Boronized, Aluminized, and Chromized Thermal Diffusion-Coated Steels in Simulated High-Temperature Recovery Boiler Conditions

机译:硼化,铝化和发光热扩散胶凝胶腐蚀耐腐蚀性在模拟高温回收锅炉条件下

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摘要

In this study, the high-temperature molten salt corrosion resistance of bare steels and steels with protective coatings, fabricated by thermal diffusion processes (boronizing, aluminizing and chromizing), were investigated and compared. Surface engineering through thermal diffusion can be used to fabricate protective coatings against corrosion, while alleviating issues around possible cracking and spallation that is typical for conventional thermal-sprayed coatings. In this regard, samples of low carbon steel and 316 stainless steel substrates were boronized, chromized, and aluminized through a proprietary thermal diffusion process, while some of the samples were further coated with additional thin oxide and non-oxide layers to create new surface architectures. In order to simulate the actual corrosion conditions in recovery boilers (e.g., from black liquor combustion), the surfaces of the samples sprayed with a modeling salt solution, were exposed to low-temperature (220 ∘C) and high-temperature (600 ∘C) environments. According to microstructural and X-ray diffraction (XRD) studies and results of hardness determination, the coatings with multilayered architectures, with and without additional oxide layers, showed successful resistance to corrosive attack over bare steels. In particular, the samples with boronized and chromized coatings successfully withstood low-temperature corrosive attack, and the samples with aluminized coatings successfully resisted both low- and high-temperature molten salt corrosive attacks. The results of this study conducted for the first time for the thermal diffusion coatings suggest that these coatings with the obtained architectures may be suitable for surface engineering of large-sized steel components and tubing required for recovery boilers and other production units for pulp and paper processing and power generation.
机译:在这项研究中,裸钢材和钢与保护涂层的高温熔融盐的耐腐蚀性,制造通过热扩散处理(渗硼,渗铝渗铬和),进行了研究和比较。通过热扩散的表面工程可以用于制造防腐蚀保护涂层,同时缓解周围的问题的可能的断裂和剥落是通常用于常规热喷涂涂层。在这方面,低碳钢和316个不锈钢基材的样品进行硼化,渗铬,和镀铝通过专有热扩散工艺,而一些样品进一步用附加的薄氧化物和非氧化物层涂覆,以创建新的表面结构。为了模拟回收锅炉(例如,从黑液燃烧)的实际腐蚀条件下,用一个建模盐溶液喷雾的样品的表面,暴露于低温(220∘C)和高温(600∘ C)的环境。根据显微组织和X射线衍射(XRD)研究和硬度测定结果,具有多层结构,具有和不具有额外氧化物层涂料,表现出超过裸钢腐蚀侵袭成功性。特别地,具有硼化和渗铬涂层成功经受低温的腐蚀性侵蚀,并用镀铝涂料样品样品成功地抵抗二者的低和高温度熔盐腐蚀性攻击。本研究首次用于热扩散涂层进行的研究结果表明,这些涂层与所获得的结构可以适用于大尺寸的钢构件的表面工程和管道所需的回收锅炉等生产单位纸浆和纸加工并网发电。

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