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HVOF and laser cladded Fe-Cr-B coating in simulated biomass combustion: microstructure and fireside corrosion

机译:模拟生物质燃烧中的HVOF和激光熔覆Fe-Cr-B涂层:微观结构和炉边腐蚀

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摘要

Biomass is often considered as a low carbon alternative to fossil fuels in the power industry. However the heat exchangers in biomass plants can suffer from chloride based aggressive fireside corrosion. A commercially available amorphous Fe-Cr-B alloy was deposited onto a stainless steel substrate by HVOF thermal spray and laser cladding. The controlled environment corrosion tests were conducted in a HCl rich environment at 700°C for 250 h with and without KCl deposits. The samples were examined with XRD, SEM and EDX mapping to understand the corrosion mechanisms. In the absence of any deposits, the amorphous HVOF coating performed very well with a thin oxide growth whereas the crystalline laser cladding suffered from ~350 μm metal loss. The scales were composed of MnWO₄, Fe₂O₃, Fe₃O₄ and Cr₂O₃. When a KCl deposit was present, the HVOF sprayed coating delaminated from the substrate and MnCl₂ was found in the scale.
机译:生物质通常被认为是电力行业中化石燃料的低碳替代品。然而,生物质工厂中的热交换器会遭受基于氯的侵蚀性炉膛腐蚀。通过HVOF热喷涂和激光熔覆将可商购的非晶态Fe-Cr-B合金沉积到不锈钢基底上。在有和没有KCl沉积物的情况下,在富含HCl的环境中于700°C下进行受控环境腐蚀测试250小时。通过XRD,SEM和EDX映射检查样品,以了解腐蚀机理。在没有任何沉积物的情况下,非晶态HVOF涂层的氧化物生长非常薄,而晶体激光熔覆层的金属损失约为350μm。鳞片由MnWO 3,Fe 2 O 3,Fe 3 O 3和Cr 2 O 3组成。当存在KCl沉积物时,HVOF喷涂涂层从基材上分层,并且在氧化皮中发现了MnCl 2。

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