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Corrosion of Ni–Al high velocity oxyfuel (HVOF) thermal spray coating by fly ash and synthetic biomass ash deposits

机译:粉煤灰和合成生物质灰渣沉积物对镍铝高速氧燃料(HVOF)热喷涂层的腐蚀

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摘要

Corrosion of a thermal spray (HVOF) Ni–Al coating has been investigated at 600°C under both biomass generated fly ash and synthetic biomass ashes and has been monitored as a function of reaction time for up to 1000 h. Detailed microstructral and compositional analyses have been carried out to investigate the hot corrosion mechanism. Various microstructural defects and compositional inhomogeneities are found to play an important role in the initiation of hot corrosion. Deposition of molten reactants from the ashes creates the aggressive environment. Molten salts cause initial rapid hot corrosion via fluxing reactions between planar interlamellar porosity resulting in debonding of the surface lenticular splats followed by subsequent slow dissolution. Comparison between the performance of the coating in the fly ash and the synthetic ashes provides information for improved laboratory corrosion tests.
机译:在生物质产生的粉煤灰和合成生物质灰分下,均已在600°C下研究了热喷涂(HVOF)Ni-Al涂层的腐蚀情况,并根据反应时间进行了长达1000小时的监测。已经进行了详细的微观结构和成分分析以研究热腐蚀机理。发现各种微结构缺陷和成分不均匀性在引发热腐蚀中起着重要作用。灰烬中熔融反应物的沉积会产生侵蚀性环境。熔融盐通过平面层间孔隙之间的助熔反应引起最初的快速热腐蚀,从而导致表面双凸透镜片脱粘,随后缓慢溶解。粉煤灰中的涂料性能与合成灰分之间的比较为改进实验室腐蚀测试提供了信息。

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  • 来源
    《British Corrosion Journal》 |2001年第2期|111-120|共10页
  • 作者单位

    The Department of Materials Science and Metallurgy, Pembroke Street, Cambridge CB2 3QZ, UK. (jal4@cus.cam.ac.uk);

    The Department of Materials Science and Metallurgy, Pembroke Street, Cambridge CB2 3QZ, UK. (jal4@cus.cam.ac.uk);

    The Department of Materials Science and Metallurgy, Pembroke Street, Cambridge CB2 3QZ, UK. (jal4@cus.cam.ac.uk);

    TWI, Grant Park, Great Abington, Cambridge CB1 6AL, UK;

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