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A review of various nozzle range of wire arc spray on FeCrBMnSi metal coating

机译:FECRBMNSI金属涂层线弧喷涂各种喷嘴系列综述

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Low Temperature Hot Corrosion (LTHC) is type of hot corrosion which occurred on 700-800°C and usually on turbine blades. So, as a result the material of turbine blades is crack and degredation of rotation efficiency. Hot corrosion protection with the use of barrier that separate substrate and environment is one of using metal surface coating, wire arc spray method. This study has a purpose to analyze the effect of nozzle distance and gas pressure on FeCrBMnSi coating process using wire arc spray method on thermal resistance. The parameter of nozzle distance and gas pressure are used, resulted the best parameter on distance 400 mm and gas pressure 3 bar which has the bond strength of 12,58 MPa with porosity percentage of 5,93% and roughness values of 16,36μm. While the examination of thermal cycle which by heating and cooling continuously, on the coating surface is formed oxide compound (Fe_3O_4) which cause formed crack propagation and delamination. Beside that hardness of coating surface is increase which caused by precipitate boride (Fe_9B)_(0,2)
机译:低温热腐蚀(LTHC)是在700-800°C上发生的热腐蚀的类型,通常在涡轮机叶片上发生。因此,由于涡轮机叶片的材料是裂纹和转换效率的降序。使用屏障的热腐蚀保护,单独的基板和环境是使用金属表面涂层,电弧喷涂方法之一。本研究目的是利用丝电弧喷射法对热阻进行钢丝喷射法分析喷嘴距离和气体压力对Fecrbmnsi涂布过程的影响。使用喷嘴距离和气体压力的参数,导致距离400mm和气体压力3巴上的最佳参数,其粘合强度为12,58MPa,孔隙率为5,93%,粗糙度值为16,36μm。虽然通过连续加热和冷却的热循环检查,但在涂层表面上形成氧化物化合物(Fe_3O_4),其导致形成的裂纹繁殖和分层。除此之外,涂层表面的硬度是由沉淀硼化物(Fe_9b)_(0,2)引起的

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