首页> 外文期刊>Journal of The institution of engineers (India), Series C >Tribological Behaviour of Electroless Ni-P Coatings in Brine Solution and Optimization of Coating Parameters Using Taguchi Based Grey Relation Analysis
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Tribological Behaviour of Electroless Ni-P Coatings in Brine Solution and Optimization of Coating Parameters Using Taguchi Based Grey Relation Analysis

机译:基于Taguchi灰关联分析的Ni-P化学镀层在卤水溶液中的摩擦学行为及镀层参数的优化。

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The present paper deals with the synthesis of electroless nickel-phosphorous (Ni-P) coatings on mild steel substrate and optimization of the coating process parameters for minimum friction and wear in brine solution using Taguchi based grey relation analysis. The study is carried out using different combinations of four coating process parameters, namely, concentration of nickel source (A), concentration reducing agent (B), bath temperature (C) and annealing temperature (D) with three levels each (1, 2 and 3). The wear and friction tests are conducted with a pin-on-disk Wear & Friction Monitor. Taguchi based grey relational analysis is employed for the optimization of this multiple response problem using an L_(27) orthogonal array. The optimal combination of parameters is found as A3B3C1D2 which yields an improvement in grey grade of 62% compared to the mean grey grade. ANOVA is performed to find out the significance of the coating parameters and their interactions. Bath temperature and annealing temperature are most influential in controlling friction and wear behavior. The surface morphology and composition of coatings are studied with the help of scanning electron microscopy (SEM), energy dispersed X-ray (EDX) analysis and X-ray diffraction (XRD) analysis. It is found that Ni-P coating is amorphous (weight percentages: 91.56% Ni and 8.44% P) in as-deposited condition but gradually turns crystalline with heat treatment. The worn surface morphology reveals abrasive wear mechanism.
机译:本文利用基于Taguchi的灰色关联分析方法,对低碳钢基材上的化学镀镍-磷(Ni-P)涂层进行了合成,并优化了涂层工艺参数以最大程度降低盐水溶液中的摩擦和磨损。这项研究是使用四种镀层工艺参数(镍源的浓度(A),浓度降低剂(B),熔池温度(C)和退火温度(D))的三种不同组合进行的,每种三个水平(1、2和3)。磨损和摩擦测试是通过针盘式磨损监测仪进行的。基于Taguchi的灰色关联分析用于使用L_(27)正交阵列优化此多响应问题。发现参数的最佳组合为A3B3C1D2,与平均灰度等级相比,灰度等级提高了62%。进行ANOVA以发现涂层参数及其相互作用的重要性。熔池温度和退火温度对控制摩擦和磨损行为影响最大。借助扫描电子显微镜(SEM),能量分散X射线(EDX)分析和X射线衍射(XRD)分析研究了涂层的表面形态和组成。发现Ni-P涂层在沉积状态下是非晶态的(重量百分比:91.56%的Ni和8.44%的P),但是通过热处理逐渐变成结晶。磨损的表面形态揭示了磨料磨损机理。

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