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The effect of surface preparation on high temperature oxidation of Ni, Cu and Ni-Cu alloy

机译:表面处理对Ni,Cu和Ni-Cu合金高温氧化的影响

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In the present paper, the analysis of polishing, grinding and sand-blasting processes on oxidation behavior of nickel, copper and Ni30Cu70 alloy has been performed for three different temperatures. Surface roughness has been analyzed using two methods: contact profilometer and fractal analysis. It has been proved that R-a parameter for sand-blasted samples is greater about one order of magnitude from ground and two order of magnitude from polished samples. Obtained mass gain plots after isothermal oxidation tests, SEM microphotographs and SEM/EDS analysis of the samples prove that morphology of the polished and ground samples does not vary significantly after oxidation at investigated temperatures, but differences in oxide layer thicknesses and mass gains were observed. Oxidized sand-blasted samples revealed that increased surface roughness and alumina intrusions remained in the surface after sand-blasting process change the oxidation process-mixed Al/(Ni, Cu or Ni-Cu) oxide is formed and separate Al2O3 particles are visible. Moreover, differences in thickness ratio of copper oxides: Cu2O to CuO on copper samples oxidized at 750 degrees C (26, 20; 29, 64; 43, 45 for polished, ground and sandblasted samples, respectively) prove that surface preparation influence high-temperature oxidation of the samples by promoting new diffusion mechanism.
机译:本文针对三种不同温度对镍,铜和Ni30Cu70合金的氧化行为进行了抛光,研磨和喷砂工艺分析。使用两种方法分析了表面粗糙度:接触轮廓仪和分形分析。业已证明,喷砂样品的R-a参数距地面约一个数量级,而距抛光样品约两个数量级。在等温氧化测试后获得的质量增益图,样品的SEM显微照片和SEM / EDS分析证明,在研究的温度下氧化后,抛光后的样品和研磨后的样品的形态没有明显变化,但是观察到氧化物层厚度和质量增益的差异。氧化喷砂样品表明,喷砂工艺改变了氧化工艺后,表面粗糙度增加,氧化铝残留在表面,形成混合的Al /(Ni,Cu或Ni-Cu)氧化物,可见分离的Al2O3颗粒。此外,在750摄氏度下氧化的铜样品上的氧化铜的厚度比:Cu2O与CuO的差异(分别针对抛光,研磨和喷砂的样品分别为26、20、29、64、43、45)证明表面处理会影响高通过促进新的扩散机理使样品的温度氧化。

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