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Experimental Study and Effect of Particulate Interference on the Microhardness, Wear and Microstructural Properties of Ternary Doped Coating

机译:微粒干扰对三元掺杂涂层微硬度,磨损和微观结构性能的实验研究及其影响

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This paper studies effects of the composite particle infringement of ZnO/Cr_2O_3 on zinc rich ternary based coating. The corrosion-degradation property in 3.5% NaCl was investigatedusing polarization technique. The structural characteristics of the multilayer produce coatings were evaluated by scanning electron microscope (SEM) equipped with an energy dispersive spectrometer (EDS). The mechanical response of the coated samples was studied using a diamond base Dura -Scan) micro-hardness tester and a MTR-300 dry abrasive wear tester. The combined effect of the coatings gave highly-improved performance on microhardness, corrosion and wear damage. This also implies that protection of wind-energy structures in marine environments can be achieved by composite strengthening capacity.
机译:本文研究了ZnO / Cr_2O_3对富含三元涂料锌的复合粒子侵犯的影响。 3.5%NaCl中的腐蚀降解特性是研究的偏振技术。通过配备有能量分散光谱仪(EDS)的电子显微镜(SEM)评估多层生产涂层的结构特征。使用金刚石碱Dura-Scan进行微型硬度测试仪和MTR-300干磨料磨损测试仪研究涂覆样品的机械响应。涂层的综合效果在微硬度,腐蚀和磨损损伤上产生了高度提高的性能。这也意味着通过复合强化能力可以实现海洋环境中的风能结构的保护。

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