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Synthesis and Properties of Inorganic Composite Coatings Containing Detonation Nanodiamonds

机译:爆轰纳米金刚石无机复合涂层的合成与性能

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Electrodeposition from solutions based on Cr(III) compounds of composite chromium coatings with denotation nanodiamond (DND) particles and composite coatings (CCs) of silicon dioxide-DND obtained using the sol-gel method is studied. Physicomechanical properties and composition of these composite coatings (CCs) are investigated. It is found that the presence of DND particles produces a significant effect on chromium coatings and causes a 1.4-fold increase in their microhardness. Herewith, brittleness of coatings decreases. DND content in CCs reaches final values (12-14 vol % or 6.4-7.2 wt %) at an increase in the DND concentration in the solution to 30 g/L. The performed studies allow establishing the optimum DND concentration in chromium-plating solutions (17 g/L) and in CCs (10.5 vol % or 5.6 wt %) that provides the maximum microhardness and minimum brittleness of chromium-DND coatings. Application of thin films from SiO2 sols modified by DND particles is studied. Dependences of microhardness and optical transmission of samples with coatings on the sol composition are established. The optical concentration of DND corresponding to the maximum coating microhardness is 0.5 wt %. An increase in DND content in the solution above 0.5 wt % causes a drastic decrease in the microhardness and optical transmission of samples with coatings and an increase in microbrittleness.
机译:研究了用溶胶-凝胶法获得的具有外延纳米金刚石(DND)颗粒的复合铬涂层和二氧化硅-DND复合涂层(CC)的基于铬(III)化合物的溶液的电沉积。研究了这些复合涂层(CC)的物理力学性能和组成。已经发现,DND颗粒的存在对铬涂层产生显着影响,并导致其显微硬度增加1.4倍。因此,涂层的脆性降低。当溶液中DND浓度增加到30 g / L时,CC中的DND含量达到最终值(12-14%(体积)或6.4-7.2%(重量))。进行的研究可以确定镀铬溶液(17 g / L)和CC(10.5 vol%或5.6 wt%)中的最佳DND浓度,从而提供铬-DND涂层的最大显微硬度和最小脆性。研究了由DND颗粒改性的SiO2溶胶薄膜的应用。建立了在溶胶组合物上具有涂层的样品的显微硬度和光学透射率的依赖性。对应于最大涂层显微硬度的DND的光学浓度为0.5重量%。溶液中DND含量的增加超过0.5 wt%会导致具有涂层的样品的显微硬度和光学透射率急剧下降,并使显微脆性增加。

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