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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Fabrication of Robust Hierarchical Micro/Nanostructures on Tin-Bronze Substrate
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Fabrication of Robust Hierarchical Micro/Nanostructures on Tin-Bronze Substrate

机译:锡青铜基体上稳健的分层微观/纳米结构的制备

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摘要

To reduce the generated heat due to fluid friction, it is desirable to minimize the drag force at the solid-liquid interface. The boundary slip facilitates fluid velocity gradient and then the drag reduction. This endeavor intends to seek a practical process for fabrication robust hierarchical structures on tin-bronze substrate. The ordered structures at micrometer scale are successfully fabricated by through-mask electrochemical micromachining (TM-EMM) and three candidate fabrication processes involving electroless galvanic deposition, surface oxidation and ZnO nanostructures growth via wet-chemical route for structures at nanometer scale on metal surface are investigated. The fabricated results have been demonstrated and their properties of stability and wettability were evaluated. Experimental study results show that combining TH-EMM with ZnO nanostructures growth presents an effective process for fabrication of firm multi-level structures on metal surface.
机译:为了减少由于流体摩擦而产生的热量,希望使固液界面处的阻力最小。边界滑动有利于流体速度梯度,然后有利于减阻。该努力旨在寻求在锡青铜基板上制造坚固的分级结构的实用工艺。通过穿透掩模电化学微加工(TM-EMM)成功地制造了微米级的有序结构,并且通过湿化学途径对金属表面上的纳米级结构进行了三种涉及化学沉积,表面氧化和ZnO纳米结构生长的候选制造工艺。调查。已经证明了制造结果,并评估了它们的稳定性和润湿性。实验研究结果表明,将TH-EMM与ZnO纳米结构的生长相结合为在金属表面上制造牢固的多层结构提供了有效的过程。

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