首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >The formation mechanism and morphology of the nickel particles by the ultrasound-aided spark discharge in different liquid media
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The formation mechanism and morphology of the nickel particles by the ultrasound-aided spark discharge in different liquid media

机译:超声辅助火花放电在不同液体介质中镍颗粒的形成机理和形貌

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Spark discharge is widely applied in the fabrication process of the particles with very small sizes. The ultrasound-aided spark discharge process is based on the electrical discharge in the liquid media of the electrical discharge machining (EDM). In this paper, the morphology, element composition, and crystal structure of the Nickle particles produced by the ultrasound-aided spark discharge were observed and analyzed by SEM, EDS and XRD respectively. The EDS and XRD indicated that the purity of the nickel particles generated in pure water is higher than that in kerosene. Meanwhile the effects of dielectric media on the size distribution were also investigated. It was found that the size distribution of the particles in pure water is narrower than that in kerosene, but when the ultrasound was introduced into the generating process, the size distributions of the particles in both media have remarkable improvements (both became narrower). Based on the attaching and entrapping processes, the formation mechanism of different structural particles was also presented. Following the study on the changes of the effective densities and the ratios of the closed hollow particles in different experiments (with and without ultrasound), we found that, with the aid of ultrasound, the ratio of the closed hollow particles increased about 10-15%. In overall, the results in this paper provide a foundation for the some future research, such as the study on the control of the particle properties (in size and morphology) by improving the experimental conditions. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:火花放电被广泛应用于尺寸非常小的颗粒的制造过程中。超声辅助火花放电过程基于放电加工(EDM)液体介质中的放电。本文分别通过SEM,EDS和XRD观察和分析了超声辅助火花放电产生的镍颗粒的形貌,元素组成和晶体结构。 EDS和XRD表明,纯净水中生成的镍颗粒的纯度高于煤油。同时还研究了电介质对尺寸分布的影响。发现纯水中的颗粒尺寸分布比煤油中的窄,但是当将超声波引入生成过程中时,两种介质中颗粒的尺寸分布都有显着的改善(两者都变窄了)。基于附着和包裹过程,提出了不同结构颗粒的形成机理。通过研究不同实验(有或没有超声)下有效密度和封闭空心颗粒比率的变化,我们发现在超声波的作用下,封闭空心颗粒的比率增加了约10-15 %。总体而言,本文的结果为将来的一些研究奠定了基础,例如通过改善实验条件来控制颗粒性质(尺寸和形态)的研究。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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