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An Electrostatic Spinning Technology with Improved Functionality for the Manufacture of Nanomaterials from Solutions

机译:具有改进功能的静电纺丝技术,可用于从溶液中制备纳米材料

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摘要

The last decade has seen an extensive development of the field of nanomaterials which are currently being used in their first commercial applications. This rapid development is necessarily connected with certain technological demands. This paper describes a technology for the manufacture of nanomaterials from solutions by electrostatic spinning or spraying. Although this method has been well known since the last century, there are still only a few high-quality devices that can be used for the research of new nanomaterials. The main reason for this is that the process of nanomaterials manufacturing is influenced by numerous processing parameters which need to be properly regulated, and furthermore all device components must be resistant to interference from high voltage. The technological requirements are thus stringent. Moreover, such a device must be multifunctional, compact and affordable. This paper describes the technical aspects of a unique laboratory device, i.e., device modules and central control, measured processing parameters, and their effect on the produced materials. The developed laboratory device meets the most demanding criteria for a nanotechnological laboratory device and helps facilitate and speed up the research and development of new nanomaterials produced in high electrostatic field.
机译:在过去的十年中,纳米材料领域得到了广泛的发展,纳米材料目前正在其首次商业应用中使用。这种快速发展必然与某些技术需求有关。本文介绍了一种通过静电纺丝或喷涂从溶液中制备纳米材料的技术。尽管此方法自上世纪以来就广为人知,但仍然只有少数高质量的设备可用于研究新的纳米材料。这样做的主要原因是,纳米材料的制造过程受到需要适当调节的众多加工参数的影响,此外,所有设备组件都必须具有抗高压干扰的能力。因此,技术要求非常严格。而且,这种设备必须是多功能的,紧凑的且负担得起的。本文介绍了独特的实验室设备的技术方面,即设备模块和中央控制,测量的处理参数及其对生产材料的影响。研发的实验室设备符合纳米技术实验室设备最苛刻的标准,并有助于促进和加快在高静电场中生产的新型纳米材料的研发。

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