ZnO纳米粒子对PMMA烧蚀断弧光吸收光谱的影响

Q. Wang, Yifei Wang, H. Nguyen, Jindong Huo, J. Ronzello, Yang Cao
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引用次数: 4

摘要

开关设备、断路器等消弧设备急需烧蚀材料。光辐射是消耗电弧能量的主要方式之一。有人声称,使用极小尺寸的颗粒可以改变基材的吸收光谱,为制造聚合物基烧蚀材料提供了一种潜在的方法。PMMA具有优异的透光性,可通过溶液浇铸制成薄膜。此外,掺有纳米复合材料的PMMA可以涂覆在其他材料上,形成抗烧蚀涂层。采用纳米氧化锌作为填料。在铸造前将ZnO纳米粒子分散在PMMA/溶剂溶液中。采用扫描电镜(SEM)对填料的分散性进行了检测。并在150 ~ 500 nm范围内分别测量了有/无量子点薄膜的光谱,探讨了光学性质的移位效应。导出了ZnO纳米粒子在PMMA薄膜中的形成条件和分散。测定了不同氧化锌含量的PMMA薄膜的光谱。同时,制备了PMMA-ZnO纳米复合材料涂层的聚合物样品。结果表明,ZnO纳米粒子的光吸收能力有了显著的提高。纳米颗粒的大小对吸收特性有显著影响。考虑到我们发现的团聚问题,为了获得更好的分散,必须采取额外的措施,包括超声波分散和使用其他化学品。介绍了一种新的测试系统,并采用相应的模拟方法来评估/研究样品/聚合物的烧蚀性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of ZnO Nanoparticles on the Light Absorption Spectrum of PMMA for Ablation Dominated Arc Interruption
Ablative materials are urgently needed for arc extinction cases like switchgears and breakers. Optical radiation is one of the major ways to dissipate the energy of the arc. It has been claimed that using extremely small sized particles could shift the absorption spectrum of the base material providing a potential way/method to manufacture polymer based ablative materials. PMMA has excellent transmittance and can be easily made into film by solution casting. Besides, PMMA doped with nanocomposites could be coated on other materials to form an ablation resistance coating layer. Nanoscale ZnO was adopted as the filler. The ZnO nanoparticles were dispersed in PMMA/solvent solution before the casting. SEM was used to check the dispersion of the filler. And spectrums from 150 nm to 500 nm of the films with/without quantum dots were measured respectively, to explore the shifting effect of optical property. The formation conditions and dispersion of ZnO nanoparticles in PMMA film was derived. Spectrums of PMMA films with different contents of ZnO were measured. Also, the polymer sample with a coating of PMMA-ZnO nanocomposite was prepared. Based on the results, the ZnO nanoparticles shows an impressive improvement on the ability of optical absorption. And the size of nanoparticle has a significant influence on the absorption characteristic. Considering the agglomeration problem we found, additional procedures must be taken to get a better dispersion including ultrasonic dispersion and using other chemicals. A new testing system with corresponding simulation method to evaluate/investigate the ablative properties of the samples/polymer was also introduced/come up with.
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