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Experimental investigation of the dielectric and cooling performance of colloidal suspensions in insulating media

机译:绝缘介质中胶体悬浮液的介电和冷却性能的实验研究

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摘要

A new class of colloidal dielectric fluids was formulated with the objective of enhancing the dielectric and cooling performance of the constitutive base fluids a mineral and a synthetic oil for application in electro thermal environment. Colloidal particles with different dielectric properties were suspended by means of surfactants and sonication. Dielectric strength and thermal conductivity measurements were carried out for a number of different colloidal systems with varying particle volume fraction. An alternative non-destructive breakdown testing approach that limits the amount of electrical energy transferred to the test sample was employed to characterize the dielectric properties of suspensions. In general the addition of particles to the base fluids was detrimental for the overall dielectric strength except when iron oxide nanoparticles were added to mineral oil. On the other hand the thermal conductivity of the base fluids was increased by suspending the particles. Dielectric strength and thermal conductivity measurements of the different colloidal systems are interpreted and compared in light of the physical properties of the suspended particles and their base fluids.
机译:配制了一类新型的胶态介电液,其目的是增强用于电热环境的矿物和合成油的本构基础液的介电和冷却性能。具有不同介电性质的胶体颗粒通过表面活性剂和超声处理而悬浮。对具有不同颗粒体积分数的许多不同胶体系统进行了介电强度和导热率测量。采用另一种非破坏性击穿测试方法来限制悬浮液的介电性能,该方法限制了转移到测试样品中的电能。通常,除了将氧化铁纳米颗粒添加到矿物油中之外,向基础流体中添加颗粒对于总体介电强度是有害的。另一方面,通过悬浮颗粒来增加基础流体的导热率。根据悬浮颗粒及其基液的物理性质,解释和比较了不同胶体系统的介电强度和导热率测量结果。

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