基于先进CFD模拟的15 kV户外传感器活性环氧树脂铸造工艺优化

D. Raschka, Bandeep Singh
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引用次数: 0

摘要

本文提出了一种基于数值计算流体力学的先进研究方法。这种计算可以让研究人员和工程师从流体动力学、传热和固化(凝固)放热化学反应现象的角度来了解环脂肪族聚合物热固性环氧树脂在铸造过程中的行为。以室外电流电压传感器为例,介绍了该方法。通过对环氧树脂铸造过程的数值模拟得出的结果有助于减少产品开发时间和成本,改进生产工艺,提高户外环氧树脂封装电源产品的性能和使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of reactive epoxy casting process of 15 kV outdoor sensor using advanced CFD simulations
The paper presents an advanced investigation method based on numerical computational fluid dynamics. This calculation allows researches and engineers to understand cycloaliphatic polymeric thermoset epoxy resin behavior during casting process from the fluid dynamics, heat transfer and curing (solidification) exothermal chemical reaction phenomenon point of view. Method is presented on an example of outdoor current and voltage sensor. Results generated by the numerical simulation of the epoxy resin casting process have helped to reduce both product development time and costs, improve the production processes and to improve performance and service life of outdoor epoxy resin encapsulated power product.
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