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首页> 外文期刊>Journal of industrial and engineering chemistry >Thermal deformation of epoxy type resin for neon transformer housing
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Thermal deformation of epoxy type resin for neon transformer housing

机译:霓虹变压器外壳用环氧树脂型环氧树脂的热变形

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摘要

This study focused on the experimental and theoretical evaluation of the thermal stability of epoxy resins for the development of neon transformer housings. A variety of hardeners was added to the epoxy resin to improve the thermal stability and workability of the neon transformer. Silicon dioxide (SiO2) also was added as a reinforcement filler. Then, the variation of the viscosity and thermal stability with the amount of reinforcement filler and hardener was evaluated. A hardener modified with cycloaliphatic amine was superior to the polyamide type hardener in terms of the physical properties and the optimum curing conditions were found to be a curing time of 70 min at 343 K. The viscosity of the epoxy resin increased with increasing amount of silicon dioxide (SiO2), whereas the volume deformation ratio used for the evaluation of the thermal stability decreased. As a result, it was concluded that the polyamide type hardener had superior characteristics in terms of the workability and thermal stability and that the optimum silicon dioxide (SiO2) content was 50 wt%.
机译:这项研究的重点是用于霓虹灯变压器外壳开发的环氧树脂热稳定性的实验和理论评估。各种硬化剂被添加到环氧树脂中,以改善霓虹变压器的热稳定性和可加工性。还添加了二氧化硅(SiO2)作为增强填料。然后,评估了粘度和热稳定性随增强填料和硬化剂的量的变化。用环脂族胺改性的固化剂在物理性能方面优于聚酰胺类固化剂,最佳固化条件为在343 K下固化时间为70分钟。环氧树脂的粘度随硅含量的增加而增加二氧化硅(SiO 2),而用于热稳定性评估的体积变形率降低。结果,得出结论,就可加工性和热稳定性而言,聚酰胺型固化剂具有优异的特性,并且最佳二氧化硅(SiO 2)含量为50重量%。

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