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Simulation on the Performance of a Driven Fan Made by Polyester/Epoxy interpenetrate polymer network (IPN)

机译:用聚酯/环氧树脂互向聚合物网络(IPN)制造的驱动风扇的性能模拟

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The main purpose of this study is to investigate the performance of a driven fan design made by Polyester/Epoxy interpenetrate polymer network (IPN) material that specifically used for turbocharger compressor. Polyester/Epoxy IPN is polymer plastics that was used as replacements for traditional polymers and has been widely used in a variety of applications because of their limitless conformations. Simulation based on several parameters which are air pressure, air velocity and air temperature have been carried out for a driven fan design performance of two different materials, aluminum alloy (existing driven fan design) and Polyester/Epoxy IPN using SolidWorks Flow Simulation software. Results from both simulations were analyzed and compared where both materials show similar performance in terms of air pressure and air velocity due to similar geometric and dimension, but Polyester/Epoxy IPN produces lower air temperature than aluminum alloy. This study shows a preliminary result of the potential Polyester/Epoxy IPN to be used as a driven fan design material. In the future, further studies will be conducted on detail simulation and experimental analysis.
机译:本研究的主要目的是探讨由专门用于涡轮增压器压缩机的聚酯/环氧树脂互连聚合物网络(IPN)材料制成的从动风扇设计的性能。聚酯/环氧IPN是用作传统聚合物的替代品的聚合物塑料,并且由于其无限的构象而被广泛用于各种应用中。基于几种参数的仿真,采用SolidWorks Flow仿真软件的两种不同材料,铝合金(现有从动风扇设计)和聚酯/环氧IPN的驱动风扇设计性能进行了若干参数。两种模拟的结果进行了分析并比较,其中两种材料由于类似的几何和尺寸而在气压和空气速度方面显示出类似的性能,但聚酯/环氧IPN产生比铝合金更低的空气温度。本研究表明,潜在的聚酯/环氧IPN用作从动风扇设计材料的初步结果。将来,将在详细的仿真和实验分析进行进一步研究。

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