采用熔融沉积成型工艺的多向风机叶片模型试验

K. Mayandi, Jinka Rupesh Kumar, K. Kanagaraja, P. Ramalingam, S. Kanna, G. Suresh
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引用次数: 2

摘要

为了开发轻量化的多流量风扇叶片,本研究采用增材制造技术生产PLA材料叶片,为了促进PLA材料的应用,在对其进行流动分析的同时,对其耐久性、抗拉强度、弹性性能等力学性能进行研究变得至关重要。本研究的两个新颖部分是PLA材料的力学性能分析和风扇叶片模型的CFD分析,以高效地执行。研究结果表明,增材制造的PLA材料的拉伸强度和弹性随着打印角度和厚度的增加而增加,达到阈值水平。对于涉及风扇叶片的应用,所获得的所有实验结果都在令人满意的范围内。因此,该材料可以在不影响叶片质量和应用要求的情况下适用于制造风扇叶片。通过CFD分析,设计了风机叶片及其扭转角度,从而在各个方向上获得最大气流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimentation of multi directional fan blade model using fused deposition modeling process
In order to develop the light weight multi flow fan blades, additive manufacturing have been used to produce the PLA material blades in this research and to promote the application of PLA, it became essential to investigate the mechanical properties such as endurance and tensile strength elastic property along with the flow analysis. Two novel segments of this research are the analysis of the PLA material for the mechanical properties and the CFD analysis of the fan blade model to perform with high effectiveness. As the outcome of the research, it is observed that the tensile strength and elasticity of PLA materials manufactured through additive manufacturing increases with the increase in printing angle and thickness up to a threshold level. All the experimental results obtained are in the satisfactory range for an application involving fan blades. So the material can be suitable for the fabricating the fan blades without compromising the quality of the blades and application requirements. The CFD analysis have also been performed to design the fan blade and its twisting angle, thereby the maximum air flow can be obtained in all the directions.
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