Reverse Engineering and Database of Off-the-Shelf Propellers for Middle-Size Multirotors

Yeong-Ki Jung, K. Chang, Sang-Hwan Park, Van-Thanh Ho, H. Shim, Min-Woo Kim
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Abstract

In this work, 22 off-the-shelf propellers of 15–40 inches in diameter are reverse-engineered using a scanning system and reverse engineering software. Geometric information, including the diameter and pitch of the propeller and its airfoil sections, are extracted, and the chord length and twist angle of the extracted airfoil sections are investigated. All processes for reverse engineering are validated through comparison with design drawing information, product and performance data of the KPROP propeller designed by Korea Aerospace Research Institute. Based on the validated process, a database of 22 commercial propellers from four companies is constructed containing all the reverse-engineered information. The chord length, the maximum length and twist angle with respect to the diameter of the extracted airfoil section are analyzed in comparison with each other depending on the company and propeller size. In addition, the thrust and torque are simulated using computational fluid dynamic methodology, and the predictions are compared with reference data provided by the manufacturers.
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中型多旋翼机螺旋桨的逆向工程与数据库
在这项工作中,使用扫描系统和逆向工程软件对22个直径为15-40英寸的现成螺旋桨进行了逆向工程。提取了螺旋桨及其翼型截面的直径和节距等几何信息,并对提取的翼型截面的弦长和扭角进行了研究。通过与韩国航空宇宙研究院设计的KPROP螺旋桨设计图信息、产品和性能数据的对比,验证了逆向工程的所有流程。基于验证过程,构建了包含四家公司22架商用螺旋桨的数据库,其中包含所有逆向工程信息。弦长,最大长度和扭转角相对于提取的翼型截面的直径进行了分析,在相互比较取决于公司和螺旋桨的大小。此外,采用计算流体动力学方法对推力和扭矩进行了模拟,并将预测结果与制造商提供的参考数据进行了比较。
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