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通过飞行前负载测试对无人机结构进行数值与实验研究。

Numerical and Experimental UAV Structure Investigation by Pre-Flight Load Test.

作者信息

Kurnyta Artur, Zielinski Wojciech, Reymer Piotr, Dragan Krzysztof, Dziendzikowski Michal

机构信息

Air Force Institute of Technology, Airworthiness Division, Warsaw 01-494, Poland.

出版信息

Sensors (Basel). 2020 May 26;20(11):3014. doi: 10.3390/s20113014.

Abstract

This paper presents the preparation and execution of on-ground static and engine load tests for the composite unmanned aerial vehicle (UAV). The test was conducted for pre-flight structural strength verification of the remotely piloted aerial target named HORNET, after introducing some structural modifications. The ground tests were performed before the flight test campaign, to ensure the strength and operational safety of the modified structure. The panel method and Computer Aided Design (CAD) modelling were adopted for numerical evaluation of aerodynamic and inertial forces' distribution to simulate loading scenarios for launch, flight and parachute deploying conditions during the static test. Then, the multi-stage airframe static test was prepared and executed with the use of a designed modular test rig, artificial masses, as well as a wireless strain measurement system to perform structure verification. The UAV was investigated with 150% of the typical load spectrum. Furthermore, an engine test was also conducted on a ground test stand to verify strain and vibration levels in correspondence to engine speed, as well as the reliability of data link and the lack of its interferences with wireless control and telemetry. In the article, data achieved from the numerical and experimental parts of the test are discussed, as well as post-test remarks are given.

摘要

本文介绍了复合无人机(UAV)地面静态和发动机负载测试的准备与实施情况。在对名为“大黄蜂”的遥控空中目标进行了一些结构修改后,为其飞行前的结构强度验证进行了该测试。地面测试在飞行测试活动之前进行,以确保修改后结构的强度和运行安全性。在静态测试期间,采用面板法和计算机辅助设计(CAD)建模对空气动力和惯性力分布进行数值评估,以模拟发射、飞行和降落伞展开条件下的负载情况。然后,使用设计的模块化试验台、人工配重以及无线应变测量系统准备并执行了多阶段机身静态测试,以进行结构验证。该无人机以典型负载谱的150%进行了研究。此外,还在地面试验台上进行了发动机测试,以验证对应发动机转速时的应变和振动水平,以及数据链路的可靠性及其对无线控制和遥测的无干扰情况。本文讨论了测试数值和实验部分获得的数据,并给出了测试后的评论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9870/7309142/c79034238150/sensors-20-03014-g001.jpg

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