首页> 外文会议>Congress of the International Council of the Aeronautical Sciences;International Council of the Aeronautical Sciences >MODERN MATERIALS IN AEROSPACE INDUSTRY - FATIGUE TESTS OF MAGNESIUM ALLOY CONTROL SYSTEM LEVER OF THE UNMANNED ILX - 27 HELICOPTER
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MODERN MATERIALS IN AEROSPACE INDUSTRY - FATIGUE TESTS OF MAGNESIUM ALLOY CONTROL SYSTEM LEVER OF THE UNMANNED ILX - 27 HELICOPTER

机译:航空航天业的现代材料-无人驾驶ILX-27直升机的镁合金控制系统杠杆的疲劳试验

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Paper presents new technology and materials applied in aerospace engineering. As an example, a main rotorcraft control–system lever is shown in studies aimed at approving the new material. The goal is to approve a new, lighter material i.e. AZ31 magnesium alloy, which will have the appropriate strength properties. The aim of implementing such amendments is to minimize the weight of an unmanned ILX-27 helicopter designed at the Institute of Aviation. Determination of static and dynamic strength of the lever is the basis for pre-determining the viability and approval of a new structural part for flight.In this project the fatigue tests of magnesium alloy AZ31 control-system lever of the ILX -27 unmanned helicopter was carried out. Test program of the lever is based on real data from flights of the ILX-27. Tests were performed on a test stand dedicated directly to the fatigue tests of the control lever and designed in such a way to accurately reflect the control-system lever loads occurring during the helicopter flight. Fatigue test had to give the answer about the strength of the control-system lever for up to 100 hours of flight of the unmanned helicopter ILX-27. Before proceeding to fatigue tests, we conducted a series of laboratory static strength tests which were preceded by the lever static strength calculations in the computing environment ANSYS Inc. Additionally, a geometry measurement of the control - system lever at CMM equipped with a laser scanner head was made to compare with the lever CAD model to assess the quality and method of conformance.Article contains conclusions about strength of the aluminium alloy control-system levers and the possibility of their implementation in a helicopter ILX-27. Additionally, short description of the ILX-27 program will be included.
机译:论文介绍了在航空航天工程中应用的新技术和新材料。例如,旨在批准新材料的研究中显示了主要的旋翼飞机控制系统操纵杆。目的是批准一种新的,重量更轻的材料,即AZ31镁合金,它将具有适当的强度特性。实施此类修正案的目的是最大程度地减少航空研究所设计的无人驾驶ILX-27直升机的重量。确定操纵杆的静态和动态强度是预先确定飞行新结构部件的可行性和批准的基础。 在该项目中,对ILX -27无人机的镁合金AZ31控制系统杠杆进行了疲劳测试。操纵杆的测试程序基于ILX-27飞行的真实数据。测试是在专门用于操纵杆疲劳测试的测试台上进行的,测试台的设计方式可以准确反映直升机飞行期间发生的控制系统操纵杆负载。疲劳测试必须给出有关无人直升机ILX-27长达100小时飞行的控制系统操纵杆强度的答案。在进行疲劳测试之前,我们进行了一系列实验室静态强度测试,然后在计算环境ANSYS Inc.中进行了杠杆静态强度计算。此外,还对配备有激光扫描仪头的CMM上的控制系统杠杆进行了几何测量。与杠杆CAD模型进行比较,以评估一致性的质量和方法。 本文包含有关铝合金控制系统杠杆强度及其在直升机ILX-27中实现的可能性的结论。此外,还将包括ILX-27程序的简短描述。

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