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Design and commission of an experimental test rig to apply a full-scale pressure load on composite sandwich panels representative of an aircraft secondary structure

机译:设计和调试实验性试验台,以在代表飞机二级结构的复合夹芯板上施加满负荷压力

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This paper describes the design of a test rig, which is used to apply a representative pressure load to a full-scale composite sandwich secondary aircraft structure. A generic panel was designed with features to represent those in the composite sandwich secondary aircraft structure. To provide full-field strain data from the panels, the test rig was designed for use with optical measurement techniques such as thermoelastic stress analysis (TSA) and digital image correlation (DIC). TSA requires a cyclic load to be applied to a structure for the measurement of the strain state; therefore, the test rig has been designed to be mounted on a standard servo-hydraulic test machine. As both TSA and DIC require an uninterrupted view of the surface of the test panel, an important consideration in the design is facilitating the optical access for the two techniques. To aid the test rig design a finite element (FE) model was produced. The model provides information on the deflections that must be accommodated by the test rig, and ensures that the stress and strain levels developed in the panel when loaded in the test rig would be sufficient for measurement using TSA and DIC. Finally, initial tests using the test rig have shown it to be capable of achieving the required pressure and maintaining a cyclic load. It was also demonstrated that both TSA and DIC data can be collected from the panels under load, which are used to validate the stress and deflection derived from the FE model.
机译:本文介绍了一种试验台的设计,该试验台用于向全尺寸复合夹心二级飞机结构施加代表性压力载荷。设计了通用面板,其功能可以代表复合夹心二级飞机结构中的功能。为了提供面板的全场应变数据,该测试装置设计用于光学测量技术,例如热弹性应力分析(TSA)和数字图像相关性(DIC)。 TSA要求将周期性载荷施加到用于测量应变状态的结构上。因此,该测试台已设计为安装在标准伺服液压测试机上。由于TSA和DIC都需要不间断地查看测试面板的表面,因此设计中的重要考虑因素是促进这两种技术的光学访问。为了协助测试台设计,制作了有限元(FE)模型。该模型提供有关测试设备必须适应的挠度的信息,并确保将面板加载到测试设备中时面板上产生的应力和应变水平足以使用TSA和DIC进行测量。最后,使用试验台进行的初步测试表明,它能够达到所需的压力并保持周期性载荷。还证明了在载荷作用下可以从面板上收集TSA和DIC数据,这些数据用于验证从FE模型得出的应力和挠度。

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