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EHSA PRIMARY FLIGHT CONTROLS SEALS WEAR DEGRADATION MODEL

机译:EHSA初级飞行控制密封件磨损降解模型

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Seals are widely used in hydraulic power systems to prevent fluid leakages. However, several types of degradation can decrease the performance of these components such as wear, which induces changes in the geometry of the cross-section area, influencing their sealing capability. Over the years, their behaviour has been primarily investigated with several theoretical and experimental researches. All these valuable results can be considered as a starting point for further investigations on the interaction between seals and the complete hydraulic equipment and on the root of seals degradation. This article proposes a physical model of performance degradation acting on dynamic seals of an electro-hydraulic servo-actuator (EHSA) ram for primary flight controls. In this article, a dynamic non-linear seals degradation model has been developed, based on the Hart-Smith hyperelasticity model, which physically describes the stress and strain of "rubber-like" materials. Similarly, wearing has been assessment by using the Archard's equation. Furthermore, different operating temperatures have been considered to analyze the effect on seals performances. The integration between the mentioned seals degradation model and the high-fidelity model of the complete EHSA allows to evaluate the influence of various wear levels on the actuator behaviour. This research activity is inserted into a more extensive project of Prognostic and Health Management (PHM) of EHSAs. The results of the proposed simulations reveal how the performance of an EHSA can be affected by seals degradations.
机译:密封件广泛用于液压动力系统,以防止流体泄漏。然而,若干类型的劣化可以降低这些部件的性能,例如磨损,这会引起横截面区域的几何形状的变化,影响它们的密封能力。多年来,他们的行为主要是有几种理论和实验研究的研究。所有这些有价值的结果都可以被视为进一步调查密封件和完整的液压设备之间的相互作用以及密封件降解的根部的起点。本文提出了一种用于初级飞行控制的电动液压伺服致动器(EHSA)RAM的动态密封的性能下降的物理模型。在本文中,一个动态的非线性密封件劣化模型已经发展的基础上,哈特 - 史密斯超弹性模型,其中物理上记载了“像橡胶”的材料的应力和应变。同样,佩戴已经通过使用Archard的等式进行评估。此外,已经考虑了不同的操作温度来分析对密封性性能的影响。所提到的密封件劣化模型与完整EHSA的高保真模型之间的集成允许评估各种磨损水平对致动器行为的影响。该研究活动被插入了EHSAS的更广泛的预后和健康管理(PHM)项目。建议模拟的结果揭示了EHSA的性能如何受到密封的影响。

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