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TEST RIG FOR EXTRACTION OF THE CONTACT PARAMETERS FOR PLANE ON PLANE CONTACT

机译:在平面接触上提取平面接触参数的试验台

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摘要

The modelling of the friction interfaces has received much attention in recent years from the aerospace industry. In order to obtain reliable prediction of the nonlinear dynamic behaviour of the disc and blades in the aerospace engine the friction forces at interfaces, such as in under-platform dampers, blade and fir tree roots or shrouds, must be modelled accurately. Two contact parameters, namely the contact stiffness and the coefficient of friction, are sufficient to model, with good accuracy, the friction contact. The contact parameters are obtained experimentally, and are of interest for the designer only if representative of the operational environment of the engine. To pursue this aim a test rig has been designed to perform experiments in a wide range of temperatures, with different combinations of normal and tangential load, frequencies and mating materials, representative of the real operating condition of the engine. Most of the rigs found in literature perform most likely point contact even if the two bodies have plane mating surfaces. The design of a real plane-on-plane contact test rig is not an easy task but despite the difficulty a solution was found in the design shown in this work. The core of the rig is a tilting mechanism enabling one surface to lies down on the other so that the plane-on-plane contact is achieved, at least within the flatness geometrical tolerance of the surfaces. The results of the experiments are the hysteresis loops, namely the tangential contact force against the relative displacement, from which the contact parameters can be calculated. Measurements of displacements are taken very close to the actual contact area and are performed by means of two laser interferometers. Localized heating is achieved by means of an induction heating machine while a thermocouple measures the temperature at points close to the contact area.
机译:近年来,摩擦界面的建模已受到航空航天工业的广泛关注。为了可靠地预测航空发动机中盘和叶片的非线性动力学行为,必须准确地建模界面处的摩擦力,例如平台下阻尼器,叶片和杉树的根部或护罩中的摩擦力。两个接触参数,即接触刚度和摩擦系数,足以以良好的精度对摩擦接触进行建模。接触参数是通过实验获得的,只有在代表发动机运行环境的情况下,设计人员才感兴趣。为了实现这一目标,设计了一种试验台,可以在很宽的温度范围内进行试验,并使用法向和切向载荷,频率和配合材料的不同组合来代表发动机的实际运行状况。文献中发现的大多数钻机最有可能进行点接触,即使两个主体具有平面配合表面也是如此。真正的平面接触试验台的设计不是一件容易的事,尽管有困难,但在这项工作所示的设计中却找到了解决方案。钻机的核心是倾斜机构,该倾斜机构使一个表面能够平放在另一表面上,从而至少在这些表面的平面几何公差范围内实现面对面的接触。实验的结果是磁滞回线,即相对于相对位移的切向接触力,由此可以计算出接触参数。位移的测量非常接近实际接触面积,并通过两个激光干涉仪执行。局部加热通过感应加热机实现,而热电偶则在靠近接触区域的位置测量温度。

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