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FRICTION DAMPING MODELING IN HIGH STRESS CONTACT AREAS USING MICROSLIP FRICTION MODEL

机译:基于微摩擦摩擦模型的高应力接触区域摩擦阻尼建模

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It is well known that friction is really important to reduce amplitudes of vibration of rotor blades. Underplatform dampers are a common solution for introducing friction damping, but there are also other friction damping sources on blades that are produced in places with high normal loads and small relative displacements (e.g. lockplates and blade-disc joints).Several approaches based on the classical Coulomb friction law have been used in order to model the friction damping at those interfaces, but their results are not accurate enough for those cases with small displacements where high normal loads appear.This paper presents simulations of typical cases of friction on rotor blades (underplatform dampers, lockplates and blade root) using a method based on macroslip and the method developed by 'Industria de TurboPropulsores' (ITP) based on microslip (InTerPart MIcroslip COntact method), and their comparison with experimental results obtained with several tests performed at Imperial College London (IC).The comparison shows that, for cases with high normal loads and small displacements, the ITPMICO method obtains further more accurate results than based-on-macroslip one.
机译:众所周知,摩擦对于减小转子叶片的振动幅度确实非常重要。平台下的阻尼器是引入摩擦阻尼的常见解决方案,但是叶片上还有其他摩擦阻尼源,它们是在法向载荷较高且相对位移较小的地方(例如,锁板和叶片-圆盘接头)生产的。 为了模拟那些界面处的摩擦阻尼,已经使用了几种基于经典库仑摩擦定律的方法,但是对于那些位移较小且出现高法向载荷的情况,其结果不够准确。 本文介绍了使用基于大滑移的方法和基于'Industria de TurboPropulsores'(ITP)的基于微滑移的方法(InTerPart MIcroslip COntact方法)对转子叶片(平台下的阻尼器,锁板和叶片根部)摩擦的典型情况的模拟,并将其与在伦敦帝国学院(IC)进行的几次测试获得的实验结果进行比较。 比较表明,对于高法向载荷和小位移的情况,ITPMICO方法比基于大位移的方法获得了更准确的结果。

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