首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.3 >EXPERIMENTAL STUDY ON WEAR AND FRACTURE IN AERONAUTICAL GEAR TRANSMISSIONS
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EXPERIMENTAL STUDY ON WEAR AND FRACTURE IN AERONAUTICAL GEAR TRANSMISSIONS

机译:航空齿轮传动机构磨损和断裂的实验研究

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This work presents some of the results obtained from an extensive experimental test campaign performed at the Department of Mechanical Nuclear and Production Engineering (DIMNP) of Pisa University with the partnership of Avio Propulsione Aerospaziale S.p.A. This test campaign, that is still being performed, is concerned with the characterization of teeth damage in high performance gear transmissions, such as aeronautical ones, characterized by high levels of velocity and load. Damage detection and monitoring have been pursued during all the tests in order to achieve a better understanding of causes and evolution of teeth damage. Moreover, to investigate the effects of different parameters on teeth damage, tests with different load, velocity, teeth geometry, materials and surface finishing, have been performed. The surface conditions of the gear teeth have been investigated using in particular two different instruments: a computer-controlled stylus profilometer able to perform 3D investigations and a scanning electron microscope (SEM) recently provided by a software for surface reconstruction.rnQualitative and quantitative changes in surface roughness have been detected.rnBesides the experimental activity, numerical analyses have been also started for finding theoretical criteria for surface damage prediction; some few obtained results are presented.rnDue to the vastness of the work performed, only a survey of the main results obtained till now is presented in the paper.
机译:这项工作介绍了在比萨大学机械核与生产工程系(DIMNP)与Avio Propulsione Aerospaziale SpA的合作下进行的广泛实验测试活动中获得的一些结果。该测试活动仍在进行中具有高性能齿轮变速器(如航空齿轮)中的齿损坏特征,其特征是高速度和高负荷。在所有测试中都进行了损伤检测和监视,以更好地了解牙齿损伤的原因和演变。而且,为了研究不同参数对牙齿损伤的影响,已经进行了具有不同负载,速度,牙齿几何形状,材料和表面光洁度的测试。齿轮齿的表面状况已使用两种不同的仪器进行了研究:一种计算机控制的测针轮廓仪,能够进行3D检查;最近由一种用于表面重建的软件提供的扫描电子显微镜(SEM)。除了实验活动外,还开始进行数值分析以寻找预测表面损伤的理论标准。由于所进行的工作量很大,因此本文仅介绍了迄今为止获得的主要结果。

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