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Gear rattle dynamics: Lubricant force formulation analysis on stationary conditions

机译:齿轮拨浪鼓动力学:固定条件的润滑力配制分析

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摘要

Gear rattle is a common and inherent phenomenon to multi-stage-constant-mesh gearboxes, since this kind of transmission consist of two different types of gear pairs: active and inactive stages. The former is in charge of transmitting the energy, whilst the latter, although its teeth are engaged, is loosely connected to the output shaft. Gear rattle problematic resides in undesirable impacts and fluctuations in the inactive gears provoked by their interaction with the active stage, leading to vibrations which can produce fails in elements connected or belonging to the gearbox. In this regard, understanding the lubricant role is crucial, being this aspect the key to comprehend the dynamic behaviour of low-loaded gear transmissions and to palliate these phenomenon consequences as the ultimate goal of this research. Within this context, in this work, six formulations, which consider both entraining and squeeze fluid effects, were implemented in gear transmission models previously developed by the authors in order to calculate the hydrodynamic forces. Special attention was paid to the fluid viscosity influence on the dynamic behaviour under stationary conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:齿轮拨浪鼓是多级恒定网格齿轮箱的常见和固有的现象,因为这种传动装置由两种不同类型的齿轮对包括:主动和非活动阶段。前者负责传递能量,而后者虽然其齿啮合,但是松散地连接到输出轴。齿轮响响声问题位于与活性阶段的相互作用引起的非活动齿轮中的不良影响和波动,导致可以在连接或属于齿轮箱的元件中产生的振动。在这方面,了解润滑剂的作用至关重要,这是这种方面,理解低负载齿轮传输的动态行为并使这些现象的后果成为这项研究的最终目标。在这种情况下,在这项工作中,在先前由作者开发的齿轮传输模型中实现了六种考虑夹带和挤压流体效应的制剂,以便计算流体动力。特别注意流体粘度对静止条件下动态行为的影响。 (c)2019年elestvier有限公司保留所有权利。

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