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Tribological design of a multistep journal bearing

机译:多级轴颈轴承的摩擦学设计

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摘要

Journal bearings are machine elements with widespread application. The extent of their use, from the automobile engines to gas turbines, gives a significant incentive for improvement of their performance. Various approaches focusing on the journal bearing design have been used in the past in order to reduce power losses and increase load carrying capacity of journal bearings, including artificial texturing, axial and circumferential grooves and bushing specific shapes (e.g. three-lobe bearings). In this paper, the multistep journal bearing is examined. Its performance benefits are quantified. A maximum friction coefficient improvement of 38% is obtained with simultaneous 9.7% improvement of load capacity in comparison to the plain bearing. The specific operating conditions under which these benefits occur are established. The physical mechanism responsible for these improvements is discussed by correlating pressure, shear stress distribution, lubricant thickness and bushing geometry. The ultimate objective of this work is to suggest certain design principles that may adjust the improvement of the desired operating characteristics of the multistep journal bearing. The surface configuration of the bushing is relatively simple and is thus easy to be manufactured. (C) 2016 Elsevier B.V. All rights reserved.
机译:滑动轴承是具有广泛应用的机械元件。从汽车发动机到燃气轮机的广泛使用,极大地刺激了其性能的提高。过去已经使用了各种着重于轴颈轴承设计的方法,以减少轴颈轴承的功率损耗并增加其承载能力,包括人工纹理化,轴向和周向凹槽以及衬套的特定形状(例如三瓣轴承)。本文研究了多级轴颈轴承。量化其性能收益。与滑动轴承相比,最大摩擦系数提高了38%,同时负载能力提高了9.7%。确定了产生这些好处的特定操作条件。通过关联压力,剪切应力分布,润滑剂厚度和衬套几何形状来讨论造成这些改进的物理机制。这项工作的最终目的是提出某些设计原则,这些原则可能会调整多级轴颈轴承的所需工作特性的改善。衬套的表面构造相对简单,因此易于制造。 (C)2016 Elsevier B.V.保留所有权利。

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