Influence of manufacturing surface topography on torque and load bearing capacity of hydro-viscous drive clutch under mixed lubrication stage

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL Industrial Lubrication and Tribology Pub Date : 2024-01-01 DOI:10.1108/ilt-07-2023-0223
Shi Chen, Zhiyong Han, Qiang Zeng, Bing Wang, Liming Wang, Liuyang Guo, Yimin Shao
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Abstract

Purpose

Hydro-viscous drive (HVD) clutches are widely used in equipment requiring soft start, such as fans and pumps, to transmit torque and adjust speed by changing the gap distance between friction pairs. This paper aims to propose a novel two-parameter evaluation method for HVD during the mixed lubrication stage. The objective is to develop an effective model that establishes the relationship between these parameters and the actual surface topography.

Design/methodology/approach

In the presented methods, the fractal features of the real manufacturing surface are calculated based on the power spectrum function by the ultra-depth three-dimensional microscope. After that, the hybrid friction model of the friction plate is established based on mixed elasto-hydrodynamic lubrication theory, boundary friction model and fractal theory. Then the torque and load bearing characteristics of the clutch are obtained, and the influences of the surface fractal features are investigated and discussed. Finally, the Weierstrass–Mandelbrot function is adopted for the surface topography characterization and evaluation.

Findings

The results indicate that the proposed method exhibits good accuracy, while the speed difference between the friction pair exceeds 2,500 rpm. It is concluded that this paper proposed a way to evaluate the torque and loading capacity of HVD considering the real manufacturing surface topography and is helpful for surface optimization.

Originality/value

The originality and value of this study lie in its development of a novel torque and load bearing capacity evaluation method for HVD in mixed lubrication stage, considering manufacturing surface topography and describing the real manufacturing surface.

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制造表面形貌对混合润滑阶段液力粘性传动离合器扭矩和承载能力的影响
目的液压粘性传动(HVD)离合器广泛应用于风机和泵等需要软启动的设备中,通过改变摩擦副之间的间隙距离来传递扭矩和调节速度。本文旨在为混合润滑阶段的 HVD 提出一种新颖的双参数评估方法。在所提出的方法中,实际制造表面的分形特征是通过超深三维显微镜基于功率谱函数计算得出的。然后,基于混合弹流润滑理论、边界摩擦模型和分形理论建立摩擦片的混合摩擦模型。然后得到了离合器的扭矩和承载特性,并对表面分形特征的影响进行了研究和讨论。结果表明,所提出的方法具有良好的精度,而摩擦副之间的转速差超过了 2,500 rpm。原创性/价值本研究的原创性和价值在于它开发了一种新颖的混合润滑阶段 HVD 扭矩和承载能力评估方法,考虑了制造表面形貌并描述了实际制造表面。
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来源期刊
Industrial Lubrication and Tribology
Industrial Lubrication and Tribology 工程技术-工程:机械
CiteScore
3.00
自引率
18.80%
发文量
129
审稿时长
1.9 months
期刊介绍: Industrial Lubrication and Tribology provides a broad coverage of the materials and techniques employed in tribology. It contains a firm technical news element which brings together and promotes best practice in the three disciplines of tribology, which comprise lubrication, wear and friction. ILT also follows the progress of research into advanced lubricants, bearings, seals, gears and related machinery parts, as well as materials selection. A double-blind peer review process involving the editor and other subject experts ensures the content''s validity and relevance.
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