Movement behavior of oil droplet on porous surfaces under the influence of orifice structure

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL Industrial Lubrication and Tribology Pub Date : 2024-09-12 DOI:10.1108/ilt-04-2024-0118
Guotao Zhang, Zan Zhang, Zhaochang Wang, Yanhong Sun, Baohong Tong, Deyu Tu
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Abstract

Purpose

The lubricating fluid stored in the porous matrix will spontaneously exude to supplement the lubricating film in the damaged area, thus ensuring the long-term self-lubricating function of the porous surface. To reveal the repair mechanism of oil film, it is necessary to understand the flow characteristics of oil in micropores. The purpose of this study guides the design of micropore structure to realize the rapid exudation of oil to the porous surface and the rapid repair of the lubricating film.

Design/methodology/approach

In this paper, cylindrical orifice, convergent orifice and divergent orifice were studied. The numerical model of lubricating oil exudation in micropores was established. The distribution characteristics of oil pressure, velocity and three-phase contact line in the process of oil exudation were investigated. The effects of different orifice shapes and orifice structure parameters on the pinning and spreading characteristics of oil droplet were analyzed. Then the internal mechanisms of oil droplet formation and spread on the orifice surface were summarized.

Findings

The results show that during the process of oil exudation, the three-phase contact line of the oil drop is pinned once at the edge of the cylindrical and convergent orifice. Compared with the three orifice structures, the inlet pressure of the oil drop is low, and the oil velocity at the pinning point is stable in the divergent orifice. Resulting in favorable oil exudation. It is easier for oil droplet to depin by appropriately reducing the wall wetting angle, increasing the aperture or controlling the wall inclination angle. Ensure the self-healing and long-lasting lubrication film of porous oil-bearing surfaces.

Practical implications

The effect of pore structure on the flow behavior of lubricating fluid has always been concerned. But the mechanism by which different orifice shape affect the pinning behavior of oil droplets is not yet clear, which is crucial for understanding the self-healing mechanism of oil films on porous surfaces. It is meaningful to analyze the mechanism of oil exudation and spreading on the porous surface of oil in the special orifice, to optimize the design of the orifice structure.

Originality/value

Orifice shape has influence on internal flow field parameters. There is no report on the influence of orifice shape on the film formation process of oil seepage and diffusion from pores. The effects of different orifice shapes and orifice structure parameters on the characteristics of oil droplet pinning and diffusion were studied.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-04-2024-0118/

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孔口结构影响下油滴在多孔表面上的运动行为
目的 多孔基体中储存的润滑油会自发渗出,补充受损区域的润滑油膜,从而确保多孔表面的长期自润滑功能。要揭示油膜的修复机制,就必须了解油在微孔中的流动特性。本文研究了圆柱孔、收敛孔和发散孔。建立了润滑油在微孔中渗出的数值模型。研究了渗油过程中的油压、油速和三相接触线的分布特征。分析了不同孔口形状和孔口结构参数对油滴钉扎和扩散特性的影响。结果表明,在油渗出过程中,油滴的三相接触线在圆柱形孔口和收敛孔口的边缘被钉住一次。与三种孔口结构相比,发散孔口的油滴入口压力较低,钉点处的油速稳定。从而有利于油的渗出。通过适当减小孔壁润湿角、增大孔径或控制孔壁倾角,可使油滴更容易渗出。实际意义孔隙结构对润滑油流动行为的影响一直受到关注。但不同孔口形状影响油滴钉扎行为的机理尚不清楚,而这对于理解多孔表面油膜的自修复机理至关重要。分析油在特殊孔口多孔表面渗出和扩散的机理,对优化孔口结构设计具有重要意义。目前还没有关于孔口形状对油从孔隙渗出和扩散的成膜过程的影响的报道。研究了不同孔口形状和孔口结构参数对油滴钉住和扩散特性的影响。同行评议本文的同行评议历史见: https://publons.com/publon/10.1108/ILT-04-2024-0118/。
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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.
期刊最新文献
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