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Industrial Lubrication and Tribology最新文献

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Experimental study on adhesion recovery based on a circumferential test rig 基于圆周试验台的附着力恢复试验研究
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-02-13 DOI: 10.1108/ilt-11-2023-0379
Jiajun Zhou, Chao Chen, Chun Tian, Gengwei Zhai, Hao Yu

Purpose

To authenticate the existence and principles of the adhesion recovery phenomenon under water pollution conditions, an innovative circumferential rail–wheel adhesion test rig was used. The study conducted extensive tests on the adhesion characteristics under large sliding conditions.

Design/methodology/approach

Experiments were conducted to investigate the influence of speed, axle load and slip on adhesion recovery. Based on the experimental results, the adhesion recovery transition function was re-fitted.

Findings

The study reveals that the adhesion recovery phenomenon truly exists under water conditions. The adhesion coefficient shows an increasing trend with the growth of the slip ratio. Moreover, at the current speed and axle load levels, the adhesion recovery is directly proportional to the square of the slip ratio and inversely proportional to the axle load.

Originality/value

The phenomenon of adhesion recovery and the formulated equations in this study can serve as an experimental and theoretical foundation for the design of braking and anti-skid control algorithms for trains.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-11-2023-0379/

目的为了验证水污染条件下附着力恢复现象的存在和原理,使用了创新的圆周轨道-车轮附着力试验台。研究对大滑动条件下的附着特性进行了大量测试。设计/方法/途径通过实验研究了速度、轴载和滑移对附着恢复的影响。研究结果研究结果表明,水条件下确实存在附着力恢复现象。随着滑移率的增加,附着系数呈上升趋势。此外,在当前速度和车轴载荷水平下,附着恢复与滑移率的平方成正比,与车轴载荷成反比。原创性/价值附着恢复现象和本研究中的公式可作为列车制动和防滑控制算法设计的实验和理论基础。同行评议本文的同行评议历史可在以下网址查阅:https://publons.com/publon/10.1108/ILT-11-2023-0379/。
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引用次数: 0
Simulation and analysis of micro-textured rough curved surface based on fractal characterization method 基于分形表征法的微纹理粗糙曲面仿真与分析
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-02-09 DOI: 10.1108/ilt-09-2023-0298
Chunxia Zhu, Xianling Meng

Purpose

Micro-texture is processed on the surface to reduce the friction of the contact surface, and its application is more and more extensive. The purpose of this paper is to create a texture function model to study the influence of surface parameters on the accuracy of the simulated surface so that it can more accurately reflect the characteristics of the real micro-textured surface.

Design/methodology/approach

The microstructure function model of rough surfaces is established based on fractal geometry and polar coordinate theory. The offset angle θ is introduced into the fractal geometry function to make the surface asperity normal perpendicular to the tangent of the surface. The 2D and 3D contour surfaces of the surface groove texture are analyzed by MATLAB simulation. The effects of fractal parameters (D and G) and texture parameter h on the curvature of the surface micro-texture model were studied.

Findings

This paper more accurately characterizes the textured 3D curved surface, especially the surface curvature. The scale coefficient G significantly affects curvature, and the influence of fractal dimension D and texture parameters on curvature can be ignored.

Originality/value

The micro-texture model of the rough surface was successfully established, and the range of fractal parameters was determined. It provides a new method for the study of surface micro-texture tribology.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-09-2023-0298/

目的微纹理是对表面进行加工以减小接触面的摩擦力,其应用越来越广泛。本文的目的是创建纹理函数模型,研究表面参数对模拟表面精度的影响,使其能更准确地反映真实微纹理表面的特征。设计/方法/途径基于分形几何和极坐标理论建立粗糙表面的微结构函数模型。在分形几何函数中引入偏移角θ,使表面粗糙度法线垂直于表面切线。通过 MATLAB 仿真分析了表面凹槽纹理的二维和三维轮廓曲面。研究了分形参数(D 和 G)和纹理参数 h 对表面微纹理模型曲率的影响。研究结果本文更准确地描述了纹理三维曲面的特征,尤其是曲面曲率。尺度系数 G 对曲率有明显影响,分形维数 D 和纹理参数对曲率的影响可以忽略。同行评议本文的同行评议记录见:https://publons.com/publon/10.1108/ILT-09-2023-0298/。
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引用次数: 0
Insights into modeling approaches for boundary- and mixed-lubricated conditions 对边界和混合润滑条件建模方法的见解
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-02-07 DOI: 10.1108/ilt-03-2023-0076
Rajesh Shah, Blerim Gashi, Vikram Mittal, Andreas Rosenkranz, Shuoran Du

Purpose

Tribological research is complex and multidisciplinary, with many parameters to consider. As traditional experimentation is time-consuming and expensive due to the complexity of tribological systems, researchers tend to use quantitative and qualitative analysis to monitor critical parameters and material characterization to explain observed dependencies. In this regard, numerical modeling and simulation offers a cost-effective alternative to physical experimentation but must be validated with limited testing. This paper aims to highlight advances in numerical modeling as they relate to the field of tribology.

Design/methodology/approach

This study performed an in-depth literature review for the field of modeling and simulation as it relates to tribology. The authors initially looked at the application of foundational studies (e.g. Stribeck) to understand the gaps in the current knowledge set. The authors then evaluated a number of modern developments related to contact mechanics, surface roughness, tribofilm formation and fluid-film layers. In particular, it looked at key fields driving tribology models including nanoparticle research and prosthetics. The study then sought out to understand the future trends in this research field.

Findings

The field of tribology, numerical modeling has shown to be a powerful tool, which is both time- and cost-effective when compared to standard bench testing. The characterization of tribological systems of interest fundamentally stems from the lubrication regimes designated in the Stribeck curve. The prediction of tribofilm formation, film thickness variation, fluid properties, asperity contact and surface deformation as well as the continuously changing interactions between such parameters is an essential challenge for proper modeling.

Originality/value

This paper highlights the major numerical modeling achievements in various disciplines and discusses their efficacy, assumptions and limitations in tribology research.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-03-2023-0076/

目的 摩擦学研究是一项复杂的多学科研究,需要考虑许多参数。由于摩擦学系统的复杂性,传统实验既耗时又昂贵,因此研究人员倾向于使用定量和定性分析来监测关键参数,并使用材料表征来解释观察到的依赖关系。在这方面,数值建模和模拟为物理实验提供了一种经济有效的替代方法,但必须通过有限的测试进行验证。本文旨在重点介绍与摩擦学领域相关的数值建模方面的进展。作者首先考察了基础研究(如 Stribeck)的应用,以了解当前知识集的差距。然后,作者评估了与接触力学、表面粗糙度、三膜形成和流膜层有关的一些现代发展。特别是,它考察了推动摩擦学模型的关键领域,包括纳米粒子研究和假肢。研究结果表明,在摩擦学领域,数值建模是一种强大的工具,与标准的台架试验相比,它既省时又经济。从根本上说,相关摩擦学系统的表征源于斯特里贝克曲线中指定的润滑状态。对摩擦薄膜的形成、薄膜厚度的变化、流体特性、表面接触和表面变形以及这些参数之间不断变化的相互作用进行预测,是正确建模所面临的基本挑战。
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引用次数: 0
Vibration behavior of a 3D-printed hybrid polymer bearing with outer race defect 带有外圈缺陷的 3D 打印混合聚合物轴承的振动行为
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-02-07 DOI: 10.1108/ilt-06-2023-0183
Burcu Küçükoğlu Doğan, Abdurrahim Dal, Görkem Ağören, Tuncay Karaçay

Purpose

In industry applications, polymer hybrid bearings have become widespread in recent years owing to the lack of lubricant requirements, particularly in areas requiring hygiene. The additive manufacturing method gives significant advantages to have complex machinery parts, and it has become popular in the industry in recent years. However, it has some inherent disadvantages caused by layered deposition/addition of the materials, and the probability of the localized defect is much higher than in the conventional manufacturing methods. This study aims to investigate the effect of the outer race defect on the characteristics of vibration and service lifetime of hybrid polymer ball bearings produced with the stereolithography (SLA) additive manufacturing method.

Design/methodology/approach

In this study, polymer bearings’ races were produced with the additive manufacturing SLA method, and the outer race defect was analyzed with measured vibrations.

Findings

The results show that the additive manufacturing method suggests a practical solution for producing a polymer hybrid ball bearing. On the other hand, the hybrid three-dimensional-printed bearing, which has an outer race defect, worked for approximately 8 h without any problems under a 1 kg load and a shaft speed of around 1,000 rpm. In addition, when there is a defect in the outer and/or inner race of the ball bearing, the crest factor and kurtosis of the vibration are higher than faultless ball bearing, as expected.

Originality/value

This paper provides valuable information on the lifetime and vibration characteristics of polymer hybrid ball bearing produced by means of additive manufacturing.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-06-2023-0183/

目的 在工业应用中,由于对润滑剂的要求不高,特别是在要求卫生的领域,聚合物混合轴承近年来已得到广泛应用。增材制造方法在制造复杂机械零件方面具有显著优势,近年来已在工业领域得到普及。然而,由于材料的分层沉积/添加,它也有一些固有的缺点,而且局部缺陷的概率比传统制造方法要高得多。本研究旨在探讨外滚道缺陷对采用立体光刻(SLA)增材制造方法生产的混合聚合物球轴承的振动特性和使用寿命的影响。研究结果结果表明,增材制造方法为生产聚合物混合球轴承提供了一种实用的解决方案。另一方面,有外圈缺陷的混合三维打印轴承在 1 千克载荷和大约 1 000 转/分的轴转速下工作了大约 8 小时,没有出现任何问题。此外,当球轴承的外滚道和/或内滚道存在缺陷时,振动的波峰因数和峰度均高于无故障球轴承,这也在意料之中。原创性/价值本文为通过增材制造方法生产的聚合物混合球轴承的使用寿命和振动特性提供了有价值的信息。同行评议本文的同行评议记录可在以下网址查阅:https://publons.com/publon/10.1108/ILT-06-2023-0183/。
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引用次数: 0
Effect of pocket orientation on four pocket hybrid journal bearing operating with piezo-viscous polar lubricant 带压粘式极性润滑剂的四袋混合轴颈轴承的袋口方向影响
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-02-01 DOI: 10.1108/ilt-07-2023-0241
Vishal Singh, Arvind K. Rajput

Purpose

The present paper aims to analyse the synergistic effect of pocket orientation and piezo-viscous-polar (PVP) lubrication on the performance of multi-recessed hybrid journal bearing (MHJB) system.

Design/methodology/approach

To simulate the behaviour of PVP lubricant in clearance space of the MHJB system, the modified form of Reynolds equation is numerically solved by using finite element method. Galerkin’s method is used to obtain the weak form of the governing equation. The system equation is solved by Gauss–Seidal iterative method to compute the unknown values of nodal oil film pressure. Subsequently, performance characteristics of bearing system are computed.

Findings

The simulated results reveal that the location of pressurised lubricant inlets significantly affects the oil film pressure distribution and may cause a significant effect on the characteristics of bearing system. Further, the use of PVP lubricant may significantly enhances the performance of the bearing system, namely.

Originality/value

The present work examines the influence of pocket orientation with respect to loading direction on the characteristics of PVP fluid lubricated MHJB system and provides vital information regarding the design of journal bearing system.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-07-2023-0241/

设计/方法/途径为了模拟 PVP 润滑剂在 MHJB 系统间隙空间中的行为,使用有限元法对雷诺方程的修正形式进行了数值求解。伽勒金方法用于获得支配方程的弱形式。系统方程采用高斯-潮汐迭代法求解,以计算节点油膜压力的未知值。模拟结果表明,加压润滑剂入口的位置会显著影响油膜压力分布,并可能对轴承系统的特性产生重大影响。此外,使用 PVP 润滑剂可显著提高轴承系统的性能。原创性/价值本研究探讨了相对于加载方向的轴承座方向对 PVP 流体润滑的 MHJB 系统特性的影响,并提供了有关轴颈轴承系统设计的重要信息。同行评议本文的同行评议记录可在以下网址查阅:https://publons.com/publon/10.1108/ILT-07-2023-0241/。
{"title":"Effect of pocket orientation on four pocket hybrid journal bearing operating with piezo-viscous polar lubricant","authors":"Vishal Singh, Arvind K. Rajput","doi":"10.1108/ilt-07-2023-0241","DOIUrl":"https://doi.org/10.1108/ilt-07-2023-0241","url":null,"abstract":"<h3>Purpose</h3>\u0000<p>The present paper aims to analyse the synergistic effect of pocket orientation and piezo-viscous-polar (PVP) lubrication on the performance of multi-recessed hybrid journal bearing (MHJB) system.</p><!--/ Abstract__block -->\u0000<h3>Design/methodology/approach</h3>\u0000<p>To simulate the behaviour of PVP lubricant in clearance space of the MHJB system, the modified form of Reynolds equation is numerically solved by using finite element method. Galerkin’s method is used to obtain the weak form of the governing equation. The system equation is solved by Gauss–Seidal iterative method to compute the unknown values of nodal oil film pressure. Subsequently, performance characteristics of bearing system are computed.</p><!--/ Abstract__block -->\u0000<h3>Findings</h3>\u0000<p>The simulated results reveal that the location of pressurised lubricant inlets significantly affects the oil film pressure distribution and may cause a significant effect on the characteristics of bearing system. Further, the use of PVP lubricant may significantly enhances the performance of the bearing system, namely.</p><!--/ Abstract__block -->\u0000<h3>Originality/value</h3>\u0000<p>The present work examines the influence of pocket orientation with respect to loading direction on the characteristics of PVP fluid lubricated MHJB system and provides vital information regarding the design of journal bearing system.</p><!--/ Abstract__block -->\u0000<h3>Peer review</h3>\u0000<p>The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-07-2023-0241/</p><!--/ Abstract__block -->","PeriodicalId":13523,"journal":{"name":"Industrial Lubrication and Tribology","volume":"368 1","pages":""},"PeriodicalIF":1.6,"publicationDate":"2024-02-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139644619","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":4,"RegionCategory":"工程技术","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
Interactive spatiotemporal LSTM approach for enhanced industrial fault diagnosis 用于增强工业故障诊断的交互式时空 LSTM 方法
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-01-31 DOI: 10.1108/ilt-04-2023-0086
Tan Zhang, Zhanying Huang, Ming Lu, Jiawei Gu, Yanxue Wang

Purpose

Rotating machinery is a crucial component of large equipment, and detecting faults in it accurately is critical for reliable operation. Although fault diagnosis methods based on deep learning have been significantly developed, the existing methods model spatial and temporal features separately and then weigh them, resulting in the decoupling of spatiotemporal features.

Design/methodology/approach

The authors propose a spatiotemporal long short-term memory (ST-LSTM) method for fault diagnosis of rotating machinery. The authors collected vibration signals from real rolling bearing and gearing test rigs for verification.

Findings

Through these two experiments, the authors demonstrate that machine learning methods still have advantages on small-scale data sets, but our proposed method exhibits a significant advantage due to the simultaneous modeling of the time domain and space domain. These results indicate the potential of the interactive spatiotemporal modeling method for fault diagnosis of rotating machinery.

Originality/value

The authors propose a ST-LSTM method for fault diagnosis of rotating machinery. The authors collected vibration signals from real rolling bearing and gearing test rigs for verification.

目的旋转机械是大型设备的重要组成部分,准确检测其故障对于可靠运行至关重要。虽然基于深度学习的故障诊断方法得到了长足发展,但现有方法将空间特征和时间特征分别建模,然后进行权衡,导致时空特征不耦合。通过这两项实验,作者证明了机器学习方法在小规模数据集上仍具有优势,但由于我们提出的方法同时对时域和空域进行建模,因此具有显著优势。这些结果表明了交互式时空建模方法在旋转机械故障诊断方面的潜力。作者收集了真实滚动轴承和齿轮试验台的振动信号进行验证。
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引用次数: 0
Effect of process parameters on the growth and wear resistance of CrAlN coating on silicon nitride surface 工艺参数对氮化硅表面 CrAlN 涂层的生长和耐磨性的影响
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-01-29 DOI: 10.1108/ilt-10-2023-0344
He Lu, Yuhou Wu, Zijin Liu, He Wang, Guangyu Yan, Xu Bai, Jiancheng Guo, Tongxiang Zheng

Purpose

Preparing CrAlN coatings on the surface of silicon nitride bearings can improve their service life in oil-free lubrication. This paper aims to match the optimal process parameters for preparing CrAlN coatings on silicon nitride surfaces, and reveal the microscopic mechanism of process parameter influence on coating wear resistance.

Design/methodology/approach

This study used molecular dynamics to analyze how process parameters affected the nucleation density, micromorphology, densification and internal stress of CrAlN coatings. An orthogonal test method was used to examine how deposition time, substrate temperature, nitrogen-argon flow rate and sputtering power impacted the wear resistance of CrAlN coatings under dry friction conditions.

Findings

Nucleation density, micromorphology, densification and internal stress have a significant influence on the surface morphology and wear resistance of CrAlN coatings. The process parameters for better wear resistance of the CrAlN coatings were at a deposition time of 120 min, a substrate temperature of 573 K, a nitrogen-argon flow rate of 1:1 and a sputtering power of 160 W.

Originality/value

Simulation analysis and experimental results of this paper can provide data to assist in setting process parameters for applying CrAlN coatings to silicon nitride bearings.

目的 在氮化硅轴承表面制备 CrAlN 涂层可以提高轴承在无油润滑条件下的使用寿命。本文旨在匹配氮化硅表面制备 CrAlN 涂层的最佳工艺参数,并揭示工艺参数影响涂层耐磨性的微观机理。本研究采用分子动力学方法分析了工艺参数如何影响 CrAlN 涂层的成核密度、微观形貌、致密化和内应力。研究结果成核密度、微形貌、致密化和内应力对 CrAlN 涂层的表面形貌和耐磨性有显著影响。在沉积时间为 120 分钟、基底温度为 573 K、氮气-氩气流速为 1:1 和溅射功率为 160 W 的条件下,CrAlN 涂层具有更好的耐磨性。
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引用次数: 0
Parametric optimization to establish eco-friendly nanofluid minimum quantity lubrication (NMQL) practice for turning superalloy Inconel 718 进行参数优化,为车削超耐热合金 Inconel 718 制定生态友好型纳米流体最小量润滑 (NMQL) 方案
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-01-25 DOI: 10.1108/ilt-10-2023-0317
Talwinder Singh

Purpose

The purpose of this paper, an experimental study, is to investigate the optimal machining parameters for turning of nickel-based superalloy Inconel 718 under eco-friendly nanofluid minimum quantity lubrication (NMQL) environment to minimize cutting tool flank wear (Vb) and machined surface roughness (Ra).

Design/methodology/approach

The central composite rotatable design approach under response surface methodology (RSM) is adopted to prepare a design of experiments plan for conducting turning experiments.

Findings

The optimum value of input turning parameters: cutting speed (A), feed rate (B) and depth of cut (C) is found as 79.88 m/min, 0.1 mm/rev and 0.2 mm, respectively, with optimal output response parameters: Vb = 138.633 µm and Ra = 0.462 µm at the desirability level of 0.766. Feed rate: B and cutting speed: A2 are the leading model variables affecting Vb, with a percentage contribution rate of 12.06% and 43.69%, respectively, while cutting speed: A and feed rate: B are the significant factors for Ra, having a percentage contribution of 38.25% and 18.03%, respectively. Results of validation experiments confirm that the error between RSM predicted and experimental observed values for Vb and Ra is 3.28% and 3.75%, respectively, which is less than 5%, thus validating that the formed RSM models have a high degree of conformity with the obtained experimental results.

Practical implications

The outcomes of this research can be used as a reference machining database for various metal cutting industries to establish eco-friendly NMQL practices during the turning of superalloy Inconel 718 to enhance cutting tool performance and machined surface integrity.

Originality/value

No study has been communicated till now on the turning of Inconel 718 under NMQL conditions using olive oil blended with multi-walled carbon nanotubes-based nanofluid.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-10-2023-0317/

目的本文是一项实验研究,旨在探讨在环保型纳米流体最小量润滑(NMQL)环境下车削镍基超合金 Inconel 718 的最佳加工参数,以最大限度地减少切削刀具侧面磨损(Vb)和加工表面粗糙度(Ra)。结果发现输入车削参数:切削速度 (A)、进给速度 (B) 和切削深度 (C) 的最佳值分别为 79.88 m/min、0.1 mm/rev 和 0.2 mm,输出响应参数最佳:Vb = 138.633 微米和 Ra = 0.462 微米,理想度为 0.766。进给速度B 和切削速度A2 是影响 Vb 的主要模型变量,贡献率分别为 12.06% 和 43.69%:A和进给量而切削速度:A 和进给量:B 是影响 Ra 的重要因素,贡献率分别为 38.25% 和 18.03%。验证实验结果证实,Vb 和 Ra 的 RSM 预测值与实验观测值之间的误差分别为 3.28% 和 3.75%,小于 5%,从而验证了所建立的 RSM 模型与所获得的实验结果具有高度的一致性。独创性/价值迄今为止,还没有关于在 NMQL 条件下使用橄榄油混合多壁碳纳米管纳米流体车削 Inconel 718 的研究。同行评审本文的同行评审历史可在以下网站查阅:https://publons.com/publon/10.1108/ILT-10-2023-0317/。
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引用次数: 0
Effect of nano-AlN, Al2O3 on friction and wear properties of copper-steel clad plate immersed in the lubricants 纳米氮化铝、氧化铝对浸入润滑剂的铜-钢复合板的摩擦和磨损性能的影响
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-01-25 DOI: 10.1108/ilt-08-2023-0255
Xiaoxuan Lin, Xiong Sang, Yuyan Zhu, Yichen Zhang

Purpose

This paper aims to investigate the preparation of AlN and Al2O3, as well as the effect of nano-AlN and nano-Al2O3, on friction and wear properties of copper-steel clad plate immersed in the lubricants.

Design/methodology/approach

Nano-AlN or nano-Al2O3 (0.1, 0.2, 0.3, 0.4 and 0.5 Wt.%) functional fluids were prepared. Their tribological properties were tested by an MRS-10A four-ball friction tester and a ball-on-plate configuration, and scanning electron microscope observed the worn surface of the plate.

Findings

An increase in nano-AlN and Al2O3 content enhances the extreme pressure and anti-wear performance of the lubricant. The best performance is achieved at 0.5 Wt.% of nano-AlN and 0.3 Wt.% of nano-Al2O3 with PB of 834 N and 883 N, a coefficient of friction (COF) of approximately 0.07 and 0.06, respectively. Furthermore, the inclusion of nano-AlN and nano-Al2O3 particles in the lubricant enhances its extreme pressure performance and reduces wear, leading to decreased wear spot depth. The lubricating effect of the nano-Al2O3 lubricant on the surface of the copper-steel composite plate is slightly superior to that of the nano-AlN lubricant, with a COF reaching 0.07. Both lubricants effectively fill and lubricate the holes on the surface of the copper-steel composite plate.

Originality/value

AlN and Al2O3 as water-based lubricants have excellent lubrication performance and can reduce the COF. It can provide some reference for the practical application of nano-water-based lubricants.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-08-2023-0255/

目的 本文旨在研究 AlN 和 Al2O3 的制备以及纳米 AlN 和纳米 Al2O3 对浸入润滑剂的铜-钢复合板的摩擦和磨损性能的影响。结果纳米氮化铝和氧化铝含量的增加提高了润滑剂的极压和抗磨性能。纳米氮化铝(0.5 Wt.%)和纳米氧化铝(0.3 Wt.%)含量达到最佳性能,PB 分别为 834 N 和 883 N,摩擦系数(COF)分别约为 0.07 和 0.06。此外,在润滑剂中加入纳米 AlN 和纳米 Al2O3 颗粒可提高其极压性能并减少磨损,从而降低磨损点深度。纳米 Al2O3 润滑剂对铜-钢复合板表面的润滑效果略优于纳米 AlN 润滑剂,其 COF 达到 0.07。两种润滑剂都能有效填充和润滑铜钢复合板表面的孔洞。它可以为纳米水基润滑剂的实际应用提供一些参考。同行评议本文的同行评议记录可在以下网址查阅:https://publons.com/publon/10.1108/ILT-08-2023-0255/。
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引用次数: 0
Numerical simulation study of high-speed lip seal considering eccentricity 考虑偏心的高速唇形密封件数值模拟研究
IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Pub Date : 2024-01-25 DOI: 10.1108/ilt-11-2023-0350
Guibin Tan, Jinfu Li, Cheng Zhou, Ziwei Luo, Xing Huang, Fei Guo

Purpose

This paper aims to focus on the high-speed rotary lip seal in aircraft engines, combining its service parameters, its own structure and application conditions, to study the influence of different eccentric forms, eccentricity, rotational speed and other factors on the performance of the rotary lip seal.

Design/methodology/approach

A numerical simulation model for high-speed eccentric rotary lip seals has been developed based on the theory of elastic hydrodynamic lubrication. This model comprehensively considers the coupling of multiple physical fields, including interface hydrodynamics, macroscopic solid mechanics and surface microscopic contact mechanics, under the operating conditions of rotary lip seals. The model takes into account eccentricity and uses the hazardous cross-sectional method to quantitatively predict sealing performance parameters, such as leakage rate and friction force.

Findings

Eccentricity has a large impact on lip seal performance; lips are more susceptible to wear failure under static eccentricity and to leakage failure under dynamic eccentricity.

Originality/value

This study provides a new idea for the design of rotary lip seal considering eccentricity, which is of guiding significance for the engineering application of rotary lip seal.

目的 本文以航空发动机中的高速旋转唇形密封为研究对象,结合其服役参数、自身结构和应用条件,研究不同偏心形式、偏心率、转速等因素对旋转唇形密封性能的影响。设计/方法/途径 基于弹性流体动力润滑理论,建立了高速偏心旋转唇形密封的数值模拟模型。该模型全面考虑了旋转唇形密封工作条件下多个物理场的耦合,包括界面流体力学、宏观固体力学和表面微观接触力学。研究结果偏心率对唇式密封性能影响较大;在静态偏心率下,唇式密封更容易发生磨损失效,而在动态偏心率下,唇式密封更容易发生泄漏失效。
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Industrial Lubrication and Tribology
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