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Effects of Spectrum Loading and break in period using molybdenum disulphide (MoS2) and zinc dialkyl dithiophosphate (ZDDP) as EP additives in lithium based grease 在锂基润滑脂中使用二硫化钼(MoS2)和二烷基二硫代磷酸锌(ZDDP)作为极压添加剂对光谱加载和磨合期的影响
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-16 DOI: 10.1108/ilt-01-2024-0016
Gabi N. Nehme, Najat G. Nehme

Purpose

The purpose of variable loading conditions (392 N-785N-392N-785N) with break-in period were used to study interactions between zinc dialkyl dithiophosphate (ZDDP) 0.1 P% (phosphorus) and fine-grade molybdenum disulfide (MoS2) 3%, in different mixtures of NLGI 2 lithium stearate grease. Four-ball wear tests were used to evaluate the tribological properties of different grease mixtures such as coefficient of friction and wear. ASTM 2266 as reported by earlier studies is useful, but it is not representative of real-life applications where variable loads and speeds and different break-in periods play a role and could change the results and the nature of tribofilms.

Design/methodology/approach

In this study, chemical and mechanical properties of tribofilms were examined. Moreover, design of experiment was used to examine the data and shorten experimentation time. Research described here is investigating variable loading conditions for real-life applications by using a break-in period of 2 min at the start to minimize asperities and establish a clean surface. Design expert (DOE) analyzes responses to reveal those variables that are single factor and those that are multifactor whether synergistically or antagonistically.

Findings

The results indicated that spectrum loading with break-in period showed reduction in wear when tested in greases with ZDDP/MoS2 combinations. Ramping up or down the load every 7.5 min for a rotational speed of 1,200 rpm and a total of 36,000 revolutions or 30-min time slowed the wear properties of lithium-based grease under different MoS2 and ZDDP concentrations. Experiments indicated that wear was largely dependent on the loading condition and ZDDP additives during specific break-in period at 1,200 rotational speed. It is believed that MoS2 greases perform better under spectrum loading and under constant loading when mixed with ZDDP phosphorus.

Originality/value

This research indicates that there is a synergistic interaction between ZDDP, MoS2 and variable loading especially when a break-in period is applied. The results indicated that wear was largely dependent on the specific speed used with spectrum loading as presented in the energy dispersive spectroscopy and the Auger electron spectroscopy analysis, and thus a 3% MoS2 grease with ZDDP (phosphorus: 0.1 Wt.%) are needed to improve the wear resistance and improve the friction characteristics.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-01-2024-0016/

目的利用带有磨合期的不同加载条件(392 N-785N-392N-785N)研究 NLGI 2 硬脂酸锂基润滑脂不同混合物中 0.1 P% 的二烷基二硫代磷酸锌(ZDDP)(磷)和 3% 的高级二硫化钼(MoS2)之间的相互作用。四球磨损试验用于评估不同润滑脂混合物的摩擦学特性,如摩擦系数和磨损。早期研究报告中的 ASTM 2266 标准是有用的,但它不能代表实际应用,因为在实际应用中,不同的负载和速度以及不同的磨合期都会发挥作用,并可能改变结果和三联膜的性质。此外,还使用了实验设计来检查数据并缩短实验时间。此处描述的研究是通过在开始时使用 2 分钟的磨合期来调查实际应用中的可变加载条件,以尽量减少毛刺并建立清洁的表面。设计专家(DOE)对反应进行分析,以揭示哪些变量是单因素,哪些变量是多因素,是协同作用还是拮抗作用。研究结果表明,在含 ZDDP/MoS2 组合的润滑脂中进行测试时,带磨合期的频谱加载可减少磨损。在转速为 1,200 rpm、总转数为 36,000 转或 30 分钟的条件下,每 7.5 分钟增加或减少一次负载,减缓了不同 MoS2 和 ZDDP 浓度下锂基润滑脂的磨损特性。实验表明,在转速为 1 200 转/分的特定磨合期内,磨损在很大程度上取决于加载条件和 ZDDP 添加剂。该研究表明,ZDDP、MoS2 和可变负载之间存在协同作用,尤其是在磨合期内。研究结果表明,磨损在很大程度上取决于使用频谱加载时的具体速度,能量色散光谱分析和欧杰电子能谱分析均表明了这一点,因此需要使用含 ZDDP(磷:0.1 Wt.%)的 3% MoS2 润滑脂来提高耐磨性并改善摩擦特性。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-01-2024-0016/。
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引用次数: 0
Tribological performances of MoS2/C60 nanocomposite as lubricating additive in dioctyl sebacate 作为癸二酸二辛酯润滑添加剂的 MoS2/C60 纳米复合材料的摩擦学性能
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-16 DOI: 10.1108/ilt-10-2023-0321
Ziyan Lu, Feng Qiu, Hui Song, Xianguo Hu

Purpose

This paper aims to solve the problems molybdenum disulfide (MoS2) nanosheets suffer from inadequate dispersion stability and form a weak lubricating film on the friction surface, which severely limits their application as lubricant additives.

Design/methodology/approach

MoS2/C60 nanocomposites were prepared by synthesizing molybdenum disulfide (MoS2) nanosheets on the surface of hydrochloric acid-activated fullerenes (C60) by in situ hydrothermal method. The composition, structure and morphology of MoS2/C60 nanocomposites were characterized. Through the high-frequency reciprocating tribology test, its potential as a lubricant additive was evaluated.

Findings

MoS2/C60 nanocomposites that were prepared showed good dispersion in dioctyl sebacate (DOS). When 0.5 Wt.% MoS2/C60 was added, the friction reduction performance and wear resistance improved by 54.5% and 62.7%, respectively.

Originality/value

MoS2/C60 composite nanoparticles were prepared by in-situ formation of MoS2 nanosheets on the surface of C60 activated by HCl through hydrothermal method and were used as potential lubricating oil additives.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-10-2023-0321/

目的 本文旨在解决二硫化钼(MoS2)纳米片分散稳定性不足,在摩擦表面形成的润滑膜较弱,严重限制了其作为润滑油添加剂的应用等问题。设计/方法/途径 通过原位水热法在盐酸活化富勒烯(C60)表面合成二硫化钼(MoS2)纳米片,制备了 MoS2/C60 纳米复合材料。对 MoS2/C60 纳米复合材料的组成、结构和形貌进行了表征。研究结果制备的 MoS2/C60 纳米复合材料在癸二酸二辛酯(DOS)中表现出良好的分散性。原创性/价值通过水热法在盐酸活化的 C60 表面原位形成 MoS2 纳米片制备了 MoS2/C60 复合纳米颗粒,并将其用作潜在的润滑油添加剂。同行评议本文的同行评议历史见:https://publons.com/publon/10.1108/ILT-10-2023-0321/。
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引用次数: 0
Influence of microtextured parameters of dry gas sealing rings on tribological performance 干气密封环微纹理参数对摩擦学性能的影响
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-12 DOI: 10.1108/ilt-12-2023-0389
Delin Chen

Purpose

This study aims to research the influence mechanism of microtextured geometric parameters of dry gas seal end face on the tribological behavior under dry frictional conditions.

Design/methodology/approach

The microtexture was processed using laser processing, while the diamond-like carbon (DLC) film was applied through magnetron sputtering; the experimental platform of friction vibration was established, the frictional and vibrational properties of different geometric parameters were tested; the data signals of vibrational acceleration and frictional torque were collected and processed using data acquisition instrument. The entropy characteristic parameters of 3D vibrational acceleration were extracted based on wavelet packet decomposition method. The end-face topography was measured with ST400 three-dimensional noncontact surface topography instrument.

Findings

The geometry of pits plays a key role in influencing friction performance; the permutation entropy and fuzzy entropy of the vibration acceleration signal changed with variations in microtextured parameters. A textured surface with appropriately size parameters can trap debris, enhance the dynamic pressure effect, reduce impact between the friction interfaces and improve the frictional vibrational performance. In this research, microtextured surface with Φ150 µm-10% and Φ200 µm-5% can effectively reduce friction and vibration between the end faces of a dry gas seal.

Originality/value

DLC film improves the hardness of seal ring end face, and microtexture improves the dynamic effect; the tribological behavior monitoring can be realized by analyzing the characteristics of vibration acceleration sensitive parameter with friction state. The findings will provide a basis for further research in the field of tribology and the microtexture optimization of dry gas seal ring end face.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-12-2023-0389/

目的 研究干气密封端面微纹理几何参数对干摩擦条件下摩擦学行为的影响机理。设计/方法/途径 采用激光加工方法对端面进行微纹理处理,并通过磁控溅射方法对端面进行类金刚石碳(DLC)薄膜涂覆;建立摩擦振动实验平台,测试不同几何参数的摩擦振动特性;利用数据采集仪采集并处理振动加速度和摩擦力矩数据信号。基于小波包分解法提取了三维振动加速度的熵特征参数。结果凹坑的几何形状对摩擦性能的影响至关重要;振动加速度信号的包络熵和模糊熵随微纹理参数的变化而变化。具有适当尺寸参数的纹理表面可以截留碎屑,增强动压效应,减少摩擦界面之间的冲击力,改善摩擦振动性能。本研究中,Φ150 µm-10% 和 Φ200 µm-5% 的微纹理表面可有效减少干气密封端面之间的摩擦和振动。 原创性/价值DLC 膜提高了密封环端面的硬度,微纹理提高了动态效果;通过分析振动加速度敏感参数随摩擦状态的变化特征,可实现摩擦学行为监测。这些发现将为摩擦学领域的进一步研究和干气密封环端面微观纹理的优化提供依据。同行评议本文的同行评议记录见:https://publons.com/publon/10.1108/ILT-12-2023-0389/。
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引用次数: 0
Effect of texture parameters on the lubrication performance of static and dynamic pressure thrust bearings and multi-objective optimization 质地参数对静压力和动压力推力轴承润滑性能的影响及多目标优化
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-12 DOI: 10.1108/ilt-10-2023-0340
Xiaodong Yu, Guangqiang Shi, Hui Jiang, Ruichun Dai, Wentao Jia, Xinyi Yang, Weicheng Gao

Purpose

This paper aims to study the influence of cylindrical texture parameters on the lubrication performance of static and dynamic pressure thrust bearings (hereinafter referred to as thrust bearings) and to optimize their lubrication performance using multiobjective optimization.

Design/methodology/approach

The influence of texture parameters on the lubrication performance of thrust bearings was studied based on the modified Reynolds equation. The objective functions are predicted through the BP neural network, and the texture parameters were optimized using the improved multiobjective ant lion algorithm (MOALA).

Findings

Compared with smooth surface, the introduction of texture can improve the lubrication properties. Under the optimization of the improved algorithm, when the texture diameter, depth, spacing and number are approximately 0.2 mm, 0.5 mm, 5 mm and 34, respectively, the loading capacity is increased by around 27.7% and the temperature is reduced by around 1.55°C.

Originality/value

This paper studies the effect of texture parameters on the lubrication properties of thrust bearings based on the modified Reynolds equation and performs multiobjective optimization through an improved MOALA.

目的 本文旨在研究圆柱形纹理参数对静压和动压推力轴承(以下简称推力轴承)润滑性能的影响,并利用多目标优化法对其润滑性能进行优化。通过 BP 神经网络预测目标函数,并使用改进的多目标蚁狮算法(MOALA)对纹理参数进行优化。在改进算法的优化下,当纹理直径、深度、间距和数量分别约为 0.2 mm、0.5 mm、5 mm 和 34 时,承载能力提高了约 27.7%,温度降低了约 1.55°C。
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引用次数: 0
Characterization of the friction-induced attractor trajectories during the running-in process in ball-on-disk tribosystem 球-盘摩擦系统磨合过程中摩擦诱发的吸引子轨迹表征
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-10 DOI: 10.1108/ilt-09-2023-0304
Yuting Wang, Guodong Sun, Haisheng Wang, Bobo Jian

Purpose

The purpose of this study is to solve the issues of time-consuming and complicated computation of traditional measures, as well as the underutilization of two-dimensional (2D) phase-trajectory projection matrix, so a new set of features were proposed based on the projection of attractors trajectory to characterize the friction-induced attractors and to reveal the tribological behavior during the running-in process.

Design/methodology/approach

The frictional running-in experiments were conducted by sliding a ball against a static disk, and the friction coefficient was collected to reconstruct the friction-induced attractors. The projection of the attractors in 2D subspace was then mapped and the distribution of phase points was adapted to conduct the feature extraction.

Findings

The evolution of the proposed moment measures could be described as “initial rapid decrease/increase- midterm gradual decrease/increase- finally stable,” which could effectively reveal the convergence degree of the friction-induced attractors. Moreover, the measures could also describe the relative position of the attractors in phase–space domain, which reveal the amplitude evolution of signals to some extent.

Originality/value

The proposed measures could reveal the evolution of tribological behaviors during the running-in process and meet the more precise real-time running-in status identification.

目的为了解决传统测量方法耗时长、计算复杂以及二维相位-轨迹投影矩阵利用率低等问题,提出了一套基于吸引子轨迹投影的新特征来表征摩擦诱导吸引子,揭示磨合过程中的摩擦学行为。设计/方法/途径摩擦磨合实验是通过小球在静态圆盘上滑动,收集摩擦系数来重建摩擦诱发吸引子。研究结果所提出的力矩测量值的演化过程可描述为 "初期快速减小/增大-中期逐渐减小/增大-最后稳定",这能有效揭示摩擦诱导吸引子的收敛程度。原创性/价值所提出的测量方法可以揭示磨合过程中摩擦学行为的演变,满足更精确的实时磨合状态识别。
{"title":"Characterization of the friction-induced attractor trajectories during the running-in process in ball-on-disk tribosystem","authors":"Yuting Wang, Guodong Sun, Haisheng Wang, Bobo Jian","doi":"10.1108/ilt-09-2023-0304","DOIUrl":"https://doi.org/10.1108/ilt-09-2023-0304","url":null,"abstract":"<h3>Purpose</h3>\u0000<p>The purpose of this study is to solve the issues of time-consuming and complicated computation of traditional measures, as well as the underutilization of two-dimensional (2D) phase-trajectory projection matrix, so a new set of features were proposed based on the projection of attractors trajectory to characterize the friction-induced attractors and to reveal the tribological behavior during the running-in process.</p><!--/ Abstract__block -->\u0000<h3>Design/methodology/approach</h3>\u0000<p>The frictional running-in experiments were conducted by sliding a ball against a static disk, and the friction coefficient was collected to reconstruct the friction-induced attractors. The projection of the attractors in 2D subspace was then mapped and the distribution of phase points was adapted to conduct the feature extraction.</p><!--/ Abstract__block -->\u0000<h3>Findings</h3>\u0000<p>The evolution of the proposed moment measures could be described as “initial rapid decrease/increase- midterm gradual decrease/increase- finally stable,” which could effectively reveal the convergence degree of the friction-induced attractors. Moreover, the measures could also describe the relative position of the attractors in phase–space domain, which reveal the amplitude evolution of signals to some extent.</p><!--/ Abstract__block -->\u0000<h3>Originality/value</h3>\u0000<p>The proposed measures could reveal the evolution of tribological behaviors during the running-in process and meet the more precise real-time running-in status identification.</p><!--/ Abstract__block -->","PeriodicalId":13523,"journal":{"name":"Industrial Lubrication and Tribology","volume":null,"pages":null},"PeriodicalIF":1.6,"publicationDate":"2024-04-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"140567062","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
A comprehensive review of non-destructive methods for bearing lubricating oil film thickness measurement 轴承润滑油膜厚度非破坏性测量方法综述
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-04-08 DOI: 10.1108/ilt-11-2023-0364
Fei Shang, Bo Sun, Dandan Cai

Purpose

The purpose of this study is to investigate the application of non-destructive testing methods in measuring bearing oil film thickness to ensure that bearings are in a normal lubrication state. The oil film thickness is a crucial parameter reflecting the lubrication status of bearings, directly influencing the operational state of bearing transmission systems. However, it is challenging to accurately measure the oil film thickness under traditional disassembly conditions due to factors such as bearing structure and working conditions. Therefore, there is an urgent need for a nondestructive testing method to measure the oil film thickness and its status.

Design/methodology/approach

This paper introduces methods for optically, electrically and acoustically measuring the oil film thickness and status of bearings. It discusses the adaptability and measurement accuracy of different bearing oil film measurement methods and the impact of varying measurement conditions on accuracy. In addition, it compares the application scenarios of other techniques and the influence of the environment on detection results.

Findings

Ultrasonic measurement stands out due to its widespread adaptability, making it suitable for oil film thickness detection in various states and monitoring continuous changes in oil film thickness. Different methods can be selected depending on the measurement environment to compensate for measurement accuracy and enhance detection effectiveness.

Originality/value

This paper reviews the basic principles and latest applications of optical, electrical and acoustic measurement of oil film thickness and status. It analyzes applicable measurement methods for oil film under different conditions. It discusses the future trends of detection methods, providing possible solutions for bearing oil film thickness detection in complex engineering environments.

目的 本研究旨在探讨无损检测方法在测量轴承油膜厚度中的应用,以确保轴承处于正常润滑状态。油膜厚度是反映轴承润滑状态的重要参数,直接影响轴承传动系统的运行状态。然而,受轴承结构和工作条件等因素的影响,在传统的拆卸条件下精确测量油膜厚度是一项挑战。因此,迫切需要一种无损检测方法来测量油膜厚度及其状态。本文介绍了光学、电学和声学测量轴承油膜厚度和状态的方法。本文讨论了不同轴承油膜测量方法的适应性和测量精度,以及不同测量条件对精度的影响。研究结果超声波测量法因其广泛的适应性而脱颖而出,适用于各种状态下的油膜厚度检测和油膜厚度连续变化的监测。本文综述了光学、电学和声学测量油膜厚度和状态的基本原理和最新应用。分析了不同条件下适用的油膜测量方法。它讨论了检测方法的未来趋势,为复杂工程环境中的轴承油膜厚度检测提供了可能的解决方案。
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引用次数: 0
Prediction and comparative analysis of friction material properties using a GA-SVM optimization model 利用 GA-SVM 优化模型对摩擦材料性能进行预测和比较分析
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-03-29 DOI: 10.1108/ilt-10-2023-0328
Jianping Zhang, Leilei Wang, Guodong Wang

Purpose

With the rapid advancement in the automotive industry, the friction coefficient (FC), wear rate (WR) and weight loss (WL) have emerged as crucial parameters to measure the performance of automotive braking systems, so the FC, WR and WL of friction material are predicted and analyzed in this work, with an aim of achieving accurate prediction of friction material properties.

Design/methodology/approach

Genetic algorithm support vector machine (GA-SVM) model is obtained by applying GA to optimize the SVM in this work, thus establishing a prediction model for friction material properties and achieving the predictive and comparative analysis of friction material properties. The process parameters are analyzed by using response surface methodology (RSM) and GA-RSM to determine them for optimal friction performance.

Findings

The results indicate that the GA-SVM prediction model has the smallest error for FC, WR and WL, showing that it owns excellent prediction accuracy. The predicted values obtained by response surface analysis are closed to those of GA-SVM model, providing further evidence of the validity and the rationality of the established prediction model.

Originality/value

The relevant results can serve as a valuable theoretical foundation for the preparation of friction material in engineering practice.

目的随着汽车工业的快速发展,摩擦系数(FC)、磨损率(WR)和失重率(WL)已成为衡量汽车制动系统性能的重要参数,因此本研究对摩擦材料的 FC、WR 和 WL 进行了预测和分析,旨在实现对摩擦材料性能的准确预测。设计/方法/途径本研究通过应用遗传算法支持向量机(GA-SVM)模型,对 SVM 进行优化,从而建立摩擦材料性能预测模型,实现摩擦材料性能的预测和对比分析。结果表明,GA-SVM 预测模型对 FC、WR 和 WL 的误差最小,表明其具有极高的预测精度。相关结果可为工程实践中摩擦材料的制备提供有价值的理论依据。
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引用次数: 0
Friction and wear performances of 7075 aluminum alloy surface with V-shaped microtexture via numerical simulation and experimental characterizations 通过数值模拟和实验表征具有 V 形微纹理的 7075 铝合金表面的摩擦和磨损性能
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-03-26 DOI: 10.1108/ilt-11-2023-0351
Cong Ding, Zhizhao Qiao, Zhongyu Piao

Purpose

The purpose of this study is to design and process the optimal V-shaped microstructure for 7075 aluminum alloy and reveal its wear resistance mechanism and performance.

Design/methodology/approach

The hydrodynamic pressure lubrication models of the nontextured, V-shaped, circular and square microtextures are established. The corresponding oil film pressure distributions are explored. The friction and wear experiments are conducted on a rotating device. The effects of the microstructure shapes and sizes on the wear mechanisms are investigated via the friction coefficients and surface morphologies.

Findings

In comparison, the V-shaped microtexture has the largest oil film carrying capacity and the lowest friction coefficient. The wear mechanism of the V-shaped microtexture is dominated by abrasive and adhesive wear. The V-shaped microtexture has excellent wear resistance under a side length of 300 µm, an interval of 300 µm and a depth of 20 µm.

Originality/value

This study is conductive to the design of wear-resistant surfaces for friction components.

设计/方法/途径 建立了无纹理、V 形、圆形和方形微观组织的流体动力压力润滑模型。探讨了相应的油膜压力分布。在旋转设备上进行了摩擦和磨损实验。通过摩擦系数和表面形态研究了微结构形状和尺寸对磨损机理的影响。V 形微纹理的磨损机理主要是磨料磨损和粘着磨损。在边长为 300 微米、间隔为 300 微米、深度为 20 微米的条件下,V 形微纹理具有优异的耐磨性。
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引用次数: 0
Effect of line parameters on wheel wear of heavy–haul freight vehicle 线路参数对重型货运车辆车轮磨损的影响
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-03-22 DOI: 10.1108/ilt-02-2024-0038
Hongkun Wang, Yongxiang Zhao, Yayun Qi, Yufeng Cao

Purpose

The serious wear problem of heavy-haul freight vehicle wheels affects the safety and economy of vehicle operation. This paper aims to study wheel wear evolution law and the influence of line parameters on wheel wear of heavy-haul freight, and provide the basis for operation and line maintenance.

Design/methodology/approach

The wheel wear test data of heavy-haul freight vehicles were analyzed. Then a heavy-haul freight vehicle dynamic model was established. The line parameters influencing wheel wear in heavy-haul freight vehicles were also analyzed by the Jendel wear model, and the effects of rail cant, rail gauge, rail profile and line ramp on wheel wear were analyzed.

Findings

A rail cant of 1:40 results in less wheel wear; an increase in the rail gauge can reduce wheel wear; and when matched with the CHN60 rail, the wear depth is relatively small. A decrease of 9.21% in wheel wear depth when matched with the CHN60 rail profile. The ramp of the heavy-haul line is necessary to consider for calculating wheel wear. When the ramp is considered, the wear depth increases by 8.47%. The larger the ramp, the greater the braking force and therefore, the greater of the wheel wear.

Originality/value

This paper first summarizes the wear characteristics of wheels in heavy-haul freight vehicles and then systematically analyzes the effect of line parameters on wheel wear. In particular, this study researched the effects of rail cant, rail gauge, rail profile and line ramp on wheel wear.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-02-2024-0038/

目的重型货运车辆车轮磨损问题严重,影响了车辆运行的安全性和经济性。本文旨在研究重型货运车辆车轮磨损演变规律及线路参数对车轮磨损的影响,为运营和线路维护提供依据。然后建立了重型货运车辆动态模型。研究结果轨距为 1:40 时,车轮磨损较小;轨距增大可减少车轮磨损;与 CHN60 钢轨匹配时,磨损深度相对较小。与 CHN60 钢轨匹配时,车轮磨损深度减少了 9.21%。计算车轮磨损时需要考虑重载线路的坡道。考虑坡道时,磨损深度增加了 8.47%。本文首先总结了重载货运车辆车轮的磨损特征,然后系统分析了线路参数对车轮磨损的影响。特别是,本研究探讨了轨道坡度、轨距、轨道剖面和线路坡度对车轮磨损的影响。同行评议本文的同行评议历史见:https://publons.com/publon/10.1108/ILT-02-2024-0038/。
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引用次数: 0
Static and dynamic characteristics of large-span six-slider closed hydrostatic guideway considering pitch moment and yaw moment 考虑俯仰力矩和偏航力矩的大跨度六滑块封闭式静压导轨的静态和动态特性
IF 1.6 4区 工程技术 Q2 Engineering Pub Date : 2024-03-20 DOI: 10.1108/ilt-09-2023-0281
Heji Zhang, Dezhao Lu, Wei Pan, Xing Rong, Yongtao Zhang

Purpose

The purpose of this study is to design a closed hydrostatic guideway has the ability to resist large-side load, pitch moments and yaw moments, has good stiffness and damping characteristics, and provides certain beneficial guidance for the design of large-span closed hydrostatic guideway on the basis of providing a large vertical load bearing capacity.

Design/methodology/approach

The Reynolds’ equation and flow continuity equation are solved simultaneously by the finite difference method, and the perturbation method and the finite disturbance method is used for calculating the dynamic characteristics. The static and dynamic characteristics, including recess pressure, flow of lubricating oil, carrying capacity, pitch moment, yaw moment, dynamic stiffness and damping, are comprehensively analyzed.

Findings

The designed closed hydrostatic guideway has the ability to resist large lateral load, pitch moment and yaw moment and has good stiffness and damping characteristics, on the basis of being able to provide large vertical carrying capacity, which can meet the application requirements of heavy two-plate injection molding machine (TPIMM).

Originality/value

This paper researches static and dynamic characteristics of a large-span six-slider closed hydrostatic guideway used in heavy TPIMM, emphatically considering pitch moment and yaw moment. Some useful guidance is given for the design of large-span closed hydrostatic guideway.

设计/方法/途径采用有限差分法同时求解雷诺方程和流动连续性方程,采用扰动法和有限扰动法计算动态特性。研究结果所设计的闭式静压导轨在能够提供较大垂直承载能力的基础上,具有抵抗较大侧向载荷、俯仰力矩和偏航力矩的能力,并具有良好的刚度和阻尼特性,能够满足重型双板注塑机(TPIMM)的应用要求。原创性/价值 本文研究了重型 TPIMM 中使用的大跨度六滑块封闭式静压导轨的静态和动态特性,重点考虑了俯仰力矩和偏航力矩。为大跨度封闭式静压导轨的设计提供了一些有用的指导。
{"title":"Static and dynamic characteristics of large-span six-slider closed hydrostatic guideway considering pitch moment and yaw moment","authors":"Heji Zhang, Dezhao Lu, Wei Pan, Xing Rong, Yongtao Zhang","doi":"10.1108/ilt-09-2023-0281","DOIUrl":"https://doi.org/10.1108/ilt-09-2023-0281","url":null,"abstract":"<h3>Purpose</h3>\u0000<p>The purpose of this study is to design a closed hydrostatic guideway has the ability to resist large-side load, pitch moments and yaw moments, has good stiffness and damping characteristics, and provides certain beneficial guidance for the design of large-span closed hydrostatic guideway on the basis of providing a large vertical load bearing capacity.</p><!--/ Abstract__block -->\u0000<h3>Design/methodology/approach</h3>\u0000<p>The Reynolds’ equation and flow continuity equation are solved simultaneously by the finite difference method, and the perturbation method and the finite disturbance method is used for calculating the dynamic characteristics. The static and dynamic characteristics, including recess pressure, flow of lubricating oil, carrying capacity, pitch moment, yaw moment, dynamic stiffness and damping, are comprehensively analyzed.</p><!--/ Abstract__block -->\u0000<h3>Findings</h3>\u0000<p>The designed closed hydrostatic guideway has the ability to resist large lateral load, pitch moment and yaw moment and has good stiffness and damping characteristics, on the basis of being able to provide large vertical carrying capacity, which can meet the application requirements of heavy two-plate injection molding machine (TPIMM).</p><!--/ Abstract__block -->\u0000<h3>Originality/value</h3>\u0000<p>This paper researches static and dynamic characteristics of a large-span six-slider closed hydrostatic guideway used in heavy TPIMM, emphatically considering pitch moment and yaw moment. Some useful guidance is given for the design of large-span closed hydrostatic guideway.</p><!--/ Abstract__block -->","PeriodicalId":13523,"journal":{"name":"Industrial Lubrication and Tribology","volume":null,"pages":null},"PeriodicalIF":1.6,"publicationDate":"2024-03-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"140168576","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}
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Industrial Lubrication and Tribology
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