齿轮箱混合润滑模式下的润滑性能和搅动损失研究

IF 3.1 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Lina Wang, Yi Liu, Kailin Zhang, Yuan Yao, Shuai Shao, Kuangzhou He
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引用次数: 0

摘要

为了阐明混合润滑方式对齿轮箱油流和功率损失的影响,本研究采用高精度移动质点半隐式(MPS)方法研究了齿轮箱在飞溅润滑和喷油润滑共同影响下的润滑情况。所构建的试验台验证了数值方法计算搅动扭矩的准确性。分析和评估了转速、浸入深度、喷油量率和喷油角度对润滑的影响。结果表明,使用混合润滑方法可以在相对较小的搅动扭矩下获得更好的润滑效果。这为齿轮箱的工程应用提供了一些参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Lubrication Performance and Churning Loss under Mixed Lubrication Mode in Gearbox
In order to clarify the effect of mixed lubrication methods on the oil flow and power loss of the gearbox, this study adopts a high-precision moving particle semi-implicit (MPS) method to investigate the lubrication of the gearbox under the joint influence of splash lubrication and oil injection lubrication. The accuracy of the numerical method to calculate the churning torque was verified by the constructed test rig. The effects of rotational speed, immersion depth, injection volume rate, and oil injection angle were analyzed and evaluated for lubrication. The results show that better lubrication can be achieved with relatively small churning torques by using a hybrid lubrication method. This provides some references for engineering applications of gearboxes.
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来源期刊
Lubricants
Lubricants Engineering-Mechanical Engineering
CiteScore
3.60
自引率
25.70%
发文量
293
审稿时长
11 weeks
期刊介绍: This journal is dedicated to the field of Tribology and closely related disciplines. This includes the fundamentals of the following topics: -Lubrication, comprising hydrostatics, hydrodynamics, elastohydrodynamics, mixed and boundary regimes of lubrication -Friction, comprising viscous shear, Newtonian and non-Newtonian traction, boundary friction -Wear, including adhesion, abrasion, tribo-corrosion, scuffing and scoring -Cavitation and erosion -Sub-surface stressing, fatigue spalling, pitting, micro-pitting -Contact Mechanics: elasticity, elasto-plasticity, adhesion, viscoelasticity, poroelasticity, coatings and solid lubricants, layered bonded and unbonded solids -Surface Science: topography, tribo-film formation, lubricant–surface combination, surface texturing, micro-hydrodynamics, micro-elastohydrodynamics -Rheology: Newtonian, non-Newtonian fluids, dilatants, pseudo-plastics, thixotropy, shear thinning -Physical chemistry of lubricants, boundary active species, adsorption, bonding
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