Suppr超能文献

流体膜径向轴承中生物油和SAE40的静态与动态特性的实验与数值研究

Experimental and Numerical Investigation of Static and Dynamic Characteristics of Bio-Oils and SAE40 in Fluid Film Journal Bearing.

作者信息

Sadiq Muhammad Imran, Ghopa Wan Aizon W, Nuawi Mohd Zaki, Rasani Mohammad Rasidi, Mohd Sabri Mohd Anas

机构信息

Department of Mechanical and Manufacturing Engineering, University Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

出版信息

Materials (Basel). 2022 May 18;15(10):3595. doi: 10.3390/ma15103595.

Abstract

Mineral-based oils are the market leaders when it comes to their consumption in different types of rotating machines. Recently, a lot of attention has been given to the bio-oils and lubricants due to their better thermophysical, tribological, and environmental characteristics for use in journal bearing and other rotating machines. The superior physical properties of bio-oils have instigated this research in order to evaluate their dynamic characteristics that can cause the harmful dynamic instabilities in rotating machinery. The dynamic characteristics of the fluid film are influenced by temperature, eccentricity ratio, and rotational speed. In this work, the effect of temperature is experimentally measured on the dynamic viscosity of bio-oils and mineral-based oil. The dynamic viscosity measured is then computationally used to estimate the hydrodynamic pressure response of three bio-oils (rapeseed, palm olein, and soybean) and SAE40, a mineral-based oil, to check their performance in the rotor bearing system. It is found that at 40 °C, the hydrodynamic pressure for SAE40 is observed to be 2.53, 2.72, and 3.32 times greater than those of rapeseed, palm olein, and soybean oil, respectively, whereas, at 125 °C, the hydrodynamic pressure for SAE40 is observed to be 8% and 4.3% less than those of rapeseed and palm olein, respectively, but 14% greater than that of soybean oil. Hence, the increasing temperature has less effect on the viscosity and hydrodynamic pressure of bio-oils compared to SAE40. Therefore, for high-temperature applications, the bio-oils can be used with further processing. The superior response of bio-oils is also an indication for better dynamic characteristics.

摘要

在不同类型的旋转机械中,矿物基油在消耗量方面占据市场领先地位。近来,生物油和润滑剂因其在滑动轴承及其他旋转机械中具有更好的热物理、摩擦学和环境特性而备受关注。生物油卓越的物理性能促使开展此项研究,以评估其可能在旋转机械中引发有害动态不稳定性的动态特性。流体膜的动态特性受温度、偏心率和转速影响。在这项工作中,通过实验测量了温度对生物油和矿物基油动态粘度的影响。然后将测得的动态粘度用于计算三种生物油(菜籽油、棕榈油和大豆油)以及一种矿物基油SAE40在转子轴承系统中的流体动力压力响应,以检验它们的性能。结果发现,在40℃时,SAE40的流体动力压力分别比菜籽油、棕榈油和大豆油的流体动力压力大2.53倍、2.72倍和3.32倍;而在125℃时,SAE40的流体动力压力分别比菜籽油和棕榈油的流体动力压力低8%和4.3%,但比大豆油的流体动力压力高14%。因此,与SAE40相比,温度升高对生物油粘度和流体动力压力的影响较小。所以,在高温应用中,生物油经过进一步加工后可以使用。生物油的优异响应也表明其具有更好的动态特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a57/9142953/492a1b00ac0a/materials-15-03595-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验