首页> 外文会议>STLE/ASME Joint International Tribology Conference >INFLUENCE OF WEAR ON THE BEHAVIOR OF A TWO-LOBE HYDRODYNAMIC JOURNAL BEARING SUBJECTED TO NUMEROUS START-UPS AND STOPS
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INFLUENCE OF WEAR ON THE BEHAVIOR OF A TWO-LOBE HYDRODYNAMIC JOURNAL BEARING SUBJECTED TO NUMEROUS START-UPS AND STOPS

机译:磨损对众多初创企业的双叶流体动力学杂志轴承行为的影响

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The behavior of the hydrodynamic journal bearings is now very well known because of the many experimental and numerical studies that have been carried out on the topic. This interest in two-lobe journal bearings is due to the fact that their simplicity, efficiency and low cost have led them to being widely used in industry. These mechanical components tend to be subjected to numerous start-ups and stops. During transient periods, direct contact between the journal and bearing induces high friction in the lubricated contact and hence wear of the lining. The aim of this work is, firstly, to present experimental data obtained on a journal lobed bearing subjected to numerous starts and stops. Then, a comparison is made between the measured bearing performance and numerical results, these being obtained on the assumption that the regime is a thermohydrodynamic (THD) one. The wear after more than 2,000 cycles was measured and used to generate numerical simulations. The aim here was to compare experimental data with theoretical results. It was observed that hydrodynamic pressure increases, whereas the temperature at the film/bush interface slightly decreases on both the upper and lower lobes. These trends are confirmed by the numerical simulations, theoretical results being very close to experimental data. The final value for wear was measured, the maximum being found to be located at an angular coordinate of 180° and reaching nearly 9μm. The present study demonstrates that, for the case studied, while the bearing behavior is clearly affected by wear, the bearing still remains useable and safe.
机译:流体动力学轴颈轴承的行为现在非常众所周知,因为在该主题上进行了许多实验和数值研究。这种对两瓣期刊轴承的兴趣是因为他们的简单性,效率和低成本导致它们被广泛用于行业。这些机械部件倾向于受到许多初始启动和止动件。在瞬态期间,轴承之间的直接接触在润滑接触和衬里的磨损中引起高摩擦。本工作的目的是首先,以呈现在经受多次开始和停止的轴颈横向轴承上获得的实验数据。然后,在测量的承载性能和数值结果之间进行比较,这些结果是在假设中,使得该制度是热流动动力学(THD)一种。测量超过2,000个循环后的磨损并用于产生数值模拟。这里的目的是将实验数据与理论结果进行比较。观察到流体动力压力增加,而薄膜/衬套界面处的温度略微降低上凸起。这些趋势通过数值模拟确认,理论结果非常接近实验数据。测量磨损的最终值,发现最大值位于180°的角坐标处,达到近9μm。本研究表明,对于所研究的情况,虽然轴承行为显然受到磨损的影响,但轴承仍然可以使用和安全。

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