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High amplitude wave liner effects on journal bearing performance

机译:高振幅波衬对轴颈轴承性能的影响

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摘要

Modification on the liner bearing was one of the ways to achieve sufficient lubricant on a journal bearing system. Efforts had shown that the ability to retain some lubricant by introducing wave like grooves on the liner has improved the performance of the bearings. However, the database for the modifications is still lacking. This study aims to establish and correlate modifications of the liner with the performance of the journal bearing. Numerical and experimental work were done to compare and relate several geometries of liner bearing modifications based on previous studies as well as new ones. The previously studied sine wave liner bearing involved investigations with the square and semi circular liners. Plain liner bearing was used as reference. All cases were investigated experimentally by a test rig under low operating loads of 30 N to 450 N with high speed conditions of 1200 RPM to 2800 RPM. Some of the parameters were validated in order to compare the numerical and experimental data. Case studies also included engine oil and palm olein as the lubricants. The performance of the bearings was analyzed by examining the side flow rates, lubricant temperature change, eccentricity ratio, and pressure distributions. The results show that, modifying the shape liner bearing under all operating conditions could increase the lubricant flow rate which was approximately 1.5 times than the plain liner bearing and reduce the lubricant temperature change by about 35%. The bearings with the wave shape liner led to the eccentricity ratio increase but within the acceptable range of 0.6 to 0.9. Majority of the results showed lower a maximum pressure than the plain liner bearing with the exception of the bearing with the square wave shape liner
机译:衬套轴承的修改是在轴颈轴承系统上获得足够润滑剂的方法之一。努力表明,通过在衬套上引入波浪状凹槽来保留一些润滑剂的能力提高了轴承的性能。但是,仍然缺少用于修改的数据库。这项研究旨在建立衬套的修改并将其与轴颈轴承的性能相关联。进行了数值和实验工作,以比较和关联基于先前研究和新研究的衬套轴承修改的几种几何形状。先前研究的正弦波衬套轴承涉及对方形和半圆形衬套的研究。滑动轴承作为参考。所有情况均通过试验装置在30 N至450 N的低工作负载和1200 RPM至2800 RPM的高速条件下进行了实验研究。为了比较数值和实验数据,对一些参数进行了验证。案例研究还包括机油和棕榈油精作为润滑剂。通过检查侧向流量,润滑剂温度变化,偏心率和压力分布来分析轴承的性能。结果表明,在所有工况下修改形状衬套轴承可以使润滑剂流量增加大约是普通衬套轴承的1.5倍,并且可以降低润滑剂温度变化约35%。带波形衬套的轴承导致偏心率增加,但在0.6到0.9的可接受范围内。大多数结果表明,除了带方波形状衬套的轴承外,最大压力还比普通衬套轴承低。

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    Asral Asral;

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  • 年度 2015
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