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EXPERIMENTAL INVESTIGATION OF OIL SHEDDING FROM AN AERO-ENGINE BALL BEARING AT MODERATE SPEEDS

机译:航空发动机球在中等速度下的切屑实验研究

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In civil aero-engine transmission system bearings are used for shaft location and load support. An experimental test facility in the University of Nottingham's Gas Turbine Transmissions Research Centre (G2TRC) was designed and commissioned to investigate oil behaviour as it exits an engine-representative ball bearing. In the rig, oil is delivered to the bearing inner race and cage via under-race feed at three delivery locations i.e. front, mid and rear of the bearing assembly. An electromagnetic load system is designed and implemented to allow engine representative axial loads up to 35 kN to be applied to the bearing. This paper details the rig design including the load and under-race lubrication systems and gives information about bearing oil shedding mechanisms observed. In this phase of testing high speed images are acquired at shaft speeds between 1000 and 7000 rpm at an oil flowrate of 5.2 litres per minute and bearing axial load of 10 kN. The work presented here focusses on oil shedding from the bearing cage. Oil shedding behaviour from aeroengine ball bearing is identified to share many similarities to that observed in the past for shedding from rotating disks and cups. However, it is shown that it not possible to predict the conditions at which transition in flow regimes will occur for the aeroengine bearing on the basis of correlations for simpler geometries (spinning disks and cups). The work presented here is the first observation of flow regimes in an aeroengine ball bearing involving high-resolution highspeed imaging.
机译:在民用航空发动机传动系统轴承中用于轴位置和负载支撑。设计和委托了诺丁汉燃气轮机传输研究中心(G2TRC)大学的实验测试设施,以调查油行为,因为它出现发动机代表性的滚珠轴承。在钻机中,通过在三个递送位置,通过在轴承组件的前部,中继和后部,通过串行饲料输送到轴承内部圈子和笼。设计和实施电磁载波系统以允许发动机代表轴向载荷高达35kn施加到轴承上。本文详细介绍了钻机设计,包括负载和竞争润滑系统,并提供了观察到轴承油脱落机制的信息。在这种测试的阶段,在5.2升每分钟的油流量的油流量的轴速度下在轴速度之间获取高速图像并轴承为10kn的轴向载荷。此处提出的工作重点关注轴承笼中的油脱落。识别出来自航空发动机球轴承的石油脱落行为,以与过去观察到的许多相似之处,以便从旋转盘和杯中脱落。然而,示出了不可能预测流动状态的过渡的转变基于用于更简单的几何形状(纺丝盘和杯子)的相关性。这里提出的工作是涉及高分辨率高速成像的航空发动机滚珠轴承中的流动制度的首次观察。

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