首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Performance Measurements of Gas Bearings with High Damping Structures of Polymer and Bump Foil Via Electric Motor Driving Tests and One Degree-of-Freedom Shaker Dynamic Loading Tests
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Performance Measurements of Gas Bearings with High Damping Structures of Polymer and Bump Foil Via Electric Motor Driving Tests and One Degree-of-Freedom Shaker Dynamic Loading Tests

机译:通过电动机驱动测试和一自由度振动筛动态载荷测试,对具有高阻尼结构的聚合物和凹凸箔的气体轴承进行性能测量

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This paper presents comprehensive test measurements for gas journal bearings with damping structures of a bump foil layer and/or a polymer layer. A one-pad top foil forms the bearing surface, under which the bearing structure and a bearing housing are located. Test bearings include gas foil bearings (GFBs), gas polymer bearings (GPBs), and gas foil-polymer bearings (GFPBs). In addition, three metal shims were employed to create wedge effects in the GFPBs. First, static load-deflection tests of test bearings estimate the radial assembly clearance. Second, shake dynamic loading tests identify frequency-dependent dynamic characteristics. An electromagnetic shaker provides flat bearing specimens with one degree-of-freedom (1DOF) vertical dynamic loading. GFPB was measured to exhibit a higher structural damping and lower stiffness than GFB. Lastly, the electric motor driving tests examine the rotordynamic stability performance. A permanent magnet (PM) synchronous motor drives a PM rotor supported on a pair of test journal bearings. As a result, the GFPBs with mechanical preloads enhanced the rotordynamic performance with no subsynchronous motions up to the maximum rotor speed of 88 krpm, and the bearing friction characteristics as well. Furthermore, they showed comparable rotordynamic performance to three-pad GFBs from a past literature, even with larger bearing clearances and small mechanical preloads.
机译:本文介绍了具有缓冲箔层和/或聚合物层阻尼结构的气体轴颈轴承的综合测试测量结果。单垫顶部箔片形成轴承表面,轴承结构和轴承箱位于其下方。测试轴承包括气体箔轴承(GFB),气体聚合物轴承(GPB)和气体箔聚合物轴承(GFPB)。此外,采用了三种金属垫片在GFPB中产生楔形效应。首先,测试轴承的静载荷挠度测试估计了径向组件的游隙。其次,振动动载荷测试确定了随频率变化的动态特性。电磁振动器可为扁平轴承样品提供一个自由度(1DOF)的垂直动态载荷。测量到的GFPB具有比GFB更高的结构阻尼和更低的刚度。最后,电动机驱动测试检查了转子的动力稳定性能。永磁(PM)同步电动机驱动支撑在一对测试轴颈轴承上的PM转子。结果,具有机械预紧力的GFPB增强了转子的动力性能,在高达88 krpm的最大转子速度下,没有次同步运动,并且轴承摩擦特性也得到了提高。此外,即使在更大的轴承游隙和较小的机械预紧力的情况下,它们也显示出与过去文献中的三片式GFB相当的转子动力学性能。

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