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THERMAL EXPANSION SIMULATION OF COMPOSITE HYDRODYNAMIC THRUST BEARINGS

机译:复合水动力推力轴承的热膨胀模拟

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Fixed-geometry hydrodynamic thrust bearings rely on convergent geometry on the bearing face in the direction of relative motion to develop and maintain hydrodynamic pressure. Machining the convergent taper feature onto the bearing using traditional manufacturing processes can prove to be a difficult process due to the small magnitude of taper depth necessary for proper bearing performance. The work presented here investigates three different types of carbon fibers (AS-4/IM7/T-300) in an epoxy (3501-6) matrix for composite lamina formulation in taper-land composite thrust bearings as a means of controlling taper depth via thermal expansion so that favorable bearing functionality is maintained during load fluctuation without the need for traditional machining processes to create the taper. Thermal expansion of specific composite laminate formulation is analyzed using the ABAQUS/CAE composite module. The thermo-mechanical analysis shows that under realistic in-service temperature conditions resulting from bearing friction-torque, the thermal expansion of composite tapered-land thrust bearings expand to provide physical surface gradient magnitudes of 0.09504 mm, 0.08987 mm and 0.08829 mm that are capable of producing hydrodynamic pressure.
机译:固定几何液动力推力轴承依赖于轴承面上的收敛几何形状,在相对运动方向上发展和维持流体动力学压力。使用传统的制造工艺加工收敛锥度在轴承上的轴承可以证明是由于适当轴承性能所需的锥度深度幅度较小,这是一个难度的过程。这里提出的作品在锥形层压推力轴承中的复合薄片配方的环氧(3501-6)基质中调查了三种不同类型的碳纤维(AS-4 / IM7 / T-300),作为控制锥形深度的手段热膨胀,以便在负载波动期间保持有利的轴承功能,而无需传统的加工过程以产生锥度。使用ABAQUS / CAE复合模块分析特定复合层压体配方的热膨胀。热力学分析表明,在轴承摩擦扭矩产生的现实在 - 锻炼温度条件下,复合锥形焊机膨胀轴承的热膨胀膨胀,提供物理表面梯度幅度为0.09504 mm,0.08987 mm和0.08829mm的物理表面梯度大小产生流体动力学压力。

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