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Design for static stiffness of hydrostatic bearings: double-action variable compensation of membrane-type restrictors and self-compensation

机译:静液压轴承的静刚度设计:膜片式限流器的双作用变量补偿和自补偿

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摘要

Purpose - This article is the fourth part of a serial studies about constant and variable compensations of the closed-type hydrostatic plane-pad bearing, which is presented for the double-action membrane-type restrictor and self-type compensation. The paper aims to discuss these issues. Design/methodology/approach - The load capacity and static stiffness in thrust direction of the planar bearing is determined by the flow continuity equation which belongs to the same approaches as shown in previous parts of this serial studies. Findings - The results reveal that the appropriate range of recess pressure ratio and design parameters of bearing and restrictor for the infinite or maximum stiffness can be obtained. Also, the influence of design parameters on negative stiffness that should be avoided in bearing design is revealed in detail. Originality/value - The determination of design parameters of a double-action membrane-type restrictor can be yielded from finding results of this study for maximum stiffness in design of hydrostatic bearings.
机译:目的-本文是有关封闭式静压平垫轴承的恒定和可变补偿的系列研究的第四部分,介绍了双作用膜片式限流器和自补偿式补偿器。本文旨在讨论这些问题。设计/方法/方法-平面轴承在推力方向上的承载能力和静态刚度由流量连续性方程确定,该方程与本系列研究的先前部分所显示的方法相同。研究结果-结果表明,对于无限或最大刚度,可以得到合适的凹陷压力比范围以及轴承和限流器的设计参数。此外,详细揭示了轴承设计中应避免的设计参数对负刚度的影响。原创性/价值-通过研究静液压轴承设计中最大刚度的研究结果,可以确定双作用膜式限流器的设计参数。

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