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High performance hydrostatic bearing using a variable inherent restrictor with a thin metal plate

机译:高性能静压轴承,使用带有金属薄板的可变固有限流器

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摘要

Demands for machining of hard-to-cut materials have increased in a variety of industries. In order to meet such demands, high performance guideways are required for machine tools. In this study, in order to realize a bearing with high dynamic and static stiffness, a hydrostatic bearing using a variable inherent restrictor with a thin metal plate is newly proposed. The thin metal plate deforms elastically according to the pressure difference of working oil between both sides of the thin metal plate. Consequently, the deformation compensates the bearing clearance by adjusting the inherent restrictor. Modeling and numerical analysis of the proposed bearing were conducted, and the results confirmed that the bearing stiffness and response characteristics can be improved and then the oil flow can be reduced by applying the inherent restrictor with a thin metal plate. Furthermore, an experimental set-up for evaluating the bearing property was constructed and the load capability, static stiffness, dynamic stiffness, flow characteristic, and response characteristic of the bearing with the thin metal plate were compared with that of the bearing without the thin metal plate. The evaluation results of static performance confirmed that the flow rate of the bearing with the thin metal plate becomes lower as compared with that of the bearing without the thin metal plate, because the thin metal plate is acting as a fluid restrictor. In addition, the evaluation results of dynamic performance confirmed that the dynamic stiffness and the time response of the bearing were greatly improved by applying a variable inherent restrictor. These results confirmed that a high performance hydrostatic bearing can be realized by applying the proposed bearing. (C) 2015 Elsevier Inc. All rights reserved.
机译:在各种行业中,对难切削材料进行机加工的需求都在增加。为了满足这样的需求,机床需要高性能的导轨。在这项研究中,为了实现具有高动态和静态刚度的轴承,新提出了一种使用带有金属薄板的可变固有限流器的静压轴承。薄金属板根据薄金属板的两侧之间的工作油的压力差而弹性变形。因此,变形通过调节固有限流器来补偿轴承间隙。对所提出的轴承进行了建模和数值分析,结果证实,通过将固有节流器与金属薄板配合使用,可以改善轴承的刚度和响应特性,然后减少油流。此外,建立了用于评估轴承性能的实验装置,并将带有金属薄板的轴承与没有金属薄板的轴承的负载能力,静态刚度,动态刚度,流动特性和响应特性进行了比较。盘子。静态性能的评估结果证实,具有金属薄板的轴承的流量比没有金属薄板的轴承的流量低,这是因为金属薄板用作限流器。此外,动态性能的评估结果证实,通过使用可变固有限制器,轴承的动态刚度和时间响应得到了极大的改善。这些结果证实了通过应用所提出的轴承可以实现高性能的静液压轴承。 (C)2015 Elsevier Inc.保留所有权利。

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