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Analytical Solution of Hydrostatic Pocket Tilting

机译:静液压口袋倾斜的分析解

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Tilting (parallelism error) of guiding surfaces may cause reduction of load capacity of hydrostatic (HS) guideways and bearings in machine tools (MT). Using coupled finite element (FE) computational models of MT structures, it is nowadays possible to determine the extent of guiding surfaces deformation caused by thermal effects, gravitational force, cutting forces and inertia effects. Assessment of maximum allowable tilt has so far been based merely on experience. The paper presents a detailed model developed for description of the effect of HS bearing tilt on the load capacity characteristics of HS guideways. The model allows an evaluation of the tilt influence on the change of the characteristics as well as determination of the limit values of allowable tilt in interaction with compliant machine tool structure. The proposed model is based on the model of flow over the land of the HS pocket under extended Navier-Stokes equation. The model is verified using an experimental test rig.
机译:引导表面的倾斜(平行误差)可能导致静水(HS)导轨的负载能力和机床(MT)中的轴承。使用MT结构的耦合有限元(FE)计算模型,如今可以确定由热效应,重力,切割力和惯性效应引起的引导表面变形的程度。到目前为止,对最大允许倾斜的评估仅仅是基于经验。本文提出了一个详细的模型,用于描述HS轴承倾斜对HS导轨的负载能力特性的影响。该模型允许评估倾斜对特性变化的影响以及确定与柔顺机床结构相互作用的允许倾斜的极限值的确定。所提出的模型基于在扩展Navier-Stokes方程下的HS口袋的土地的流量模型。使用实验试验台验证该模型。

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