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System for Compensating the Rigidity of the Hydrostatic Guideways of the Column Saddle Subassembly of the Boring and Milling Machines

机译:用于补偿钻孔和铣床柱鞍座子组件的静水压导轨刚性的系统

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The improvement of the machining accuracy of boring and milling machines is imposed by the more and more demanding conditions on the accuracy of the work pieces to be machined. The specificity of this family, of boring and milling machines, consists of the horizontal motion of the milling spindle (quill) with implications on the application point of the gravity center. Thus, the variation of the application point of the sum of the component elements weights of the column saddle subassembly leads to modifications of the oil film thickness in the hydrostatic guideways, affecting the geometrical accuracy of the machine. This work is presenting a system of compensation and hydrostatic guiding of the column saddle subassembly. This new compensation system allows the pressure in the pockets to be modified by taking in consideration the position of the application point of the weight of the entire column saddle subassembly. The implementation of this compensation and guiding system on the boring and milling machine model AFP 220 has led to an increasing of two times the geometrical accuracy of the horizontality of the column saddle`s motion, compared to the variant without compensation.
机译:通过越来越苛刻的条件,对待加工工件的准确性越来越苛刻的条件施加了镗孔和铣床的加工精度的提高。该家庭的特殊性,镗铣床和铣床,包括铣削主轴(羽耳状)的水平运动,其对重力中心的应用点的影响。因此,柱鞍座子组件的部件元件的总和的应用点的变化导致静液压导轨中的油膜厚度的修改,影响机器的几何精度。这项工作是呈现柱鞍座子组件的补偿和静液压引导系统。这种新补偿系统允许通过考虑整个柱鞍座子组件的重量的应用点的位置来修改口袋中的压力。在镗铣床模型AFP 220上的这种补偿和引导系统的实施导致了与无补偿的变体相比逐渐增加了柱鞍座的水平的几何精度的两倍。

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