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DIAGNOSTICS OF WORKPIECE SURFACE CONDITION BASED ON CUTTING TOOL VIBRATIONS DURING MACHINING

机译:基于切削加工中刀具振动的工件表面状况诊断

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The paper presents functional relationships between surface geometry parameters, feed and vibrations level in the radial direction of the workpiece. Time characteristics of the acceleration of cutting tool vibration registered during C45 steel and stainless steel machining for separate axes (X, Y, Z) were presented as a function of feedrate f. During the tests surface geometric accuracy assessment was performed and 3D surface roughness parameters were determined. The Sz parameter was selected for the analysis, which was then collated with RMS vibration acceleration and feedrate f. The Sz parameter indirectly provides information on peak to valley height and is characterised by high generalising potential i.e. it is highly correlated to other surface and volume parameters of surface roughness. Test results presented in this paper may constitute a valuable source of information considering the influence of vibrations on geometric accuracy of elements for engineers designing technological processes.
机译:本文介绍了工件的表面几何参数,进给和振动水平之间的函数关系。给出了在C45钢和不锈钢加工中不同轴(X,Y,Z)时记录的切削刀具振动加速度的时间特性,该特性随进给率f的变化而变化。在测试过程中,进行了表面几何精度评估,并确定了3D表面粗糙度参数。选择Sz参数进行分析,然后将其与RMS振动加速度和进给率f进行比较。 Sz参数间接提供有关峰谷高度的信息,并且具有高泛化潜力,即与表面粗糙度的其他表面参数和体积参数高度相关。考虑到振动对工程师设计工艺流程的影响,本文提出的测试结果可能构成有价值的信息来源。

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