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Virtual metrology frame technique for improving dynamic performance of a small size machine tool

机译:虚拟度量框架技术,用于改善小型机床的动态性能

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摘要

This paper presents a novel concept, a virtual metrology frame, for enhancing the dynamic performance of a machine tool with a flexible structural frame. The dynamic properties of a machine are directly affected by the stiffness of its frame, and its reference system; thus, by having an unstressed metrology frame, superior dynamic capabilities can be achieved. The developed concept does not require physical components associated with metrology frame; hence it is ideal for machine tools with requirements for small footprint and ultra-precision performance. The concept relies on an accelerometer based dynamic displacement feedback technique, where the accelerometer is used as a precision frame displacement sensor. The concept does not require a complex controller, and was realized in an off-the-shelf CNC controller. The concept was demonstrated on a linear motion system, a simplified version of a compact size CNC machine, and its servo bandwidth and dynamic stiffness were improved by 36% and 70% respectively, which are the key parameters for improving the machining accuracy.
机译:本文提出了一种新颖的概念,即虚拟计量框架,用于增强具有柔性结构框架的机床的动态性能。机器的动态特性直接受到其框架和参考系统的刚度的影响。因此,通过具有不受压力的度量框架,可以实现出色的动态功能。开发的概念不需要与度量框架相关联的物理组件;因此,它是要求占地面积小和超精密性能的机床的理想选择。该概念依赖于基于加速度计的动态位移反馈技术,该加速度计用作精密框架位移传感器。该概念不需要复杂的控制器,并且是在现成的CNC控制器中实现的。该概念在线性运动系统上进行了演示,这是紧凑型CNC机床的简化版本,其伺服带宽和动态刚度分别提高了36%和70%,这是提高加工精度的关键参数。

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