数控磨削过程振动对熔融石英零件表面质量影响的研究

Sebastian Henkel, M. Binder, J. Bliedtner, M. Fritzsche
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摘要

该研究涉及数控磨削过程中振动的实时评估和记录,以及过程对光学元件表面质量的影响分析和控制。实验在五轴数控机床上进行。首先,在平面磨削实验中,采用Polytec最先进的测振仪和光学测量技术检测当前振动。它可以在过程中记录过程振动,并在白光干涉测量的帮助下快速进行后续地形分析。测量的目的是减少受工艺振动影响的表面偏差(粗糙度、中间空间、波浪度)。通过对所使用的数控机床进行详细的模态分析,可以检测机床上的振动和振动传输,并推导出必要的传感器概念和设置。在纤维振动计的辅助下进行的初始过程测量表明,在磨削过程中检测到的振动与记录的地形数据高度相关。因此,有可能找到依赖于磨削参数的特征振动作为部件的表面结构,这使得预测加工过程中产生的表面质量成为可能。
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Investigations on the influence of process vibrations in CNC grinding processes on the surface quality of fused silica components
The investigations carried out deal with real-time evaluation and recording of vibrations during a CNC grinding process, as well as the analysis and control of process influences on the surface quality of optical components. The experiments were carried out on a 5-axis CNC machine. At the beginning, in planar grinding experiments the present vibration is detected with state-of-the-art vibrometric and optical measurement technology from Polytec. It enables in-process recording of the process vibrations and rapid subsequent topography analysis with the aid of white light interferometry. The measurements aim is to reduce the surface deviations (roughness, mid spatials, waviness) influenced by process vibrations. By carrying out a detailed modal analysis of the CNC machine used, it is possible to detect vibrations and vibration transmissions on the machine and to derive the necessary sensor concept a nd setup. Initial in-process measurements with the aid of a fiber vibrometer showed that the vibrations detected during the grinding process correlate to a high degree with the recorded topography data. It is thus possible to find the characteristic vibrations dependent on the grinding parameters as surface structures on the components, which makes it possible to predict the surface quality produced in the process.
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