首页> 外文期刊>Fractals: An interdisciplinary journal on the complex geometry of nature >ANALYSIS OF THE RELATION BETWEEN FRACTAL STRUCTURES OF MACHINED SURFACE AND MACHINE VIBRATION SIGNAL IN TURNING OPERATION
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ANALYSIS OF THE RELATION BETWEEN FRACTAL STRUCTURES OF MACHINED SURFACE AND MACHINE VIBRATION SIGNAL IN TURNING OPERATION

机译:转动操作中加工表面和机振动信号分形结构关系的关系

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摘要

Investigating about the machined surface is an important issue in every machining operation. One of the factors that affect the quality of machined surface is the vibration of machine that is caused by different parameters such as the spindle speed. Therefore, the analysis of the relation between the machine vibration and surface quality of machined surface is very important. In this research, we analyze the relation between the machined surface and machine vibration from the complexity point of view. For this purpose, we employ fractal analysis. We investigate the variations of fractal structure of vibration signal collected from lathe machine versus the variations of fractal structure of the machined surface, for different depths of cut, feed rates and spindle speeds. Based on the obtained results, the variations of fractal structures of machined surface and vibration signal show a similar trend with the variations of depth of cut and feed rate, where by the increment of depth of cut and feed rate, vibration signal and machined surface get more complex. However, the obtained results in the case of variation of spindle speed do not show a consistent trend between variations of fractal structures of vibration signal and machined workpiece. The obtained method in this research can be applied to other machining operations in order to analyze the relation between the complexities of machine vibration and machined surface.
机译:调查加工表面是每种加工操作中的一个重要问题。影响机加工表面质量的因素之一是由诸如主轴速度的不同参数引起的机器的振动。因此,对机械振动和机械表面的表面质量之间的关系的分析非常重要。在这项研究中,我们从复杂性的角度分析加工表面与机器振动之间的关系。为此,我们使用分形分析。我们研究了从车床机器收集的振动信号的分形结构的变化与加工表面的分形结构的变化,用于不同的切割深度,进料速率和主轴速度。基于所得的结果,加工表面和振动信号分形结构的变化显示了与切割和进给速度深度的变化相似的趋势,其中剪切和进给速度的深度,振动信号和机加工表面获得更复杂。然而,在主轴速度变化的情况下获得的结果在振动信号和加工工件的分形结构的变化之间没有显示出一致的趋势。该研究中获得的方法可以应用于其他加工操作,以分析机器振动和机加工表面的复杂性之间的关系。

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