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Investigation on the effect of machining parameters on surface roughness during turning of kenaf fiber-reinforced composite using non-contact vision method

机译:采用非接触视觉法在骨膜纤维增强复合材料转动过程中加工参数对表面粗糙度影响的研究

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摘要

Machinability studies on natural fiber-reinforced composites (NFRCs) in the past have been limited mainly to drilling. There is limited work published on the effects of machining parameters on the surface finish quality during turning of NFRCs. The objective of this research is to investigate the effects of spindle speed and feed rate on the surface finish quality of kenaf fiber-reinforced composites during turning. A non-contact machine vision method was used to determine the surface roughness parameters. The image of the edge profile of each composite specimen after machining was captured using a high-resolution digital camera with the aid of backlighting. The edge profiles were extracted to sub-pixel accuracy from the digital images. Six roughness parameters were determined from each extracted profile and plotted against feed rate. The results show that high spindle speed generally produced poor quality surface finish at all feed rates tested. This was mainly due to the centrifugal forces caused by the high rotational speed of the workpiece, which tends to stretch out the loose uncut fibers radially. Different depths of cut were found to produce different surface roughness depending on whether the cutting tool passes fully through, partially, or in-between the fiber bundles. Better surface finish was obtained at low spindle speeds and low feed rates when the tool passes mainly in-between the fiber bundles.
机译:过去的天然纤维增强复合材料(NFRC)的可加工性研究主要是钻井的限制。在NFRC转动过程中的加工参数对表面光洁度质量的影响有限的工作。本研究的目的是研究主轴速度和进料速率在转弯期间keNAF纤维增强复合材料的表面光洁度质量的影响。非接触机视觉方法用于确定表面粗糙度参数。借助于背光,使用高分辨率数码相机捕获加工后的每个复合样品的边缘轮廓的图像。从数字图像中提取边缘轮廓到子像素精度。从每个提取的曲线确定六个粗糙度参数并绘制进料速率。结果表明,高主轴速度通常在测试的所有饲料速率下产生质量差。这主要是由于由工件的高旋转速度引起的离心力,这倾向于径向拉出松散的未切割纤维。发现不同的切割深度,这取决于切削刀具是否完全通过,部分或在纤维束之间穿过的不同的表面粗糙度。当工具主要在纤维束之间时,在低主轴速度和低进料速率下获得更好的表面光洁度。

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