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Investigation of optimum cutting parameters and tool radius in turning glass-fiber-reinforced composite material

机译:车削玻璃纤维增​​强复合材料的最佳切削参数和刀具半径的研究

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Glass-fiber-reinforced composite materials (GFRPs) are used widely in various fields of engineering. Turning is the principal process conducted on these materials for obtaining minimum surface roughness. Machining of GFRP materials is different from traditional style due to their inhomogeneous and anisotropic structures. Optimum machining parameters for specific GFRP materials need to be ascertained for perfect machining. In this study, the influence of cutting parameters and insert radius on the cutting force and surface roughness of GFRP material during machining was investigated. For measuring main cutting force, a three-component piezoelectric crystal type of dynamometer was used. Cutting force and surface roughness were experimentally measured through longitudinal axes of the GFRP material. Through this study, it was observed that high cutting speeds and low feed rates provide the best surface quality in the turning process of GFRP composite materials.
机译:玻璃纤维增​​强复合材料(GFRP)广泛用于各种工程领域。为了获得最小的表面粗糙度,车削是对这些材料进行的主要过程。 GFRP材料的机械加工由于其不均匀且各向异性的结构而不同于传统风格。需要确定特定GFRP材料的最佳加工参数,以实现完美加工。在这项研究中,研究了切削参数和刀片半径对加工过程中GFRP材料的切削力和表面粗糙度的影响。为了测量主切削力,使用了三分量压电晶体式测功机。切削力和表面粗糙度是通过GFRP材料的纵轴实验测量的。通过这项研究,我们发现在GFRP复合材料的车削过程中,高切削速度和低进给速度可提供最佳的表面质量。

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