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A NUMERICAL STUDY TO INVESTIGATE THE INFLUENCE OF EDGE PREPARATION IN VIBRATION ASSISTED MACHINING

机译:研究边缘制剂在振动辅助加工中的影响的数值研究

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In machining operation, cutting tool performs a central role towards the overall machining performance. A user from metal cutting community always look for better cutting tools that can enhance productivity by reducing tool wear and cost. Modification in the micro-geometry of cutting edge is termed as edge preparation, and it is performed to improve the machining performance by strengthening the cutting edge, reducing internal stresses of coating and lowering the edge chipping etc. Edge preparation has a controlling influence on the formation of deformation zones, cutting temperature, cutting forces and stresses at the cutting interface. Vibration assisted machining (VAM) concept is gaining fame in the metal cutting sector community for machining difficult-to-machine materials. In VAM, cutting tool moves with a small amplitude vibration instead of moving with a constant cutting velocity. This small amplitude vibrational movement provides better machining performance for difficult-to-cut brittle materials. The current numerical study utilized different edge prepared micro-geometries such as sharp edge, round edge and chamfer edge etc. cutting tools, and then these cutting tools were used in the numerical simulations of VAM. The study shows higher magnitude of cutting forces under VAM with tools with modified geometry. The study is beneficial for the metal cutting community and opens new areas of industrial applications.
机译:在加工操作中,切割工具对整体加工性能进行核心作用。来自金属切割社区的用户始终寻找更好的切割工具,可以通过降低工具磨损和成本来提高生产率。切削刃的微观几何形状的修改被称为边缘制备,并且通过加强切削刃来改善加工性能,从而减少涂层的内部应力并降低边缘碎裂等。边缘制剂对其进行控制影响形成变形区域,切割温度,切割力和切削界面的应力。振动辅助加工(VAM)概念在金属切割扇区界中获得了难以加工的难以加工材料的成名。在VAM中,切割工具用小振幅振动移动而不是以恒定的切割速度移动。这种小振幅振动运动为难以切割的脆性材料提供了更好的加工性能。目前的数值研究利用不同的边缘制备的微观几何形状,例如锋利的边缘,圆形边缘和倒角边缘等切削工具,然后在VAM的数值模拟中使用这些切削刀具。该研究表明,随着改良几何的工具,VAM下的切割力量更高。该研究对金属切割群落有益,并开启了工业应用的新领域。

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