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Experimental Study on Orthogonal Cutting of Ti6AI4V with Surface Micro-groove Textured Cutting Tool

机译:表面微沟槽织构切削刀具正交切削Ti6Al4V的实验研究

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摘要

Currently biomimetic tribology study shows that high performance surface texture can achieve good friction, anti-adhesion and improve the wear resistance, which brings a new research direction for tool antifriction technology. The orthogonal cutting tests of surface micro-groove cutting tool in machining titanium alloy were presented. Different types of micro-grooves were made using laser in the rake face of uncoated tungsten carbide cutting inserts. Dry with no lubricant and minimal quantity lubricant (MQL) were used as lubrication conditions. Cutting force and cutting temperature were measured and compared. It was found that under MQL condition the surface micro-grooves could effectively improve the friction status between the tool and chip, thereby reducing cutting force and cutting temperature, and also reduce cutting temperature under no lubricant condition. The micro-grooves paralleling with cutting edge had the best effect in three types of micro-grooves.
机译:目前仿生摩擦学研究表明,高性能的表面织构可以实现良好的摩擦,抗粘连和提高耐磨性,这为工具减摩技术带来了新的研究方向。提出了钛合金表面微槽切削刀具的正交切削试验。使用激光在未涂层的碳化钨切削刀片前刀面制造出不同类型的微槽。没有润滑剂的干燥和少量润滑剂(MQL)被用作润滑条件。测量并比较切削力和切削温度。发现在MQL条件下,表面微槽可以有效改善刀具与切屑之间的摩擦状态,从而降低切削力和切削温度,并且在无润滑条件下也降低切削温度。与切削刃平行的微槽在三种类型的微槽中效果最好。

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