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Study on the Cutting Performance of Micro Textured Tools on Cutting Ti-6Al-4V Titanium Alloy

机译:Ti-6Al-4V钛合金微细加工刀具的切削性能研究

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摘要

Titanium alloys are widely used in various fields, but their machinability is poor because the chip would easily adhere to the tool surface during cutting, causing poor surface quality and tool wear. To improve the cutting performance of titanium alloy Ti-6Al-4V, experiments were conducted to investigate the effect of micro textured tool on the cutting performances. The cemented carbide tools whose rake faces were machined with line, rhombic, and sinusoidal groove textures with 10% area occupancy rates were adopted as the cutting tools. The effects of cutting depth and cutting speed on feed force and main cutting force were discussed based on experimental results. The results show that the cutting force produced by textured tools is less than that produced by non-textured tools. Under different cutting parameters, the best cutting performance can be obtained by using sinusoidal textured tools among the four types of tools. The wear of micro textured tools is significantly lower than that of non-textured tools, due to a continuous lubrication film between the chip and the rake face of the tool that can be produced because the micro texture can store and replenish lubricant. The surface roughness obtained using the textured tool is better than that using the non-textured tool. The surface roughness Ra can be reduced by 35.89% when using sinusoidal textured tools. This study is helpful for further improving the cutting performance of cemented carbide tools on titanium alloy and prolonging tool life.
机译:钛合金广泛用于各个领域,但是由于切削时切屑容易粘附在刀具表面上,从而导致较差的表面质量和刀具磨损,因此钛合金的机械加工性较差。为了提高钛合金Ti-6Al-4V的切削性能,进行了实验研究微织构刀具对切削性能的影响。切削面采用前刀面经直线,菱形和正弦凹槽纹理加工的硬质合金刀具,切削率为10%。根据实验结果,探讨了切削深度和切削速度对进给力和主切削力的影响。结果表明,纹理工具产生的切削力小于非纹理工具产生的切削力。在不同的切削参数下,使用四种工具中的正弦纹理工具可以获得最佳的切削性能。由于微纹理可以存储和补充润滑剂,因此可以在切屑和工具前刀面之间形成连续的润滑膜,从而使微纹理工具的磨损明显低于无纹理的工具。使用纹理工具比使用非纹理工具获得的表面粗糙度要好。使用正弦纹理工具时,表面粗糙度Ra可以降低35.89%。这项研究有助于进一步提高硬质合金刀具在钛合金上的切削性能并延长刀具寿命。

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