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使用微纹理球头铣刀时钛合金的表面完整性

The Surface Integrity of Titanium Alloy When Using Micro-Textured Ball-End Milling Cutters.

作者信息

Yang Shucai, Yu Song, He Chunsheng

机构信息

College of Mechanical and Power Engineering, Harbin University of Science and Technology, Harbin 150080, China.

出版信息

Micromachines (Basel). 2018 Dec 29;10(1):21. doi: 10.3390/mi10010021.

Abstract

Processing certain kinds of micro-textures onto the surface of tools can improve their wear resistance, reduce the friction between them and machined surfaces, prolong their service life and improve their processing efficiency. When milling titanium alloy with ball-end milling cutters, the cutting force and the cutting heat causes plastic deformation and a concentration of stress on workpiece surfaces, damaging their surface integrity. In this paper, we report on a test involving the milling of titanium alloy, where a micro-texture was placed onto the front of a ball-end cutter and the surface roughness and work hardening of the machined surface were studied. The orthogonal experiment was designed around changes in the diameter of the micro-texture, its depth, the spacing between individual micro-pits, and its distance from the cutting edge. Data from the experiment was then used to assess the influence changes in the micro-texture parameters had upon the roughness and hardening of the surface. The data was processed and analyzed by using regression analysis and a prediction model for surface roughness and work hardening was established. The reliability of the model was then verified. The contents of this paper provide a theoretical basis for improving the cutting performance and the surface machining quality of cemented carbide tools.

摘要

在刀具表面加工某些类型的微纹理可以提高其耐磨性,减少刀具与加工表面之间的摩擦,延长其使用寿命并提高加工效率。在用球头铣刀铣削钛合金时,切削力和切削热会导致工件表面发生塑性变形和应力集中,从而破坏其表面完整性。在本文中,我们报告了一项关于铣削钛合金的试验,其中在球头铣刀的前端加工了微纹理,并研究了加工表面的粗糙度和加工硬化情况。围绕微纹理的直径、深度、各个微坑之间的间距以及其与切削刃的距离变化设计了正交试验。然后利用试验数据评估微纹理参数变化对表面粗糙度和硬化的影响。通过回归分析对数据进行处理和分析,并建立了表面粗糙度和加工硬化的预测模型。随后验证了该模型的可靠性。本文的内容为提高硬质合金刀具的切削性能和表面加工质量提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c66/6356795/2eabda4ef970/micromachines-10-00021-g001.jpg

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