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基于超声辅助铣削(UAM)的Ti-6Al-4V铣削力与表面粗糙度优化:一项实验研究

Optimization Milling Force and Surface Roughness of Ti-6Al-4V Based on Ultrasonic-Assisted Milling (UAM): An Experimental Study.

作者信息

Lü Qingqing, Yang Saiyu, Yang Liquan, Liu Erbo, Li Guangxi, Xiang Daohui

机构信息

School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo 454003, China.

Henan Province Engineering Research Center of Ultrasonic Technology Application, Pingdingshan University, Pingdingshan 467033, China.

出版信息

Micromachines (Basel). 2023 Aug 30;14(9):1699. doi: 10.3390/mi14091699.

Abstract

This study aimed to develop a longitudinal ultrasonic-assisted milling system to investigate the machinability of titanium (Ti) Alloy Ti-6Al-4V (TC4). Aiming at reduced milling force and enhanced surface quality, ultrasonic-assisted milling was investigated taking into account the following processing parameters: spindle speed (cutting rate) , feed per tooth , milling depth , and ultrasonic amplitude . A comparison was made with conventional milling. The results of univariate tests demonstrated that the ultrasonic amplitude had the most significant impact on the milling force along the -axis, resulting in a reduction of 15.48% compared with conventional milling. The range analysis results of multivariate tests demonstrated that and were the dominant factors influencing the cutting force. The minimum reduction in the milling force in ultrasonic-assisted milling along the -, -, and -axes was 11.77%, 15.52%, and 17.66%, respectively, compared with that in conventional milling. The ultrasonic-assisted milling led to reduced surface roughness and enhanced surface quality; the maximum surface roughness in ultrasonic-assisted milling was 25.93%, 36.36% and 26.32% in terms of , , and , respectively. In longitudinal ultrasonic-assisted milling, the periodic "separation-contact" was accompanied by microimpacts, resulting in even smaller intermittent periodic cutting forces. Hence, regular fish scale machining mesh was observed on the processed surface, and the workpiece surface exhibited high cleanness and smoothness. The reasonable configuration of ultrasonic-assisted milling parameters can effectively improve the milling force and surface quality of Ti alloys and accumulate reference data for the subsequent machining process research.

摘要

本研究旨在开发一种纵向超声辅助铣削系统,以研究钛合金Ti-6Al-4V(TC4)的可加工性。为了降低铣削力并提高表面质量,对超声辅助铣削进行了研究,考虑了以下加工参数:主轴转速(切削速度)、每齿进给量、铣削深度和超声振幅。并与传统铣削进行了比较。单因素试验结果表明,超声振幅对沿x轴方向的铣削力影响最为显著,与传统铣削相比,铣削力降低了15.48%。多因素试验的极差分析结果表明,每齿进给量和铣削深度是影响切削力的主要因素。与传统铣削相比,超声辅助铣削沿x、y、z轴方向的铣削力最小降幅分别为11.77%、15.52%和17.66%。超声辅助铣削降低了表面粗糙度,提高了表面质量;超声辅助铣削的最大表面粗糙度在Ra、Rz和Ry方面分别为25.93%、36.36%和26.32%。在纵向超声辅助铣削中,周期性的“分离-接触”伴随着微冲击,导致间歇性切削力更小。因此,在加工表面观察到规则的鱼鳞状加工纹路,工件表面呈现出高清洁度和平滑度。合理配置超声辅助铣削参数可以有效改善钛合金的铣削力和表面质量,为后续加工工艺研究积累参考数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e6e/10537650/cb0dff4e8321/micromachines-14-01699-g009.jpg

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