Hatefi Shahrokh, Smith Farouk
Department of Mechatronics, Faculty of Engineering, the Built Environment and Technology, Nelson Mandela University, Port Elizabeth 6000, South Africa.
Micromachines (Basel). 2023 Sep 28;14(10):1857. doi: 10.3390/mi14101857.
Ultra-high-precision single-point diamond turning (SPDT) is the state-of-the-art machining technology for the advanced manufacturing of critical components with an optical surface finish and surface roughness down to one nanometer. One of the critical factors that directly affects the quality of the diamond-cutting process is the cutting force. Increasing the cutting force can induce tool wear, increase the cutting temperature, and amplify the positioning errors of the diamond tool caused by the applied cutting force. It is important to measure the cutting force during the SPDT process to monitor the tool wear and surface defects in real time. By measuring the cutting force in different cutting conditions, the optimum cutting parameters can be determined and the best surface accuracies with minimum surface roughness can be achieved. In this study a smart cutting tool for in-process force measurement and nanopositioning of the cutting tool for compensating the displacements of the diamond tool during the cutting process is designed and analyzed. The proposed smart cutting tool can measure applied forces to the diamond tool and correct the nanometric positioning displacements of the diamond tool in three dimensions. The proposed cutting tool is wireless and can be used in hybrid and intelligent SPDT platforms to achieve the best results in terms of optical surface finish. The simulation results are shown to be almost consistent with the results of the derived analytical model. The preliminary results pave the way for promising applications of the proposed smart cutting tool in SPDT applications in the future.
超高精度单点金刚石车削(SPDT)是用于先进制造关键部件的先进加工技术,这些部件具有光学表面光洁度且表面粗糙度低至一纳米。直接影响金刚石切削加工质量的关键因素之一是切削力。切削力增加会导致刀具磨损、切削温度升高,并放大由施加的切削力引起的金刚石刀具定位误差。在SPDT加工过程中测量切削力对于实时监测刀具磨损和表面缺陷非常重要。通过在不同切削条件下测量切削力,可以确定最佳切削参数,并实现具有最小表面粗糙度的最佳表面精度。在本研究中,设计并分析了一种用于切削过程中力测量和切削刀具纳米定位的智能切削刀具,以补偿切削过程中金刚石刀具的位移。所提出的智能切削刀具可以测量施加在金刚石刀具上的力,并在三个维度上校正金刚石刀具的纳米定位位移。所提出的切削刀具是无线的,可用于混合和智能SPDT平台,以在光学表面光洁度方面取得最佳效果。仿真结果显示与推导的分析模型结果几乎一致。初步结果为所提出的智能切削刀具未来在SPDT应用中的有前景应用铺平了道路。