Pang Qilong, Xiong Jianlong
College of Mechatronics Engineering, Nanjing Forestry University, Nanjing 210037, China.
Materials (Basel). 2022 Dec 19;15(24):9068. doi: 10.3390/ma15249068.
To comprehensively obtain the effect of the machining process on the three-dimensional surface topography of machined potassium dihydrogen phosphate crystals, a dynamic response model of a machining system was built to calculate the dynamic displacement variables in the different processing directions. This model includes almost all processing factors, such as cutting parameters, environment vibration, radial and axial runout of the spindle, cutting tool parameters, material parameters, guide way error, fast tool servo and lubrication condition errors, etc. Compared with the experimental results, the three-dimensional topographies and two-dimensional profiles of the simulation surfaces were nearly consistent with those of experimental machined surfaces. As the simulation shows, the cutting parameters, axial runout of the spindle, and the output noise of the fast tool servo can respectively impact the main, low, and high frequencies of the machined surface topography. The main frequency of all the simulated and experimental surfaces in this study was 0.0138 μm. The low and high frequencies of the simulation surfaces had slight differences, about 0.003 μm from those of the experimental surfaces. The simulation model, based on dynamic response, can accurately predict the entire machining process and three-dimensional topographies of machined potassium dihydrogen phosphate surfaces.
为全面获取加工工艺对加工后的磷酸二氢钾晶体三维表面形貌的影响,建立了加工系统的动态响应模型,以计算不同加工方向上的动态位移变量。该模型几乎涵盖了所有加工因素,如切削参数、环境振动、主轴的径向和轴向跳动、刀具参数、材料参数、导轨误差、快速刀具伺服和润滑条件误差等。与实验结果相比,模拟表面的三维形貌和二维轮廓与实验加工表面的几乎一致。模拟结果表明,切削参数、主轴轴向跳动和快速刀具伺服的输出噪声分别会影响加工表面形貌的主频、低频和高频。本研究中所有模拟表面和实验表面的主频均为0.0138μm。模拟表面的低频和高频与实验表面的略有差异,相差约0.003μm。基于动态响应的模拟模型能够准确预测磷酸二氢钾加工表面的整个加工过程和三维形貌。