Key Laboratory of Contemporary Design and Integrated Manufacturing Technology (Northwestern Polytechnical University), Ministry of Education, Xi'an 710072, China.
Sensors (Basel). 2018 Nov 19;18(11):4031. doi: 10.3390/s18114031.
In the milling process, cutting forces contain key information about the machining process status in terms of workpiece quality and tool condition. On-line cutting force measurement is key for machining condition monitoring and machined surface quality assurance. This paper presents a novel instrumented working table with integrated polyvinylidene fluoride (PVDF) thin-film sensors, thus enabling the dynamic milling force measurement with compact structures. To achieve this, PVDF thin-film sensors are integrated into the working table to sense forces in different directions and the dedicated cutting force decoupling model is derived. A prototype instrumented working table is developed and validated. The validation demonstrates that profiles of the forces measured from the developed instrumented working table prototype and the dynamometer match well. Furthermore, the milling experiment results convey that the instrumented working table prototype could also identify the tool runout due to tool manufacturing or assembly errors, and the force signal spectrum analysis indicates that the developed working table can capture the tool passing frequency correctly, therefore, is suitable for the milling force measurement.
在铣削过程中,切削力包含有关加工过程状态的关键信息,包括工件质量和刀具状况。在线切削力测量是加工状态监测和加工表面质量保证的关键。本文提出了一种带有集成聚偏二氟乙烯(PVDF)薄膜传感器的新型仪器工作台,从而能够以紧凑的结构进行动态铣削力测量。为此,将 PVDF 薄膜传感器集成到工作台上,以感应不同方向的力,并推导出专用的切削力解耦模型。开发并验证了原型仪器工作台。验证表明,从开发的仪器工作台原型和测力仪测量的力的轮廓很好地匹配。此外,铣削实验结果表明,仪器工作台原型还可以识别由于刀具制造或装配误差引起的刀具跳动,并且力信号频谱分析表明,所开发的工作台可以正确捕获刀具通过频率,因此适用于铣削力测量。