On Design, Structure, Materials, Control Strategies, and Dynamic Characterization for Precision Force Dynamometers
摘要
The precision of measurement of force during machining, especially machine tools, has been assessed by engineers in the field of engineering applications for a long time. This research is expected to give light about the design, material selection, and fabrication of a cutting force boundary dynamometer. The study entails the force sensing mechanisms, the shape of the specimens, and the orientations of how the force is measured inclusive of the capability to connect the force measuring system to a computer for data acquisition. The main purpose for the work is the researching of the magnitude of static cutting as well as the magnitude of dynamics cutting as the processes of turning as well as the operations allied to turning. The details provided in this paper will assist the researchers and academicians in this field to acquire more knowledge concerning cutting force measurement. When measuring a cutting force, the analysis of analog force signals requires amplification and noise-less conversion into the digital signal to create an electronic file and, subsequently, its import into the computer for visualization, control, and monitoring of the process, including tools health.