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Glass materials have been widely used in optical components in recent years. The purpose of this study was to develop an effective method for real-time detection of the state of cutting tools used in end milling of hard brittle materials. Cutting tests were performed to identify parameters that are useful in monitoring micro tool wear in glass milling. A specific component of the cutting force was found to be related to the progression of tool wear. Furthermore, using fast Fourier transform (FFT) analysis, the peak amplitudes of the cutting forces were found to occur at a specific frequency.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
55--64
Opis fizyczny
Bibliogr. 6 poz., tab., rys.
Twórcy
autor
- Kagoshima National College of Technology, Department of Electronic Control Engineering, Kagoshima, Japan
autor
- Kagoshima University, Graduate School of Science and Engineering, Kagoshima, Japan
autor
- Kagoshima National College of Technology, Department of Electronic Control Engineering, Kagoshima, Japan
autor
- Kagoshima National College of Technology, Department of Electronic Control Engineering, Kagoshima, Japan
autor
- Kagoshima National College of Technology, Department of Electronic Control Engineering, Kagoshima, Japan
Bibliografia
- [1] LAI X., et al, 2008, Modeling and analysis of micro scale milling considering size effect, micro cutter edge radius and minimum chip thickness, Int. J. Mach. Tools Manufac., 48, 1–14.
- [2] RAHMAN M., et al, 2001, Micro milling of pure copper, J. Mat. Proc. Tech., 116, 39–43.
- [3] JEMIELNIAK K., et al, 2008, Application of AE and cutting force signals in tool condition monitoring in micromilling, CIRP J. Manufac. Sci. Tech., 1, 97–102.
- [4] MALEKIAN M., et al, 2009, Modeling of dynamic micro-milling cutting forces, Int. J. Mach. Tools Manufac., 49, 586–598.
- [5] MATSUMURA T., et al, 2005, A study on cutting force in the milling process of glass, J. Manufac. Proc., 7–2, 102–108.
- [6] ONO T., et al, 2008, Influence of tool inclination on brittle fracture in glass cutting with ball end mills, J. Manufac. Proc. Tech., 202, 61–69.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-06422b7f-3466-461b-9409-f2a0636ddd81