Warianty tytułu
Model momentu i siły w procesie wiercenia
Języki publikacji
Abstrakty
Model torque and thrust force in drilling. A theoretical model to predict thrust force and torque in drilling is presented. The method consists of determining the continuous distributions of thrust and torque along the lip and the chisel edge of a twist drill. The calculation uses the oblique cutting model for the lip and the orthogonal cutting model for the chisel edge. Thrust and torque are obtained in terms of the geometric features of the drill, the cutting conditions and the properties of the machined material.
Model momentu i siły w procesie wiercenia. W artykule przedstawiono teoretyczny model do przewidywania siły skrawania i moment przy wierceniu. Metoda polega na wyznaczeniu rozkładu siły i momentu wzdłuż krawędzi wiertła. Do obliczeń zastosowano model ortogonalnego skrawania. Siłę i moment uzyskuje się w zależności od cech geometrycznych narzędzia, warunków skrawania i właściwości obrabianego materiału. W nie uwzględniono wpływu ścina wiertła.
Słowa kluczowe
Wydawca
Rocznik
Tom
Opis fizyczny
p.108-115,fig.,ref.
Twórcy
autor
- Faculty of Wood Technology, Warsaw Agricultural University, Nowoursynowska 159 str., 02-776 Warsaw, Poland
Bibliografia
- 1. K.F. Ehmann, S.G. Kapoor, R.E. Devor, I. Lazoglu, Machining process modeling: a review. Journal Manufacturing Science Engineering, 119, (1997): 655–663.
- 2. S.K. Bera, A. Bhattacharyya, Mechanics of drilling process, Journal Inst. Engineering (India) ME 6 46 ,(11), (1966): 265–276.
- 3. R.A. Williams, A theoretical and experimental study of the mechanics of the drilling process, PhD thesis, University of South Wales, 1968.
- 4. E.J.A. Armarego, C.Y. Cheng, Drilling with rake face and conventional twist drills. i: Theoretical investigation, Int. J. Mach. Tool Des. Res. 12 (1972) 17.
- 5. S. Wiriyacosol, E.J.A. Armarego, Thrust and torque prediction in drilling from a cutting mechanics approach, Annals of the CIRP, 28 (1), (1979) 87.
- 6. A.R. Watson, Geometry of drill elements, Int. J. Mach. Tool Des. Res. 25 (3) (1985) 209–227.
- 7. A.R. Watson, Drilling model for cutting lip and chisel edge ad comparison of experimental and predicted results. i—initial cutting lip model, Int. J. Mach. Tool Des. Res. 25 (4) (1985) 347–365.
- 8. A.R. Watson, Drilling model for cutting lip and chisel edge ad comparison of experimental and predicted results. ii—revised cutting lip model, Int. J. Mach. Tool Des. Res. 25 (4) (1985) 367–376.
- 9. A.R. Watson, Drilling model for cutting lip and chisel edge ad comparison of experimental and predicted results. iii—drilling model for chisel edge, Int. J. Mach. Tool Des. Res. 25 (4) (1985) 377–392.
- 10. A.R. Watson, Drilling model for cutting lip and chisel edge and comparison of experimental and predicted results. iv—drilling tests to determine chisel edge contribution to torque and thrust, Int. J. Mach. Tool Des. Res. 25 (4) (1985) 394–404.
- 11. B.J. Griffiths, R.J. Grieve, Modeling complex force systems, part 1: The cutting and pad forces in deep drilling, Trans. ASME, J. Eng. Ind. 115 (1993) 169–176.
- 12. B.J. Griffiths, R.J. Grieve, Modeling complex force systems, part 2: A decomposition of the pad forces in deep drilling, Trans. ASME, J. Eng. Ind. 115 (1993) 177–183.
- 13. H.-T. Huang, Prediction of thrust and torque for multifacet drills (mfd), Trans. ASME, J. Eng. Ind. 116 (1994), 1–7.
- 14. H.-T. Huang, Analysis of clearance and rake angles along cutting edge for multifacet drills (mfd), Trans. ASME, J. Eng. Ind. 116 (1994) 8–16.
- 15. P.L.B. Oxley, Modeling machining processes with a view to their optimization, Robobotics and Computer Integrated Manufacturing 4 (1988), 103–119.
- 16. J.A. Armarego, J.D. Wright, An analytical study of three point grinding methods for general purpose twist drills, Annals of the CIRP 29 (1) (1980), 5–10.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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