• Non ci sono risultati.

REFERENCES 1. D.N. Reshetov, V.T. Portman,

N/A
N/A
Protected

Academic year: 2021

Condividi "REFERENCES 1. D.N. Reshetov, V.T. Portman,"

Copied!
3
0
0

Testo completo

(1)

119

REFERENCES

1. D.N. Reshetov, V.T. Portman, Accuracy of machine tools, New York: ASME, 1988. 2. C.H. Lo, J. Yuan, J. Ni, An application of real-time error compensation on a turning

centre, International Journal of Machine Tools and Manufacture, Volume 35, Issue 12,

1995, Pages 1669–1682

3. R. Ramesh, M.A. Mannan, A.N. Poo, Error compensation in machine tools - a review.

Part II: thermal errors, International Journal of Machine Tools and Manufacture, Volume

40, 2000, Pages 1257-1284

4. Y.C. Shin, Y. Weit, A statistical analysis of positional errors of a multi-axis machine

tool, Precision Engineering, Volume 14, Issue 3, July 1992, Pages 139-146

5. J.A. Soons, F.C. Theuws and P.H. Schellekens, Modelling the errors of multi-axis

machines: a general methodology, Precision Engineering, Volume 14, Issue 1, January

1992, Pages 5-19

6. R. Ramesh, M.A. Mannan and A.N. Poo, Thermal error measurement and modelling in

machine tools: Part I. Influence of varying operating conditions, International Journal of

Machine tools and Manufactured, Volume 43, Issue 4, March 2003, Pages 391-404.

7. Ji-Hun Jung, Jin-Phil Choi and Sang-Jo Lee, Machining accuracy enhancement by

compensating for volumetric errors of a machine tool and on-machine measurement,

Journal of Materials Processing Technology Volume 174, Issues 1-3, 25 May 2006, Pages 56-66

8. Guiquan Chen, Jingxia Yuan and Jun Ni, A displacement measurement approach for

machine geometric error assessment, International Journal of Machine Tools and

Manufacture, Volume 41,Issue 1, January 2001, Pages 149-161

9. J.S. Chen, T.W. Kou and S.H. Chiou, Geometric error calibration of multi-axis machines

using an auto-alignment laser interferometer, Precision Engineering, Volume23, Issue

4,October 1999, Pages 243-252

10. J.H. Lee, Y. Liu and S.H. Yang, Accuracy improvement of miniaturized machine tool:

Geometric error modelling and compensation, International Journal of Machine Tools

and Manufacture, Volume 46, Issues 12-13, October 2006, Pages 1508-1516

11. S. Li, Y. Zhang, G. Zhang, A study of pre-compensation for thermal errors of NC

machine tool, International Journal of Machine tools and Manufacture, Volume 37,

Issue 12, 1997, Pages 1715-1719

12. J.H. Lee and S.H. Yang, Measurement of geometric errors in a miniaturized machine

tool using capacitance sensors, Journal of Materials Processing Technology, Volumes

164-165, 15 May2005, Pages 1402-1409

13. L. Uriarte, A. Herrero, M. Zatarain, G. Santiso, L.N. Lopéz de Lacalle, A. Lamikiz and J. Albizuri, Error budget and stiffness chain assessment in a micro-milling machine

equipped with tools less than 0.3mm in diameter, Precision Engineering, Volume 31,

2007, Pages 1-17

14. M.A. Salgado, L.N. López de Lacalle, A. Lamikiz, J. Muñoa and J.A. Sánchez , Evaluation

of the stiffness chain on the deflection of end-mills under cutting forces, International

Journal of Machine Tools and Manufacture, Volume 45, Issue 6, May 2005, Pages 727-739 15. N. Srinivasa, J. C. Ziegert and C. D. Mize, Spindle thermal drift measurement using the

laser ball bar, Precision Engineering, Volume 18, Issues2-3,April-May 1996,Pages118-128

16. W. Knapp, Circular test for three-coordinate measuring machines and machine tools, Precision Engineering, Volume 5, Issue 3, July 1983, Pages 115-124

17. M. Geldart, P. Webb, H. Larsson, M. Backstrom, N. Gindy and K. Rask, A direct

comparison of the machining performance of a variax 5 axis parallel kinetic machining centre with conventional 3 and 5 axis machine tools, International Journal of Machine

(2)

120 18. H. F. F. Castro and M. Burdekin, Dynamic calibration of the positioning accuracy of

machine tools and coordinate measuring machines using a laser interferometer,

International Journal of Machine Tools and Manufacture, Volume 43, Issue 9,July 2003, Pages 947-954

19. A. Slocum, Understanding and modelling errors in machines, 2000

20. Andrew G. Phillip, Shiv G. Kapoor and Richard E. DeVor, A new acceleration-based

methodology for micro/meso-scale machine tool performance evaluation, International

Journal of Machine Tools and Manufacture, Volume 46, Issues 12-13,October 2006, Pages 1435-1444

21. I.T. Al-Zaharnah, Suppressing vibrations of machining processes in both feed and radial

directions using an optimal control strategy: The case of interrupted cutting, Journal of

Materials Processing Technology, Volume 172, Issue 2, 28 February 2006, Pages 305-310 22. ISO 230-3, Test code for machine tools. Part 3: determination of thermal effect, ISO,

Geneva, Switzerland; 2001

23. F.L.M. Delbressine, G.H.J. Florussen, L.A. Schijvenaars P.H.J. Schellekens, Modelling

thermo-mechanical behaviour of multi-axis machine tools, International Journal of

Machine tools and Manufacture

24. G. Bisacco, H.N. Hansen, L. De Chiffre, Improving axial depth of cut accuracy in

micro-milling, Procedure of 4th International Conference, Glasgow, Scotland, May-June 2004

25. ISO 230-1, Test code for machine tools. Part 1: Geometric accuracy of machines

operating under no-load or finishing conditions, ISO, Geneva, Switzerland; 2001

26. R. Ramesh, M.A. Mannan, A.N. Poo, Error compensation in machine tools - a review.

Part I: geometric, cutting-force induced and fixture-dependent errors, International

Journal of Machine Tools and Manufacture, Volume 40, Issue, 2000, Pages 1235-1256 27. X. Liu, R.E. DeVor, S.G. Kapoor and K.F. Ehmann, The mechanics of machining at the

micro-scale: assessment of the current state of the science, 2004

28. J. Chae, S.S. Park, T. Freiheit, Investigation of micro-cutting operations, Department of mechanical and manufacturing engineering, University of Calgary, Calgary, Canada, 2005 29. Hesselbach et al., International State of the Art of micro-production technology

30. J. Kim, D.S. Kim, Theoretical analysis of micro-cutting characteristics in ultra-precision

machining, Department of Precision Engineering and Mechatronics, South Korea, 1994

31. T.A. Dow, E.L. Miller and K. Garrard, Tool force and deflection compensation for small

milling tools, Precision Engineering, Volume 28, Issue 1, January 2004, Pages 31-45

32. W.B. Lee, C.F. Cheung and S. To, Materials induced vibration in ultra-precision

machining, Journal of Materials Processing Technology, Volumes 89-90, 19 May 1999,

Pages 318-325

33. M.P. Volger, R.E. DeVor, S.G. Kapoor, Microstructure-level force prediction model for

micro-milling of multi-phase materials, 2003

34. G. Bissacco et al., Manufacturing of an injection moulding mould insert with three

dimensional micro-features by micro-milling

35. www.keyence.com

36. I.T. Al-Zaharnah, Suppressing vibrations of machining processes in both feed and radial

directions using an optimal control strategy: The case of interrupted cutting, Journal of

Materials Processing Technology, Volume 172, Issue 2, 28 February 2006, Pages 305-310 37. Y.C. Shin and Y. Wei, A statistical analysis of positional errors of a multiaxis machine

tool, Precision Engineering, Volume 14, Issue 3, July 1992, Pages 139-146

38. www.skf.com

39. N.Srinivasa, J.C. Ziegert, C.D. Mize, Spindle thermal drift measurement using the laser

ball bar,Precision Engineering, Volume 18, 1996, Pages 128-138

40. www.heidenhain.de

41. A. A. Bicchi, Fondamenti di automatica, University of Pisa, Department of electrical, system and automation, November 1996

(3)

121 42. software Ansys 8.0,

43. www.fzk.de

44. www.microcomponents.ch

45. Chantal Khal Malek, Volker Saile, Application of LIGA technology to precision

manufacturing of high-aspect-ratio micro-components and -system: a review,

Microelectronics Journal, Volume 35, 2005, Pages 131-143

46. P. Li, R.S. Blom, J.A.J. Oosterling, M. Achtsnick, Deisgn Requirements of ann advances

micromilling setup, Laboratory for Precision Manufacturing and Assembly, Delft University

of Technology.

47. Software Matlab R2006b

48. J. Ni, CNC machine accuracy enhancement through real-time compensation, ASME Trans Journal of Manufacturing Science and Engineering, Volume 119, 1997, Pages 717-724 49. www.keyence.com

50. Instruction manual LC 2400 series Keyence

51. M. Achtsnick, P. Li, A. Oosterling, Reliable micro milling of dies and moulds, project brochure, Laboratory for Precision Manufacturing and Assembly, Delft University of Technology

52. P. Li, Micromilling Poster, Laboratory for Precision Manufacturing and Assembly, Delft University of Technology

53. www.aerotech.com 54. www.philips.com

Riferimenti

Documenti correlati

Sodai si riserva di apportare modifiche senza preavviso ai prodotti declinando ogni responsabilita’ per danni diretti o indiretti derivanti da eventuali modifiche. I colori e

First, most of the studies on family reunification are focused on a single country of origin and study a specific aspect of family reunification: for instance,

1996-2008 Co-ordinator of Local RU of Italian Ministry of University (MURST-MIUR) projects and Project leader of research co-financed by Italian Ministry of Agricultural Policy

Cells transfected with the mutant form of the protein exhibit a strong decrease of TMRM fluorescence (and hence a decreased mitochondrial potential) respect both to wild

The penetration of wind energy in the grid raises questions about the compatibility of the wind turbine power production with the grid ,in particular the behavior of the turbines

Indeed, in order to evaluate if iPA could be a useful agent able to inhibit tumor angiogenesis, we tested in vitro the ability of iPA to arrest the proliferation and

A first analysis develops a building typology study of football stadiums in general analyzing in depth for : historical mentions, architectural structure and

In this case to show Existence of solutions for our SDEs we could exploit Theorem 1.17 and limit points must be included in the set of weak solutions for SDE (1.18).... Let us