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60 Modular Design Guide and Machine Tools Description
References
1. “Sandvik Launches New Interchangeable ‘Cutting Unit’ System.” The Production
Engineer, December 1980, pp. 20–21.
2. Dietz, P., “Baukastensystematik und methodisches Konstruieren im
Werkzeugmaschinenbau.” Werkstatt und Betrieb, 1983, 116(4): 185–189.
3. Ito, Y., “Flexible Manufacturing System Complex Provided with Laser—Part 3
Application System Design,” Proc. of 5th ICPE, 1984, pp. 28–36, JSPE Tokyo.
4. Zeh, K-P., and H. E. Frank, “Simulationsgestützte Planung einer flexiblen
Fertigungsanlage,” tz für Metallbearbeitung, 1984, 78(5): 11–17.
5. Brankamp, K., and J. Herrmann, “Baukastensystematik—Grundlagen und
Anwendung in Technik und Organisation,” Industrie-Anzeiger, 1969; 91(31): 693–697
und 91(50): 133–138.
6. Koenigsberger, F., “Modular Design of Machine Tools,” Proc. of Inter. Conf. on
Manufacturing Technology, University of Michigan Ann Arbor, 1967, ASTME, pp. 35–54.
7. Koenigsberger, F., “Trends in the Design of Metal Cutting Machine Tools,” Proc. of 1st
ICPE, 1974, JSPE Tokyo.
8. Lee, H. S., H. Shinno, and Y. Ito, “Structural Configuration Design of Machining
Center—On the Variant Method Using Conjunction Pattern,” J. of JSPE, 1986, 52(8):
1393–1398.
9. Ito, Y., “System Configuration and Design of FMS in Next Generation,” Advanced
Robotics, 1987, 2(2):103–120.
10. Koenigsberger, F., “Private Draft Proposal for Research Project—Modular Design of
Machine Tools,” University of Manchester Institute of Science and Technology,July
29, 1975.
11. Schwarz, W., “Universal-Werkzeugfräs-und-bohrmaschinen nach den Grundprinzipien
des Baukastensystems,” wt-Z. ind. Fertig., 1975, 65(1): 9–12.
12. Product Catalogue of Reinhard Bohle KG, 1960s.
13. “Baukastensystem für Drehmaschinen,” fertigung, Dezember 1993, pp. 28–30.
14. Georg, O., “Ein allgemein anwendbares Baukastensystem für Werkzeugmaschinen,”
Werkstattstechnik und Maschinenbau, 1950, 40(3): 65–70.
15. Ito, Y., “The Production Environment of an SME in the Year 2000,” in K. McGuigan
(ed.), Flexible Manufacturing for Small to Medium Enterprises—A European Conf.,
1988, pp. 207–234, EOLAS, Dublin.
16. Ropohl, G., and F. Schreiber, F. “Grenzen der Flexibilität von Aufbaumaschinen aus
genormten Baueinheiten,” Werkstattstechnik, 1968, 58(7): 301–306.
17. Ito, Y., “Desirable System Configurations of FTL for Automotive Industry,” Proc. of
Inter. Conf. on Auto Technology, 1990, pp. 254–262, Chulalongkorn, Univsity of
Bangkok.
18. Elb-Schliff, “Modular aufgebaute, CD-gerechte flexible Schleifsysteme,” in Schleifen,
Läppen, Honen Jahrbuch, 1984, pp. 335–356, Vulkan Verlag.
19. ISO 2562, 2727, 2769, 2891, 2912, and 2934 (Modular Units for Machine Tool
Construction), 1973.
20. Ito, Y., H. Shinno, and A. Sacaguti, “Grouping and Decomposition Methodology for
Machining Process to Assist the Design of Flexible Transfer Line,” Proc. of 26th Inter.
Symposium on Automotive Technology and Automation—Dedicated Conf. on Lean
Manufacturing in the Automotive Industries, ISATA, Aachen, 1993, pp. 375–382,
Automotive Automation Ltd., Croydon, U.K.
21. Saljé, E., “Eine Baukasten-Drehmaschine für scheibenförmige Werkstücke,” Werkstatt
und Betrieb, 1961, 94(10): 757–764.
22. Hölscher, W., “Die Anwendung des Baukastenprinzips bei der Konstruktion und
Herstellung von Werkzeugmaschinen,” Werkstatt und Betrieb, 1962, 95(9): 586–589.
23. Kvetoslav, E., “Building-Block Design of Milling Machines with Regard to Design of
Different Machining Variants,” ASTME Technical Paper No. MS68-203, 1968.
24. Ito, Y., “New Technology and Its Problem in Japanese Machine Tools,” Digest of
Japanese Industry, 1973, 66:10–14.
25. Schuler, H., “Numerisch gesteuerte Drehmaschinen nach dem Baukastenprinzip,” wt-
Z. ind. Fertig, 1972, 62(12): 720–724.