By Eiji Usui; Seiki Gakkai (Japan); Chiba-ken (Japan); Chiba Industrial Technology Advancement Center
As we circulation in the direction of the twenty first century, industries are forced to show from "high productiveness and excessive precision" to "more clever and extra human-oriented technology". This quantity provides the prevailing cutting-edge of production/precision engineering and illuminates parts during which destiny paintings may well continue.
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5, Machine Tool Accuracy, Lawrence Livermore National Laboratory, UCRL 52960-5, October 1980, pp. 31 ,-9. 3. J. B. Bryan, Closer Tolerances-Economic Sense, Annals of the CIRP, Vol. XVIV, 197 1 , pp. 1 151 20. 4. D. Swyt, Personal Communication, National Institute of Standards and Technology, Gaithersburg, Maryland, U . S . A. 5. D . Thompson, Postprocess Gaging with Feedback, Technology of Machine Tools, LLNL, Vol. 5 , UCRL 52960-5, October 1980, pp. 9-1 ,-7. 6. This project, called the Precision Machining Commercialization Project, was conducted by the Precision Engineering Program at the Lawrence Livermore National Laboratory from 1978 to 198 1 .
V digital signal processor galv. isolation Trigger 2 /C lock 2 l 2 /12758 Figure 7. Basic module for signal processing respective tasks. Programming is done by graphic objects, so the knowledge of a programming language is not necessary. The CAN-Bus interface allows communication between the sensor module and central computer systems, as well as various other elements. In contrast to other Bus systems such as the RS 232 or the Profibus, which are very common for processing measured data, the CAN-Bus is more reliable with respect to data transfer and data flow rate.
This multiple CAN-Bus - © IFW integration of processors enhances the speed of the signal processing significantly. Furthermore, near sensor signal processing shortens the transfer range of analogue signals. Thus, disturbances are excluded while recording the data. Summa ry In this paper, the fundamental developments in the design of machine tools have been discussed. By means of the modular design of the machines and machine components with the aid of a manufacturer-oriented modular product system, flexibility and economic efficiency with respect to the machining operation is achieved.
Advancement of intelligent production by Eiji Usui; Seiki Gakkai (Japan); Chiba-ken (Japan); Chiba Industrial Technology Advancement Center