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Chapter 39 
Computer-Integrated Manufacturing 
Systems 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Flexible Manufacturing Cell (FMC) 
Figure 39.1 Schematic illustration of a manned, flexible 
manufacturing cell showing various machine tools and an 
inspection station. Source: After J. T. Black. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Flexible Manufacturing System 
Figure 39.2 A schematic illustration of a flexible manufacturing system showing 
machining centers, a measuring and inspection station. And automated guided 
vehicles. Source: After J. T. Black. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
General View of Flexible Manufacturing System 
Figure 39.3 A general view of a flexible manufacturing system in a plant showing 
several machining centers and automated guided vehicles moving along the 
white line in the aisle. Source: Courtesy of Cincinnati Miacron, Inc. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Comparison of General Characteristics of Transfer Lines 
and Flexible Manufacturing Systems 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Topology Types for LAN 
Figure 39.4 Three basic types of topology for a local area network (LAN). (a) The star topology is 
suitable for situations that are not subject to frequent configuration changes. All messages pass 
through a central station. Telephone systems in office buildings usually have this type of topology. (b) 
In the ring topology, all individual user stations are connected in a continuous ring. The message is 
forwarded from one station to the next until it reaches its assigned destination. Although the wiring is 
relatively simple, the failure of one station shuts down the entire network. (c) In the bus topology, all 
stations have independent access to the bus. This systems is reliable and easier than the other two to 
service. Because its arrangement is similar to the layout of the machines in the factory, its installation 
is relatively easy, and it can be rearranged when the machines are rearranged. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
ISO/OSI Reference Model 
Figure 39.5 The ISO/OSI reference model for open communication. 
Source: After U. Rembold. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Expert System 
Figure 39.6 Basic structure of an expert system. The knowledge base 
consists of knowledge rules (general information about the problem) and 
inference rules (the way conclusions are reached). The results may be 
communicated to the user through the natural language interface. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
Machine Vision 
Figure 39.7 Expert system as applied to an 
industrial robot guided by machine vision. 
Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. 
ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.

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Ch39 computer aided manufacturing

  • 1. Chapter 39 Computer-Integrated Manufacturing Systems Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 2. Flexible Manufacturing Cell (FMC) Figure 39.1 Schematic illustration of a manned, flexible manufacturing cell showing various machine tools and an inspection station. Source: After J. T. Black. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 3. Flexible Manufacturing System Figure 39.2 A schematic illustration of a flexible manufacturing system showing machining centers, a measuring and inspection station. And automated guided vehicles. Source: After J. T. Black. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 4. General View of Flexible Manufacturing System Figure 39.3 A general view of a flexible manufacturing system in a plant showing several machining centers and automated guided vehicles moving along the white line in the aisle. Source: Courtesy of Cincinnati Miacron, Inc. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 5. Comparison of General Characteristics of Transfer Lines and Flexible Manufacturing Systems Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 6. Topology Types for LAN Figure 39.4 Three basic types of topology for a local area network (LAN). (a) The star topology is suitable for situations that are not subject to frequent configuration changes. All messages pass through a central station. Telephone systems in office buildings usually have this type of topology. (b) In the ring topology, all individual user stations are connected in a continuous ring. The message is forwarded from one station to the next until it reaches its assigned destination. Although the wiring is relatively simple, the failure of one station shuts down the entire network. (c) In the bus topology, all stations have independent access to the bus. This systems is reliable and easier than the other two to service. Because its arrangement is similar to the layout of the machines in the factory, its installation is relatively easy, and it can be rearranged when the machines are rearranged. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 7. ISO/OSI Reference Model Figure 39.5 The ISO/OSI reference model for open communication. Source: After U. Rembold. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 8. Expert System Figure 39.6 Basic structure of an expert system. The knowledge base consists of knowledge rules (general information about the problem) and inference rules (the way conclusions are reached). The results may be communicated to the user through the natural language interface. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.
  • 9. Machine Vision Figure 39.7 Expert system as applied to an industrial robot guided by machine vision. Manufacturing, Engineering & Technology, Fifth Edition, by Serope Kalpakjian and Steven R. Schmid. ISBN 0-13-148965-8. © 2006 Pearson Education, Inc., Upper Saddle River, NJ. All rights reserved.