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Chapter 18 
Processing of Ceramics, Glass, and 
Superconductors 
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.
Ceramic and Glass 
Parts 
(a) (b) 
Figure 18.1 Photos of typical (a) ceramic and (b) glass parts. Source: Courtesy of Sanwa 
Components USA. (b) Courtesy of Corning Glass Works. 
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.
Characteristics of Ceramics Processing 
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.
Steps in Making Ceramic Parts 
Figure 18.2 Processing steps involved in making ceramic parts. 
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.
Slip-casting a Ceramic Part 
Figure 18.3 Sequence of operations in slip-casting a ceramic part. After the slip has been 
poured, the part is dried and fired in an oven to give it strength and hardness. Source: 
After F. H. Norton 
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.
Doctor-Blade Process 
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. 
Figure 18.4 Production 
of ceramic sheets 
through the doctor-blade 
process
Extruding and Jiggering 
Figure 18.5 (a) Extruding and (b) jiggering operations. 
Source: After R. F. Stoops 
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.
Shrinkage of Wet Clay 
Figure 18.6 Shrinkage of wet clay caused by the removal of water during drying. 
Shrinkage may be as much as 20% by volume. Source: After F. H. Norton. 
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.
Float Method 
Figure 18.7 The float method of forming sheet glass. 
Source: Courtesy of Corning Glass Works. 
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.
Drawing Process and Rolling Process 
Figure 18.8 (a) Drawing process for drawing sheet glass from a molten bath. 
(b) Rolling process. Source: After W. D. Kingery. 
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.
Glass Tubing Manufacturing 
Figure 18.9 Manufacturing process for glass tubing. Air is blown through the 
mandrel to keep the tube from collapsing. Glass tubes for fluorescent light bulbs 
are made by this method. 
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.
Steps in Manufacturing Glass Bottles 
Figure 18.10 Stages in manufacturing an ordinary glass bottle. Source: After F. H. Norton. 
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.
Manufacturing Glass by Pressing into Mold 
Figure 18.11 Manufacturing a glass item by pressing glass into a mold. 
Source: Courtesy of Corning Glass Works. 
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.
Pressing Glass into a Split Mold 
Figure 18.12 Pressing glass into a split mold. Source: After E. B. Shand. 
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.
Centrifugal Casting of Glass 
Figure 18.13 Centrifugal casting of glass. Large telescope 
lenses and television-tube funnels are made by this 
process. Source: Courtesy of Corning Glass Works. 
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.
Residual Stresses in Tempered-Glass Plate 
Figure 18.14 Residual stresses in tempered-glass plate, and the stages involved 
in inducing compressive surface residual stresses for improved strength. 
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.
Powder-In-Tube Process 
Figure 18.15 Schematic illustration of the powder-in-tube process. 
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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Ch18 ceramics Erdi Karaçal Mechanical Engineer University of Gaziantep

  • 1. Chapter 18 Processing of Ceramics, Glass, and Superconductors 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. Ceramic and Glass Parts (a) (b) Figure 18.1 Photos of typical (a) ceramic and (b) glass parts. Source: Courtesy of Sanwa Components USA. (b) Courtesy of Corning Glass Works. 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. Characteristics of Ceramics Processing 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. Steps in Making Ceramic Parts Figure 18.2 Processing steps involved in making ceramic parts. 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. Slip-casting a Ceramic Part Figure 18.3 Sequence of operations in slip-casting a ceramic part. After the slip has been poured, the part is dried and fired in an oven to give it strength and hardness. Source: After F. H. Norton 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. Doctor-Blade Process 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. Figure 18.4 Production of ceramic sheets through the doctor-blade process
  • 7. Extruding and Jiggering Figure 18.5 (a) Extruding and (b) jiggering operations. Source: After R. F. Stoops 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. Shrinkage of Wet Clay Figure 18.6 Shrinkage of wet clay caused by the removal of water during drying. Shrinkage may be as much as 20% by volume. Source: After F. H. Norton. 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. Float Method Figure 18.7 The float method of forming sheet glass. Source: Courtesy of Corning Glass Works. 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.
  • 10. Drawing Process and Rolling Process Figure 18.8 (a) Drawing process for drawing sheet glass from a molten bath. (b) Rolling process. Source: After W. D. Kingery. 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.
  • 11. Glass Tubing Manufacturing Figure 18.9 Manufacturing process for glass tubing. Air is blown through the mandrel to keep the tube from collapsing. Glass tubes for fluorescent light bulbs are made by this method. 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.
  • 12. Steps in Manufacturing Glass Bottles Figure 18.10 Stages in manufacturing an ordinary glass bottle. Source: After F. H. Norton. 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.
  • 13. Manufacturing Glass by Pressing into Mold Figure 18.11 Manufacturing a glass item by pressing glass into a mold. Source: Courtesy of Corning Glass Works. 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.
  • 14. Pressing Glass into a Split Mold Figure 18.12 Pressing glass into a split mold. Source: After E. B. Shand. 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.
  • 15. Centrifugal Casting of Glass Figure 18.13 Centrifugal casting of glass. Large telescope lenses and television-tube funnels are made by this process. Source: Courtesy of Corning Glass Works. 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.
  • 16. Residual Stresses in Tempered-Glass Plate Figure 18.14 Residual stresses in tempered-glass plate, and the stages involved in inducing compressive surface residual stresses for improved strength. 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.
  • 17. Powder-In-Tube Process Figure 18.15 Schematic illustration of the powder-in-tube process. 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.