By W. Johnson (auth.), John J. Burke, Volker Weiss (eds.)
The military fabrics and Mechanics learn heart has con ducted the Sagamore military fabrics examine convention in coop eration with the fabrics technological know-how staff of the dept of Chemical Engineering and fabrics technology of Syracuse college considering that 1954. the aim of the convention has been to assemble to gether scientists and engineers from educational associations, in dustry and executive who're uniquely certified to discover extensive an issue of significance to the military, the dept of security and the medical group. This quantity, Advances in Deformation Processing, addresses the components of Analytical Advances, Workability, Processing to Optimize homes, complex purposes - fabrics, and complicated functions - techniques. The devoted guidance of Mr. Joseph Bernier of the military fabrics and Mechanics study middle through the phases of the convention making plans and eventually the ebook of the Sagamore convention court cases is deeply preferred. The aid of Helen Brown DeMascio of Syracuse college in p- paring the ultimate manuscript is said. the ongoing energetic curiosity and help of those meetings by means of Dr. A. E. Gorum, Director of the military fabrics and Mechanics study middle, is favored. Syracuse collage Syracuse, big apple The Editors vii Contents consultation I creation A. E. Gorum, Moderator Continuum Mechanics and Deformation Processing 1.
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JOHNSON A "top-hat" superplastica11y formed in one operation. The virtue of superplastic materials is seen in processes that are primarily tensile with very high extensions and low flow stresses; they are particularly appropriate to biaxial operations. The resemblance between the behavior of superplastic materials and plastics is evident, and suggests that forming techniques for the latter can easily be adapted for dealing with the former . Figure 11 shows what may be achieved when a 15 psi pressure is applied to a sheet to form it over a plug and then evacuating the volume above and pressurizing from below.
18. Dewhurs t, P. and Collins, 1. , "A Matrix Technique for Constructing Slip-Line Field Solutions to a Class of Plane Strain Plasticity Problems", Int. J. Num. , 7 (1973), 357-78. 19. , "A Class of Slipline Field Solutions for the Hot Rolling of Strip", J. Mech. Eng. , 15 (1973), 439-47. 20. , "Calculation of Roll Force and Torque in Hot Rolling Mills", Proc. Inst. Mech. , 168 (1954), 191-200. 21. Dugdale, D. , "Indentation of Strips with Flat Discs on a Flat Anvil", Int. J. Prod. , 3 (1964), 141-51.
Roy. , Ser. A, 303 (1968), 317-38. 18. Dewhurs t, P. and Collins, 1. , "A Matrix Technique for Constructing Slip-Line Field Solutions to a Class of Plane Strain Plasticity Problems", Int. J. Num. , 7 (1973), 357-78. 19. , "A Class of Slipline Field Solutions for the Hot Rolling of Strip", J. Mech. Eng. , 15 (1973), 439-47. 20. , "Calculation of Roll Force and Torque in Hot Rolling Mills", Proc. Inst. Mech. , 168 (1954), 191-200. 21. Dugdale, D. , "Indentation of Strips with Flat Discs on a Flat Anvil", Int.