Macro and Micro-Mechanics of High Velocity Deformation and Fracture
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Macro and Micro-Mechanics of High Velocity Deformation and Fracture Iutam Symposium on Mmmhvdf Tokyo, Japan, August 12-15, 1985 (International Unio) by K. Kawata

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Published by Springer .
Written in English

Subjects:

  • Electronics - General,
  • Engineering (General),
  • Nanostructures,
  • Engineering Mechanics,
  • Science,
  • Congresses,
  • Deformations (Mechanics),
  • Fracture mechanics,
  • Science/Mathematics

Book details:

Edition Notes

ContributionsJ. Shioiri (Editor)
The Physical Object
FormatHardcover
Number of Pages427
ID Numbers
Open LibraryOL10152268M
ISBN 100387163638
ISBN 109780387163635

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The IUTAM Symposium on Macro- and Micro-Mechanics of High Velocity Deformation and Fracture (MMMHVDF) (August 12 - 15, ) was held at Science Council of Japan, under the sponsor­ ship of IUTAM, Science Council of Japan, Japan Society for the Promotion of Science, The Commemorative Association for the Japan World Exposition (), and The Japan Society for Aeronautical and Space Sciences. macro- and micro-mechanics associated with high velocity de­ formatio~ and fracture in soldis, covering metals, ceramics, polymers, and composites. Emphasis was laid on the fields as follows: 1) Materials characterization techniques of solids in high velocity deformation and the typical data by these tech­ niques, such as high velocity brittleness and high veloc­ ity ductility. Macro- and Micro-Mechanics of High Velocity Deformation and Fracture: IUTAM Symposium on MMMHVDF Tokyo, Japan, August , (IUTAM Symposia) (Reprint Edition) by Kozo Kawata (Editor), Jumpei Shioiri (Editor) Paperback, Pages, Published ISBN / ISBN / The IUTAM Symposium on Macro- and Micro-Mechanics of High Book Edition: Reprint Edition. Kawata K., Hashimoto S., Sekino S., Takeda N. () Macro- and Micro-Mechanics of High-Velocity Brittleness and High-Velocity Ductility of Solids. In: Kawata K., Shioiri J. (eds) Macro- and Micro-Mechanics of High Velocity Deformation and Fracture. International Union of Theoretical and Applied Mechanics. Springer, Berlin, HeidelbergCited by:

The formability and the forming accuracy of materials will be greatly improved in high-velocity forming process. However, the fracture mechanism of materials in macro-micro scale keeps unknown or Author: Li Hongwei, Yan Siliang, Yang He. Saka K., Harding J. () The Deformation and Fracture of Hybrid Reinforced Composites underTensile Impact. In: Kawata K., Shioiri J. (eds) Macro- and Micro-Mechanics of High Velocity Deformation and by: 5. Deformation and Fracture Mechanics of Engineering Materials provides a combined fracture mechanics-materials approach to the fracture of engineering solids with comprehensive treatment and detailed explanations and references, making it the perfect resource for senior and graduate engineering students, and practicing engineers alike. The 5th edition includes new end-of-chapter homework. Mechanical behavior of materials: engineering methods for deformation, fracture, and fatigue Book August with Reads How we measure 'reads'.

Macro- and Micro-Mechanics of High Velocity Deformation and Fracture(1st Edition) IUTAM Symposium on MMMHVDF, Tokyo, August (IUTAM Symposia) by Kozo Kawata, Keizo Kawata, Jumpei Shioiri, Kōzō Kawata Hardcover, Pages, Published by Springer ISBN , ISBN: That is to say, this is the special fracture mechanism of TA3 alloy in high-velocity deformation. 3 Conclusions 1) ASB is the nature of flow softening and for the propagation of macroscale fracture. Large adiabatic temperature rise in ASB caused by deformation temperature makes fracture occur at interior section of the specimen and thus a long range softening appears in stress-strain : Li Hongwei, Yan Siliang, Yang He. This Third Edition of the well-received engineering materials book has been completely updated, and now contains over 1, citations. Thorough enough to serve as a text, and up-to-date enough to serve as a reference. There is a new chapter on strengthening mechanisms in metals, new sections on composites and on superlattice dislocations, expanded treatment of cast and powder-produced 4/5(1).   The IUTAM Symposium on Macro- and Micro-Mechanics of High Velocity Deformation and Fracture (MMMHVDF) (August 12 - 15, ) was held at Science Council of Japan, under the sponsor­ ship of IUTAM, Science Council of Japan, Japan Society for the Author: Masud Chaichian.