Constitutive Relation in High/Very High Strain Rates: IUTAM by Kozo Kawata, Masaaki Itabashi (auth.), Prof. Dr. Kozo

By Kozo Kawata, Masaaki Itabashi (auth.), Prof. Dr. Kozo Kawata, Prof. Dr. Jumpei Shioiri (eds.)

The IUTAM Symposium on Constitutive Relation in High/Very excessive pressure charges (CRHVHSR) was once held October sixteen - 19, 1995, at Seminar condominium, technology college of Tokyo, lower than the sponsorship of IUTAM, Japan Society for the merchandising of technological know-how, The Commemorative organization for the Japan international Exposition (1970), Inoue beginning for technology, The Japan Society for Aeronautical and house Sciences, and technology collage of Tokyo. The concept to carry the symposium used to be authorized by way of the final meeting of IUT AM held in Haifa, Israel, in August 1992, and the scientists pointed out less than have been appointed by means of the Bureau of IUTAM to function individuals of the clinical Committee. the most item of the symposium was once to make a common survey of contemporary advancements within the study of constitutive family members in excessive and extremely excessive pressure charges and similar difficulties in excessive speed sturdy mechanics, and to discover additional new principles for facing unresolved difficulties of a basic nature in addition to of functional significance. the themes coated theoretical, experimental, and numerical fields within the above-mentioned difficulties in solids, protecting metals, polymers, ceramics, and composites. Emphasis was once given to the next fields: 1. fabric characterization of solids in excessive pace deformation, experimental thoughts, general info acquired by means of those thoughts, modeling, and constitutive kin 2. pressure fee established elasto-visco-plastic rigidity waves three. Crack initiation, propagation, and dynamic fracture durability four. Dynamic rigidity focus five. Structural dynamics in impression and constitutive kinfolk of solids 6.

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Additional resources for Constitutive Relation in High/Very High Strain Rates: IUTAM Symposium, Noda, Japan October 16–19, 1995

Sample text

D. Bui, Introduction aI/x problemes inverses en mecanique des materiaux. Editions Eyrolles, Paris 1993 II English translation, Inverse problems in the mechanics of materials: an introduction, CRC Press, Boca Raton, 1994. [22] L. Balkema, Rotterdam, Brookfield, 1994. [23] V. V. Sokolovsky, The propagation of elastic-viscous-plastic waves in bars. Prikl. Mat. , 1948, Vol. 12, pp. 261-280. E. Malvern, Propagation of longitudinal waves of plastic deformation. J App/. , 1951, Vol. 18, pp. 203-208. High strain rate constitutive relationships for semi-crystalline polymers using a combined numerical and experimental approach.

Strengthening mechanism of AI alloys is precipatation hardening for 2219 and 7075, on the other hand, it is solid solution hardening for 6061. To explain this newly found phenomenon DSCF (dynamic stress concentration fracture) model (Figure 14) is proposed. 3 11. 4 x10 2 x10- 2 1 392 255 qp : ep : Tensile strength Strain at q p eT : Total strain (Rupture strain) E.. 6 11. 2 1. / p (p: density) in high and low strain rate tension are summarized in Table 3. The materials are selected from four groups: 1) metallic crystalline materials: pure iron, structural steels and Al alloys, 2) composite materials: GFRP, CFRP and CF/GF hybrids, 3) polymeric materials: PET and PC, and 4) inorganic brittle material: Pyrex glass.

To explain this newly found phenomenon DSCF (dynamic stress concentration fracture) model (Figure 14) is proposed. 3 11. 4 x10 2 x10- 2 1 392 255 qp : ep : Tensile strength Strain at q p eT : Total strain (Rupture strain) E.. 6 11. 2 1. / p (p: density) in high and low strain rate tension are summarized in Table 3. The materials are selected from four groups: 1) metallic crystalline materials: pure iron, structural steels and Al alloys, 2) composite materials: GFRP, CFRP and CF/GF hybrids, 3) polymeric materials: PET and PC, and 4) inorganic brittle material: Pyrex glass.

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