Advances in Engineering Plasticity and its Applications by T. Abe, T. Tsuta

By T. Abe, T. Tsuta

AEPA '96 offers a discussion board for dialogue on present advancements in plasticity. An emphasis is put on the shut interplay of the theories from macroplasticity, mesoplasticity and microplasticity including their functions in numerous engineering disciplines comparable to strong mechanics, steel forming, structural research, geo-mechanics and micromechanics. those lawsuits comprise over a hundred and forty papers from the convention together with case experiences exhibiting functions of plasticity in inter-disciplinary or nonconventional parts.

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Strain accumulation of secondary deformation proceeding cycle by cycle under stress-controlled conditions, was one of the main topics in a review published in 1990 on constitutive modeling of cyclic plasticity (Ohno, 1990). In the review, the state in the art of constitutive modeling concerning ratchetting was described as follows: "Ratchetting is still one of the most difficult problems in modeling, although it has been studied for many years. " As a matter of fact, however, constitutive modeling related with ratchetting has advanced greatly in the last about five years.

The <001> recrystallization textures from the major <111> + minor <001> fiber texture of axisymmetrically deformed fee metals. 3. The rotated cube recrystallization texture from the (112)[111] and (112)[îîl]deformed texture which are obtained from the plane strain compressed aluminum single crystal with (001)[110]. 4. The cube recrystallization texture from plane strain compressed fee polycrystalline metals. 5. The {111}<112>, {567}<943>, {223}<472> and {554}<225> recrystallization textures from the {001}<110>, {112}<110>, {225}<110> and {112}<110> plane strain compressed bec steels.

Y. Zhang (1992).

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