By W. Muschik (auth.), Prof. Dr. David R. Axelrad, Prof. Dr. rer. nat. Wolfgang Muschik (eds.)
A particular survey of the large box of Constitutive legislation is given in eleven lectures, divided into 3 components: Thermodynamics of fabrics, Stochastic tactics and fabric Behaviour, Constitutive relatives for easy Fluids and Microphysics of Solids. the gathering of lectures comprehends a singular survey of thermodynamical constitutive theories, and contributions to fabric theories with after-effects together with experiments, stochastic constitutive legislation, molecular dynamics for simulating fabric homes, electrodynamical constitutive homes, and thermodynamic and microphysical modelling of polymers. the chosen lectures emphasize the microstructural element of constitutive legislation, and this assortment provides a brand new aspect of constitutive laws.
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Extra info for Constitutive Laws and Microstructure: Proceedings of the Seminar Wissenschaftskolleg — Institute for Advanced Study Berlin, February 23–24, 1987
Metal Plasticity as a Problem of Thermodynamics. This volume. : General Frame for Large Non-isothermic Elastic-Plastic and Elastic-Viscoplastic Deformations. In , 375/463. : Foundations of Large Deformations. In , 323/351.  Lehmann, Th. ): The Constitutive Law in Thermoplasticity (CISM Courses and Lectures No. 281). Wien/New York: Springer 1984. : On a Generalized Constitutive Law for Finite Deformations in Thermo-Plasticity and Thermo-Viscoplasticity. In: Constitutive Laws for Engineering Materials.
35. 79 36. : Arch. Rat. Mech. Anal. 48 (1972) 1 37. : Arch. Rat. Mech. Anal. 54 38. : Thermodynamik. Dusseldorf: Berte1smann 1973, Kap. IlLS 39. ~ 40. : Arch. Rat. Mech. Anal. : Arch. Rat. Mech. Anal. 48 (1972) 25 41. : Crystal Lattice Defects 7 (1977) 109 42. : in Lecture Notes in Physics 199. Berlin: Springer 1984, p. 387 43. : Arch. Rat. Mech. Anal. 13 (1963) 167 44. : Arch. Rat. Mech. Anal. 17 (1964) 1 45. see [38}, Kap. a 46. : Arch. Rat. Mech. Anal. 46 (1972) 131 47. : in Chien Wei-zang (ed): Proc.
Processes of kind (4) correspond to (at least partly) reversible processes on the micro-level with random distribution in space and time. This, for instance, concerns the interaction between external work and changes of internal state. The non-dissipated external work balances with the mechanical energy stored in the microstress fields due to lattice defects in crystals, grainboundary effects etc. The appearance of processes of the kinds (3) and (4) requires to separate the different kinds of processes in the balance equations for energy and entropy.