By Marc De Graef, Henning Friis Poulsen, Alexis Lewis, Jeff Simmons, George Spanos
Addressing a serious development region in fabrics technology, this quantity good points papers awarded on the 2012 overseas convention on 3D fabrics technological know-how, prepared through The Minerals, Metals & fabrics Society (TMS). With the pinnacle researchers on the earth assessing the state of the art in the a variety of components of 3-dimensional fabrics technological know-how, this assortment presents the most suitable discussion board for authoritative shows on all elements of the technological know-how, together with characterization, visualization, quantitative research, modeling, and research of structure-property relationships of materials.Content:
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Ohnuma and K. J. A. C. A. Groeber Air Force Research Laboratory, Materials and Manufacturing Directorate, AFRL/RXLMP, 2230 Tenth Street, Wright-Patterson, AFB, OH 45433-7817, USA Keywords: Crystal-Plasticity, Finite Elements, Grain Boundary Deformation Abstract This work presents a three tiered modeling approach to examine grain boundary interfaces in a pure Nickel foil material utilizing a crystal plasticity based finite element model (CPFEM). The goal of this work is to calibrate a modeling approach through comparison to experimental data, and then use the models to gain insight into deformation at grain boundaries in Nickel and Nickel-base superalloy polycrystals.
4(b)), respectively. (a) (b) Fig. 5 (a)) is analyzed. From Fig. 5(b), the deformation increases with the load increasing. With the loading increasing, the stress of SiC network, the strain of Fe–20Cr matrix increase and the strength of composites is also increases. The displacement levels are higher for the Fe–20Cr compared with that of the SiC network because of Fe–20Cr has lower Young’s modulus. It is clear that the apparent plasticity takes place by true plastic deformation in the metal phase and elastic accommodation in the ceramic.
Limited understanding of the innovation cathode cell has contributed to many operational problems such as power consumption, current efficiency and life of cell. The forces caused by the magnetic field and the current field have increased the importance of dynamics in the innovation cathode cell at a lower ACD. In recent years, great advance has been made toward understanding instability and the theoretical modeling of the instability in cell resulting from MHD forces[2~9], but little progress has been made in the Lorentz forces resulting from interaction between the horizontal current and the vertical magnetic field in the innovation cathode cell at a lower ACD.
1 International Conference on 3D Materials Science by Marc De Graef, Henning Friis Poulsen, Alexis Lewis, Jeff Simmons, George Spanos