By American Institute Of Steel Construction (Aisc), Structural Steel Educational Council
This six-part handbook helps the 2005 AISC Seismic Provisions. It contains sections on common layout issues; layout of platforms using R = three (braced and second frames); layout of braced-frame platforms using R > three; layout of second body platforms using R > three; and layout of alternative structures using R > three.
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Additional resources for AISC Seismic Design Manual
These specimens were subjected to different stress states at 425°C. Stress state and consolidation time are the important parameters in the tests. Experiments were performed at constant mean stress to characterize the effect of the shear stress component on densification. 7MPa, which is not high enough to fully densify the material. The stress state is represented by the ratio of mean stress to effective stress (σηι/σ) (MPa) in this paper. Three stress state levels which were chosen also including HIPing.
The specimen shown in Fig. 1 was used in the CIPing experiment of Fields , where single phase titanium powder was packed in a copper can and pressurized to 40 ksi. e. both the metal com posing the powder and the canister material are assumed to be rigid-plastic. The powder motion confirms itself to the container deformation, and is assumed to bond completely to the can. The stress state in the powder is assumed to be a uniform hydrostatic pressure. The validity of that assumption is verified by the results of the detailed finite element calculations presented in the section that follows.
M. D. Crow, Acta metall. 31-35,1992. Ashby,HIP487: A Program for Constructiong Maps for Hot Isostatic Pressing, Cambridge UK 8 Thomas Rouns, private communication. HOT ISOSTATIC PRESSING ’93 L. Delaey and H. V. All rights reserved. A. B. V. Skorohodb aMax-Planck-Institut für Metallforschung, Pulvermetalurgisches Laboratorium, Heisenbergstraße 5, Stuttgart 80, D-7000, FRG bInstitute for Problems of Materials str. 3, 252180 Kiev, Ukraine Science, Krzhizhanovsky Abstract One of the possible models developing a phenomenological description of hot isostatic pressing is proposed.