Thermal recovery of explosive shock-loaded Ni, TD-Ni, Chromel-A, Inconel 600 and TD-NiCr
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference11 articles.
1. Thermal Recovery of Explosive Shock-loaded Stainless Steel
2. Electron‐Microscope Study of Thermal Recovery Processes in Explosion‐Shocked Nickel
3. The role of point defects in the thermal recovery of shock-loaded metals and alloys
4. L. E. Murr, H. R. Vydyanath and J. V. Foltz, Met. Trans., in press.
5. Electron Optical Applications in Materials Science;Murr,1970
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1. Investigation of Residual Change Stability in Structure and Properties of Internally Oxidized Cu-Al203 Alloys After Loading by Plane Shock Waves;Shock Waves and High-Strain-Rate Phenomena in Metals;1981
2. Influence of plane shocks on the residual properties of copper and the interior of an oxidized copper alloy;Combustion, Explosion, and Shock Waves;1981
3. Experimental and theoretical observations on the relationship between dislocation cell size, dislocation density, residual hardness, peak pressure and pulse duration in shock-loaded nickel;Acta Metallurgica;1978-05
4. Vacancies and vacancy clusters in shock‐loaded molybdenum: Direct observations by transmission electron and field‐ion microscopy;Applied Physics Letters;1976-04-15
5. Direct observations of vacancies and vacancy-type defects in molybdenum following uniaxial shock-wave compression;Acta Metallurgica;1976-03
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