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タイトルEffect of Processing Route on Strain Controlled Low Cycle Fatigue Behavior of Polycrystalline NiAl
本文(外部サイト)http://hdl.handle.net/2060/19980018035
著者(英)Noebe, R. D.; Rao, K. Bhanu Sankara; Lerch, B. A.
著者所属(英)NASA Lewis Research Center
発行日1995-01-01
1995
言語eng
内容記述The present investigation examines the effects of manufacturing process on the total axial strain controlled low cycle fatigue behavior of polycrystalline NiAl at 1000 K, a temperature above the monotonic Brittle-to-Ductile Transition Temperature (BDTT). The nickel aluminide samples were produced by three different processing routes: hot isostatic pressing of pre- alloyed powders, extrusion of prealloyed powders, and extrusion of vacuum induction melted ingots. The LCF behavior of the cast plus extruded material was also determined at room temperature (below the BD77) for comparison to the high temperature data. The cyclic stress response, cyclic stress-strain behavior, and strain-life relationships were influenced by the alloy preparation technique and the testing temperature. Detailed characterization of the LCF tested samples was conducted by optical and electron microscopy to determine the variations in fracture and deformation modes and to determine any microstructural changes that occurred during LCF testing. The dependence of LCF properties on processing route was rationalized on the basis of starting microstructure, brittle-to-ductile transition temperature, deformation induced changes in the basic microstructure, deformation substructure, and synergistic interaction between the damage modes.
NASA分類Metallic Materials
レポートNONASA/TM-95-207392
NAS 1.15:207392
権利No Copyright


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