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The Effect of Heat Treatment on Residual Stress and Machining Distortions in Advanced Nickel Base Disk AlloysThis paper describes an extension of NASA's AST and IDPAT Programs which sought to predict the effect of stabilization heat treatments on residual stress and subsequent machining distortions in the advanced disk alloy, ME-209. Simple "pancake" forgings of ME-209 were produced and given four heat treats: 2075F(SUBSOLVUS)/OIL QUENCH/NO AGE; 2075F/OIL QUENCH/1400F@8HR;2075F/OIL QUENCH/1550F@3HR/l400F@8HR; and 2160F(SUPERSOLVUS)/OIL QUENCH/1550F@3HR/ 1400F@8HR. The forgings were then measured to obtain surface profiles in the heat treated condition. A simple machining plan consisting of face cuts from the top surface followed by measurements of the surface profile opposite the cut were made. This data provided warpage maps which were compared with analytical results. The analysis followed the IDPAT methodology and utilized a 2-D axisymmetric, viscoplastic FEA code. The analytical results accurately tracked the experimental data for each of the four heat treatments. The 1550F stabilization heat treatment was found to significantly reduce residual stresses and subsequent machining distortions for fine grain (subsolvus) ME209, while coarse grain (supersolvus) ME209 would require additional time or higher stabilization temperatures to attain the same degree of stress relief.
Document ID
20010056684
Acquisition Source
Glenn Research Center
Document Type
Technical Memorandum (TM)
Authors
Gayda, John
(NASA Glenn Research Center Cleveland, OH United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2001
Subject Category
Metals And Metallic Materials
Report/Patent Number
E-12670
NAS 1.15:210717
NASA/TM-2001-210717
Report Number: E-12670
Report Number: NAS 1.15:210717
Report Number: NASA/TM-2001-210717
Funding Number(s)
PROJECT: RTOP 714-04-10
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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