An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction

Approved for public release, distribution is unlimited. === A previously manufactured hot rolled sheet of A1-LiZr alloy of composition A1-2.5%Li-15%Zr, by weight, was solution treated and artificially aged at 194 C from C to 32 hours. X-ray diffraction analysis of the alloy was conducted to observe...

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Main Author: Whitman, Clark E.
Other Authors: Fox, A.G.
Language:en_US
Published: Monterey, California. Naval Postgraduate School 2013
Online Access:http://hdl.handle.net/10945/37555
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-375552015-02-04T03:55:41Z An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction Whitman, Clark E. Fox, A.G. Naval Postgraduate School (U.S.) Department of Mechanical Engineering Approved for public release, distribution is unlimited. A previously manufactured hot rolled sheet of A1-LiZr alloy of composition A1-2.5%Li-15%Zr, by weight, was solution treated and artificially aged at 194 C from C to 32 hours. X-ray diffraction analysis of the alloy was conducted to observe the growth characteristics of the delta prime precipitate (the precipitate hardening phase). Transmission electron microscopy was used to verify X-ray results. Significant superlattice intensity and line broadening occurred in the as-quenched sample. This observation supports a possible order/disorder reaction and a spinodal decomposition as opposed to the typical nucleation and precipitation reaction usually observed in a precipitation hardened alloy. The Scherrer equation was used to determine delta prime particle size from diffraction line broadening, and this size was found to coarsen following conventional Ostwald ripening theory once the initial effects of the spinodal had aged out. The delta phase (considered cause of low toughness) was observed in the as quenched sample and throughout the heat treatment. It was surmised that this may be the origin of he low-short transverse fracture toughness which is typical of some of these alloys. 2013-11-20T23:33:41Z 2013-11-20T23:33:41Z 1990-03 Thesis http://hdl.handle.net/10945/37555 en_US This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted. Monterey, California. Naval Postgraduate School
collection NDLTD
language en_US
sources NDLTD
description Approved for public release, distribution is unlimited. === A previously manufactured hot rolled sheet of A1-LiZr alloy of composition A1-2.5%Li-15%Zr, by weight, was solution treated and artificially aged at 194 C from C to 32 hours. X-ray diffraction analysis of the alloy was conducted to observe the growth characteristics of the delta prime precipitate (the precipitate hardening phase). Transmission electron microscopy was used to verify X-ray results. Significant superlattice intensity and line broadening occurred in the as-quenched sample. This observation supports a possible order/disorder reaction and a spinodal decomposition as opposed to the typical nucleation and precipitation reaction usually observed in a precipitation hardened alloy. The Scherrer equation was used to determine delta prime particle size from diffraction line broadening, and this size was found to coarsen following conventional Ostwald ripening theory once the initial effects of the spinodal had aged out. The delta phase (considered cause of low toughness) was observed in the as quenched sample and throughout the heat treatment. It was surmised that this may be the origin of he low-short transverse fracture toughness which is typical of some of these alloys.
author2 Fox, A.G.
author_facet Fox, A.G.
Whitman, Clark E.
author Whitman, Clark E.
spellingShingle Whitman, Clark E.
An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
author_sort Whitman, Clark E.
title An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
title_short An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
title_full An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
title_fullStr An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
title_full_unstemmed An examination of delta prime growth in an aluminum-lithium alloy by X-ray diffraction
title_sort examination of delta prime growth in an aluminum-lithium alloy by x-ray diffraction
publisher Monterey, California. Naval Postgraduate School
publishDate 2013
url http://hdl.handle.net/10945/37555
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