2004
DOI: 10.1007/bf03215214
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Structure and mechanical properties of CuAu and CuAuPd ordered alloys

Abstract: The formation of a microstructure during L10-type ordering in an equiatomic CuAu alloy and ternary CuAu-Pd alloys having different initial states has been studied. Results of mechanical tests of the alloys have been given. Methods for improvement of strength properties of the ordered alloys have been discussed.

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Cited by 25 publications
(17 citation statements)
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“…This case gives a c/a ratio, also known as the degree of tetragonality, of 0.92. This value corresponds to the equilibrium value in undeformed bulk specimens reported in the literature (Volkov, 2004). Fig.…”
Section: Imaging Of a Single Coherent Nanoprecipitatesupporting
confidence: 83%
“…This case gives a c/a ratio, also known as the degree of tetragonality, of 0.92. This value corresponds to the equilibrium value in undeformed bulk specimens reported in the literature (Volkov, 2004). Fig.…”
Section: Imaging Of a Single Coherent Nanoprecipitatesupporting
confidence: 83%
“…Volkov has found high strength and ductility of ordered Cu-Au alloys, the highest mechanical properties of an equiatomic Cu-Au alloy can be obtained if its structure is refined as much as possible. The retardation of recrystallization and quick ordering provide the best result [105]. GSFE calculation predicts that in fcc-Cu-Al alloy SFE and TE is lowered by the alloying element.…”
Section: Stacking Fault Energies In Copper In 5d Transition Metal Alloysmentioning
confidence: 99%
“…В ходе прямых наблюдений [17] показано, что размер таких микродоменов в закаленном сплаве составляет 20-30 Å. Причем чем выше температура закалки, тем большее количество таких микродоменов образуется. Был сделан вывод, что закалку сплава CuAu следует проводить от значений температуры, находящихся в непосредственной близости от Т с [11].…”
Section: исходное разупорядоченное состояниеunclassified