Please use this identifier to cite or link to this item: https://dspace.uzhnu.edu.ua/jspui/handle/lib/69521
Title: Influence of cation substitution on mechanical properties of (Cu1–xAgx)7GeSe5I mixed crystals and composites on their base
Authors: Bendak, A.V.
Skubenych, K.V.
Pogodin, A.I.
Bilanych, V.S.
Kranjčec, M.
Studenyak, I.P.
Біланич, Віталій Степанович
Скубенич, Катерина Василівна
Погодін, Артем Ігорович
Бендак, Андрій Васильович
Біланич, Віталій Степанович
Студеняк, Ігор Петрович
Keywords: mechanical properties, mixed crystals, mechanical properties, cation substitution, microhardness, compositional dependence
Issue Date: 2020
Publisher: Semiconductor Physics, Quantum Electronics & Optoelectronics
Citation: Semiconductor Physics, Quantum Electronics & Optoelectronics., (SPQEO), 2020. V. 23, N 1. P. 37-40.
Abstract: Microhardness of (Cu1–xAgx)7GeSe5I mixed crystals and composites on their base was investigated using the Vickers indenter at room temperature. (Cu1–xAgx)7GeSe5I mixed crystals were obtained using the Bridgman–Stockbarger method. Composites on their base were prepared as a pressed mixture of (Cu1–xAgx)7GeSe5I micropowder and ethylene-vinyl acetate polymer in 90:10 concentration ratio, respectively. Dependences of microhardness versus the indenter penetration depth have been analyzed. Influence of Cu+→Ag+ isovalent cation substitution on the microhardness of (Cu1–xAgx)7GeSe5I mixed crystals and composites on their base have been studied.
Type: Text
Publication type: Стаття
URI: https://dspace.uzhnu.edu.ua/jspui/handle/lib/69521
Appears in Collections:Наукові публікації кафедри прикладної фізики і квантової електроніки

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