
Представлены результаты работы, проведенной с целью определения путей оптимизации режима термообработки образцов сплава ХН51ВМТЮКФР. Показано, что величина длительной прочности образцов сплава может быть несколько повышена за счет некоторого увеличения температуры нагрева при первой закалке. Описана методика стабилизации длительной прочности сплава. The results of detection the ways to optimize heat treatment conditions of the Ni51Co15Cr11Mo7W6Al4.5Ti2.5V0.5 alloy are presented. It is shown that the long-term strength can be increased by raising the temperature of the first quenching. A method of long-term strength stabilization is described Ощепков Борис Владимирович, кандидат технических наук, доцент кафедры общей металлургии, Южно-Уральский государственный университет, филиал в г. Златоусте. 456209, Челябинская обл., г. Златоуст, ул. Тургенева, 16. Тел.: (3513)665829. Oschepkov Boris Vladimirovich, candidate of engineering science, associate professor of the General Metallurgy department, Zlatoust Branch, South Ural State University. 16 Turgenev street, Zlatoust, Chelyabinsk region, Russia 456209. Tel.: (3513)665829. Вахитова Елена Рафаиловна, студент, Южно-Уральский государственный университет, филиал в г. Златоусте. 456209, Челябинская обл., г. Златоуст, ул. Тургенева, 16. Тел.: (3513)665829. Vakhitova Elena Rafailovna, student, Zlatoust Branch, South Ural State University. 16 Turgenev street, Zlatoust, Chelyabinsk region, Russia 456209. Tel.: (3513)665829.
длительная прочность, 669.245 [УДК 621.74], nickel-based heat-resistant alloy, heat treatment, УДК 669.245, термообработка, никелевые сплавы, long-term strength
длительная прочность, 669.245 [УДК 621.74], nickel-based heat-resistant alloy, heat treatment, УДК 669.245, термообработка, никелевые сплавы, long-term strength
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