Investigation of the physical and mechanical properties of the heterogeneous structure of the Mn - Cu alloy system

Yazarlar

  • А.Т. Pazil Khoja Akhmet Yassawi International Kazakh-Turkish University
  • N.A. Shektibaev Khoja Akhmet Yassawi International Kazakh-Turkish University

Anahtar Kelimeler:

heating, smelting, manganese, copper, alloy, concentration, combination, alloyed

Özet

The era of automation has come, a new type of machine production that frees
people from work in production and automates technological processes, mechanisms and machine
control. Automation not only increases the efficiency of any production, but also opens the way to
achieve the best results.
This article deals with the physical and mechanical properties of the heterogeneous structure
of the mortar system.
Regardless of whether technological processes are automated, mechanized, or group
processing is used, automated site tuning activities remain labor-intensive and performed using
manual labor. Considering the types of electrical technical materials, their properties, we reveal
their advantages and use them in production facilities. Non-ferrous metals are very important in
technology. Because there is a demand for them based on their physical and mechanical properties.
Scientific research was conducted at the Department of Physics of the International Kazakh-
Turkish University named after Khoja Ahmet Yasawi as a base. The method of heating, melting,
processing, evaluation and analysis of alloys was used as a scientific method.
Experimental studies were carried out on copper alloys with 45-85% manganese, 50 and 60%
alloys doped with various elements and their combination in concentrations up to 10. Repeated
measurements were made to obtain high accuracy. Structural and phase changes in metallic
materials during extreme external effects (strong plastic deformation, high pressure, temperature,
radiation, aggressive environment) were studied. We studied structural and phase changes in
metallic materials during extreme external influences (strong plastic deformation, high pressure,
temperature, radiation, aggressive environment).

Yazar Biyografileri

А.Т. Pazil, Khoja Akhmet Yassawi International Kazakh-Turkish University

Master's student of Khoja Akhmet Yassawi International Kazakh-Turkish University

N.A. Shektibaev, Khoja Akhmet Yassawi International Kazakh-Turkish University

2PhD, senior lecturer
Khoja Akhmet Yassawi International Kazakh-Turkish University

Referanslar

ПАЙДАЛАНЫЛҒАН ӘДЕБИЕТТЕР ТІЗІМІ

Структура,физико-механические свойства и применение литейныхкремний - марганцовистых бронз. Лисовский В.А., Лисовская О.Б., Предин К.С., 2012, Вятский государственный университет.

Курдюмов Г.В. Бездиффузионные мартенситные превращения в сплавах / Г.В. Курдюмов //ЖТФ.-1979.-Т.18.-№8.-С. 999-1025.

Ройтбурд А.Л. Современное состояние теории мартенситных превращений. В кн.: Несовершенства кристаллического строения и мартенситные превращения. М., 2002.-С.7-32.

Ройтбурд А.Л. Теория формирования гетерофазной структуры при фазовых превращениях в твердом состоянии / А.Л. Ройтбурд// Успехи физ. Наук.- 2007.-Т.113.-Вып.1.-С. 105-128.

Ройтбурд А.Л. Особенности развития фазовых превращений в кристаллах. В кн.: Проблемы современной кристаллографии. М., 1975.- С. 345369.

Курдюмов Г.В. Превращения в железе и стали / Курдюмов Г.В., Утевский Л.М., Энтин P.M.- М.: Наука, 1997.-238 с.

Christian J.W. Theory of transformation in metals and alloys.- Pergamon Press.-2005.-973 p.

Nishijama Z. Martensitic transformation.- Acad, press. 2010.-467 p.

Варлимонт X. Мартенситные превращения в сплавах на основе меди, серебра и золота/ X. Варлимонт, Л. Дилей М.:Наука, 2000.-208 с.

Лысак Л.И. Физические основы термической обработки стали / Л.И. Лысак, Б.И.Николин.- Киев: Техника, 2005.-304 с.

Ройтбурд А.Л. Мартенситные превращения / А.Л. Ройтбурд, Э.И. Эстрин.// Итоги науки и техники. Металловедение и термическая обработка.-ВИНИТИ, 1998.-С.5-102.

Коваль Ю.Н. Управление характеристиками мартенситных превращений в металлах и сплавах / Ю.Н. Коваль // Структура реальных металлов. -Наукова думка, 2011.- С. 132-159.

Хачатурян А.Г. Некоторые вопросы теории фазовых превращений в твердом теле / А.Г. Хачатурян // ФТТ.-2004.-№8.-С.2709-2717.

REFERENCES

Struktura, fiziko-mekhanicheskiye svoystva i primeneniye liteynykh kremniy - margantsovistykh bronz. Lisovskiy V.A., Lisovskaya O.B., Predin K.S., 2012, Vyatskiy gosudarstvennyy universitet.

Kurdyumov G.V. Bezdiffuzionnyye martensitnyye prevrashcheniya v splavakh / G.V. Kurdyumov //ZHTF.-1979.-T.18.-№8.-S. 999-1025.

Roytburd A.L. Sovremennoye sostoyaniye teoreticheskikh preobrazovaniy. V kn.: Nesovershenstva kristallicheskogo stroitel'stva i martensitnyye preobrazovaniya. M., 2002.-S.7-32.

Roytburd A.L. Teoriya formirovaniya geterofaznoy struktury pri fazovykh prevrashcheniyakh v tverdom sostoyanii / A.L. Roytburd// Uspekhi fiz. Nauk.- 2007.-T.113.-Vyp.1.-S. 105-128.

Roytburd A.L. Osobennosti razvitiya perekhodnykh prevrashcheniy v kristallakh. V kn.: Problemy sovremennoy kristallografii. M., 1975.- S. 345369.

Kurdyumov G.V. Prevrashcheniya v stali i stali Kurdyumov G.V., Utevskiy L.M., Entin P.M.- M.: Nauka, 1997.-238 s.

Kristian Dzh.V. Teoriya prevrashcheniya v metallakh i splavakh.- Pergamon Press.-2005.-973 s.

Nishiyama Z. Martensitnoye prevrashcheniye.- Izd-vo akad. 2010.-467 s.

Varlimont X. Martensitnyye prevrashcheniya v splavakh na osnove medi, serebra i zolota/ X. Varlimont, L. Diley M.:Nauka, 2000.-208 s.

Lysak L.I. Fizicheskiye stali osnovy termicheskoy obrabotki / L.I. Lysak, B.I.Nikolin.- Kiyev: Tekhnika, 2005.-304 s.

Roytburd A.L. Martensitnyye Prevrashcheniya / A.L. Roytburd, E.I. Estrin.// Itogi nauki i tekhniki. Metallovedeniye i termicheskaya obrabotka.-VINITI, 1998.-S.5-102.

Koval' YU.N. Upravleniye ozhidayemymi martensitnymi prevrashcheniyami v metallakh i splavakh / YU.N. Koval' // Struktura obnaruzhennykh metallov. -Naukova dumka, 2011.- S. 132-159.

Khachaturyan A.G. Nekotoryye voprosy teorii prevrashcheniy v tverdom tele / A.G. Khachaturyan // FTT.-2004.-№8.-S.2709-2717.

Yayınlanmış

2022-09-30