ALUMINIY QOTISHMALARINI GERMANIY OKSIDI TA’SIRIDA OKSIDLANISHI

Main Article Content

Sarvar Tursunbayev
Sherzod Tashbulatov
Sharofuddin Mardonaqulov
Nargiza Nazarova
Shohruh Xudoyqulov

Abstract

Aluminiy kumushsimon oq rangda bo‘lib elektr va issiqlik o‘tkazuvchi yеngil metalldir. Aluminiy bosim ostida yaxshi ishlanadi, payvandlanadi, lekm kesib ishlanishi yomon. Atmosfera va chuchuk suvda korrozyaga chidamliligi yuqori. Havoda aluminiy tez oksidlanadi [1-4]. Aluminiyning boshqa metall va nometallar (mis, marganes, magniy, kremniy, temir, nikel, titan, berilliy va boshqalar) bilan qotishmalari konstruksion materiallar sifatida keng qo‘llaniladi. Alumniyni turli elementlar bilan legirlab, mikrolegirlab va modifikatsiyalab ishlov berish orqali uning xossalarini yaxshilashga qaratilgan tajribalar dunyo olimlari tomonidan juda ko‘plab o‘tkazilgan

Article Details

How to Cite
Sarvar Tursunbayev, Sherzod Tashbulatov, Sharofuddin Mardonaqulov, Nargiza Nazarova, & Shohruh Xudoyqulov. (2024). ALUMINIY QOTISHMALARINI GERMANIY OKSIDI TA’SIRIDA OKSIDLANISHI. Uz-Conferences, 43. Retrieved from https://uz-conference.com/index.php/p/article/view/690
Section
Articles

References

Tursunbayev, S., Turakhodjaev, N., Turakhujaeva, S., Ozodova, S., Hudoykulov, S., & Turakhujaeva, A. (2022, August). Reduction of gas porosity when alloying A000 grade aluminum with lithium fluoride. In IOP Conference Series: Earth and Environmental Science (Vol. 1076, No. 1, p. 012076). IOP Publishing.

Kaufman, J. G., & Rooy, E. L. (2004). Aluminum alloy castings. Properties, Processes and Applications. ASM International, 10.

Rana, R. S., Purohit, R., & Das, S. (2012). Reviews on the influences of alloying elements on the microstructure and mechanical properties of aluminum alloys and aluminum alloy composites. International Journal of Scientific and research publications, 2(6), 1-7.

Nodir, T., Sarvar, T., Kamaldjan, K., Shirinkhon, T., Shavkat, A., & Mukhammadali, A. (2022). The effect of lithium content on the mass of the part when alloyed with lithium aluminum. International Journal of Mechatronics and Applied Mechanics, 2022(11), Pp: 52–56. https://doi.org/10.17683/ijomam/issue11.7

Ma, Z., Zhong, T., Sun, D., Qian, B., Turakhodjaev, N., Betsofen, S., & Wu, R. (2023). Microstructure and Anisotropy of Mechanical Properties of Al-3Li-1Cu-0.4 Mg-0.1 Er-0.1 Zr Alloys Prepared by Normal Rolling and Cross-Rolling. Metals, 13(9), 1564.

Tursunbaev, S., Turakhodjaev, N., Saidxodjayeva, S., & Hudoykulov, S. (2023). INFLUENCE OF ALLOYING ELEMENTS ON ALUMINUM ALLOYS. International Journal of Advance Scientific Research, 3(09), 46-50.

Tursunbaev, S., Turakhodjaev, N., Mardonakulov, S., & Toshmatova, S. (2024). Effect of germanium oxide on the properties of aluminum casting details in agricultural machinery. In BIO Web of Conferences (Vol. 85, p. 01024). EDP Sciences.

Tursunbaev, S., Turakhodjayev, N., Mardanokulov, S., & Tashbulatov, S. (2023). Influence of germanium oxide on the mechanical properties of aluminum alloy. Eurasian Journal of Engineering and Technology, 16, 91-94.

Tursunbayev, S., Turakhodjayev, N., Mardanokulov, S., Zokirov, R., & Odilov, F. (2023). The effect of lithium on the mechanical properties of alloys in the Al-Li system. In E3S Web of Conferences (Vol. 390, p. 05046). EDP Sciences.

Sarvar, T. (2022). Changes in its Wear Resistance When Alloying Aluminum Alloys with Lithium. Texas Journal of Engineering and Technology, 12, 32-36.