NOORGANIK-ORGANIK QOPLAMA HOSIL QILUVCHI GIBRID BIRIKMALARNING OLINISHI XOSSALARI VA TEXNOLOGIYASI
PDF
DOI

Keywords

Qoplash texnologiyasi, noorganik qoplamalar, organik qoplamalar, gibrid birikmalar, korroziyaga chidamlilik.

How to Cite

Mansurov Bexruz Akbarovich, Buranov Nuriddin G‘afforovich, Salomatov Bexruz To‘ymurodovich, & Shodiyev Sobir Vaxobjonovich. (2023). NOORGANIK-ORGANIK QOPLAMA HOSIL QILUVCHI GIBRID BIRIKMALARNING OLINISHI XOSSALARI VA TEXNOLOGIYASI. Journal of Universal Science Research, 1(10), 658–662. Retrieved from https://universalpublishings.com/index.php/jusr/article/view/2343

Abstract

Ushbu maqolada noorganik-organik qoplama gibrid birikmalarining ishlab chiqarish xususiyatlari va texnologiyasi haqida umumiy ma'lumot berilgan. Ushbu innovatsion materiallar noorganik va organik qoplamalarning afzalliklarini birlashtirib, mustahkamlik, korroziyaga chidamlilik va ko'p qirralilikni ta'minlaydi. Maqolada gibrid birikmalarning rivojlanishi o'rganiladi, sohadagi asosiy tadqiqotlar ko'rib chiqiladi, ishlab chiqarish jarayonlari tavsiflanadi va potentsial ilovalar va kelajak istiqbollari muhokama qilinadi.

PDF
DOI

References

Dey, A., & Shin, K. (2018). Inorganic-organic hybrid coatings: A review. Journal of Coatings Technology and Research, 15(4), 913-936.

Liu, J., & De With, G. (2014). Organic–inorganic hybrid coatings for corrosion protection: A review. Journal of Materials Chemistry A, 2(4), 926-936.

Li, H., et al. (2019). Recent advances in the development of inorganic–organic hybrid coatings with enhanced durability and corrosion resistance. Progress in Organic Coatings, 135, 99-113.

Shirvani, M., et al. (2015). Advanced hybrid organic–inorganic coatings: Recent advances and future prospects. Progress in Organic Coatings, 85, 66-74.

Zhang, J., et al. (2016). Sol-gel-based hybrid coatings for corrosion protection. Progress in Organic Coatings, 91, 25-50.

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.