Труды КНЦ (Технические науки вып.2/2023(14))

Труды Кольского научного центра РАН. Серия: Технические науки. 2023. Т. 14, № 2. С. 56-60. Transactions of the Kola Science Centre of RAS. Series: Engineering Sciences. 2023. Vol. 14, No. 2. P. 56-60. References 1. Sebastian M. T. Dielectric Materials . for Wireless Communication. Elsevier Science, 2008, p. 688. 2. Imanaka Y. Multilayered low temperature cofired ceramics (LTCC) technology. Springer Science & Business Media, 2005, 252 p. 3. George S., Sebastian, M. T. Low-Temperature Sintering and Microwave Dielectric Properties of Li2ATi3O8 (A=Mg, Zn) Ceramics. International Journal o fApplied Ceramic Technology, 2011, vol. 8, iss. 6, pp. 1400-1407. 4. Chernikh V., Chigirinskiy S. Napravleniya razvitiya izdeliy iz specialnoy keramiki dlyaproizvodstva electronnoy tekhniki vRossii [Directions of developing products on the basis of special ceramics for electronic technique in Russia], OSTEK stepen’ integracii, 2012, no. 7, pp. 4-7 (In Russ.). 5. Kondratyuk R. LTCC — nizkotemperaturnaya sovmestno obzigaemaya keramika [LTCC — low temperature cofirable ceramic]. Nanoindustrija [Nanoindustry], 2011, no. 2, pp. 26-30 (In Russ.). 6 . Imanaka Y. Material Technology of LTCC for High Frequency Application. Material Integration, 2002, vol. 15, no. 12, pp. 44-48. 7. Liu C. Y. et al. Influence of B 2 O 3 additive on microwave dielectric properties of Li2ZnTi3O8 ceramics for LTCC applications. International Journal o fApplied Ceramic Technology, 2013, Iss. 10, pp. E49-E56. 8 . Zitani M. K. et al. Microstructural and microwave dielectric properties of LZT (Li2ZnTi3O8) ceramics sintered in presence of bismuth borate glass for LTCC applications. Ceramics International, 2018, iss. 44, no. 4, pp. 4016-4026. 9. Hou M. et al. Low-temperature firing and microwave dielectric properties of LBS glass-added Li2ZnTi3O8 ceramics with TiO 2 . Journal o fMaterials Science: Materials in Electronics, 2012, no. 23, pp. 1722-1727. 10. Khusainov I. N., Vershinin D. I., Makarov N. A. Vliyanie usloviy sinteza na fazoviy sostav poroshkov v sisteme Li 2 O-ZnO-TiO 2 [The influence of synthesis conditions on the phase composition of powders in the Li 2 O-ZnO-TiO 2 system]. Uspekhi v himii i himicheskoj tekhnologii [Successes in chemistry and chemical technology], 2020, vol. 34, no. 5, pp. 100-102 (In Russ.). 11. Arun S., Sebastian M. T., Surendran K. P. Li2ZnTi3O8 based high K LTCC tapes for improved thermal management in hybrid circuit applications. Ceramics International, 2017, vol. 43, no. 7, pp. 5509-5516. Информация об авторах Д. И. Вершинин — ассистент кафедры химической технологии керамики и огнеупоров; А. М. Поскотинова — обучающаяся 3-го курса бакалавриата; Н. С. Шургая — обучающийся 3-го курса бакалавриата. Information about the authors D. I. Vershinin — prof. assistant of Department of Chemical Technology of Ceramic and Refractories; A. M. Poskotinova — student; N. S. Shurgaya — student. Статья поступила в редакцию 30,01.2023; одобрена после рецензирования 31.01.2023; принята к публикации 01.02.2023. The article was submitted 30,01.2023; approved after reviewing 31.01.2023; accepted for publication 01.02.2023. © Вершинин Д. И., Поскотинова А. М., Шургая Н. С., 2023 60

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