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Digitalization of the thermoplastic beryllium oxide slurry forming process using ultrasonic activation

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dc.contributor.author Zhapbasbayev, U.K.
dc.contributor.author Ramazanova, G.I.
dc.contributor.author Retnawati, H.
dc.contributor.author Sattinova, Z.К.
dc.date.accessioned 2026-03-02T11:42:31Z
dc.date.available 2026-03-02T11:42:31Z
dc.date.issued 2024
dc.identifier.issn 2616-6445
dc.identifier.other DOI: 10.31643/2024/6445.23
dc.identifier.uri http://repository.enu.kz/handle/enu/29623
dc.description.abstract This paper presents the results of the digitalization of the thermoplastic beryllium oxide slurry forming process using ultrasonic activation. Ceramics made from beryllium oxide (BeO) using ultrasound-assisted forming exhibit more intense sintering and, in comparison to ceramics formed without ultrasound, have reduced shrinkage (by 2.4-4.3%) and sintering temperature (by 50-180°C). The forming processes occurring during ultrasonic treatment resulted in the homogenization of the thermoplastic suspension and dense packing of BeO powders in the casting. Ultrasound activation alters the rheology of the thermoplastic slurries. These changes are attributed to processes of slurry mass dispersion and mass exchange at the phase boundary of the suspension. Ultrasound activation also enhances casting properties. During the coolingsolidification process under the influence of ultrasound, the density and strength of the castings increase due to the effective compensation of shrinkage. Shrinkage compensation is carried out according to the classical scheme by supplying a liquid suspension. For hot casting with ultrasound of thermoplastic beryllium oxide slurries, it is advisable to use compositions with a binder content of 11.0-11.7% by weight since these compositions provide better shrinkage compensation and, consequently, a denser casting. ru
dc.language.iso en ru
dc.publisher Complex Use of Mineral Resources ru
dc.relation.ispartofseries 330(3):5-12;
dc.subject forming process ru
dc.subject thermoplastic slurry ru
dc.subject beryllium oxide ru
dc.subject viscoplastic state ru
dc.subject casting solidification ru
dc.title Digitalization of the thermoplastic beryllium oxide slurry forming process using ultrasonic activation ru
dc.type Article ru


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