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Academic literature on the topic 'Фенолформальдегідна смола'
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Journal articles on the topic "Фенолформальдегідна смола"
Zaverukha, O. M., T. R. Khinalska, and Ya P. Skorobogatyi. "Environmental aspects of the phenol-formaldehyd resins use in the public construction." Herald of Lviv University of Trade and Economics. Technical sciences, no. 23 (2020): 79–88. http://dx.doi.org/10.36477/2522-1221-2020-23-10.
Full textDissertations / Theses on the topic "Фенолформальдегідна смола"
Борисенко, О. М., Галина Дмитрівна Семченко, and Л. В. Поліщук. "Використання нанотехнології у виробництві периклазовуглецевих вогнетривів." Thesis, НТУ "ХПІ", 2010. http://repository.kpi.kharkov.ua/handle/KhPI-Press/31479.
Full textКолєснікова, О. А., О. М. Борисенко, В. В. Пошук, and Галина Дмитрівна Семченко. "Вплив утворення наноструктурної матриці на властивості периклазовуглецевих вогнетривів." Thesis, НТУ "ХПІ", 2011. http://repository.kpi.kharkov.ua/handle/KhPI-Press/31532.
Full textПовшук, Василь Володимирович. "Нанозміцнені периклазовуглецеві вогнетриви для футерівки конвертерів з використанням комплексного антиоксиданту." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37726.
Full textThesis for the degree of candidate of technical sciences (Ph.D.) in specialty 05.17.11 – technology of refractory nonmetallic materials (161 – chemical technologies and engineering). – National Technical University "Kharkov Polytechnic Institute", Kharkov, 2018. The thesis is devoted to the development of compositions and basic techno-logical parameters for the preparation of nano-reinforced periclase-carbon refractories for various zones of converter lining with prescribed parameters of physical and mechanical properties and increased resistance to slag and oxidation. The possibility of obtaining nano-reinforced periclase-carbon refractories by synthesis of the carbon-matrix matrix of a given structure of periclase-carbon refractories filled with nanoparticles β-SiC and NiO and ensuring its maximum structural strength due to the use of optimum sol-gel admixtures for modifying the phenol-formaldehyde resin is theoretically substantiated and experimentally proved pre-cursor components of a nickel antioxidant. The technological parameters for the production of periclase-carbon refractories with specified physic-mechanical properties based on fused periclase with different amounts of graphite were determined using ETS-40 or its sol and nickel salts to create a complex antioxidant Al + SiC + Ni(NiO), which provides enhanced resistance to oxidation due to the formation of a dense layer of β-SiC and Ni(NiO) nanoparticles around graphite particles, a non-combustion technology and magnesia flux formulations for melting steel in a converter from waste periclase-carbon refractories lining of converters that accelerate guidance in the converter slag and improve the sustainability of the converter lining.
Повшук, Василь Володимирович. "Нанозміцнені периклазовуглецеві вогнетриви для футерівки конвертерів з використанням комплексного антиоксиданту." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37701.
Full textThesis for the degree of candidate of technical sciences (Ph.D.) in specialty 05.17.11 – technology of refractory nonmetallic materials (161 – chemical technologies and engineering). – National Technical University "Kharkov Polytechnic Institute", Kharkov, 2018. The thesis is devoted to the development of compositions and basic techno-logical parameters for the preparation of nano-reinforced periclase-carbon refractories for various zones of converter lining with prescribed parameters of physical and mechanical properties and increased resistance to slag and oxidation. The possibility of obtaining nano-reinforced periclase-carbon refractories by synthesis of the carbon-matrix matrix of a given structure of periclase-carbon refractories filled with nanoparticles β-SiC and NiO and ensuring its maximum structural strength due to the use of optimum sol-gel admixtures for modifying the phenol-formaldehyde resin is theoretically substantiated and experimentally proved pre-cursor components of a nickel antioxidant. The technological parameters for the production of periclase-carbon refractories with specified physic-mechanical properties based on fused periclase with different amounts of graphite were determined using ETS-40 or its sol and nickel salts to create a complex antioxidant Al + SiC + Ni(NiO), which provides enhanced resistance to oxidation due to the formation of a dense layer of β-SiC and Ni(NiO) nanoparticles around graphite particles, a non-combustion technology and magnesia flux formulations for melting steel in a converter from waste periclase-carbon refractories lining of converters that accelerate guidance in the converter slag and improve the sustainability of the converter lining.