The effect of dispersants on the properties of low-cement concrete for the furnace of smelting of jewelry waste
https://doi.org/10.17073/1683-4518-2021-8-49-52
Abstract
Melting in ceramic crucible is one of the stages of recycling jewelry production. Conceptivity of concrete mass plays an important role in molding a large-scale refractory crucible to vibration. The impact of a number of commercially available dispersants (CASTAment FS 10, MELFLUX 1641 F, peramin al 200, FF7 SPEZIAL and PC-1701) on the rheology of the low-cement concrete mass of corundo-mullite-zirconium composition and the physico-mechanical properties of the material are considered. The best results were obtained using the PC-1701 dispersant.
About the Authors
B. L. KrasnyiRussian Federation
K. I. Ikonnikov
Russian Federation
A. L. Galganova
Russian Federation
References
1. Куколевский, А. С. Переработка отходов ювелирной промышленности, содержащих золото, серебро и палладий / А. С. Куколевский, И. Б. Белкин // Записки Горного института. ― 2007. ― Т. 170, ч. 1. ― C. 33‒52.
2. Samant A. P. D. Effect of deflocculants on high alumina low cement castables : дис. ― 2015.
3. Sarkar, R. Study on the effect of deflocculant variation in high-alumina low-cement castable / R. Sarkar, A. D. Samant // Interceram-International Ceramic Review. ― 2016. ― Vol. 65, № 7. ― P. 28‒34.
4. Demidova-Buizinene, I. Effect of amount of deflocculant on change in physicomechanical properties of medium-cement heat-resistant concretes during drying and heat treatment / I. Demidova-Buizinene, I. Pundiene // Refract. Ind. Ceram. ― 2014. ― Vol. 55, № 2. ― P. 121‒127. Демидова-Буйзинене, И. Влияние количества дефлокулянта на изменения физико-механических свойств среднецементных жаростойких бетонов в процессе сушки и термообработки / И. ДемидоваБуйзинене, И. Пундиене // Новые огнеупоры. ― 2014. ― № 3. ― С. 134‒141.
5. Wang, Y. Effect of dispersants on the hydrate morphologies of spinel-containing calcium aluminate cement and on the properties of refractory castables / Y. Wang [et al.] // Ceram. Int. ― 2016. ― Vol. 42, № 1. ― P. 711‒720.
6. Pundiene, I. Effect of a mixture of different types of deflocculants on the structure and properties of cement rock and castable refractories / I. Pundiene, J. Pranckeviciene, M. Kligys // Glass and Ceramics. ― 2017. ― Vol. 74, № 7/8. ― P. 295‒301.
7. Алексеенко, И. А. Роль функциональных добавок при формовании и твердении периклазового бетона / И. А. Алексеенко, В. В. Песчанская // Вісник НТУ «ХПІ». Серія: Хімія, хімічна технологія та екологія. ― 2016. ― № 22 (1194). ― С. 5‒9.
8. Nouri-Khezrabad, M. Rheological performance of high alumina nano-bonded refractory castables containing carboxylic acids as additives / M. NouriKhezrabad [et al.] // Ceram. Int. ― 2015. ― Vol. 41, № 9. ― P. 11251‒11256.
9. Voronkov, M. E. Effect of pyrocatechin on the properties of cement-free refractory concrete mixtures based on silica-containing colloidal binders / M. E. Voronkov [et al.] // Refract. Ind. Ceram. ― 2019. ― Vol. 59, № 5. ― P. 545‒548. Воронков, М. Е. Влияние пирокатехина на свойства бесцементных огнеупорных бетонных смесей на основе кремнеземсодержащих коллоидных связующих / М. Е. Воронков, А. С. Брыков, О. К. Некрасова, С. С. Павлов // Новые огнеупоры. ― 2018. ― № 10. ― С. 49‒52.
10. Cai, M. F. Rheological behaviors of calcium aluminate cement-hydratable alumina bonded corundum-spinel castables suspensions with different dispersants / M. F. Cai [et al.] // Solid State Phenomena. ― Trans Tech Publications, 2018. ― Т. 281. ― С. 137‒143.
11. Стрелов, К. К. Структура и свойства огнеупоров / К. К. Стрелов ; 2-е изд., перераб. ― М. : Металлургия, 1982. ― 208 с.
12. Wang, H. Thermal shock behaviour of ceramics and ceramic composites / H. Wang, R. N. Singh // International Materials Reviews. ― 1994. ― Vol. 39, № 6. ― P. 228‒244.
Supplementary files
For citation: Krasnyi B.L., Ikonnikov K.I., Galganova A.L. The effect of dispersants on the properties of low-cement concrete for the furnace of smelting of jewelry waste. NOVYE OGNEUPORY (NEW REFRACTORIES). 2021;(8):49-52. https://doi.org/10.17073/1683-4518-2021-8-49-52
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