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Analysis and Quality Assessment of Refractories Formed under Reduced Pressure

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Refractories are the basic material for the construction of the lining of a melting furnace used, among other things, in the foundry industry. The article describes a comparative study of the influence of the type of moulding on the quality of the finished refractory product. A method for making products from refractory materials was proposed and a test methodology was developed. The results, based on a classic study of the quality of these materials, confirm a strong influence on the quality of the materials obtained in terms of reduced porosity and homogeneity of pore size.
Twórcy
autor
  • AGH University of Krakow, Faculty of Foundry Engineering, Al. Mickiewicza 30, 30-059 Kraków, Poland
  • AGH University of Krakow, Faculty of Foundry Engineering, Al. Mickiewicza 30, 30-059 Kraków, Poland
  • Technical University, Department of Metallurgy, Kosice, Slovakia
autor
  • Technical University, Department of Metallurgy, Kosice, Slovakia
Bibliografia
  • [1] M. Brzezinski, Evaluation of vacuum assisted compaction processes of foundry moulding sand by theoretical and experimental methods, Archives of Metallurgy and Materials 55 (3),763-770
  • [2] C. Kapridaki et al., Conservation of Monuments by a Three-Layered Compatible Treatment of TEOS-Nano-Calcium Oxalate Consolidant and TEOS-PDMS-TiO2 Hydrophobic/Photoactive Hybrid Nanomaterials, Materials (Basel) 11 (2018).
  • [3] M. Kync, J. Kyncl, M. Slany, Optimization of the production process of vibrocasted refractory products, MATEC Web of Conferences 299, 05001 (2019).
  • [4] J.L. Lewandowski, Wydaw. „Akapit“, Tworzywa na formy odlewnicze, Kraków (1997).
  • [5] I. Majchrowicz et al., Monolityczne materiały ogniotrwałe do zastosowań w odlewnictwie. XII Konferencja Odlewnicza Technical 2010, Nowa Sól 2010.
  • [6] F. Nadachowski, Śląskie Wydawnictwo Techniczne, Zarys technologii materiałów ogniotrwałych, Wydanie II. Katowice (1995).
  • [7] Poradnik Odlewnika, tom 1, PWT Warszawa (1955).
  • [8] T. Szemberg, Wyd. Politechnika Częstochowska, Materiały ogniotrwałe skrypt, Wydanie II. Częstochowa (1989).
  • [9] C. Sadik, I.E. El Amrani, A. Albizane, Recent advances in silica-alumina refractory: a review, J. Asian Ceram. Soc. 2, 2, 83-96 (2014).
  • [10] K. Smyksy, M. Brzezinski, The energy consumption aspects in the vacuum assisted moulding process”. DOI: https://doi.org/10.2478/amm-2014-0227
  • [11] A. Pribulova, et al., Comparison of cupola furnace and blast furnace slags with respect to possibilities of their utilization. DOI: https://doi.org/10.24425/amm.2018.125117
  • [12] Ritwik Sarkar, Refractory Technology Fundamentals and Applications. CRC Press Taylor&Francis Group, 2017.
  • [13] P. Seitz, et al., Material Characterisation and Product Analysis of Refractories Using X-Ray Computed Tomography and Radioscopy. Bulletin. The Journal of Refractory Innovations 2022.
  • [14] M. Šolc, Š. Markulik, E. Grambalová, Quality of refractory materials in the technological process, Advanced Materials Research 524-527, 2026-2030 (2012).
  • [15] A. Trela, Porównanie jakości materiałów ogniotrwałych formowanych przez wibrowanie oraz formowanych pod zmniejszonym ciśnieniem. Praca dyplomowa. AGH UST. Krakow (2020).
  • [16] R.F. Wang, et al., Physical Modeling and Simulation of the Cooling-Down of Fused-Cast Refractories. In Materials Science Forum 996, 142-150 (2020).Trans. Tech. Publications, Ltd. DOI: https://doi.org/10.4028/www.scientific.net/msf.996.142
  • [17] A. Viertauer, et al., Refractory Lifetime Prognosis for RH Degassers. 2019 UNITECR Conference Proceedings, Yokohama, Japan, 13-16 Oct., 154-157 (2019).
  • [18] R. Wrona, M. Brzezinski, E. Ziółkowski, Criteria in Designing of Compressed Air Installation in Foundry Plants. DOI: https://doi.org/10.2478/afe-2014-0094
  • [19] https://www.pyrotek.com/primary-solutions/aluminium/cast-house/show/ProductLine/vacuum-formed-refractory-shapes [access - 20.02.2023]
  • [20] https://www.pkn.pl
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0b1a39a1-e58b-402a-8f2f-52089610c12b
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