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The Impact of Composition and the Densification Level of Furan Molding Compounds on the Strength of Large-Size Casting Molds

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the test results of molding compounds, sand casting molds and their analysis. The subject of testing was compound containing furan resins prepared according to the following recipe: matrix – regenerate 90% + fresh sand – 10%, furanresin – 1.10% by weight, hardener – 0.40% by weight. The impact of adhesive type and its quantity (Quan = 0.90, 1.1 and 1.5%) on the strength indexes of molding compound subject to densification was analyzed. The publication presents the test results: tensile strength Rm, compressive strength Rc and flexural strength Rg, as well as compound permeability as function of its density. The analysis also covers the impact of density level on mold strength and the distribution of density level along the mold height. Based on the test results, it was found that the best method to obtain high strength molds made from compounds with chemical adhesives was to densify it by vibrating the system: match plate – molding flask – compound filling the mold. The effectiveness of this densification method depends on the amplitude and frequency of vibrations.
Twórcy
autor
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
autor
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
autor
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
  • Śrem Iron Foundry, 1 Staszica Str., 63-100 Śrem, Poland
autor
  • AGH University of Science and Technology, Faculty of Foundry Engineering, 23 Reymonta Str., 30-059 Kraków, Poland
autor
  • Silesian University of Technology, Department of Foundry, Faculty of Mechanical Engineering, 7 Towarowa Str., 44-100 Gliwice, Poland
Bibliografia
  • [1] Modern Casting 109 (12), 22-25 (2019).
  • [2] Ł. Petrus, A. Bulanowski, J. Kołakowski, M. Brzeżański, M. Urbanowicz, J. Sobieraj, G. Matuszkiewicz, L. Szwalbe, K. Janerka, Archives of Foundry Engineering 20 (1), 105-110 (2020).
  • [3] J. L. Lewandowski, Tworzywa na formy odlewnicze, Akapit, Kraków (1997).
  • [4] J. L. Lewandowski, Masy formierskie i rdzeniowe, in: J. J. Sobczak (Eds.), Poradnik Odlewnika, Wyd. STOP, Kraków (2013).
  • [5] W. Sakwa, T. Wachelko, Materiały na formy i rdzenie odlewnicze, Śląsk, Katowice (1981).
  • [6] M. Łucarz, D. Drożyński, J. Jezierski, A. Kaczmarczyk, Materials 12 (22), no 3705 1-12 (2019).
  • [7] Ł. Jamrozowicz, J. Zych, J. Kozień, Archives of Foundry Engineering 12 (SI 1), 75-80 (2012).
  • [8] J. Zych, Analiza wad odlewów: wybrane zagadnienia, Wyd. AGH, Kraków (2015).
  • [9] J. Zych, Ł. Jamrozowicz, Archives of Metallurgy and Materials, 55 (3), 963-968 (2010).
  • [10] J. Zych, Archiwum Odlewnictwa 3 (5), 132-139 (2002).
  • [11] J. Zych, Archives of Foundry 4 (13), 253-260 (2004).
  • [12] J. Zych, Giessereiforschung 55 (1), 18-21 (2003).
  • [13] K. Janerka, D. Bartocha, J. Szajnar, J. Jezierski, Archives of Metallurgy and Materials 55 (3), 851-859 (2010).
  • [14] K. Janerka, J. Jezierski, D. Bartocha, J. Szajnar, International Journal of Cast Metals Research 27 (4), 230-234 (2014).
  • [15] K. Janerka, M. Pawlyta, J. Jezierski, J. Szajnar, D. Bartocha, Journal of Materials Processing Technology 214 (4), 794-801 (2014).
Uwagi
EN
The studies have been conducted as part of the project implemented by “Śrem” Iron Foundry Sp. z o.o. co-financed by the European Union from the Regional Development Fund as part of the Smart Growth Operational Program 2014-2020, project number: POIR. 01.01.01-00-0120/17, Project entitled: Innovative technology using thermal analysis, DTA, of self-feeding manufacturing of high-quality cast iron to produce new generation, enhanced performance casts.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1bbb9bd6-1fc9-4ef1-b478-ba4bf3869748
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