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Effect of temperature on the volume of gas emissions

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EN
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EN
In the full mould process, the polystyrene pattern which fills the mould cavity is subjected to pouring of this mould with liquid metal to the effect of high temperature (1600 0C) and passes from the solid state into liquid and gas. During this process some solid and gaseous products of the thermal destruction of the pattern are created. The kinetics of this process depends on the temperature of evaporation and, though to a smaller extent, on the pattern density, which, combined with the mould parameters, parameters of a ceramic coating, i.e. its thickness, permeability, and resistance to the effect of high temperatures, parameters of a granular material filling the mould and parameters of a technological process, including the technique of pouring and design. The mould cavity is filled with a pattern made of foamed polystyrene which on pouring of mould with liquid metal undergoes total destruction.
Twórcy
Bibliografia
  • 1. Bakhtiyarov S.I., Overfelt R.A. and Alagaramy A. 2001, 2002. Mesaurementes of Decomposed EPS Gases Pressure and Molten Metal-polymeric foam Interface Velocity during Counter Gravity Lost Foam Casting. AFS Transaction, April 28-May 1, May 4 – May 7, 1439–1453
  • 2. Baliński A. 2010. The advanced oxygenation and adsorption modification of waste- dusts from standard moulding sands. “Archives of Foundry Engineering”,vol.10, no. 2, 5–9
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  • 4. Baliński A. and Wisła-Walsh E. 2008. Fly ash from hard coal combustion as a ceramic base material of moulding sands. “Polish Journal of Environmental Studies,” vol.14, no.3A, 44–48
  • 5. Baliński A. 2008. Physico-chemical characteristic of aluminium alloy castings manufactured with cores containing fl y ash as a base material. “Archives of Foundry Engineering”, vol.8, no 2, 5–8
  • 6. Baliński A. and Janusz W. 2002. Changes of potential ζ in a system of „hydrated sodium silicate – ethylene glycol. “Advances In Manufacturing Science and Technology”, vol.26, no 4, 21–24
  • 7. Karwiński A. and Żółkiewicz Z. 2011. Application of Modern Ecological Technology Lost Foam For The Implementation Of Machinery. TEKA , 2011, V. XIC p. 91-99 Lublin
  • 8. Michalik U. 2004. Lost – Foam – Gieβverfahren. Giesserei vol. 91 nr 3, 48–50
  • 9. Mirbagheri S.M. 2003. International Journal of Cast Metals Research. vol. 16, nr 6, 554
  • 10. Pacyniak T. 2008. The effect of refractory coating permeability on the Lost Foam Process. Archives of Foundry Engineering”, vol.8, nr 3, 199–204
  • 11. Pacyniak T. 2006. Teoretyczne i technologiczne podstawy procesu wytwarzania odlewów metodą pełnej formy. Zeszyty Naukowe. Rozprawy Naukowe / Politechnika Łódzka, Z. 350, 3–115
  • 12. Pacyniak T., Kaczorowski R. 2010. InvestigaTions of Polystyrene pre-Expansion Process by Use of Test Stand Equipped with Batch Pre-Expander. Archives of Metallurgy and Materials. vol. 55. 883–887
  • 13. Pielichowski, J., Sobczak J. J., Żółkiewicz Z., Hebda E. and Karwiński A. 2011. Analiza termiczna polistyr3enowego modelu odlewniczego. Transactions of the Foundry Research Institute. Vol. L, nr 1, 15–22
  • 14. Pirowski Z. and Gościanski M. 2009. Construction and technology of production of casted shares for rotating and firld plougs, TEKA, vol. IX, 231–239
  • 15. Pirowski Z. 2011. Aplication of Nickiel Superalloys On Castings For Conventional Energy Equimpment Items. TEKA, vol. . XIC. 246–255
  • 16. Pytel A. and Stefański Z. 2011. An Inovattive And Environmentally Safe Method To Manufacture High-Quality Iron Castings For Possible Use As elements Of Agriculture Machines. TEKA, vol. XIC. 256–263
  • 17. Pysz S., Karwiński A. and Czekaj Cz. 2009. An analysis of the technical state of a stater Rusing the hall efekt-part II, TEKA, vol. IX. 251–258
  • 18. Shinsky O. I. 1995. Osobennosti zapolnenija formy peremennogo seczenija i jeje gazovyj rezim pri lit’e po gazoficiruemym modeljam, Procesy lit’a, nr.1, 74–82.
  • 19. Walter Ch. and Siefer W. 1995. [Einfl uss der Gasentwiclung in kaltharzgebundenen Vollvormen auf Putzzaufwand und Gussfehler. Teil 4. Folgen hoher Gaskonzentration im Formhohlraum beim Vollformgiessen. Giesserei, vol. 82, nr. 6, 185–189
  • 20. Wilk J. and Żółkiewicz Z. 2006. Detrmination of optimum Technology in Respect of the Required Values of Casting Quality Parameters by Aplication of the Weighted Variables Metric. Materials Enginering, , vol. 13, nr. 3, 89
  • 21. YE Sheng-pong and WU Zhi-chao. 2006. Lost Foam Casting in China. China Foundry vol. 3, Nr 2, 134–136
  • 22. Żmudzińska M., Faber J., Perszewska K., Żółkiewicz Z. and Maniowski Z. 2011. Badania emisji produktów zgazowania modelu styropianowego w procesie lost foam w aspekcie ochrony środowiska. Transactions of the Foundry Research Institute. Vol. L, nr 1. 23–34
  • 23. Żółkiewicz Z. and Żółkiewicz M. 2010. Characteristic properties of materials for evaporative patterns. Archives of Foundry Engineering vol.. 10, Special Issue, 3, 289–292
  • 24. Żółkiewicz Z. and Żółkiewicz M. 2009. Lost Foam Process – The Chance For Industry. TEKA, 2009, vol. IX, 431–436
  • 25. Żółkiewicz Z. 2004. Infl uence of Thermal Gasifi cation of the Polystyrene Pattern on the Casting Surface.. Archives of Foundry - Archiwum Odlewnictwa, vol. 4, nr 11, 332–33
  • 26. Żółkiewicz Z. 1999. Chosen problems connected with the rate of gas emission in full mould process. Acta Metallurgica Slovaca. Vol. 5, nr.2, 254–259
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS5-0001-0014
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