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Tytuł artykułu

Validation studies of temperature distribution and mould filling process for composite skeleton castings

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this work authors showed selected results of simulation and experimental studies on temperature distribution during solidification of composite skeleton casting and mould filling process (Fig. 4, 5, 6). The basic subject of the computer simulation was the analysis of ability of metal to fill the channels creating the skeleton shape and prepared in form of a core. Analysis of filling for each consecutive levels of the skeleton casting was conducted for simulation results and real casting. The skeleton casting was manufactured according to proposed technology (Fig. 5). Number of fully filled nodes in simulation was higher than obtained in experimental studies. It was observed in the experiment, that metal during pouring did not flow through the whole channel section, what enabled possibilities of reducing the channel section and pointed out the necessity of local pressure increase.
Rocznik
Strony
191--198
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
autor
autor
autor
autor
  • Silesian University of Technology, Foundry Department, Institute of Materials Engineering and Biomaterials, Faculty of Mechanical Engineering, 44-100 Gliwice, Towarowa 7, maria.dziuba@polsl.pl
Bibliografia
  • [1] J. Banhart, N.A. Fleck, A. Mortensen, Cellular Metals, Manufacture Properties and applications, Berlin Germany 2003.
  • [2] F. Simańćik, Metallic foams - ultra light materials for structural applications, Eng. Mater., No. 5/2001, p. 823-828.
  • [3] J. Banatr, Manufacture, characterisation and application of cellular metals and metal foams, Progress in Materials Science, 2001, No. 46, p.559-632.
  • [4] P. Darłak P. Dudek, High porous materials - methods of production and application, Foundry - Science i Practice, No. 1/2004, p. 3-17 (in Polish).
  • [5] J. Sobczak, Metallic foams on the example of composite structures, Archives of Mechanical Technology and Automation, No. spec. 2001, p. 161-169.
  • [6] J. Sobczak, Monolithic and composite metallic foams metallic and gasars, I.O. Publishers, Kraków 1998 (in Polish).
  • [7] M. Dziuba, M. Cholewa, Manufacturing conditions and geometry of skeleton castings, Archives of Foundry, 2006, No. 22, p. 178 - 185 (in Polish).
  • [8] M. Dziuba, M. Cholewa, Design of core geometry and material in skeleton casting with open cells, Archives of Foundry, 2006, No. 19, p. 95 - 102 (in Polish).
  • [9] M. Dziuba, M. Cholewa, Design of core geometry in skeleton casting with open cells, Archives of Mechanical Technology and Automation, 2006, vol. 26, No. 1, p. 15 - 23 (in Polish).
  • [10] M. Dziuba, M. Cholewa, Cores of ceramic in skeleton casting with open cells, Archives of Foundry, 2006, No. 22, p. 170 - 177 (in Polish).
  • [11] M. Dziuba, M. Cholewa, Selection of core material in skeleton casting with open cells, Slévárenství 2006, No. 10/11 and on the CD - supplement of Conference Proceedings.
  • [12] M. Cholewa, Shaping casing of metallic foams, Archives of Foundry, 2003, vol. 3, No. 9, p.81-88 (in Polish).
  • [13] J. Braszczyński, A. Zyska, Problems of solidification of cast composites, Archives of Mechanical Technology and Automation, 1998, vol. 18, No. spec, p. 55-61 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0032-0037
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