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Selected applications of ultrasonic method for moulding sand examination

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Języki publikacji
EN
Abstrakty
EN
Selected applications of ultrasonic method for examining basic technological and rheological properties of traditional moulding sands are presented. The ultrasonic method permits evaluation of basic technological properties of moulding sands on the grounds of the correlation curves t = f(W), Rcw = f(E) and L = f(kC ,W). This allows also determining the kC and kT coefficients which define viscoelastic properties of moulding sands based on the relationships kC = f(vL) and kT = f(vL).
Rocznik
Strony
101--106
Opis fizyczny
Bibliogr. 18 poz., rys.
Twórcy
autor
autor
autor
Bibliografia
  • [1] L. Brunarski, Research of materials, elements and constructions. Concrete building engineering, vol. 8, Warsaw, Arkady 1970 (in Polish).
  • [2] J. Matuschek, Ultrasonic technics, Warsaw, WNT 1961 (in Polish)
  • [3] Z. Pawłowski, Internal friction of metals and the problem of damage cumulation with static and variable loadings, Proc. Viler. Problems, Warsaw, vol.4, 1963 44-64.
  • [4] Z. Pawłowski, Ultrasonic attenuation during cyclic streining, Proc. Fourth International Conference on Non-destructive Testing, Butterworths 1964, London 1967 192-195.
  • [5] Z. Pawłowski, Evaluation of physical and mechanical state of polycrystaline in internal friction in materials, Wroclaw, Ossolineum 1968.
  • [6] Z. Pawłowski, Ultrasonic measurements of strength of fragile materials, IPPT, No. 13, Warsaw 1967 (in Polish).
  • [7] Z. Samsonowicz, Ultrasonic waves in moulding sand humidity measurements, Przegląd Odlewnictwa, No. 5 1969 169-172 (in Polish).
  • [8] T. Mikulczyński, Application of ultrasound method in examining moulding sands and materials, Scientific papers of the Institute of Production Engineering and Automation, Wroclaw University of Technology, No. 54, Monographs No. 15, 1994 (in Polish).
  • [9] M. Ganczarek, Mathematical model of moulding sand dynamic squeezing, doctoral dissertation, ITMiA, PWr, 2003 (in Polish).
  • [10] M. Bogdan, S. Fita, T. Mikulczyński, R. Więcławek, Ultrasonic measurements of rheological properties of disintegrated media, Measurement Scientific Review vol. 6, sect. 3, No. 4 (2006) 66-69.
  • [11] W. Kollek, T. Mikulczyński, D. Nowak, R. Więcławek, Experimental identification of rheological model of disintegrated media, Archives of Foundry vol. 4, No. 11 (2006) 322-331 (in Polish).
  • [12] W. Kollek, T. Mikulczyński, K. Naplocha, D. Nowak, Ultrasonic measurements of rheological model of moulding sand, Archives of Foundry vol. 4, No. 13 (2004) 127-132 (in Polish).
  • [13] M. Ganczarek, W. Kollek, T. Mikulczyński, Experimental and simulation research of moulding sand dynamic squeezing, Archives of Foundry vol. 2, No. 6 (2002) 55-60 (in Polish).
  • [14] T. Mikulczyński, J. Bogdanowicz, Ł. Dworzak, M. Ganczarek, Ultrasonic measurements of active binder content, Archives of Foundry vol. 6, No. 20 (2006) 59-64 (in Polish).
  • [15] T. Mikulczyński, M. Ganczarek, S. Ciskowski, Ł. Dworzak, New method for evaluation of active binder content in moulding sand, Przegląd Odlewnictwa vol. 56, No. 10/11 (2006) 574-577 (in Polish).
  • [16] L. Lewandowski, Moulding and core sands, Warsaw, PWN, 1991 (in Polish).
  • [17] N.A. Cytović, Soil mechanics, Moscow, GILSA 1951 (in Russian).
  • [18] T. Jeske, T. Przedecki, B. Rossiński, Soil mechanics, Warsaw, PWN 1966 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ4-0013-0021
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