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Investigation results of the drying rate of the selected protective water coatings are presented in the paper. The water coating WC-R was subjected to examinations. The drying kinetics of this coating was determined. The coating was deposited on cores of the moulding sand of the matrix grain size being: dL= 0.20 mm; 0.24 mm; 0.34 mm. In addition, the kinetics of the coating drying process was determined for three conventional viscosities (15s; 22s; 34s). The coating viscosity was estimated by means of the Ford 4mm cup. Drying rates of the protective coating were examined by using the gravimetric technique (weight). Measurements were carried out in a continuous way under controlled conditions: constant ambient temperature and air humidity.
Czasopismo
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45--50
Opis fizyczny
Bibliogr. 9 poz., rys., wykr.
Twórcy
autor
- AGH University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23, 30-059 Kraków, Poland
autor
- AGH University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23, 30-059 Kraków, Poland
autor
- AGH University of Science and Technology, Faculty of Foundry Engineering, Reymonta 23, 30-059 Kraków, Poland
Bibliografia
- [1] Seeger K. (2012). Zastosowanie pokryć wodnych przy formowaniu ręcznym. Przegląd Odlewnictwa. 7-8, 322-326. ISSN 0033-2275.
- [2] Zych J. & Snopkiewicz T. (2011). Drying and strengthening of protective coatings after deposition on casting moulds and sand cores – new investigation methods. Przegląd Odlewnictwa. 9-10, 506-512. ISSN 0033-2275.
- [3] Jamrozowicz Ł., Zych J. (2012). „Kinetyka suszenia powłok ochronnych naniesionych na formy i rdzenie piaskowe”, materiały XXXVI Scientific Conference Foundryman’ Day 2012, Nov. 2012 (pp. 22-23). Kraków, Poland.
- [4] Zych J. (2006). Application of the novel ultrasonic method in the on line research of the setting, and hardening process of ceramic materials. Inżynieria Materiałowa. 27(3), 680-683. ISSN 0208-6247.
- [5] Holtzer M., Bobrowski A., Drożyński D. & Mocek J. (2013). Investigations of protective coatings for castings of high-manganese cast steels. Archives of Foundry Engineering. 13(1), 39-44. ISSN 1897-3310. DOI: 10.2478/afe-2013-0008.
- [6] Jakubski J., Dobosz St. & M Jelinek P. (2005). The influence of the protective coating type on thermal deformation of casting cores. Archives of Foundry. 5(15). ISSN 1642-5308.
- [7] Jakubski J. & Dobosz St. (2006). Wpływ powłoki ochronnej na zjawiska cieplne w rdzeniach odlewniczych. Archives of Foundry. 6(18). ISSN 1642-5308.
- [8] Kubicki J. & Kochmańska A. (2001). Wieloskładnikowe powłoki ochronne na staliwie żarowytrzymałym otrzymywane metodą pasty. Archives of Foundry. 1(1). ISSN 1642-5308.
- [9] Kochmańska A. & Kubicki J. (2009). Efficiency of protective coatings on high creep resistant cast steel. Archives of Foundry Engineering. 9(2), 129-132. ISSN 1897-3310.
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Bibliografia
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bwmeta1.element.baztech-fd415164-b2c5-4974-8610-449327da0b5f