Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Unconventional injection methods include i.e. blowing injection that allows for production of moldings with a lower weight while maintaining mechanical properties of detail. Due to the fact that most polymers are dyed at the processing stage, it is important to examine the simultaneous effect of blowing and colorbatch, as well as variable processing conditions, on the functional properties of moldings made of the most popular construction material, i.e. ABS. Samples were made of ABS polymer without and with the addition of a colorbatch containing brown pigment on ABS matrix, and blowing agent. Variable processing conditions were: mold and injection temperature, holding pressure and time. Other parameters were constant. Samples were tested for basic functional properties such as color, gloss, mass, density and thickness. Moldings produced with a higher blowing agent content and a higher injection temperature were characterized by lower mass. No significant influence of processing parameters and content of colorbatch on mass of samples was found. Blowing agent has no significant impact on thickness of moldings, regardless of processing conditions. Addition of a colorbatch influenced samples’ gloss. Increase in colorbatch and blowing agent content and mold temperature allow to obtain moldings with a higher surface gloss. Colorbatch also changed color of samples - a decrease in luminance L even by about 40% and great changes in parameters “a” and slight changes in parameter “b”. It was found that blowing agent content had the greatest influence on density of moldings. Injection temperature and colorbatch, do not significantly affect density of moldings.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
375--380
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
autor
- Czestochowa University of Technology, Faculty of Mechanical Engineering and Computer Science, Department of Technology and Automation, 21 Armii Krajowej Av., 42-201 Czestochowa, Poland
Bibliografia
- [1] Y.S. Choi, M.Z. Xu, I.J. Chung, Polymer. 46 (2), 531-538 (2005).
- [2] S.V. Levchik, E.D. Weil, Polym. Int. 57 (3), 431-448 (2008).
- [3] P. Gabbott, Application to thermoplastics and rubbers. Principles and applications of thermal analysis. Blackwell Publishing Ltd, Oxford (2008).
- [4] H.D. Lu, L. Song, Y. Hu, Polym. Adv. Technol. 22 (4), 379-394 (2011).
- [5] Y.Y. Ji, J.H. Kim, J.Y. Bae, J. Appl. Polym. Sci. 102 (1), 721-728 (2006).
- [6] E. Bociąga, Specjalne metody wtryskiwania tworzyw sztucznych (Nonconventional methods of injection molding). WNT, Warsaw (2008).
- [7] M. Bielinski, Techniki porowania tworzyw termoplastycznych (Techniques of Foaming Thermoplastics). Academic Publisher of University of Technology and Agriculture, Bydgoszcz (2004).
- [8] E. Bociąga, P. Palutkiewicz, Cell. Polym. 32 (5), 257-277 (2013).
- [9] G. Wypych, Handbook of foaming and blowing agents (second edition). Chem. Tec. Publishing, Toronto (2022).
- [10] R.J. Crawford, P.J. Martin, Plastics Engineering. Elsevier Ltd. Oxford, Cambridge (2020).
- [11] P. Palutkiewicz, M. Trzaskalska, E. Bociaga, Cell. Polym. 39 (1), 3-30 (2020).
- [12] P. Palutkiewicz, A. Kalwik, Charakterystyka struktur porowatych tworzyw polimerowych i model uniwersalny komórkowego rozrostu porów. In: P. Boral, J. Winczek, P. Postawa, M. Gucwa (Eds.), Innowacje w technologii i automatyzacji II, Academic Publisher of Technical University of Częstochowa, Częstochowa (2022).
- [13] P. Bugnon, Prog. Org. Coat. 29 (1-4), 39-43 (1996).
- [14] l. Cao, X. Fei, H. Zhao, Dyes Pigments 142, 100-107 (2017).
- [15] B. Pandian, R. Arunachalam, A. Easwaramoorthi, J.R. Rao, J. Clean. Prod. 256, 120455 (2020).
- [16] T. Rashid, C.F. Kait, T. Murugesan, Procedia Eng. 146, 1312-1319 (2016).
- [17] E. Bociąga, M. Trzaskalska, Color Res. Applic. 41, 4, 392-398 (2016).
- [18] E. Bociąga, M. Trzaskalska, Polimery 61, 7-8, 544-550 (2016).
- [19] https://www.permedia.pl/files/userfiles/files/permedia%20pigments.pdf, accessed: 20.09.2022
- [20] Standard PN-EN ISO 527-2:2012.
- [21] H. Zawistowski, Sz. Zięba, Ustawianie procesu wtrysku. Plastech, Warsaw (2005).
- [22] Standard PN-EN ISO 845:2010.
- [23] Standard PN-EN ISO 2813:2014-11.
- [24] S.K. Biswas, D. Dhak, A. Pathak, P. Pramanik, Mater. Res. Bull. 43 (3), 665-675 (2008).
- [25] J. Yuan, W. Xing, G. Gu, L. Wu, Dyes Pigments 76 (2), 463-469 (2008).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3069e78f-3792-4657-bb0a-ec5de6ff0131
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.