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The presented article concerns the issue of supporting the ADI cast iron product manufacturing process and presents an IT system dedicated mainly to designers and technologists. Designers can be supported at the stage of selecting types of materials and technologies (including ADI cast iron) to produce products with required properties. Technologists can obtain support in determining the parameters (temperature and chemical) of the ADI cast iron manufacturing process in order to obtain products with specific properties. The system also contains an information resources (standards, documentation, examples) concerning ADI cast iron and products made of it. Examples of use by individual system users are presented as a case study.
Wydawca
Czasopismo
Rocznik
Tom
Strony
651--657
Opis fizyczny
Bibliogr. 20 poz., fot., rys., tab., wzory
Twórcy
autor
- AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Kraków, Poland
- AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Kraków, Poland
- Łukasiewicz Research Network - Krakow Institute of Technology, 73 Zakopiańska Str., 30-418 Kraków, Poland
Bibliografia
- [1] D. Fernandino, J. Massone, R. Boeri, J. Mater. Process. Techn. 213, 10, 1801-1809 (2013).
- [2] A. Bitka, K. Jaśkowiec, Prace Instytutu Odlewnictwa 58, 2 (2018).
- [3] J.L. Hernández-Rivera, C.G. Garay-Reyes, R.E. Campos-Cambranis, J.J. Cruz-Rivera, Materi. Charact. 83, 89-96 (2013).
- [4] F. Concli, Procedia Structural Integrity 8; 14-23 (2018).
- [5] J. Kozłowski, R. Sika, F. Górski, O. Ciszak, Advances In Design, Simulation and Manufacturing. Lecture Notes in Mechanical Engineering. Springer, Cham, (2019).
- [6] L. Tang, G. Wang, Omega 36, 6, 976-991 (2008).
- [7] M.K. Tiwari, R. Banerjee, Prod. Plan. Control 12, 7, 689-694 (2001).
- [8] P. Thollander, N. Mardan, M. Karlsson, Appl. Energ. 86, 4 (2009).
- [9] A. Stawowy, J. Duda, R. Wrona, Archives of Foundry Engineering 16, 1, 85-8 (2016).
- [10] D. Prasad, S. Ratna, Materials Today: Proceedings 5, 1, Part 1, 1298-1312 (2018).
- [11] D.Y . Yang, M. Bambach, J. Cao, J.R. Duflou, P. Groche, T. Kuboki, A. Sterzing, A.E. Tekkaya, C.W. Lee, Cirp Annals 67, 2, (2018).
- [12] R.S. Wadhwa, IFIP Adv. Inf. and Comm. Tech., 414. Springer, Berlin, (2013).
- [13] C.Y. Yang, L.C. Chan, R. Nakatsu, Math. Probl. Eng. (2013).
- [14] U.S. Sakalli, B. Birgoren, Comput. and Eng. 56, 2, 724-735 (2009).
- [15] T .R. Vijayaram, P. Piccardo, Metallurgical Science and Technology 30, 2 (2012).
- [16] R. Sika, M. Rogalewicz, P. Popielarski, D. Czarnecka-Komorowska, D. Przestacki, K. Gawdzińska, P. Szymański, Materials 13 (16), 3552 (2020).
- [17] R. Sika, M. Rogalewicz, Matec Web Conf. 121, 05007 (2017).
- [18] A. Milenin, P. Kustra, T. Furushima, P. Du, J. Němeček, J. Mat. Pr. Tech. 262, 65-74 (2018).
- [19] Ł. Sztangret, A. Stanisławczyk, J. Kusiak, Comp. Meth. Mat. Sci. 9, 3 (2009).
- [20] A. Opalinski, D. Wilk-Kołodziejczyk, Metalurgija 55, 1, 127-130 (2016).
Uwagi
1. The work has been supported by the Polish Ministry of Science and Higher Education – AGH University of Science and Technology funds No. 16.16.110.663 Ffinancial support of the National Centre for Research and Development LIDER/028/593/L-4/12/NCBR/2013 is gratefully acknowledged.
2. Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-69e6cf7f-3a3b-4744-9009-9e9d6a18d309