COMPARISON BETWEEN THE DENSITY OF ALUMINIUM MATRIX REINFORCED WITH SIC AND GRAPHITE COMPOSITE MATERIAL OBTAINED BY INJECTION TO THE FEEDSTOCK DENSITY
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Brânduşan, L., Ping An X., Formarea prin injecţie a pulberilor, Editura Todesco, 2008, pp. 124-128.
Păunoiu, V., Tehnologia pieselor sinterizate, Universitatea ―Dunărea de Jos, Galaţi, 2010, pp. 69-71.
Geiger, L., Jackson, M., Advanced Materials Processing, 136 (7), 1989, pp. 23-28.
Jumolea, A.G., Arghir, G., Brȃndușan, L., Amestecuri pentru formarea prin injecţie a materialelor compozite cu Al/SiCp şi grafit, Știinţă și inginerie, an X, Vol. 18/2010, pp. 465-472.
Jumolea, A.G., Arghir, G., Brȃndușan, L., Formarea prin injecţie a pulberilor, Știinţă și inginerie, Vol. 16/2009, pp. 517-520.
Jumolea, A.G., Arghir, G., Brȃndușan, L., Batin, G., Güney, B., Çekici, M., Pregătirea materialelor compozite din aluminiu armate cu particule de SiC şi grafit pentru injectare, Inginerie – Cugir, Conferinţa Naţională Multidisciplinară “ Profesorul Ion D. Lăzărescu”, fondatorul școlii românești de teoria așchierii, Vol. 2/2014, pp. 667-674.
Vemula Vijaya Vani and Sanjay Kumar Chak, The effect of process parameters in Aluminum Metal Matrix Composites with Powder Metallurgy, Manufacturing Review 5 (7), 2018.
Jumolea, A.G., Arghir, G., Brȃndușan, L., Caracterizarea liantului folosit pentru formarea prin injecţie a materialelor composite cu matrice din aluminiu și particule de carbora de siliciu și grafit, Știinţă și inginerie, an XV, Vol. 28/2015, pp. 391-396.
Abolhasani, H., Muhamad, N., A new starch – based binder for metal injection moulding, J. of Materials Processing Technology, 210 (2010), pp. 961-968.
Kenichi Yoshikawa, Hitoshi Ohmori, Outstanding features of powder injection molding for micro parts manufacturing, Riken Review, 34(2001): 13-18.
S A Mohan Krishna, T N Shridhar, L Krishnamurthy,Research Significance, Applications And Fabrication Of Hybrid Metal Matrix Composites, International Journal of Innovative Science, Engineering & Technology, Vol. 2 Issue 5, May 2015.
G., Schlieper, G., Dowson, B., Williams, F., Petzoldt, Metal injection moulding: a manufacturing process for precision engineering components, European powder metallurgy association, 2013, pp. 7.
Pech-Canul, M.I., Katz, R.N., Makhlouf, M.N., J. of Materials Processing and Technology, 108 (2000), pp. 68-77.
Juan, M., Adames, Characterization of polymeric binders for metal injection moulding (MIM) process, dissertation thesis, Universitatea Akron, December 2007, pp. 1112-1116.
Carlson, R., The shaping of engineering ceramics, Materials and Design, 10 (1989), pp. 10-14.
Shubin Ren, Xuanhui Qu, Jia Guo, Xinbo He, Mingli Qin, Xiaoyu Shen, Net-shape forming and properties of high volume fraction SiCp/Al composites, J. of Alloys and Compounds, 484 (2009), pp. 256–262.
I.S. Lee, C.J. Hsu, C.F. Chen, N.J. Ho, P.W. Kao, Particle-reinforced aluminum matrix composites produced from powder mixtures via friction stir processing, Composites Science and Technology, 71 (2011), pp. 693–698.
A. Pramanik, Developments in the non-traditional machining of particle reinforced metal matrix composites, International Journal of Machine Tools & Manufacture 86 (2014), pp. 44–61.
Richard E. Chinn, Thermal Processing of Injection-Molded Silicon Carbide, Teza de doctorat, 2015.
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