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Analysis of Internal Defects Appeared in the Continuous Casting

, Ironmaking and Steelmaking 1991 Vol. 24 NO. 3 p.249 [13] Y. Tanizawa, Factors of decarburation in continuous casting of ulc steels and the remedies. Camp Isij, vol. 4, 1991, p. 257. [14] Ghe. Ioniţă, E.V.Stoian, Heat flow in solidification, Buletinul Universităţii Petrol-Gaze din Ploieşti,ISSN 1224-8495, 87-92, 2006. [15] K.Koyama, Y.Nagano, K.Nagano, T.Nagano, Physicochemical properties of powders used for continuous casting, N.S.T.R. nr. 34, July 1987. [16] Yu, X., Pomfret, R. J., Coley, K. S. Dissolving

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Compaction Behaviour Modelling of Metal-Ceramic Powder Mixtures. A Review

, Powder Technology 126 (2002) 65- 74. [28] Rusanescu C.O , Jinescu C, Rusanescu M., Enescu M. C., Anghelina F. V., Stoian E. V. , Despa V., Mathematical Modelling of the Stress-Strain Curve for 31VMn12 Ecological Steel, Materiale Plastice 54 ( 3) (2017) 409-413. [29] Faruk Güner Ömer Necati Cora Hasan Sofuoğlu, Numerical modeling of cold powder compaction using multi particle and continuum media approaches, Powder Technology 271 (2015) 238-247. [30] C.L. Martin, D. Bouvard, Study of the cold compaction of composite powders

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