By Laurentiu Nastac, Baicheng Liu, Hasse Fredriksson, Jacques Lacaze, Chun-Pyo Hong, Adrian Catalina, Andreas Buhrig-Polaczek, Charles Monroe, Adrian Sabau, Roxana Elena Ligia Ruxanda, Alan Luo, Subhayu Sen, Attila Diószegi
The ebook includes the court cases of the honorary symposium “Advances within the technology and Engineering of Casting Solidification” (TMS2015, Orlando, Florida, March 15-19, 2015) held in honor of Professor Doru Michael Stefanescu, Emeritus Professor, Ohio kingdom college and the college of Alabama, united states. The publication encompasses the subsequent 4 areas:
(1) Solidification processing: theoretical and experimental investigations of solidification approaches together with castings solidification, directional solidification of alloys, electromagnetic stirring, ultrasonic cavitation, mechanical vibration, energetic cooling and heating, powder bed-electron beam melting additive production, and so on. for processing of metals, polymers and composite materials;
(2) Microstructure Evolution: theoretical and experimental reports regarding microstructure evolution of fabrics together with prediction of solidification-related defects and particle pushing/engulfment aspects;
(3) Novel Casting and Molding Processes: modeling and experimental points together with excessive strain die casting, everlasting casting, centrifugal casting, low strain casting, 3D silica sand mildew printing, etc.; and
(4) Cast Iron: all points on the topic of forged iron characterization, computational and analytical modeling, and processing.
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Additional info for Advances in the science and engineering of casting solidification : an MPMD Symposium honoring Doru Michael Stefanescu
References 1. T. Carlberg, H. Fredriksson, P. Stenmark. The Swedish Texus Experiment, a Technical Description and some Prelimnary Results. ESA Publication SP-135, 1978, 325-338. 2. Solidification of some Eutectic Alloys under Microgravity Conditions and at lg. ESA Publication SP-142, 1979,221-231. 3. Johan Dahlström,. On the solidification of Al alloys during Microgravity. PhD thesis 1999, KTH, Stockholm. 4. H. Fredriksson, J. Dahlström, J. Fjellstedt. On the solidification af Aluminium-base alloys unde different gravity conditions.
Flemings 1974 Solidification Processing. McGraw-Hill, New York 4. C. Felmings, R. E. Nereo, Trans AIME, 242:41 (1968) 5. M. C. E: Trans AIME, 242:50 (1968) 6. Ε. Haug, A. Mo, and H. J. Thevik. Macrosegregation near a cast surface caused by 21 exudation and solidification shrinkage. Int. J. Heat Mass Transfer, 38:1553-1563, 1995. 7. H. J. Thevik, A. Mo, and T. Rüsten. A mathematical model for surface segregation in aluminum direct chill casting. Metall. Mater. Trans. Β, 39B: 135-142, 1999. 8. F.
Material properties of liquid aluminium and water. 24 Vapour pressure psat (kPa) Time (ms) Figure 2. Radius evolution for a bubble of 100 fini in water. 26 Acoustic pressure solution Solving the wave equation (7) yields minimum and maximum acoustic pressure contours. The minimum pressure contour is shown in Figure 4 and Figure 5. As expected, the extreme pressure values are found below the sonotrode, where the cavitation activity is expected to be most intense. 0 kPa is achieved everywhere in the domain.
Advances in the science and engineering of casting solidification : an MPMD Symposium honoring Doru Michael Stefanescu by Laurentiu Nastac, Baicheng Liu, Hasse Fredriksson, Jacques Lacaze, Chun-Pyo Hong, Adrian Catalina, Andreas Buhrig-Polaczek, Charles Monroe, Adrian Sabau, Roxana Elena Ligia Ruxanda, Alan Luo, Subhayu Sen, Attila Diószegi