Aleksander J. Pyzik

Affiliations: 
1985 Materials Science and Engineering The Dow Chemical Company, Midland, MI 
Area:
Materials Science Engineering
Website:
https://ceramics.org/award-winners/aleksander-k-pyzik/
Google:
"Aleksander J. Pyzik"
Bio:

He received his Ph.D. in Materials Science from The Materials Science Institute in Cracow, Poland and held post-doctorial appointments at UCLA and the University of Washington prior to joining Dow

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Publications

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Dogan F, Tritt TM, Sekino T, et al. (2014) Ceramic Transactions: Preface Ceramic Transactions. 246
Hsiung CHH, Pyzik AJ, Gulsoy EB, et al. (2013) Impact of doping on the mechanical properties of acicular mullite Journal of the European Ceramic Society. 33: 1955-1965
Hsiung CHH, Pyzik AJ, De Carlo F, et al. (2013) Microstructure and mechanical properties of acicular mullite Journal of the European Ceramic Society. 33: 503-513
Fox RT, Newman RA, Pyzik AJ, et al. (2010) Al2O3-B4C-Al composite material systems via pressureless infiltration methods International Journal of Applied Ceramic Technology. 7: 837-845
Grohol D, Han C, Pyzik AJ, et al. (2010) Acicular mullite-cordierite composites with controllable CTE values Journal of the American Ceramic Society. 93: 3600-3603
Dubensky E, Newman R, Pyzik AJ, et al. (2009) Friction and wear behavior of AIBC composites Ceramic Engineering and Science Proceedings. 29: 117-129
Pyzik AJ, Todd CS, Han C. (2008) Formation mechanism and microstructure development in acicular mullite ceramics fabricated by controlled decomposition of fluorotopaz Journal of the European Ceramic Society. 28: 383-391
Pyzik AJ, Newman RA, Allen S. (2008) High temperature strength retention of Aluminum Boron Carbide (AIBC) COMPOSITES Ceramic Engineering and Science Proceedings. 28: 277-286
Pyzik AJ, Newman RA, Wetzel A, et al. (2006) Composition control in aluminum boron carbide composites Ceramic Engineering and Science Proceedings. 27: 457-472
Perettie DJ, Fox RT, Pyzik AJ, et al. (1996) Dynamic response and fatigue characterization of Aluminum Boron Carbide ceramic composite materials for disk drive actuator applications American Society of Mechanical Engineers, Information Storage and Processing Division, Isps. 2: 139-151
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