The Influence of Coloring Liquids on the Substrate Masking Ability and Adhesive Properties of Different Zirconia Ceramics. [PDF]
Pilecco RO +4 more
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Evaluation of the Flexural Strength and Translucency of Zirconia With Different Microstructures. [PDF]
Kultas Kaleli MB.
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Structural Templation of MOF-Derived Zirconia Nanoparticles. [PDF]
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Comparing fracture resistance of CAD/CAM polyetherketoneketone ″PEKK″, carbon reinforced polyetheretherketone ″CR PEEK″ and nano-zirconia implant abutments receiving digitally milled nano-zirconia and glass ceramic crowns: an in vitro study. [PDF]
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Fracture resistance of ceramic vonlays fabricated from different CAD/CAM materials restoring premolars after cyclic loading (an in vitro study). [PDF]
Al-Mazzaly AM, Abdel-Fattah W, Nasr DM.
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In Situ Formation of Calcium Zirconate Particles on the Surface of High-Translucent Zirconia: A New Way to Strongly Improve Its Bonding Properties. [PDF]
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Thermal barrier coatings of YSZ developed by plasma sprayed technique and its effective use in orthopedic and dental application. [PDF]
Rajendiran A, Uthirapathy V.
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Mechanical loss of cubic zirconia
Journal of Alloys and Compounds, 2000Cubic zirconia can be stabilized by doping with lower valent oxides such as Y2O3 or CaO. Oxygen vacancies are then created as charge compensating defects. Mechanical loss measurements were performed in the temperature range 300–1600 K using both free decaying (3 Hz, 3 kHz) and forced vibrations (10−2–10 Hz).
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Croissance epitaxique de couches monocristallines de Si sur les faces (100), (110) et (111) de monocristaux de zircone stabilises par l'oxyde d'yttrium. Croissance des couches de Si par pyrolyse de SiH 4 entre 950-1075°C a des vitesses de 0,08-1,2 μm/min.
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