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Wear Characteristics and Volume Loss of CAD/CAM Ceramic Materials
Alec D. Zurek
, Maria F. Alfaro
, Alvin Wee
, Judy Chia Chun Yuan
, Valentim A. Barao
, Mathew T. Mathew
, Cortino Sukotjo
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Scopus citations
Overview
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Dive into the research topics of 'Wear Characteristics and Volume Loss of CAD/CAM Ceramic Materials'. Together they form a unique fingerprint.
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Keyphrases
Volume Loss
100%
Wear Characteristics
100%
CAD-CAM
100%
Ceramic Materials
100%
Lithium Disilicate
100%
Wear Volume
100%
Zirconia
81%
Surface Finish
54%
Wear Simulation
45%
Scar
27%
Friction Coefficient
27%
Dental Ceramics
27%
Surface Roughness
18%
Three-body Wear
18%
Scanning Electron Microscopy
9%
Restorative Care
9%
Enamel
9%
Mandibular Arch
9%
Physiologic
9%
Statistical Significance
9%
Prosthodontics
9%
Bonferroni
9%
Scanning Electron Microscope Image
9%
Wear Mechanism
9%
Wear Properties
9%
Lubricant
9%
Wear Debris
9%
Artificial Saliva
9%
Surface Characterization
9%
Post Hoc Test
9%
Dental Restoration
9%
2-way
9%
Wear Data
9%
Masticatory
9%
Scanning Electron Microscopy Analysis
9%
Two-way ANOVA
9%
Specimen Type
9%
Low Surface Roughness
9%
Wear Phenomena
9%
Wear Behavior
9%
Scanning Electron Microscope Imaging
9%
Abrasivity
9%
Maxillary Arch
9%
Tribometer
9%
Surface Roughness Characterization
9%
White Light Interferometry
9%
Loss Surface
9%
White Light Scanning
9%
Resistance to Wear
9%
Higher Coefficients
9%
Enhanced Strength
9%
Material Science
Lithium
100%
Ceramic Material
100%
Zirconia
81%
Surface (Surface Science)
63%
Scanning Electron Microscopy
36%
Surface Roughness
36%
Coefficient of Friction
27%
Wear Property
9%
Electron Microscopy
9%
Surface Characterization
9%
Wear Debris
9%
Engineering
Lithium Disilicate
100%
Computer Aided Design
100%
Computer Aided Manufacturing
100%
Coefficient of Friction
27%
Material Loss
9%
Specimen Type
9%
Wear Property
9%
Wear Debris
9%
Interferometry
9%
Arch
9%