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An experimental study of the wear behavior of dental feldspathic glass-ceramic and lithium disilicate glass-ceramic / 中华口腔医学杂志
Chinese Journal of Stomatology ; (12): 683-688, 2013.
Article in Chinese | WPRIM | ID: wpr-274158
ABSTRACT
<p><b>OBJECTIVE</b>To investigate the tribology characteristics of two ceramic materials in vitrofeldspathic glass-ceramic (veneer porcelain) and lithium disilicate glass-ceramic (heat-pressed ceramic), and to evaluate the wear resistance of different ceramic materials from the dynamic chewing perspective.</p><p><b>METHODS</b>Wear tests were performed in simulated oral environment with stainless steel ball antagonists (r = 3 mm), veneer porcelain (CERAMCO 3) and heat-pressed ceramic (IPS e.max Press HT type) in the chewing simulator. The tribological tests were carried out under artificial saliva lubrication condition in room temperature with a vertical load of 10 N for 1.2×10(6) cycles (f = 1.5 Hz, uniform circular motion, revolving speed = 90 r/min, radius = 0.5 mm). The wear volumes were measured using three-dimensional profiling, and surface microscopic morphology were observed using scanning electron microscopy at time point of 200 000, 400 000, 600 000, 800 000, 1 000 000, and 1 200 000 cycles.</p><p><b>RESULTS</b>In a simulated oral environment, the wear rates of veneer porcelain were (0.001 20 ± 0.00 018) , (0.000 10 ± 0.000 03) , (0.000 50 ± 0.000 05), (0.000 10 ± 0.000 02) , (0.004 10 ± 0.000 38) , and (0.019 00 ± 0.003 53) (×10(-4) mm(3)/cycles) at 200 000, 400 000, 600 000, 800 000, 1 000 000, 1 200 000 cycles. The wear rates of heat-pressed ceramic were (0.139 50 ± 0.030 94), (0.124 40 ± 0.031 20), (0.054 80 ± 0.005 38), (0.038 80 ± 0.006 10), (0.011 10 ± 0.003 75), (0.198 90 ± 0.045 80) (×10(-4) mm(3)/cycles) at 200 000, 400 000, 600 000, 800 000, 1 000 000, 1 200 000 cycles. Three stages were observed in the wear loss process of the two materials running-in stage, steady wear stage and severe wear stage. In running-in and steady wear stage, the shallow wear tracks of veneer porcelain were produced by the fatigue effect.While in severe wear stage, the wear tracks turned into ploughing. In running-in stage, the surface of heat-pressed ceramic was characterized by dense and shallow ploughing. In steady wear stage, the wear tracks turned into flake peeling produced by fatigue effect. At last, the whole layer was worn off by the effects of ploughing.</p><p><b>CONCLUSIONS</b>In a simulated oral environment, the wear rate and wear loss of heat-pressed ceramic are greater than that of veneer porcelain.</p>
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Surface Properties / Microscopy, Electron, Scanning / Ceramics / Analysis of Variance / Dental Restoration Wear / Dental Porcelain / Dental Veneers / Glass / Mastication Language: Chinese Journal: Chinese Journal of Stomatology Year: 2013 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Surface Properties / Microscopy, Electron, Scanning / Ceramics / Analysis of Variance / Dental Restoration Wear / Dental Porcelain / Dental Veneers / Glass / Mastication Language: Chinese Journal: Chinese Journal of Stomatology Year: 2013 Type: Article