The effect of thermocycling on the fatigue behavior of dental composites

The effect of thermocycling on the fatigue behaviour of 2 microfilled composites; Silux Plus3 and Heliomolar2 and 3 hybrid composites; P502, Cleafil Photo Posterior3 (both light-activated) and Cleafil Posterior3 (chemically-activated) was investigated using a ball mill. Ninety specimens (2 x 2 x 25m...

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Main Authors: Abu Kasim, N.H., McCabe, J.F.
Format: Article
Language:English
English
Published: 1995
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Online Access:http://eprints.um.edu.my/2516/1/THE_EFFECT_OF_THERMOCYCLING_ON_THE_FATIGUE_BEHAVIOR_OF_DENTAL_COMPOSITES.pdf
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spelling my.um.eprints.25162014-10-21T00:51:48Z http://eprints.um.edu.my/2516/ The effect of thermocycling on the fatigue behavior of dental composites Abu Kasim, N.H. McCabe, J.F. R Medicine R Medicine (General) RK Dentistry The effect of thermocycling on the fatigue behaviour of 2 microfilled composites; Silux Plus3 and Heliomolar2 and 3 hybrid composites; P502, Cleafil Photo Posterior3 (both light-activated) and Cleafil Posterior3 (chemically-activated) was investigated using a ball mill. Ninety specimens (2 x 2 x 25mm) of each material were used. The specimes were divided into 3 groups of 30 and were stored for 24 h in water at 37oC (Group A), subjected to 104 thermal cycle over 45 days (Group B) and stored in water at 37oC for 45 days (Group C). Ten specimens of each material were tested in a 0.5 litre capacity ceramic ball mill4 which was rotated at 100 rev/min. This procedure was repeated 3 times. The mill was charged with 470g steatite balls and 250m1 distilled water. At 30 minute intervals the number of fractured specimens was noted. All fractured and intact specimens were returned to the ball mill and the process repeated up to 5 hours. T'he mean survival time (mins) for P50 were >300(A), 85(B) and 130(C); Silux >300(A), 76(B) and 110(C); Heliomolar >300(A), 240(B) and >300(A); Clearfi Photo >300(A), >300(B), >300(C) and Cleafil Posterior >300(A), 165(B) and 160(C). Group A is significantly different (P< .05) from Groups B and C for all materials except Cearfil1 Photo Posterior. Howver, significant differences (P<.05) between Group B and C wan only observed in P50 and Silux. The fatigue behaviour of P50 and Silux is affected by thermocycling. 13M, St Paul,USA; 2Vivadent, Liechtenstein; 3Kuraray, Japan; 4Pascal Engineering, UK. 1995 Article PeerReviewed application/pdf en http://eprints.um.edu.my/2516/1/THE_EFFECT_OF_THERMOCYCLING_ON_THE_FATIGUE_BEHAVIOR_OF_DENTAL_COMPOSITES.pdf application/pdf en http://eprints.um.edu.my/2516/2/THE_EFFECT_OF_THERMOCYCLING_%28original%29.pdf Abu Kasim, N.H. and McCabe, J.F. (1995) The effect of thermocycling on the fatigue behavior of dental composites. Journal of Dental Research, 74 (3). p. 841. ISSN 0022-0345 http://web.ebscohost.com/ehost/pdfviewer/pdfviewer?sid=65bcab06-20d7-4c9b-9413-7e61565b559c%40sessionmgr15&vid=4&hid=17 QX162
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
language English
English
topic R Medicine
R Medicine (General)
RK Dentistry
spellingShingle R Medicine
R Medicine (General)
RK Dentistry
Abu Kasim, N.H.
McCabe, J.F.
The effect of thermocycling on the fatigue behavior of dental composites
description The effect of thermocycling on the fatigue behaviour of 2 microfilled composites; Silux Plus3 and Heliomolar2 and 3 hybrid composites; P502, Cleafil Photo Posterior3 (both light-activated) and Cleafil Posterior3 (chemically-activated) was investigated using a ball mill. Ninety specimens (2 x 2 x 25mm) of each material were used. The specimes were divided into 3 groups of 30 and were stored for 24 h in water at 37oC (Group A), subjected to 104 thermal cycle over 45 days (Group B) and stored in water at 37oC for 45 days (Group C). Ten specimens of each material were tested in a 0.5 litre capacity ceramic ball mill4 which was rotated at 100 rev/min. This procedure was repeated 3 times. The mill was charged with 470g steatite balls and 250m1 distilled water. At 30 minute intervals the number of fractured specimens was noted. All fractured and intact specimens were returned to the ball mill and the process repeated up to 5 hours. T'he mean survival time (mins) for P50 were >300(A), 85(B) and 130(C); Silux >300(A), 76(B) and 110(C); Heliomolar >300(A), 240(B) and >300(A); Clearfi Photo >300(A), >300(B), >300(C) and Cleafil Posterior >300(A), 165(B) and 160(C). Group A is significantly different (P< .05) from Groups B and C for all materials except Cearfil1 Photo Posterior. Howver, significant differences (P<.05) between Group B and C wan only observed in P50 and Silux. The fatigue behaviour of P50 and Silux is affected by thermocycling. 13M, St Paul,USA; 2Vivadent, Liechtenstein; 3Kuraray, Japan; 4Pascal Engineering, UK.
format Article
author Abu Kasim, N.H.
McCabe, J.F.
author_facet Abu Kasim, N.H.
McCabe, J.F.
author_sort Abu Kasim, N.H.
title The effect of thermocycling on the fatigue behavior of dental composites
title_short The effect of thermocycling on the fatigue behavior of dental composites
title_full The effect of thermocycling on the fatigue behavior of dental composites
title_fullStr The effect of thermocycling on the fatigue behavior of dental composites
title_full_unstemmed The effect of thermocycling on the fatigue behavior of dental composites
title_sort effect of thermocycling on the fatigue behavior of dental composites
publishDate 1995
url http://eprints.um.edu.my/2516/1/THE_EFFECT_OF_THERMOCYCLING_ON_THE_FATIGUE_BEHAVIOR_OF_DENTAL_COMPOSITES.pdf
http://eprints.um.edu.my/2516/2/THE_EFFECT_OF_THERMOCYCLING_%28original%29.pdf
http://eprints.um.edu.my/2516/
http://web.ebscohost.com/ehost/pdfviewer/pdfviewer?sid=65bcab06-20d7-4c9b-9413-7e61565b559c%40sessionmgr15&vid=4&hid=17
_version_ 1643686944142524416
score 13.214268