Effect of different light curing units on Knoop hardness and temperature of resin composite

<b>Aim:</b> To evaluate the influence of quartz tungsten halogen and plasma arc curing (PAC) lights on Knoop hardness and change in polymerization temperature of resin composite. <b> Materials and Methods:</b> Filtek Z250 and Esthet X composites were used in the shade A3. T...

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Main Authors: Guiraldo Ricardo, Consani Simonides, Xediek Consani Rafael, Mendes Wilson, Lympius Thais, Coelho Sinhoreti Mario
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2009-01-01
Series:Indian Journal of Dental Research
Subjects:
Online Access:http://www.ijdr.in/article.asp?issn=0970-9290;year=2009;volume=20;issue=3;spage=308;epage=312;aulast=Guiraldo
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spelling doaj-0360687becb541ff8ca90102a67e5e882020-11-24T23:02:40ZengWolters Kluwer Medknow PublicationsIndian Journal of Dental Research0970-92901998-36032009-01-01203308312Effect of different light curing units on Knoop hardness and temperature of resin compositeGuiraldo RicardoConsani SimonidesXediek Consani RafaelMendes WilsonLympius ThaisCoelho Sinhoreti Mario<b>Aim:</b> To evaluate the influence of quartz tungsten halogen and plasma arc curing (PAC) lights on Knoop hardness and change in polymerization temperature of resin composite. <b> Materials and Methods:</b> Filtek Z250 and Esthet X composites were used in the shade A3. The temperature increase was registered with Type-k thermocouple connected to a digital thermometer (Iopetherm 46). A self-cured polymerized acrylic resin base was built in order to guide the thermocouple and to support the dentin disk of 1.0 mm thickness obtained from bovine tooth. On the acrylic resin base, elastomer mold of 2.0 mm was adapted. The temperature increase was measured after composite light curing. After 24 h, the specimens were submitted to Knoop hardness test (HMV-2000, Shimadzu, Tokyo, Japan). Data were submitted to ANOVA and Tukey&#x2032;s test (a = 0.05). <b> Results:</b> For both composites, there were no significant differences (<i>P </i>> 0.05) in the top surface hardness; however, PAC promoted statistically lower (<i>P </i>&lt; 0.05) Knoop hardness number values in the bottom. The mean temperature increase showed no significant statistical differences (<i>P </i>> 0.05). <b>Conclusion:</b> The standardized radiant exposure showed no influence on the temperature increase of the composite, however, showed significant effect on hardness values.http://www.ijdr.in/article.asp?issn=0970-9290;year=2009;volume=20;issue=3;spage=308;epage=312;aulast=GuiraldoHardnessheat generationphotoactivationradiant exposuretemperature increase
collection DOAJ
language English
format Article
sources DOAJ
author Guiraldo Ricardo
Consani Simonides
Xediek Consani Rafael
Mendes Wilson
Lympius Thais
Coelho Sinhoreti Mario
spellingShingle Guiraldo Ricardo
Consani Simonides
Xediek Consani Rafael
Mendes Wilson
Lympius Thais
Coelho Sinhoreti Mario
Effect of different light curing units on Knoop hardness and temperature of resin composite
Indian Journal of Dental Research
Hardness
heat generation
photoactivation
radiant exposure
temperature increase
author_facet Guiraldo Ricardo
Consani Simonides
Xediek Consani Rafael
Mendes Wilson
Lympius Thais
Coelho Sinhoreti Mario
author_sort Guiraldo Ricardo
title Effect of different light curing units on Knoop hardness and temperature of resin composite
title_short Effect of different light curing units on Knoop hardness and temperature of resin composite
title_full Effect of different light curing units on Knoop hardness and temperature of resin composite
title_fullStr Effect of different light curing units on Knoop hardness and temperature of resin composite
title_full_unstemmed Effect of different light curing units on Knoop hardness and temperature of resin composite
title_sort effect of different light curing units on knoop hardness and temperature of resin composite
publisher Wolters Kluwer Medknow Publications
series Indian Journal of Dental Research
issn 0970-9290
1998-3603
publishDate 2009-01-01
description <b>Aim:</b> To evaluate the influence of quartz tungsten halogen and plasma arc curing (PAC) lights on Knoop hardness and change in polymerization temperature of resin composite. <b> Materials and Methods:</b> Filtek Z250 and Esthet X composites were used in the shade A3. The temperature increase was registered with Type-k thermocouple connected to a digital thermometer (Iopetherm 46). A self-cured polymerized acrylic resin base was built in order to guide the thermocouple and to support the dentin disk of 1.0 mm thickness obtained from bovine tooth. On the acrylic resin base, elastomer mold of 2.0 mm was adapted. The temperature increase was measured after composite light curing. After 24 h, the specimens were submitted to Knoop hardness test (HMV-2000, Shimadzu, Tokyo, Japan). Data were submitted to ANOVA and Tukey&#x2032;s test (a = 0.05). <b> Results:</b> For both composites, there were no significant differences (<i>P </i>> 0.05) in the top surface hardness; however, PAC promoted statistically lower (<i>P </i>&lt; 0.05) Knoop hardness number values in the bottom. The mean temperature increase showed no significant statistical differences (<i>P </i>> 0.05). <b>Conclusion:</b> The standardized radiant exposure showed no influence on the temperature increase of the composite, however, showed significant effect on hardness values.
topic Hardness
heat generation
photoactivation
radiant exposure
temperature increase
url http://www.ijdr.in/article.asp?issn=0970-9290;year=2009;volume=20;issue=3;spage=308;epage=312;aulast=Guiraldo
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AT mendeswilson effectofdifferentlightcuringunitsonknoophardnessandtemperatureofresincomposite
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