<?xml version="1.0" encoding="utf-8"?>
<journal>
<title>2</title>
<title_fa>1</title_fa>
<short_title>3</short_title>
<subject>Literature &amp; Humanities</subject>
<web_url>http://idai.ir</web_url>
<journal_hbi_system_id>1</journal_hbi_system_id>
<journal_hbi_system_user>admin</journal_hbi_system_user>
<journal_id_issn>9</journal_id_issn>
<journal_id_issn_online>10</journal_id_issn_online>
<journal_id_pii>8</journal_id_pii>
<journal_id_doi>7</journal_id_doi>
<journal_id_iranmedex></journal_id_iranmedex>
<journal_id_magiran></journal_id_magiran>
<journal_id_sid>14</journal_id_sid>
<journal_id_nlai>8888</journal_id_nlai>
<journal_id_science>13</journal_id_science>
<language>fa</language>
<pubdate>
	<type>jalali</type>
	<year>1390</year>
	<month>10</month>
	<day>1</day>
</pubdate>
<pubdate>
	<type>gregorian</type>
	<year>2012</year>
	<month>1</month>
	<day>1</day>
</pubdate>
<volume>0</volume>
<number>ترمیمی</number>
<publish_type>online</publish_type>
<publish_edition>1</publish_edition>
<article_type>fulltext</article_type>
<articleset>
	<article>


	<language>fa</language>
	<article_id_doi></article_id_doi>
	<title_fa>Testing rate and cementation seating load effects on resin-strengthening of a dental porcelain analogue</title_fa>
	<title></title>
	<subject_fa>ترمیمی</subject_fa>
	<subject>Cosmetic and Restorative Dentistry </subject>
	<content_type_fa>پژوهشي</content_type_fa>
	<content_type>Research</content_type>
	<abstract_fa>&lt;p&gt; &lt;strong&gt;Objectives&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;  To determine the resin-strengthening dependence of a soda-lime-glass analogue for dental porcelain as a function of biaxial flexure strength (BFS), test crosshead rate and cementation seating load. &lt;/p&gt;&lt;p&gt; &lt;strong&gt;Methods&lt;/strong&gt; &lt;/p&gt;&lt;p&gt; Disc-shaped soda-lime glass specimens were divided into twelve groups (n=24), alumina particle air abraded and hydrofluoric acid-etched. Specimens (Groups A–D) were stored in a desiccator prior to testing at crosshead rates of 0.01, 0.1, 1 and 10mm/min, respectively. The remaining specimens were silane treated, Rely-X Veneer resin-coated with a seating load of 5N (Groups E–H) and 30N (Groups I–L) prior to light irradiation at 480±20mW/cm2, 24h dry storage and BFS testing at 0.01, 0.1, 1 and 10mm/min, respectively. A linear logarithmic regression curve was fit to the raw data to elucidate static fatigue effects of the soda-lime-glass. Analysis of group means was performed utilising a general linear model univariate analysis and post hoc all paired Tukey tests (P&lt;0.05). &lt;/p&gt;&lt;p&gt; &lt;strong&gt;Results&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;  The linear logarithmic regression curve demonstrated the static fatigue effects of the soda-lime-glass analogue. Rely-X Veneer resin-coating (Groups E–L) resulted in significant increases in the mean BFS data for all crosshead rates examined (all P&lt;0.001). However, the pattern of rate dependence effects on resin-cementation deviated from the log relationship observed with the uncoated controls. &lt;/p&gt;&lt;p&gt; &lt;strong&gt;Conclusion&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;  This study further highlights that when slow crack growth is simulated during testing, valuable insights into the significant modification of a hereto well described phenomenon such as resin-strengthening mediated by the resin–ceramic hybrid layer is provided. &lt;/p&gt;&lt;hr&gt;&lt;p&gt;&lt;/p&gt;&lt;p&gt; &lt;strong&gt;Source: &lt;/strong&gt;Journal of Dentistry&lt;/p&gt;&lt;p&gt; &lt;a href=&quot;http://www.jodjournal.com/article/S0300-5712(13)00074-2/abstract&quot; target=&quot;_blank&quot;&gt;&lt;font color=&quot;#0000ff&quot;&gt;Full Text&lt;/font&gt;&lt;/a&gt;&lt;/p&gt;</abstract_fa>
	<abstract></abstract>
	<keyword_fa>Biaxial flexure strength, Resin-based composite, Soda-lime-glass</keyword_fa>
	<keyword></keyword>
	<start_page>0</start_page>
	<end_page>0</end_page>
	<web_url>http://idai.ir/browse.php?a_code=A-10-32-2159&amp;slc_lang=fa&amp;sid=1</web_url>


<author_list>
	<author>
	<first_name>Paul</first_name>
	<middle_name></middle_name>
	<last_name>Hooi</last_name>
	<suffix></suffix>
	<first_name_fa></first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa></last_name_fa>
	<suffix_fa></suffix_fa>
	<email></email>
	<code>100319475328460010141</code>
	<orcid>100319475328460010141</orcid>
	<coreauthor>Yes
</coreauthor>
	<affiliation>Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Lincoln Place, Trinity College Dublin, Ireland</affiliation>
	<affiliation_fa></affiliation_fa>
	 </author>


	<author>
	<first_name>Owen</first_name>
	<middle_name></middle_name>
	<last_name>Addison</last_name>
	<suffix></suffix>
	<first_name_fa></first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa></last_name_fa>
	<suffix_fa></suffix_fa>
	<email></email>
	<code>100319475328460010142</code>
	<orcid>100319475328460010142</orcid>
	<coreauthor>No</coreauthor>
	<affiliation>Biomaterials Unit, School of Dentistry, College of Medical and Dental Sciences, University of Birmingham, Birmingham B4 6NN, UK</affiliation>
	<affiliation_fa></affiliation_fa>
	 </author>


	<author>
	<first_name>Gary</first_name>
	<middle_name></middle_name>
	<last_name>J.P.Fleming</last_name>
	<suffix></suffix>
	<first_name_fa></first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa></last_name_fa>
	<suffix_fa></suffix_fa>
	<email></email>
	<code>100319475328460010143</code>
	<orcid>100319475328460010143</orcid>
	<coreauthor>No</coreauthor>
	<affiliation>Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Lincoln Place, Trinity College Dublin, Ireland</affiliation>
	<affiliation_fa></affiliation_fa>
	 </author>


</author_list>


	</article>
</articleset>
</journal>
