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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Efficacy of different surface treatments and universal adhesives on the microtensile bond strength of bulk-fill composite repair
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Efficacy of different surface treatments and universal adhesives on the microtensile bond strength of bulk-fill composite repair

机译:不同表面处理和通用粘合剂对散装复合材料修复微调粘合强度的疗效

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The purpose of this in vitro study was to evaluate the influence of different surface treatments and aging on the microtensile bond strength (mu TBS) of bulk-fill composite resins. Bulk-fill composites (Filtek One; 3M ESPE) randomly received five different surface treatments: (1) no treatment, control, (2) 37% phosphoric acid etching (PA), (3) 9% hydrofluoric acid etching (HF), (4) air-borne particle abrasion with 50-mu m alumina particles (Al2O3), (5) tribochemical silica coating (CoJet). Following, the specimens were divided into three subgroups according to universal adhesive applied: Clearfil Universal Bond (CU; Kuraray), Prime&Bond Universal (PBU; Dentsply Sirona), or Single Bond Universal (SBU; 3M ESPE). A nanofill composite (Filtek Ultimate; 3M ESPE) was employed as a repair. Bonded specimens were stored in water for 24 h at 37 degrees C or thermal aged, then subjected to the mu TBS test. Additionally, specimens were analyzed with a contact profilometer and were evaluated with scanning electron microscopy. Control and PA treatments were showed the lowest mu TBS (p < 0.05), and there was no significant difference between these two groups (p > 0.05). Al2O3 and CoJet treatments generally exhibited a similar influence on mu TBS values. In addition, a correlation was found between surface roughness and bond strength (r = 0.831). CoJet resulted in significantly higher repair mu TBS values when compared to the other surface treatments. In addition, the use of silane-containing universal adhesive was increased the cohesive failure rate and maintained the repair mu TBS values after thermocycling.
机译:这种体外研究的目的是评估不同表面处理和老化对批量填充复合树脂的微调制粘合强度(MU TBS)的影响。块填充复合材料(FILTEK一; 3M ESPE)随机接收五种不同的表面处理:(1)无处理,对照,(2)37%磷酸蚀刻(PA),(3)9%氢氟酸蚀刻(HF), (4)用50-mu m氧化铝颗粒(Al2O3),(5)培养基二氧化硅涂层(CoJet)的空气传播颗粒磨损。遵循后续,根据Universal粘合剂分为三个亚组:Clearfil Universal Bond(Cu; Kuraray),素质和债券普遍(PBU;浪藏Sirona),或单键通用(SBU; 3M ESPE)。纳米玻璃复合材料(FILTEK终极; 3M ESPE)作为修复。将粘合的标本在水中储存在水中,以37℃或热老化,然后进行MU TBS试验。另外,用接触轮廓仪分析样品,并用扫描电子显微镜评估。对照和PA处理显示最低MU TBS(P <0.05),这两组之间没有显着差异(P> 0.05)。 Al2O3和Cojet治疗通常对Mu TBS值表现出类似的影响。此外,在表面粗糙度和粘合强度(R = 0.831)之间发现了相关性。与其他表面处理相比,COJET导致MU TBS值显着更高。此外,使用含硅烷的通用粘合剂的使用增加了粘性的衰竭率,并在热循环后保持MU TBS值。

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