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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 >Microshear bond strength of contemporary self-adhesive resin cements to CAD/CAM restorative materials: effect of surface treatment and aging
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Microshear bond strength of contemporary self-adhesive resin cements to CAD/CAM restorative materials: effect of surface treatment and aging

机译:当代自粘树脂水泥对CAD / CAM恢复材料的微粘键强度:表面处理和老化的影响

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The objective of this in vitro study was to investigate the effect of material type, resin cement type, surface treatment, and aging on the microshear bond strength (mu SBS) of self-adhesive resin cements (SARCs) to CAD/CAM blocks. CAD/CAM blocks (CeraSmart, CS; Lava Ultimate, LU; Shofu Block HC, HC; Vita Enamic, VE; Vitablocks Mark II, VM) were cut into 3-mm thick slices (96 specimens for each) and divided into groups: no treatment; 9% hydrofluoric acid etching; aluminum-oxide sandblasting; CoJet sandblasting. Following, the specimens were divided into three subgroups according to SARCs applied. Each specimen received four resin cement microtubules (n = 32 per subgroup). After 24 h, the cylinders of SARC were equally assigned into two groups (n = 16): immediate mu SBS testing and mu SBS testing after thermocycling. A shear force was applied to the adhesive interface through a mu SBS testing device. Additionally, specimens were analyzed with a contact profilometer and were evaluated with scanning electron microscopy. The data were analyzed using four-way ANOVA, p < 0.05. Material type, resin cement type, surface treatment, and aging influenced the mu SBS values (p < 0.001). A significant decrease in mu SBS was recorded for all groups after thermocycling. The most common failure mode was detected as an adhesive failure. The surface treatment and material type influenced the surface roughness with a significant interaction. Sandblasting was more successful for CS, LU, and HC, while HF etching was better for VE and VM. The use of MDP-containing SARCs would be advantageous for the zirconia-containing CAD/CAM materials (LU and HC).
机译:本体外研究的目的是研究材料类型、树脂胶结类型、表面处理和老化对自粘树脂胶结物(SARC)与CAD/CAM块的微剪切粘结强度(mu-SBS)的影响。CAD/CAM试块(CeraSmart,CS;Lava Ultimate,LU;Shofu试块HC,HC;Vita Enamic,VE;Vita试块Mark II,VM)被切割成3 mm厚的切片(每个96个样本),并分为两组:不治疗;9%氢氟酸腐蚀;氧化铝喷砂;喷沙。随后,根据应用的SARC将标本分为三个亚组。每个样本接受四个树脂水泥微管(每个亚组n=32)。24小时后,将SARC圆柱体平均分为两组(n=16):立即mu SBS测试和热循环后的mu SBS测试。通过mu SBS测试装置向粘合剂界面施加剪切力。此外,用接触式轮廓仪分析样本,并用扫描电子显微镜进行评估。数据采用四因素方差分析,p<0.05。材料类型、树脂水泥类型、表面处理和老化影响mu SBS值(p<0.001)。热循环后,所有组的mu SBS均显著降低。最常见的故障模式被检测为粘合剂故障。表面处理和材料类型对表面粗糙度有显著影响。喷砂对于CS、LU和HC更为成功,而HF蚀刻对于VE和VM更为成功。使用含MDP的SARC将有利于含氧化锆的CAD/CAM材料(LU和HC)。

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