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Analysis of Self-Adhesive Resin Cement Microshear Bond Strength on Leucite-Reinforced Glass-Ceramic with/without Pure Silane Primer or Universal Adhesive Surface Treatment

机译:有/无纯硅烷底漆或通用胶粘剂表面处理的白云石增强玻璃陶瓷自粘树脂水泥的微剪切粘结强度分析

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摘要

Objective. To evaluate the microshear bond strength (μSBS) of self-adhesive resin (SA) cement on leucite-reinforced glass-ceramic using silane or universal adhesive. Materials and Methods. Ceramic blocks were etched with 9.5% hydrofluoric acid and divided into three groups (n = 16): (1) negative control (NC) without treatment; (2) Single Bond Universal (SBU); (3) RelyX Ceramic Primer as positive control (PC). RelyX Unicem resin cement was light-cured, and μSBS was evaluated with/without thermocycling. The μSBS was analyzed using one-way analysis of variance. The fractured surfaces were examined using stereomicroscopy and scanning electron microscopy (SEM). Results. Without thermocycling, μSBS was highest for PC (30.50 MPa ± 3.40), followed by SBU (27.33 MPa ± 2.81) and NC (20.18 MPa ± 2.01) (P < 0.05). Thermocycling significantly reduced μSBS in SBU (22.49 MPa ± 4.11) (P < 0.05), but not in NC (20.68 MPa ± 4.60) and PC (28.77 MPa ± 3.52) (P > 0.05). PC and NC predominantly fractured by cohesive failure within the ceramic and mixed failure, respectively. Conclusion. SBU treatment improves μSBS between SA cement and glass ceramics, but to a lower value than PC, and the improvement is eradicated by thermocycling. NC exhibited the lowest μSBS, which remained unchanged after thermocycling.
机译:目的。为了评估使用硅烷或通用胶粘剂在白云石增强的玻璃陶瓷上的自粘树脂(SA)水泥的微剪切粘结强度(μSBS)。材料和方法。陶瓷块用9.5%的氢氟酸蚀刻,分为三组(n = 16):(1)未经处理的阴性对照(NC); (2)单键通用(SBU); (3)RelyX Ceramic Primer作为阳性对照(PC)。将RelyX Unicem树脂水泥光固化,并在有/无热循环的情况下评估μSBS。使用单向方差分析对μSBS进行分析。使用立体显微镜和扫描电子显微镜(SEM)检查断裂的表面。结果。如果不进行热循环,则PC的μSBS最高(30.50)MPa±3.40),其次是SBU(27.33 MPa±2.81)和NC(20.18 MPa±2.01)(P <0.05)。热循环显着降低了SBU中的μSBS(22.49)MPa±4.11)(P <0.05),而在NC(20.68 MPa±4.60)和PC(28.77 MPa±3.52)中没有降低(S> 0.05)。 PC和NC主要由于陶瓷内部的内聚破坏和混合破坏而破裂。结论。 SBU处理可改善SA水泥和玻璃陶瓷之间的μSBS,但其值低于PC,并且通过热循环可消除这种改善。 NC的μSBS最低,热循环后保持不变。

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