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首页> 外文期刊>The Journal of Advanced Prosthodontics >Shear bond strength of luting cements to fixed superstructure metal surfaces under various seating forces
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Shear bond strength of luting cements to fixed superstructure metal surfaces under various seating forces

机译:胶合剂在各种座压力下对固定的上部结构金属表面的剪切粘结强度

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PURPOSE pIn this study, the shear bond strengths (SBS) of luting cements to fixed superstructure metal surfaces under various seating forces were investigated. MATERIALS AND METHODS pSeven different cements [Polycarboxylate (PCC), Glass-Ionomer (GIC), Zinc phospahate (ZPC), Self-adhesive resin (RXU), Resin (C&B), and Temporary cements ((RXT) and (TCS))] were bonded to a total number of 224 square blocks (5×5×3 mm) made of one pure metal [Titanium (CP Ti) and two metal alloys [Gold-Platinum (Au-Pt) and Cobalt-Chrome (Co-Cr)] under 10 N and 50 N seating forces. SBS values were determined and data were analyzed with 3-way ANOVA. Pairwise comparisons and interactions among groups were analyzed with Tukey's simultaneous confidence intervals. RESULTS pOverall mean scores indicated that Co-Cr showed the highest SBS values (1.96±0.4) ( P .00), while Au-Pt showed the lowest among all metals tested (1.57±0.4) ( P .00). Except for PCC/CP Ti, RXU/CP Ti, and GIC/Au-Pt factor level combinations ( P .00), the cements tested under 10 N seating force showed no significantly higher SBS values when compared to the values of those tested under 50 N seating force ( P .05). The PCC cement showed the highest mean SBS score (3.59±0.07) among all cements tested ( P .00), while the resin-based temporary luting cement RXT showed the lowest (0.39±0.07) ( P .00). CONCLUSION pPolycarboxylate cement provides reliable bonding performance to metal surfaces. Resin-based temporary luting cements can be used when retrievability is needed. GIC is not suitable for permanent cementation of fixed dental prostheses consisting of CP Ti or Au-Pt substructures.
机译:目的>在这项研究中,研究了在不同的就座力作用下,胶结水泥对固定的上部结构金属表面的剪切粘结强度(SBS)。材料与方法>七种不同的水泥[聚羧酸盐(PCC),玻璃离聚物(GIC),磷酸锌(ZPC),自粘树脂(RXU),树脂(C&B)以及临时水泥((RXT)和( TCS))]结合到由一种纯金属[钛(CP Ti)和两种金属合金[金-铂(Au-Pt)和钴-铬]制成的224个正方形块(5×5×3 mm) (Co-Cr)]在10 N和50 N的安装力下。确定SBS值,并使用3向ANOVA分析数据。用Tukey的同时置信区间分析组之间的成对比较和相互作用。结果>总体平均分表明,Co-Cr的SBS值最高(1.96±0.4)(P <.00),而Au-Pt的金属最低(1.57±0.4)(P <.00) )。除了PCC / CP Ti,RXU / CP Ti和GIC / Au-Pt因子水平组合(P <.00)外,在10 N承座力下测试的水泥与所测试的水泥相比,没有显示出明显更高的SBS值。低于50 N的落座力(P> .05)。在所有测试的水泥中,PCC水泥的平均SBS得分最高(3.59±0.07)(P <.00),而树脂基临时胶结水泥RXT的最低(0.39±0.07)(P <.00)。结论>聚羧酸盐水泥提供了对金属表面的可靠粘合性能。当需要可回收性时,可以使用树脂基临时性胶泥。 GIC不适合用于永久固定由CP Ti或Au-Pt子结构组成的固定义齿。

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