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首页> 外文期刊>Journal of dentistry >Thermo and mechanical cycling and veneering method do not influence Y-TZP core/veneer interface bond strength
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Thermo and mechanical cycling and veneering method do not influence Y-TZP core/veneer interface bond strength

机译:热力和机械循环及贴面方法不影响Y-TZP芯/贴面界面粘合强度

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Objectives: The purpose of this study was to evaluate the influence of thermal and mechanical cycling and veneering technique on the shear bond strength of Y-TZP (yttrium oxide partially stabilized tetragonal zirconia polycrystal) core-veneer interfaces. Materials and methods: Cylindrical Y-TZP specimens were veneered either by layering (n = 20) or by pressing technique (n = 20). A metal ceramic group (CoCr) was used as control (n = 20). Ten specimens for each group were thermal and mechanical cycled and then all samples were subjected to shear bond strength in a universal testing machine with a 0.5 mm/min crosshead speed. Mean shear bond strength (MPa) was analysed with a 2-way analysis of variance and Tukey's test (p < 0.05). Failure mode was determined using stereomicroscopy and scanning electron microscopy (SEM). Results: Thermal and mechanical cycling had no influence on the shear bond strength for all groups. The CoCr group presented the highest bond strength value (p < 0.05) (34.72 ± 7.05 MPa). There was no significant difference between Y-TZP veneered by layering (22.46 ± 2.08 MPa) or pressing (23.58 ± 2.1 MPa) technique. Failure modes were predominantly adhesive for CoCr group, and cohesive within veneer for Y-TZP groups. Conclusions: Thermal and mechanical cycling, as well as the veneering technique does not affect Y-TZP core-veneer bond strength. Clinical significance: Different methods of veneering Y-TZP restorations would not influence the clinical performance of the core/veneer interfaces.
机译:目的:本研究的目的是评估热,机械循环和饰面技术对Y-TZP(氧化钇部分稳定的四方氧化锆多晶体)芯-导板界面的剪切粘结强度的影响。材料和方法:通过分层(n = 20)或通过压制技术(n = 20)对圆柱状的Y-TZP标本进行贴面。使用金属陶瓷基团(CoCr)作为对照(n = 20)。每组十个样品进行热循环和机械循环,然后在万能试验机中以0.5 mm / min的十字头速度对所有样品进行剪切粘结强度测试。通过2方差分析和Tukey检验分析平均剪切粘结强度(MPa)(p <0.05)。使用立体显微镜和扫描电子显微镜(SEM)确定失效模式。结果:热和机械循环对所有组的剪切粘结强度均没有影响。 CoCr组的粘结强度值最高(p <0.05)(34.72±7.05 MPa)。分层(22.46±2.08 MPa)或压制(23.58±2.1 MPa)技术贴合的Y-TZP之间没有显着差异。失效模式主要是对CoCr组来说是粘附性的,对于Y-TZP组来说是单板内聚性的。结论:热循环和机械循环以及贴面技术不会影响Y-TZP芯-贴片的粘结强度。临床意义:对Y-TZP修复进行饰面的不同方法不会影响核心/导板界面的临床性能。

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