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 >A study of compressive strength betweenzirconia framework and veneering ceramic as a function ofthermal expansion coefficient using Shell-Nielsen test method
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A study of compressive strength betweenzirconia framework and veneering ceramic as a function ofthermal expansion coefficient using Shell-Nielsen test method

机译:壳-尼尔森试验法研究氧化锆骨架与饰面陶瓷之间的抗压强度与热膨胀系数的关系

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摘要

This study investigated the adhesion between zirconia framework and four veneering ceramic (VC) materials with varying coefficients of thermal expansions (CTE). Zirconia rods (N = 40) (ICE Zirkon) (diameter: 4mm, height: 20mm) were milled and sintered. After firing, the zirconia rods were air-abraded and cleaned. They were randomly assigned to receive four VCs (n = 10/group), namely (a) Vita VM9 (VZ; 9-9.2 x 10(-6 )K(-1)), (b) Cerabien ZR (CZ; 9.1 x 10(-6) K-1), (c) Matchmaker ZR (MM; 9.4 x 10(-6 )K(-1)), and (d) Ice Zirconia Ceramic (IZ; 9.6 x 10(-6 )K(-1)). The VCs were then fired onto zirconia rods (height: 2mm, thickness: 2mm) circumferentially and were thermocycled for 6000 times (5/55 degrees C, dwell time: 30 s). Specimens were loaded from the top of the zirconia rods (0.5mm/min) in a universal testing machine until debonding. Shell-Nielsen bond strength values were calculated (MPa). Failure types were evaluated under SEM. The data were statistically analyzed (one-way ANOVA, Tukey's; alpha = 0.05). Weibull distribution values including the Weibull modulus (m) (0.05) was calculated. The highest mean bond strength (MPa) was obtained for CZ (42.08 +/- 4.08), followed by VZ (41.77 +/- 4.92), MM (40.7 +/- 3.64), and IZ (40.05 +/- 5.78). While mean bond strength for VZ, MM, and IZ were not significantly different (p > 0.05), CZ was significantly higher than that of IZ (p < 0.05). The lowest shape value was for VZ (m = 16.94) and the highest for MM (m = 20.16). Mainly, adhesive failures followed by mixed failures were observed. VCs with a greater mismatch of CTE with the zirconia framework exhibited similar Shell-Nielsen bond strength to those with fewer mismatches. CTE mismatch did not affect the results of CZ (9.1 x 10(-6)K(-1)) and IZ (9.6 x 10(-6)K(-1)).
机译:这项研究调查了氧化锆框架与四种具有不同热膨胀系数(CTE)的饰面陶瓷(VC)材料之间的粘附性。氧化锆棒(N = 40)(ICE Zirkon)(直径:4mm,高度:20mm)被研磨和烧结。烧制后,将氧化锆棒进行空气研磨和清洁。他们被随机分配接受四个VC(n = 10 /组),即(a)Vita VM9(VZ; 9-9.2 x 10(-6)K(-1)),(b)Cerabien ZR(CZ; 9.1) x 10(-6)K-1),(c)红娘ZR(MM; 9.4 x 10(-6)K(-1))和(d)冰氧化锆陶瓷(IZ; 9.6 x 10(-6)) K(-1))。然后将VC沿周向烧制在氧化锆棒(高2mm,厚2mm)上,并热循环6000次(5/55摄氏度,停留时间:30 s)。从氧化锆棒的顶部(0.5mm / min)在通用测试机中加载样品直至脱粘。计算出壳-尼尔森粘结强度值(MPa)。失效类型在SEM下评估。对数据进行统计分析(单向方差分析,Tukey;α= 0.05)。计算包括威布尔模量(m)(0.05)的威布尔分布值。对于CZ(42.08 +/- 4.08),其次是VZ(41.77 +/- 4.92),MM(40.7 +/- 3.64)和IZ(40.05 +/- 5.78),获得了最高的平均粘结强度(MPa)。尽管VZ,MM和IZ的平均粘结强度没有显着差异(p> 0.05),但CZ明显高于IZ(p <0.05)。最低的形状值是VZ(m = 16.94),最高的是MM(m = 20.16)。主要观察到粘合失败,然后是混合失败。 CTE与氧化锆骨架错配率更高的VC与那些错配率更低的VC表现出相似的Shell-Nielsen键强度。 CTE不匹配不会影响CZ(9.1 x 10(-6)K(-1))和IZ(9.6 x 10(-6)K(-1))的结果。

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