Emax Cad和E_Max压力机热循环老化后的抗弯强度评价

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摘要

目的:研究热循环老化对E-max cad和E-max压力机抗弯强度的影响。本研究的目的是评估不同热循环老化对长石陶瓷抗弯强度的影响。材料与方法:采用尺寸为16×4×2 mm的全陶瓷棒36根。根据热循环次数(TCy)将棒随机分为三组(n=6): G0-no TCy;G5000-5000次TCy, G10000-10次TCy。老化后的试样在万能试验机上以1mm/min的速度和1kgf的载荷进行三点弯曲试验,直至达到灾难性破坏。结果:力学试验得到的均值和标准差(MPa)值为:G0cad(612.12±83.16);G5000cad(445.44±34.99);G10000cad(366.34±41.30)和G0press(534.09±42.83);G5000press(428.68±17.40)和G10000press(382±38.49)。采用回归方程进行方差分析(p=0.387),发现抗弯强度与热循环次数之间存在显著相关。结论:可以得出结论,通过不同的温度循环次数,水本身的老化对长石陶瓷的抗弯强度有影响。两种类型的二硅酸锂的热循环都对其抗弯强度有负面影响,Cad陶瓷的抗弯强度下降比压力式陶瓷明显,而压力式陶瓷的抗弯强度受负面影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation the Flexural Strength of Emax Cad and E_Max Press After Thermocycling Ageing
Aim: To investigate the impact of thermocycling ageing on the flexural strength of E-max cad and E-max press The objective of this research is to evaluate the impact of aging via various thermocycling protocols on the flexural strength of a feldspathic ceramic. Material and Methods: Thirty six bars of ceramic, ivoclar e max, with dimensions of 16×4×2 mm were utilized. Bars were distributed randomly into three groups (n=6) that were defined in accordance with the number of thermal cycles (TCy): G0-no TCy; G5000-5000 cycles of TCy, G10000-10 TCy. After aging, samples were subjected to a three-point bending test in a universal test machine with a speed of 1mm/min and a load of 1kgf until the catastrophic failure was reached. Results: Concerning the mechanical test, the following values of mean and standard deviation values (MPa), were obtained: G0cad (612.12± 83.16) ; G5000cad (445.44 ± 34.99); G10000cad (366.34± 41.30) and G0press (534.09±42.83) ;G5000press (428.68±17.40) and G10000press (382±38.49).Variance analysis of was conducted using the regression equation (p=0.387) and it showed that there was a significant correlation between the flexural strength and the thermal cycles number. Conclusion: One can conclude that aging in water per se through various temperature cycles numbers has an effect on the flexural strength of a feldspathic ceramic. The thermocycling of both type of lithium disilicate has negative effect on the flexural strength, Cad ceramic showed more significant decrease in flexural strength than press ceramic which was less negatively affected.
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