首页> 外文期刊>Journal of Applied Oral Science >Influence of alumina air-abrasion for highly translucent partially stabilized zirconia on flexural strength, surface properties, and bond strength of resin cement
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Influence of alumina air-abrasion for highly translucent partially stabilized zirconia on flexural strength, surface properties, and bond strength of resin cement

机译:氧化铝空气磨损对高度半透明部分稳定的氧化锆对树脂水泥的抗弯强度,表面性能和粘合强度的影响

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Objective This study aims to evaluate the influence of different air-abrasion pressures and subsequent heat treatment on the flexural strength, surface roughness, and crystallographic phases of highly translucent partially stabilized zirconia (Y-PSZ), and on the tensile bond strength of resin cement to Y-PSZ.Methodology Fully sintered zirconia specimens were ground with SiC paper (control) and/or air-abraded with 50 μm particles of alumina at 0.1, 0.15, 0.2, or 0.3 MPa or left as-sintered. After air-abrasion at 0.2 MPa (0.2AB), additional specimens were then heated to 1500°C, and held for one hour at this temperature (0.2AB+HT1h). Flexural strength and surface roughness were evaluated. Crystalline phase identification was also carried out using X-ray diffraction. Bonded zirconia specimens with self-adhesive resin cement were stored in distilled water at 37°C for 24 h, either with or without aging (thermal cycling 4-60°C/20000). Results were analyzed statistically by ANOVA and Tukey-Kramer tests.Results The flexural strength decreased with the increase in air-abrasion pressure, while in contrast, the surface roughness increased. The lowest flexural strength and the highest roughness value were found for the 0.2AB and 0.3AB groups, respectively. All groups contained cubic-, tetragonal ( t )-, and rhombohedral ( r )-ZrO2 phases with the exception of the as-sintered group. Upon increasing the air-abrasion pressure, the relative amount of the r -ZrO2 phase increased, with a significant amount of r -ZrO2 phase being detected for the 0.2AB and 0.3AB groups. The 0.2AB+HT1h group exhibited a similar flexural strength and t -ZrO2 phase content as the as-sintered group. However, the 0.2AB group showed a significantly higher tensile bond strength (p0.05) than the 0.2AB+HT1h group before and after aging.Conclusion Micromechanical retention by alumina air-abrasion at 0.2 MPa, in combination with chemical bonding of a resin to highly translucent Y-PSZ using a MDP-containing resin cement may enable durable bonding.
机译:目的本研究旨在评估不同吹气压力和随后的热处理对高度半透明部分稳定的氧化锆(Y-PSZ)的弯曲强度,表面粗糙度和晶体相的影响,以及树脂水泥的拉伸粘合强度对于Y-PSZ.methodology,将完全烧结的氧化锆标本用SiC纸(对照)研磨,和/或用50μm颗粒的氧化铝,0.1,0.15,0.2或0.3MPa或烧结。在0.2MPa(0.2Ab)下吹气后,然后将另外的样品加热至1500℃,并在该温度下保持一小时(0.2ab + HT1H)。评估弯曲强度和表面粗糙度。还使用X射线衍射进行结晶相鉴定。将具有自粘树脂水泥的粘结的氧化锆样品在37℃下储存在37℃下,24小时,无论有或没有老化(热循环4-60°C / 20000)。结果通过ANOVA和Tukey-Kramer试验进行统计分析。结果随着空气磨损压力的增加而降低,而表面粗糙度增加。对于0.2ab和0.3ab组,发现最低的弯曲强度和最高粗糙度值。除了烧结组外,所有基团含有立方,四方(T)和rhombohedral(R)-Zro2阶段。在增加吹气压力时,R-Zro2相的相对量增加,对于0.2ab和0.3ab基团,检测大量的R-Zro2相。 0.2ab + HT1H组表现出类似的弯曲强度和作为烧结组的T-ZrO2相含量。然而,0.2Ab基团比在衰老之前和之后的0.2ab + HT1H基团比0.2ab + HT1H基团显示出明显较高的拉伸粘合强度(P <0.05)。氧化铝空气磨损在0.2MPa下结合微机械保留,与树脂的化学键合并通过使用含MDP的树脂水泥的高度半透明Y-PSZ可以耐用粘合。

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