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Evaluation of the Bonding Strength between Various Dental Zirconia Models and Human Teeth for Dental Posts through In Vitro Aging Tests

机译:通过体外老化试验评估各种牙科氧化锆模型和人体牙齿的粘合强度

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In dentistry, root canal treatment reduces support of the tooth, making it necessary to insert a cylindrical body into the treated tooth to strengthen the crown. In the past, metal or fiberglass was often used. However, metal is too different in color from teeth, so the esthetics are poor, and fiberglass is not as strong as metal. Therefore, an alternative is zirconia, which has the characteristics of high light transmittance, esthetics, good biocompatibility, and high breaking strength. The surface morphology and composition of zirconia ceramics are the key to their bond strength with teeth. Therefore, in this study, the surface characteristics of different brands of zirconia commonly used in clinical practice were evaluated in terms of their surface morphology and surface elements. The surface was modified by sandblasting, and its effect on the bonding strength was discussed. Finally, the stability of the material was evaluated through artificial aging. The results showed that the surface roughness of the zirconia specimens increased after sandblasting, whereas the surface microhardness decreased. The shear test results showed that the 3D shape of the zirconia surface could help improve the bonding strength. The bonding strength of DeguDent increased the most after sandblasting. After 20,000 cycles of aging treatment, the shear strength of each specimen decreased. Field emission scanning electron microscopy results showed that the adhesive remained intact on the surface of zirconia, indicating that adhesion failure occurred between the adhesive and the teeth. This confirms that sandblasting can improve the bonding strength of zirconia. Based on the results obtained, it was concluded that the surface roughness of zirconia is the main factor affecting the bond strength.
机译:在牙科,根管治疗减少了牙齿的支撑,使得必须将圆柱体插入处理的牙齿以加强冠部。在过去,通常使用金属或玻璃纤维。然而,金属在牙齿上的颜色太大,因此美学差,玻璃纤维不像金属那么强。因此,替代是氧化锆,具有高透光率,美学,良好的生物相容性和高断裂强度的特点。氧化锆陶瓷的表面形态和组成是它们牙齿粘合强度的关键。因此,在本研究中,根据其表面形态和表面元素评估临床实践中常用于临床实践中的不同品牌的表面特征。通过喷砂改性表面,讨论了其对粘合强度的影响。最后,通过人工衰老评估材料的稳定性。结果表明,喷砂后氧化锆样品的表面粗糙度增加,而表面显微硬度降低。剪切测试结果表明,氧化锆表面的3D形状有助于提高粘合强度。喷砂后,增进的粘合强度增加了最多。经过20,000个循环的老化处理后,每个样品的剪切强度降低。场发射扫描电子显微镜结果表明,粘合剂在氧化锆表面上保持完整,表明在粘合剂和牙齿之间发生粘合失败。这证实喷砂可以提高氧化锆的粘合强度。基于所得的结果,得出结论是氧化锆的表面粗糙度是影响粘合强度的主要因素。

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