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不同表面处理对复合树脂与钛粘结强度的影响。

Shear bond strength of composite resin to titanium according to various surface treatments.

机构信息

Graduate Student, Department of Prosthodontics, Graduate School, Chonnam National University, Gwangju, Korea.

出版信息

J Adv Prosthodont. 2009 Jul;1(2):68-74. doi: 10.4047/jap.2009.1.2.68. Epub 2009 Jul 31.

Abstract

STATEMENT OF PROBLEM

When veneering composite resin-metal restoration is prepared, the fact that bond strength between Ti and composite resin is relatively weak should be considered.

PURPOSE

The purpose of this study is to evaluate the shear bond strength between the veneering composite resin and commercial pure (CP) Ti / Ti-6Al-4V alloy according to the method of surface treatment.

MATERIAL AND METHODS

The disks were cast by two types of metal. Their surfaces were treated by sandblasting, metal conditioner, TiN coating and silicoating respectively. After surface treatment, the disks were veneered by composite resin (Tescera™, Bisco, USA) which is 5 mm in diameter and 3 mm in thickness. The specimens were stored in water at 25℃ for 24 hours, and then evaluated for their shear bond strength by universal testing machine (STM-5®, United Calibration, USA). These values were statistically analyzed.

RESULTS

  1. All methods of surface treatment were used in this study satisfied the requirements of ISO 10477 which is the standard of polymer-based crown and bridge materials. 2. The metal conditioner treated group showed the highest value in shear bond strength of CP Ti, silicoated group, TiN coated group, sandblasted group, in following order. 3. The silicoated group showed the highest value in shear bond strength of Ti-6Al-4V alloy, metal conditioner treated group, sandblasted group, TiN coated group, in following order.

CONCLUSION

Within the limitations of this study, all methods of surface treatment used in this study are clinically available.

摘要

问题陈述

当准备复合树脂-金属修复体的贴面时,应考虑 Ti 与复合树脂之间的结合强度相对较弱这一事实。

目的

本研究的目的是根据表面处理方法评估贴面复合树脂与商用纯(CP)Ti/Ti-6Al-4V 合金之间的剪切结合强度。

材料和方法

将两种类型的金属浇铸成圆盘。它们的表面分别通过喷砂、金属调节剂、TiN 涂层和硅烷涂层进行处理。经过表面处理后,用直径为 5mm、厚度为 3mm 的复合树脂(Tescera™,Bisco,美国)贴面圆盘。将试件在 25℃的水中储存 24 小时,然后用万能试验机(STM-5®,联合校准,美国)评估其剪切结合强度。对这些值进行了统计分析。

结果

  1. 本研究中使用的所有表面处理方法均满足聚合物基冠桥材料标准 ISO 10477 的要求。2. 金属调节剂处理组的 CP Ti 的剪切结合强度最高,硅烷涂层组、TiN 涂层组、喷砂组依次降低。3. 硅烷涂层组的 Ti-6Al-4V 合金的剪切结合强度最高,金属调节剂处理组、喷砂组、TiN 涂层组依次降低。

结论

在本研究的限制范围内,本研究中使用的所有表面处理方法在临床上均可用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d166/2994681/aba314a371e4/jap-1-68-g001.jpg

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