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使用八种金属调节剂和一种表面改性技术将修复性复合材料粘结到Ti-6Al-7Nb合金上。

Bonding of prosthetic composite material to Ti-6Al-7Nb alloy with eight metal conditioners and a surface modification technique.

作者信息

Yanagida H, Matsumura H, Atsuta M

机构信息

Department of Fixed Prosthodontics, Nagasaki University School of Dentistry, Japan.

出版信息

Am J Dent. 2001 Oct;14(5):291-4.

Abstract

PURPOSE

The purpose of the current study was to evaluate the adhesive performance of metal conditioners and a surface modification system when used for bonding between a prosthetic composite material and a titanium alloy.

MATERIALS AND METHODS

Eight metal conditioners (Acryl Bond, All-Bond 2 Primer B, Alloy Primer, Ces II Opaque Primer, Eye Sight Opaque Primer, Metafast Bonding Liner, Metal Primer II, and MR Bond) and a bonding system (Siloc) were assessed. Cast disk specimens made of a titanium alloy (Ti-6Al-7Nb, T-Alloy Tough) were either primed with one of the eight primers or treated with the Siloc system and bonded with a light-activated prosthetic composite material (Artglass). Shear bond strengths were determined both before and after thermocycling (4 C-60 C, 60 s each, 20,000 cycles) for evaluation of the durability of the bonds.

RESULTS

The results showed that the Siloc-treated group recorded the greatest post-thermocycling bond strength, followed by the two groups conditioned with the Cesead II Opaque Primer and Alloy Primer agents, both of which contain an identical hydrophobic phosphate-methacrylate functional monomer.

摘要

目的

本研究的目的是评估金属调节剂和一种表面改性系统在用于修复性复合材料与钛合金之间的粘结时的粘结性能。

材料与方法

评估了八种金属调节剂(丙烯酸粘结剂、全粘结2底漆B、合金底漆、Ces II不透明底漆、视力不透明底漆、Metafast粘结衬层、金属底漆II和MR粘结剂)和一种粘结系统(Siloc)。由钛合金(Ti-6Al-7Nb,T合金坚韧型)制成的铸盘试样,要么用八种底漆中的一种进行底漆处理,要么用Siloc系统处理,然后与光固化修复性复合材料(Artglass)粘结。在热循环(4℃-60℃,每次60秒,20000次循环)前后测定剪切粘结强度,以评估粘结的耐久性。

结果

结果表明,经Siloc处理的组在热循环后的粘结强度最高,其次是用Cesad II不透明底漆和合金底漆处理的两组,这两种底漆都含有相同的疏水性磷酸甲基丙烯酸酯功能单体。

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