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Effect of the type of acidic monomer on the bond durability of two-bottle type ceramic primer

机译:酸性单体类型对两瓶型陶瓷底漆粘结耐久性的影响

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摘要

Ceramic primers consisting of γ-methacryloxypropyl trimethoxysilane (γ-MPS) and either 4-methacryloyloxyethyl trimellitate (4-MET) or 10-methacryloyloxydecyl dihydrogen phosphate (MDP) are useful for facilitating bonding of resin cement to silica-based ceramic surfaces. However, bond stability at the resin-ceramic interface differs among commercial ceramic primers. To determine the ability of 4-MET or MDP to hydrolyze the methoxy group in γ-MPS, the author designed two-bottle experimental ceramic primers comprising γ-MPS solution and an activator solution of 4-MET or MDP. The effects of the type of acidic monomer on contact angle and ceramic bond durability of resin were investigated. MDP and 4-MET promoted chemisorption of γ-MPS on the ceramic surface and enhanced the ceramic bond strength of the resin. However, thermocycling decreased ceramic bond strengths, as reflected by the increased number of bonded specimens that exhibited interfacial resin failure. Bond strength was greater for 4-MET-activated ceramic primer than for the MDP-activated ceramic primer, although most bonded specimens exhibited interfacial resin failure. Degradation behavior differed between the 4-MET-activated and MDP-activated ceramic primers.
机译:由γ-甲基丙烯酰氧基丙基三甲氧基硅烷(γ-MPS)和偏苯四酸4-甲基丙烯酰氧基氧乙基酯(4-MET)或10-甲基丙烯酰氧基氧癸基磷酸二氢盐(MDP)组成的陶瓷底漆可用于促进树脂胶粘剂与二氧化硅基陶瓷表面的粘合。但是,在市售的陶瓷底漆中,树脂-陶瓷界面的结合稳定性不同。为了确定4-MET或MDP水解γ-MPS中甲氧基的能力,作者设计了两瓶实验陶瓷底漆,其中包括γ-MPS溶液和4-MET或MDP活化剂溶液。研究了酸性单体类型对树脂的接触角和陶瓷结合耐久性的影响。 MDP和4-MET促进了γ-MPS在陶瓷表面的化学吸附并增强了树脂的陶瓷结合强度。然而,热循环降低了陶瓷结合强度,这表现为界面树脂破坏的结合样品数量增加。尽管大多数粘结样品表现出界面树脂破坏,但4-MET活化陶瓷底漆的粘结强度比MDP活化陶瓷底漆的粘结强度更高。 4-MET活化和MDP活化的陶瓷底漆的降解行为不同。

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