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Shear bond strengths of an indirect composite layering material to a tribochemically silica-coated zirconia framework material

机译:间接复合层状材料与摩擦化学二氧化硅涂覆的氧化锆骨架材料的剪切粘结强度

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This study evaluated shear bond strengths of a layering indirect composite material to a zirconia framework material treated with tribochemical silica coating. Zirconia disks were divided into two groups: ZR-PRE (airborne-particle abrasion) and ZR-PLU (tribochemical silica coating). Indirect composite was bonded to zirconia treated with one of the following primers: Clearfil Ceramic Primer (CCP), Clearfil Mega Bond Primer with Clearfil Porcelain Bond Activator (MGP+Act), ESPE-Sil (SIL), Estenia Opaque Primer, MR. Bond, Super-Bond PZ Primer Liquid A with Liquid B (PZA+PZB), and Super-Bond PZ Primer Liquid B (PZB), or no treatment. Shear bond testing was performed at 0 and 20,000 thermocycles. Post-thermocycling shear bond strengths of ZR-PLU were higher than those of ZR-PRE in CCP, MGP+Act, SIL, PZA+PZB, and PZB groups. Application of silane yielded better durable bond strengths of a layering indirect composite material to a tribochemically silica-coated zirconia framework material.
机译:这项研究评估了层状间接复合材料对用摩擦化学二氧化硅涂层处理过的氧化锆骨架材料的剪切粘结强度。氧化锆圆盘分为两组:ZR-PRE(空气颗粒磨损)和ZR-PLU(摩擦化学二氧化硅涂层)。间接复合材料粘结到用以下底漆之一处理的氧化锆上:Clearfil陶瓷底漆(CCP),带有Clearfil瓷键活化剂的Clearfil Mega Bond底漆(MGP + Act),ESPE-Sil(SIL),Estenia不透明底漆,MR。使用液体B(PZA + PZB)和Super-Bond PZ底漆液体B(PZB)进行键合,Super-Bond PZ底漆液体A或不进行处理。剪切粘结测试在0和20,000个热循环下进行。在CCP,MGP + Act,SIL,PZA + PZB和PZB组中,ZR-PLU的热循环后剪切结合强度高于ZR-PRE。硅烷的施加产生了层状间接复合材料与摩擦化学二氧化硅涂覆的氧化锆骨架材料的更好的持久粘合强度。

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