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Bonding of composite to water aged composite with surface treatments

机译:表面处理将复合材料粘结到水老化的复合材料上

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Objective. The purpose of this study was to determine the shear bond strength of new composite to water aged composite with and without interfacial surface treatment. Methods. Two hundred and eighty cylindrical samples were prepared for each of three resin composites (Spectrum, Dentsply; Durafill, Kulzer; Herculite, Kerr). Seventy samples of each material were bonded immediately and the remaining were stored in water. After 1, 4 and 12 weeks 70 samples were removed and the surface treated prior to bonding a second fresh increment. The treatments were: (1) no treatment, (2) abrasion with pumice, (3) a layer of Prime and Bond (Dentsply), (4) abrasion + Prime and Bond, (5) a layer of Optibond Solo Plus (Kerr), (6) abrasion + Optibond and (7) a layer of bis-GMA/TEGDMA. The specimens were loaded to failure in shear mode with a crosshead speed of 50 mm/min until fracture. The fracture surface of a number of specimens were examined in a scanning electron microscope. Results. At all time intervals the treatment that resulted in the highest bond strengths (>20MPa) was treatment with the dentine bonding agents (DBS) Prime and Bond or Optibond Solobond Plus. No treatment or abrasion alone resulted in very low bond strengths even after 1 week in water. When used in conjunction with DBS's abrasion did not increase the bond strength over the use of the DBS alone. The bis-GMA/TEGDMA was not as effective as the DBS's. Significance. When bonding new composite to composite that has been underwater it is essential to treat the original composite surface. The results of this study indicated that the application of a dentine bonding agent significantly enhanced the bond. Abrasion alone did not produce an adequate bond.
机译:目的。这项研究的目的是确定经过和不经过界面表面处理的新型复合材料对水老化复合材料的剪切粘结强度。方法。对于三种树脂复合材料(Spectrum,Dentsply; Durafill,Kulzer; Herculite,Kerr),分别准备了280个圆柱形样品。立即将每种材料的70个样品粘合在一起,其余的则存储在水中。 1、4和12周后,取出70个样品,并在粘结第二个新增量之前对表面进行处理。处理方法是:(1)不进行处理,(2)用浮石磨蚀,(3)一层Prime和Bond(Dentsply),(4)磨蚀+ Prime和Bond,(5)Optibond Solo Plus(Kerr) ),(6)耐磨+ Optibond和(7)一层bis-GMA / TEGDMA。以50mm / min的十字头速度以剪切模式将样品加载至破坏直至断裂。在扫描电子显微镜中检查了许多样品的断裂表面。结果。在所有时间间隔内,使用牙本质粘合剂(DBS)Prime和Bond或Optibond Solobond Plus进行处理的粘合强度最高(> 20MPa)。即使在水中放置1周后,没有单独的处理或磨损会导致非常低的粘结强度。与单独使用DBS一起使用时,与DBS的磨蚀结合使用不会增加粘结强度。 bis-GMA / TEGDMA不如DBS有效。意义。将新的复合材料粘合到水下的复合材料时,必须处理原始的复合材料表面。这项研究的结果表明,牙本质粘合剂的应用显着增强了粘合。单靠磨损不能产生足够的粘合力。

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