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首页> 外文期刊>Brazilian Oral Research >Dentine bond strength of a composite resin polymerized with conventional light and argon laser
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Dentine bond strength of a composite resin polymerized with conventional light and argon laser

机译:常规光和氩激光聚合的复合树脂的牙本质粘结强度

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The use of argon laser (488 nm) has been suggested as a new alternative for polymerizing adhesive materials. This study aimed to evaluate the tensile bond strength of a microfilled composite (A110, 3M) inserted by incremental technique (3 increments of 1 mm) and by single increment (3 mm) polymerized by argon laser for 10, 20 and 30 seconds and halogen light for 40 seconds. Eighty (8 groups of 10 teeth) freshly extracted bovine teeth were stored in a freezer in distilled water for one week. The crowns were cross-sectioned from the roots. Pulpectomy was performed and the pulp chambers were sealed with wax. The buccal surfaces of the teeth were ground with wet sandpaper (grains: 120, 400, and 600) to expose the surface dentin, and the teeth were then included in acrylic resin. A metal device was used to fix each sample and a black propylene matrix25 (3 mm high with an internal millimetric delimitation) was used to insert the material according to the groups studied. The polymerization intervals were of 10, 20 and 30 seconds for the laser polymerization and 40 seconds for the conventional polymerization. Tensile tests were performed by a Universal Testing Machine 4442 (Instron) at a speed of 0.5 mm/min and 500 N load. According to the methodology used, the incremental technique increased bond strength values. There was no difference between the studied polymerization techniques when resin was filled in 3 increments.
机译:已经提出使用氩激光(488nm)作为聚合粘合剂材料的新选择。这项研究旨在评估通过增量技术(3增量为1 mm)和通过单增量(3 mm)由氩激光聚合10、20和30秒并用卤素聚合的微填充复合材料(A110,3M)的拉伸粘结强度点亮40秒。将八十个(八组,每组10颗牙齿)新鲜提取的牛齿在冰箱中的蒸馏水中保存一周。牙冠从根部切开。进行牙髓切除术,并用蜡将牙髓腔密封。用湿砂纸(颗粒:120、400和600)将牙齿的颊面打磨以暴露表面的牙本质,然后将牙齿包括在丙烯酸树脂中。根据所研究的组,使用金属装置固定每个样品,并使用黑色丙烯基质25(3毫米高,内部有毫米边界)插入材料。激光聚合的聚合间隔为10、20和30秒,常规聚合的聚合间隔为40秒。用Universal Testing Machine 4442(Instron)以0.5mm / min的速度和500N的载荷进行拉伸试验。根据所使用的方法,增量技术会增加粘结强度值。当以3增量填充树脂时,所研究的聚合技术之间没有差异。

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