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Physical and Mechanical Properties of Visible Light Cure Composites Based on Novel Organically Modified Ceramic Resins

机译:基于新型有机改性陶瓷树脂的可见光复合材料的物理和力学性能

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Replacement of damaged tooth is necessary for proper functioning and better aesthetics. Polymeric composites based on organic resins are the most popular materials used for restoration of damaged tooth though they have many problems like polymerization shrinkage. The post gel polymerization shrinkage causes significant stresses in the surrounding tooth structure and composite tooth bonding leading to premature restoration failure. Other problems such as uncured organic monomers leaching from the dental composites into the surrounding gum tissue have been reported to cause cytotoxic effects, pulpal necrosis, requiring tooth extraction. The present paper describes the studies on visible light cure composites based on organically modified ceramic resins. Effect of different inorganic materials incorporated during resin synthesis on mechanical properties of photo cured composite was evaluated in terms of diametral tensile strength (DTS), compressive strength (CS) and surface hardness (VHN). The better properties of photocured composites based on the novel organically modified ceramic resin which are hybrid inorganic organic resins may be due to the effective bonding between the organic and inorganic parts within the resin.
机译:更换损坏的牙齿对于适当的功能和更好的美学是必要的。基于有机树脂的聚合物复合材料是用于恢复受损牙齿的最流行的材料,但是它们具有诸如聚合收缩等问题。后凝胶聚合收缩率在周围的牙齿结构和复合牙齿粘合中引起了显着的应力,从而导致过早的恢复失效。据报道,其他问题,例如未固化的有机单体从牙科复合物中浸出到周围的胶组织中,导致细胞毒性作用,牙毒性坏死,需要齿提取。本文介绍了基于有机改性陶瓷树脂的可见光固化复合材料的研究。在径向拉伸强度(DTS),压缩强度(CS)和表面硬度(VHN)方面,评估了树脂合成过程中掺入的不同无机材料对光固化复合物的力学性能。基于新型有机改性陶瓷树脂的光电化复合材料的更好性能是杂化无机有机树脂的是由于树脂内有机和无机部件之间的有效键合。

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