首页> 外文期刊>Dental materials >Adhesion properties in systems of laminated pigmented polymers, carbon-graphite fiber composite framework and titanium surfaces in implant suprastructures
【24h】

Adhesion properties in systems of laminated pigmented polymers, carbon-graphite fiber composite framework and titanium surfaces in implant suprastructures

机译:层状有色聚合物,碳-石墨纤维复合骨架和植入物超结构中钛表面的体系中的粘合性能

获取原文
获取原文并翻译 | 示例
       

摘要

Objective. For long-term stability the adhering interfaces of an implant-retained supraconstruction of titanium/carbon-graphite fiber-reinforced (CGFR) polymer/opaquer layer/denture base polymer/denture teeth must function as a unity. The aim was to evaluate adhesion of CGFR polymer to a titanium surface or CGFR polymer to two different opaquer layers/with two denture base polymers.rnMaterials and methods. Titanium plates were surface-treated and silanized and combined with a bolt of CGFR polymer or denture base polymer (Probase Hot). Heat-polymerized plates of CGFR polymer (47 wt% fiber) based on poly(methyl methacrylate) and a copolymer matrix were treated with an opaquer (Sinfony or Ropak) before a denture base polymer bolt was attached (Probase Hot or Lucitone 199). All specimens were heat-polymerized, water saturated (200 days) and thermally cycled (5000 cycles, 5/55 ℃) before shear bond testing. Results. Silicatized titanium surfaces gave higher bond strength to CGFR polymer (16.2 ± 2.34 and 18.6 ± 1.32) MPa and cohesive fracture than a sandblasted surface (5.9 ± 2.11) MPa where the fracture was adhesive. The opaquer Sinfony gave higher adhesion values and mainly cohesive fractures than the opaquer Ropak. Different surface treatments (roughened or polished) of the CGFR polymer had no effect on bond strength.rnSignificance. The fracture surfaces of silicatized titanium/CGFR polymer/opaquer layer (Sin-fony)/denture base polymers were mainly cohesive. A combination of these materials in an implant-retained supraconstruction is promising for in vivo evaluation.
机译:目的。为了长期稳定,钛/碳石墨纤维增强(CGFR)聚合物/不透明层/义齿基体聚合物/义齿的植入物保留的超结构的粘附界面必须起整体作用。目的是评估CGFR聚合物对钛表面的粘附力或CGFR聚合物对两个不同的不透明层/具有两个义齿基料聚合物的粘附力。材料和方法。钛板经过表面处理和硅烷化处理,然后与CGFR聚合物或义齿基础聚合物(Probase Hot)的螺栓结合。在连接义齿基础聚合物螺栓之前(Probase Hot或Lucitone 199),用不透明漆(Sinfony或Ropak)处理基于聚(甲基丙烯酸甲酯)的CGFR聚合物(47%纤维)和共聚物基质的热聚合板。在剪切粘结测试之前,将所有样品进行热聚合,水饱和(200天)和热循环(5000个循环,5/55℃)。结果。硅化钛表面与CGFR聚合物(16.2±2.34和18.6±1.32)MPa的粘结强度和粘结性断裂的强度比喷砂表面(5.9±2.11)MPa的粘结性更高。与不透明的Ropak相比,不透明的Sinfony具有更高的附着力值,并且主要是内聚断裂。 CGFR聚合物的不同表面处理(粗糙或抛光)对粘结强度没有影响。硅化钛/ CGFR聚合物/不透明层(Sin-fony)/义齿基聚合物的断裂表面主要是粘结性的。这些材料在植入物保留的超结构中的组合有望用于体内评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号