用于牙科 cad/cam 应用的 3d 编织纤维增强复合材料。

IF 0.2 4区 材料科学 Q4 ENGINEERING, MULTIDISCIPLINARY
SAMPE Journal Pub Date : 2016-05-01
Richard Petersen, Perng-Ru Liu
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引用次数: 0

摘要

测试了三维(3D)无皱褶纤维增强复合材料(FRC)在主 XY 平面两个主要方向上的机械性能,并与不同的计算机辅助设计/计算机辅助加工(CAD/CAM)牙科材料进行了比较。牙科材料包括 Vitablock Mark II®、ProCAD®、InCeram® Spinel、InCeram® Alumina 和 InCeram® Zirconia 陶瓷,以及基于树脂的 3M Corp.Paradigm® 微粒填充复合材料。替代材料控制包括 Coors 300 氧化铝陶瓷和碳化钨 22% 钴金属陶瓷。三维编织 FRC 采用真空辅助树脂传递成型技术,用乙烯基酯树脂加工成厚度为 19 毫米的预成型件,并切割成与商用 CAD/CAM 牙科材料类似的块状。机械测试样品的挠曲三点跨度长度为 10.0 毫米,对其进行最小深度切割,以比较各组之间的可加工性和抗断裂性。与所有 CAD/CAM 牙科材料和 Coors 氧化铝陶瓷相比,三维编织 FRC 改善了机械性能,在抗弯强度方面具有显著的统计差异(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D-WOVEN FIBER-REINFORCED COMPOSITE FOR CAD/CAM DENTAL APPLICATION.

Three-dimensional (3D)-woven noncrimp fiber-reinforced composite (FRC) was tested for mechanical properties in the two principal directions of the main XY plane and compared to different Computer-Aided-Design/Computer-Aided-Machining (CAD/CAM) Dental Materials. The Dental Materials included ceramic with Vitablock Mark II®, ProCAD®, InCeram® Spinel, InCeram® Alumina and InCeram® Zirconia in addition to a resin-based 3M Corp. Paradigm® particulate-filled composite. Alternate material controls included Coors 300 Alumina Ceramic and a tungsten carbide 22% cobalt cermet. The 3D-woven FRC was vacuum assisted resin transfer molding processed as a one-depth-thickness ~19-mm preform with a vinyl-ester resin and cut into blocks similar to the commercial CAD/CAM Dental Materials. Mechanical test samples prepared for a flexural three-point span length of 10.0 mm were sectioned for minimum-depth cuts to compare machinability and fracture resistance between groups. 3D-woven FRC improved mechanical properties with significant statistical differences over all CAD/CAM Dental Materials and Coors Alumina Ceramic for flexural strength (p<0.001), resilience (p<0.05), work of fracture (p<0.001), strain energy release (p<0.05), critical stress intensity factor (p<0.001) and strain (p<0.001).

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来源期刊
SAMPE Journal
SAMPE Journal 工程技术-材料科学:综合
CiteScore
0.16
自引率
0.00%
发文量
1
审稿时长
>12 weeks
期刊介绍: SAMPE Journal readers represent the diversity of the advanced materials and processes industry. Our readers are creative and innovative, they publish, they develop concepts, they win patents, they move the world of materials and processes. Join thought leaders – academicians, engineers, scientists, business leaders, researchers, suppliers, manufacturers – and become a reader of the industry’s only technical journal dedicated to advanced materials and processes.
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