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表面处理对短切 S 玻璃纤维增强牙科复合材料的界面和力学性能的影响。

Influence of Surface Treatment on the Interfacial and Mechanical Properties of Short S-Glass Fiber-Reinforced Dental Composites.

机构信息

School of Electrical, Computer and Telecommunications Engineering , University of Wollongong , Wollongong , NSW 2522 , Australia.

Institute for Frontier Materials , Deakin University , Geelong , VIC 3220 , Australia.

出版信息

ACS Appl Mater Interfaces. 2019 Sep 4;11(35):32328-32338. doi: 10.1021/acsami.9b01857. Epub 2019 Aug 20.

Abstract

The influence of interfacial shear strength (IFSS) between processed short S-glass fibers (250 and 350 μm in length, 5 μm in diameter) and the dental resin (a mixture of urethane dimethacrylate and triethylene glycol dimethacrylate monomers) on the mechanical properties has been studied experimentally. The surface profile of short S-glass fibers was modified using a selective atomic level metal etching process and simple silanization process to enhance the interfacial properties. The S-glass fibers were etched in acid solutions to increase the surface roughness and selectively remove Al and Mg ions, which promoted the mechanical and chemical interfacial bonding reactions. The single glass fiber tensile and microdroplet pull-out tests were performed to investigate the effects of interfacial properties on the flexural strength of the resultant composites. The surface modified S-glass fibers showed an increase of 11-40% in IFSS compared to untreated glass fibers. Composites reinforced with 350 μm length glass fibers (AR-70), which were treated in piranha solution for 4 h, showed the highest improvement in overall mechanical properties, flexural strength (34.2%), modulus (9.7%), and breaking energy (51.9%), compared to the untreated fiber-reinforced composites. The modified Lewis-Nielsen equation was developed using the effective fiber length factor to accurately predict the modulus of the short fiber-reinforced composites and validated with experimental results.

摘要

界面剪切强度(IFSS)对处理后的短 S 玻璃纤维(长 250 和 350μm,直径 5μm)与牙科树脂(聚氨酯二甲基丙烯酸酯和三乙二醇二甲基丙烯酸酯单体的混合物)之间的机械性能的影响已通过实验进行了研究。通过选择性原子级金属蚀刻工艺和简单的硅烷化工艺对短 S 玻璃纤维的表面轮廓进行了修改,以增强界面性能。将 S 玻璃纤维在酸溶液中蚀刻以增加表面粗糙度并选择性地去除 Al 和 Mg 离子,从而促进了机械和化学界面键合反应。进行了单根玻璃纤维拉伸和微滴拔出测试,以研究界面性能对所得复合材料弯曲强度的影响。与未处理的玻璃纤维相比,表面改性的 S 玻璃纤维的 IFSS 增加了 11-40%。用 piranha 溶液处理 4 小时的 350μm 长玻璃纤维(AR-70)增强的复合材料在整体力学性能、弯曲强度(34.2%)、模量(9.7%)和断裂能(51.9%)方面表现出最高的改善,与未处理纤维增强复合材料相比。使用有效纤维长度因子开发了改进的 Lewis-Nielsen 方程,以准确预测短纤维增强复合材料的模量,并通过实验结果进行了验证。

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