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首页> 外文期刊>ACS applied materials & interfaces >Shear Strength and Interfacial Toughness Characterization of Sapphire-Epoxy Interfaces for Nacre-Inspired Composites
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Shear Strength and Interfacial Toughness Characterization of Sapphire-Epoxy Interfaces for Nacre-Inspired Composites

机译:珍珠母启发的复合材料的蓝宝石-环氧树脂界面的剪切强度和界面韧性表征

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摘要

The common tensile lap-shear test for adhesive joints is inappropriate for brittle substrates such as glasses or ceramics where stress intensifications due to clamping and additional bending moments invalidate results. Nevertheless, bonding of glasses and ceramics is still important in display applications for electronics, in safety glass and ballistic armor, for dental braces and restoratives, or in recently developed bioinspired composites. To mechanically characterize adhesive bondings in these fields nonetheless, a novel approach based on the so-called Schwickerath test for dental sintered joints is used. This new method not only matches data from conventional analysis but also uniquely combines the accurate determination of interfacial shear strength and toughness in one simple test. The approach is verified for sapphire epoxy joints that are of interest for bioinspired composites. For these, the procedure not only provides quantitative interfacial properties for the first time, it also exemplarily suggests annealing of sapphire at 1000 degrees C for 10 h for mechanically and economically effective improvements of the interfacial bond strength and toughness. With increases of strength and toughness from approximately 8 to 29 MPa and from 2.6 to 35 J/m(2), respectively, this thermal modification drastically enhances the properties of unmodified sapphire epoxy interfaces. At the same time, it is much more convenient than wet-chemical approaches such as silanization. Hence, besides the introduction of a new testing procedure for adhesive joints of brittle or expensive substrates, a new and facile annealing process for improvements of the adhesive properties of sapphire is suggested and quantitative data for the mechanical properties of sapphire epoxy interfaces that are common in synthetic nacre-inspired composites are provided for the first time.
机译:普通的粘合接头拉伸搭接剪切试验不适用于脆性基材,例如玻璃或陶瓷,在这种基材中,由于夹紧而产生的应力增强和额外的弯矩会使结果无效。然而,玻璃和陶瓷的粘合在电子产品的显示应用,安全玻璃和防弹装甲,牙套和修复剂或最近开发的生物启发复合材料中仍然很重要。尽管如此,为了在这些领域中机械表征粘合剂的结合,使用了一种基于所谓的用于牙科烧结接头的Schwickerath试验的新颖方法。这种新方法不仅可以匹配常规分析中的数据,而且还可以在一个简单的测试中独特地将界面剪切强度和韧性的准确测定结果完美地结合在一起。该方法已针对生物启发复合材料感兴趣的蓝宝石环氧接头进行了验证。为此,该方法不仅首次提供了定量的界面性能,而且还示例性地建议将蓝宝石在1000摄氏度下退火10小时,以机械和经济有效地改善界面结合强度和韧性。随着强度和韧性分别从大约8到29 MPa和从2.6到35 J / m(2)的增加,这种热改性极大地增强了未改性的蓝宝石环氧界面的性能。同时,它比诸如硅烷化的湿化学方法要方便得多。因此,除了为脆性或昂贵基材的粘合接头引入新的测试程序外,还提出了一种新的且容易的退火工艺来改善蓝宝石的粘合性能,并提出了蓝宝石环氧界面机械性能的定量数据。首次提供人造珍珠质复合材料。

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