首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Influence of nano-reinforcement on the mechanical behavior of adhesively bonded single-lap joints subjected to static, quasi-static, and impact loading
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Influence of nano-reinforcement on the mechanical behavior of adhesively bonded single-lap joints subjected to static, quasi-static, and impact loading

机译:纳米增强对承受静态,准静态和冲击载荷的粘合单搭接接头力学性能的影响

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In this study, the effects of nano-reinforcement on the mechanical response of adhesively bonded single-lap joints with composite adherends subjected to different loading (strain) rates are systematically investigated. The results are then compared to those of the neat thermoset resin and a toughened acrylic-epoxy adhesive. More specifically, nano-reinforced and neat resin-bonded joints mating carbon/epoxy and glass/epoxy adherends were subjected to tensile loadings under 1.5 and 3mm/min and tensile impacts at a loading rate of 2.04E+5mm/min. In some cases, additional tests were conducted to obtain the enhancement in properties that could be gained using the nano-reinforcements for use in our further numerical investigations. The other loading rates tried were 15, 150, and 1500mm/min. The high loading rate tests were conducted, using a modified instrumented pendulum equipped with a specially designed impact load transfer apparatus. The dispersion of nanoparticles was facilitated using a mechanical stirrer and a three-roll mill machine. The results of the impact tests revealed the positive influence of nano-reinforcements on the loading rate sensitivity of the joints. In all, the overall stiffness and strength of the joints increased as the nano-reinforcement and loading rates were increased. The failure surfaces were then examined with a scanning electron microscope to observe the distribution of the nanoparticles and study the mode of failure.
机译:在这项研究中,系统地研究了纳米增强对具有不同载荷(应变)速率的复合被粘物的粘合单搭接接头力学响应的影响。然后将结果与纯热固性树脂和增韧的丙烯酸-环氧粘合剂的结果进行比较。更具体地,使与碳/环氧树脂和玻璃/环氧树脂被粘物相配合的纳米增强的和纯净的树脂粘结接头承受1.5和3mm / min的拉伸载荷,并以2.04E + 5mm / min的载荷速率承受拉伸冲击。在某些情况下,还进行了其他测试来获得性能的增强,而使用纳米增强材料可以在我们的进一步数值研究中获得这些增强。尝试的其他加载速率为15、150和1500mm / min。使用装有特殊设计的冲击载荷传递设备的改进型仪器摆进行了高载荷率测试。使用机械搅拌器和三辊研磨机促进纳米颗粒的分散。冲击试验的结果表明,纳米增强材料对关节的加载速率敏感性具有积极影响。总之,随着纳米增强和加载速率的增加,接头的整体刚度和强度也随之增加。然后用扫描电子显微镜检查失效表面,以观察纳米颗粒的分布并研究失效模式。

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