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首页> 外文期刊>Journal of Composite Materials >Time- and temperature-dependent failures of a metal-to-composites bonded joint with PMMA adhesive material
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Time- and temperature-dependent failures of a metal-to-composites bonded joint with PMMA adhesive material

机译:PMMA粘合剂材料的金属-复合材料粘结接头的时间和温度相关故障

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摘要

A metal-composite bonded joint with a PMMA adhesive material was fabricated and tested under various loading conditions to help a short-term and long-term design of the bonded-jointed structures. The bonded joint is composed of a cast-iron rod and a GFRP composite pipe as adherends, and ductile PMMA as adhesive material (Plexus AO425). Tubular-lap bonded joints were fabricated conveniently and consistently with a devised mold and a curing condition to yield a reliable test data set. Experiment was performed to measure creep compliances of the PMMA material, and constant strain rate (CSR) and fatigue strengths of the bonded joint under various loading and temperature conditions. We observed the CSR and fatigue strengths significantly depended on time and temperature, but little on direction of loadings and size of joints. The bonded joints failed under consistent damage mechanism in the combination of the cohesive and interfacial failure modes, which mainly occurred in the adhesive material and at the interface between the cast-iron rod and the adhesive material, respectively. In order to further substantiate the utility of the time-temperature superposition principle that has been extended to describe destructive behavior of composite materials, we made the first attempt to apply the superposition principle to failure behavior of the bonded joints. The superpostion principle yielded smooth master curves for the creep compliance of the adhesive material as well as the CSR and fatigue strengths of the bonded joint. Time-temperature shift factors of the non-destructive creep compliance of the adhesive material were closely related to destructive CSR strength of the bonded joint. The master curves that were created by shifting fatigue curves with shift factors of the CSR strength yielded an extended range of the long-term life prediction at any temperatures, frequencies and stress ratios. It was shown that the life prediction of the bonded joints by using the master curves made a good agreement with the experimental results. [References: 7]
机译:制作了带有PMMA粘合材料的金属复合材料粘结接头,并在各种载荷条件下进行了测试,以帮助粘结结构的短期和长期设计。粘合接头由铸铁棒和GFRP复合管作为被粘物,而韧性PMMA作为粘合材料(Plexus AO425)。管状搭接接头的制造方便且始终与设计的模具和固化条件一致,以产生可靠的测试数据集。进行了实验,以测量PMMA材料的蠕变柔度,以及在各种载荷和温度条件下粘结接头的恒定应变率(CSR)和疲劳强度。我们观察到CSR和疲劳强度显着取决于时间和温度,但几乎不受载荷方向和接头尺寸的影响。粘结接头在粘结破坏和界面破坏模式的组合下,在一致的破坏机制下失效,这主要发生在粘结材料中以及铸铁棒与粘结材料之间的界面处。为了进一步证实已扩展到描述复合材料破坏性行为的时间-温度叠加原理的实用性,我们首次尝试将叠加原理应用于键合接头的破坏行为。超级原理产生了用于粘合剂材料的蠕变柔度以及粘结接头的CSR和疲劳强度的平滑主曲线。胶粘材料的非破坏性蠕变柔度的时间-温度偏移因子与粘结接头的破坏性CSR强度密切相关。通过将疲劳曲线与CSR强度的偏移因子进行偏移而创建的主曲线在任何温度,频率和应力比下均能扩展长期寿命预测范围。结果表明,利用主曲线预测结合点的寿命与实验结果吻合良好。 [参考:7]

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