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Anomalous tensile response of bacterial cellulose nanopaper at intermediate strain rates

机译:中间应变率下细菌纤维素纳米液的异常拉伸响应

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Nanocellulose network in the form of cellulose nanopaper is an important material structure and its time-dependent mechanical response is crucial in many of its potential applications. In this work, we report the influences of grammage and strain rate on the tensile response of bacterial cellulose (BC) nanopaper. BC nanopaper with grammages of 20, 40, 60 and 80?g?m?2 were tested in tension at strain rates ranging from 0.1% s?1 to 50% s?1. At strain rates $$le$$ 2.5%?s?1, both the tensile modulus and strength of the BC nanopapers stayed constant at?~?14 GPa and?~?120?MPa, respectively. At higher strain rates of 25% s?1 and 50% s?1 however, the tensile properties of the BC nanopapers decreased significantly. This observed anomalous tensile response of BC nanopaper is attributed to inertial effect, in which some of the curled BC nanofibres within the nanopaper structure?do not have enough time to uncurl before failure at such high strain rates. Our measurements further showed that BC nanopaper showed little deformation under creep, with a secondary creep rate of only?~?10–6?s?1. This stems from the highly crystalline nature of BC, as well as the large number of contact or physical crosslinking points between adjacent BC nanofibres, further?reducing the mobility of the BC nanofibres in the nanopaper?structure.
机译:纳米膜形式的纳米纤维素网络是重要的材料结构,其时间依赖性机械响应在许多潜在应用中至关重要。在这项工作中,我们报告了克力记录和应变率对细菌纤维素(BC)纳米玻璃拉伸响应的影响。 BC纳米纸具有20,40,60和80Ω·G≤2的克拉姆·纳米·λ2以0.1%S-1至50%S-1的应变率的张力测试。在应变率$$ Le $$ 2.5%?S?1,BC纳米粉刺的拉伸模量和强度都保持恒定在Δ〜14 gpa和?〜120?mpa。然而,在较高的应变率为25%S 1和50%S?1然而,BC纳米粉刺的拉伸性能显着降低。这种观察到BC纳米锅的异常拉伸响应归因于惯性效果,其中纳米覆盖物结构内的一些卷曲的BC纳米纤维纤维在这种高应变率之前在失效前没有足够的时间去除卷积。我们的测量结果进一步表明,BC纳米锅在蠕变下显示出很小的变形,仅具有次级蠕变率?〜?10-6?s?1。这源于BC的高度结晶性质,以及相邻的BC纳米纤维之间的大量接触或物理交联点,进一步θ,降低了纳米锅中的BC纳米纤维的迁移率。

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