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Direct Measurement of Temperature Diffusivity of Nanocellulose-Doped Biodegradable Composite Films

机译:纳米纤维素掺杂可生物降解复合膜的温度扩散性的直接测量

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摘要

The thermal properties of novel nanomaterials play a significant role in determining the performance of the material in technological applications. Herein, direct measurement of the temperature diffusivity of nanocellulose-doped starch–polyurethane nanocomposite films was carried out by the micro-contact method. Polymer films containing up to 2 wt%. of nanocellulose were synthesised by a simple chemical process and are biodegradable. Films of a high optical transmittance (for a 200 m thick film), which were up to 44% crystalline, were characterised. Two different modalities of temperature diffusivity based on (1) a resistance change and (2) micro-thermocouple detected voltage modulation caused by the heat wave, were used for the polymer films with cross sections of ∼100 m thickness. Twice different in-plane and out-of-plane temperature diffusivities were directly determined with high fidelity: m /s and m /s. This work provides an example of a direct contact measurement of thermal properties of nanocellulose composite biodegradable polymer films. The thermal diffusivity, which is usually high in strongly interconnected networks and crystals, was investigated for the first time in this polymer nanocomposite.
机译:新型纳米材料的热性质在确定技术应用中的材料性能方面发挥着重要作用。这里,通过微接触方法进行纳米纤维素掺杂淀粉 - 聚氨酯纳米复合膜的温度扩散率的直接测量。聚合物膜含有高达2wt%的聚合物膜。通过简单的化学过程合成纳米纤维素,可生物降解。特征在于高达44%结晶的高光学透射率(对于200米厚膜)的薄膜。基于(1)的电阻变化和(2)由热波引起的电阻变化和(2)微电压检测电压调制的两种不同的温度扩散方式用于聚合物薄膜,厚度为〜100μm的横截面。用高保真度直接测定平面两倍不同的平面内和面外温度扩散性:M / S和M / s。该工作提供了纳米纤维素复合可生物降解聚合物膜的直接接触测量的实例。在该聚合物纳米复合材料中首次研究了通常在强互连的网络和晶体中的热扩散性,这是强烈互连的网络和晶体。

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