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Measurement of the thermal conductivity of flexible biosourced polymers using the 3-omega method

机译:使用3-Omega方法测量柔性生物卷积聚合物的导热率

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The thermal conductivity of flexible biosourced polymers was measured by the 3-omega method. Two biopolymers were investigated: the polylactic acid (PLA), a widely used commercial biodegradable one, and the cellulose palmitate (CP), a hydrophobic biosourced material developed in the laboratory, that could be used in electronic or microfluidic applications. The 3-omega method is based-on the use of a metal element as both heating device to thermally disturb the system and temperature sensor. A stencil lithography technique was applied to obtain metallic lines, since biopolymers are not compatible with classical photolithography method. Thermal conductivities of 0.19 and 0.30 W/m.K are obtained respectively for PLA and CP thick films, and 0.12 and 0.22 W/m.K for respectively PLA and CP thin films. These values are close to those measured for petro-sourced substrates or films and so give the possibility to address the applications mentioned.
机译:通过3-OMEGA方法测量柔性生物循环聚合物的导热率。 研究了两种生物聚合物:聚乳酸(PLA),广泛使用的商业可生物降解的一种,纤维素棕榈酸酯(CP),在实验室中发育的疏水性生物沉积材料,可用于电子或微流体应用。 3-Omega方法基于使用金属元素作为加热装置来热干扰系统和温度传感器。 施加模版光刻技术以获得金属线,因为生物聚合物与经典光刻法不相容。 PLA和CP厚膜分别获得0.19和0.30W / m.k的热导体,分别为PLA和CP薄膜0.12和0.22W / m。。 这些值靠近用于石油 - 源性基板或薄膜测量的那些,因此可以解决解决所提到的应用的可能性。

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