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Temperature dependence of viscoelasticity of crystalline cellulose with different molecular weights added to silicone elastomer

机译:添加到有机硅弹性体中的不同分子量的结晶纤维素粘弹性的温度依赖性

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摘要

Silicone elastomers ( polydimethylsiloxane _ PDMS) are widely used in the field of imprint lithography and microcontactprinting (μCP). When performing microcontactprinting, the mechanical properties of the PCMS as a base material have a great influence on the performance of the device. Cellulose nanofibers having features of high strength, high elasticity and low coefficient of linear expansion have attracted attention in recent years due to their characteristics. Therefore, three types of crystalline cellulose having different molecular weights were added to PDMS to prepare a composite material, and dynamic viscoelasticity was measured using a rheometer. The PDMS with the highest molecular weight crystalline cellulose added exhibited smaller storage modulus than PDMS with other molecular weight added in all temperature ranges. Furthermore, when comparing PDMS to which crystalline cellulose was added and PDMS which is not added, the storage modulus of PDMS to which cellulose was added in the low temperature region was higher than that of PDMS to which it was not added, but it was reversed in the high temperature region It was a result. When used in a low temperature range (less than 150 ℃), it can be said that cellulose can function as a reinforcing material for PDMS.
机译:硅酮弹性体(聚二甲基硅氧烷_ PDMS)广泛用于压印光刻和微接触印刷(μCP)领域。当执行微接触印刷时,作为基材的PCMS的机械性能对设备的性能有很大的影响。具有高强度,高弹性和低线性膨胀系数的特征的纤维素纳米纤维由于其特性而近年来引起了关注。因此,将三种具有不同分子量的结晶纤维素添加到PDMS中以制备复合材料,并使用流变仪测量动态粘弹性。与在所有温度范围内添加其他分子量的PDMS相比,添加最高分子量的结晶纤维素的PDMS表现出较小的储能模量。此外,当比较添加有结晶纤维素的PDMS和未添加PDMS的PDMS时,在低温区域中添加纤维素的PDMS的储能模量高于未添加纤维素的PDMS的储能模量,但是相反。结果是在高温区域。当在低温范围(低于150℃)中使用时,可以说纤维素可以作为PDMS的增强材料。

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