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Thermomechanical and electrical properties of PDMS/MWCNT composite films crosslinked by electron beam irradiation

机译:电子束辐照交联的PDMS / MWCNT复合膜的热机械和电性能

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摘要

Electron beam (EB)-crosslinked flexible polydimethylsiloxane (PDMS) composite films containing 1.0-3.0 wt% pristine MWCNT were manufactured, and their structures, thermomechanical, and electrical properties were systematically investigated for applications as electric heating materials. The crosslinking extent of PDMS/MWCNT composite films was found to increase with the EB irradiation dose of 200-600 kGy, irrespective of the MWCNT content. Raman spectra showed that I (D)/I (G) values (0.97-1.02) for the EB-crosslinked composite films were lower than those of pristine and EB-irradiated MWCNTs (1.07-1.17), demonstrating the possibility of the chemical interaction between MWCNT and PDMS in the composite films. Dynamic mechanical thermal data revealed that the EB-crosslinked composite films possessed flexible features in a wide range of temperatures, although the storage moduli increased slightly with the increment of the MWCNT content. The electrical resistivity and electric heating behavior of the composite films, which were thermally stable up to similar to 200 A degrees C, were strongly dependent on the MWCNT content as well as applied voltage. For instance, the composite film with 2.0 wt% MWCNT achieved a steady-state maximum temperature of similar to 150 A degrees C at a relatively low voltage of 35 V and it also maintained stable and reproducible electric heating performance under stepwise cyclic voltage changes for a long period of time.
机译:制备了包含1.0-3.0 wt%原始MWCNT的电子束(EB)交联的柔性聚二甲基硅氧烷(PDMS)复合膜,并对其结构,热机械和电性能进行了系统研究,以用作电加热材料。发现PDMS / MWCNT复合膜的交联程度随200-600 kGy的EB照射剂量而增加,与MWCNT含量无关。拉曼光谱表明,EB交联复合膜的I(D)/ I(G)值(0.97-1.02)低于原始和EB辐照的MWCNT(1.07-1.17),表明了化学相互作用的可能性复合膜中MWCNT和PDMS之间的关系。动态机械热数据表明,虽然随着MWCNT含量的增加,储能模量略有增加,但EB交联的复合膜在较宽的温度范围内具有柔韧性。在高达200 A的温度下具有热稳定性的复合膜的电阻率和电加热行为在很大程度上取决于MWCNT含量以及施加的电压。例如,具有2.0 wt%MWCNT的复合膜在相对较低的35 V电压下达到了类似于150 A摄氏度的稳态最高温度,并且在逐步循环的电压变化下保持了稳定且可再现的电加热性能。时间长了。

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