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用于导热环氧化天然橡胶的混合氧化铝-二氧化硅填料

Hybrid Alumina-Silica Filler for Thermally Conductive Epoxidized Natural Rubber.

作者信息

Yangthong Hassarutai, Nun-Anan Phattarawadee, Krainoi Apinya, Chaisrikhwun Boonphop, Karrila Seppo, Limhengha Suphatchakorn

机构信息

Specialized Center of Rubber and Polymer Materials in Agriculture and Industry (RPM), Department of Materials Science, Faculty of Science, Kasetsart University, Chatuchak, Bangkok 10900, Thailand.

Faculty of Science and Industrial Technology, Prince of Songkla University, Surat Thani Campus, Surat Thani 84000, Thailand.

出版信息

Polymers (Basel). 2024 Nov 29;16(23):3362. doi: 10.3390/polym16233362.

Abstract

Thermally conductive composites were prepared based on epoxidized natural rubber (ENR) filled with alumina, silica, and hybrid alumina and silica. The thermal conductivity and mechanical properties were assessed. It was observed that the interactions of polar functional groups in the fillers and epoxy group in ENR supported a fine dispersion of filler in the ENR matrix. The mechanical properties were improved with alumina, silica, and hybrid alumina/silica loadings. The ENR/Silica composite at 50 phr of silica provided the highest 60 shore A hardness, a maximum 100% modulus up to 0.37 MPa, and the highest tensile strength of 27.3 MPa, while ENR/Alumina with 50 phr alumina gave the best thermal conductivity. The hybrid alumina/silica filler at 25/25 phr significantly improved the mechanical properties and thermal conductivity in an ENR composite. That is, the thermal conductivity of the ENR/Hybrid filler was 2.23 W/mK, much higher than that of gum ENR (1.16 W/mK). The experimental results were further analyzed using ANOVA and it was found that the ENR/Hybrid filler showed significant increases in mechanical and thermal properties compared to gum ENR. Moreover, silica in the hybrid composites contributed to higher strength when compared to both gum ENR and ENR/Alumina composites. The hybrid filler system also favors process ability with energy savings. As a result, ENR filled with hybrid alumina/silica is an alternative thermally conductive elastomeric material to expensive silicone rubber, and it could have commercial applications in the fabrication of electronic devices, solar energy conversion, rechargeable batteries, and sensors.

摘要

基于填充有氧化铝、二氧化硅以及氧化铝与二氧化硅混合物的环氧化天然橡胶(ENR)制备了导热复合材料。对其热导率和力学性能进行了评估。观察到填料中的极性官能团与ENR中的环氧基团之间的相互作用有助于填料在ENR基体中良好分散。随着氧化铝、二氧化硅以及氧化铝/二氧化硅混合物的添加量增加,力学性能得到改善。二氧化硅含量为50 phr的ENR/二氧化硅复合材料具有最高的邵氏A硬度60,最大100%模量可达0.37 MPa,以及最高拉伸强度27.3 MPa,而氧化铝含量为50 phr的ENR/氧化铝复合材料具有最佳热导率。25/25 phr的氧化铝/二氧化硅混合填料显著改善了ENR复合材料的力学性能和热导率。也就是说,ENR/混合填料的热导率为2.23 W/mK,远高于纯胶ENR(1.16 W/mK)。使用方差分析(ANOVA)对实验结果进行了进一步分析,发现与纯胶ENR相比,ENR/混合填料的力学和热性能有显著提高。此外,与纯胶ENR和ENR/氧化铝复合材料相比,混合复合材料中的二氧化硅有助于提高强度。混合填料体系还有利于加工性能并节省能源。因此,填充有氧化铝/二氧化硅混合物的ENR是昂贵硅橡胶的一种替代导热弹性体材料,并且它在电子器件制造、太阳能转换、可充电电池和传感器方面可能具有商业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cac/11644438/cef77533d2e6/polymers-16-03362-g001.jpg

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