首页> 外文期刊>Journal of Applied Polymer Science >Effective Thermal Conductivity and Thermal Properties of Phthalonitrile-Terminated Poly(arylene ether nitriles) Composites with Hybrid Functionalized Alumina
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Effective Thermal Conductivity and Thermal Properties of Phthalonitrile-Terminated Poly(arylene ether nitriles) Composites with Hybrid Functionalized Alumina

机译:杂化官能化氧化铝与邻苯二甲腈封端的聚(亚芳基醚腈)复合材料的有效导热系数和热性能

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摘要

A polymer-based thermal conductive composite has been developed. It is based on a dispersion of micro- and nanosized alumina (Al2O3) in the phthalonitrile-terminated poly (arylene ether nitriles) (PEN-t-ph) via solution casting method. The Al2O3 with different particle sizes were functionalized with phthalocyanine (Pc) which was used as coupling agent to improve the compatibility of Al2O3 and PEN-t-ph matrix. The content of microsized functionalized Al2O3 (m-f-Al2O3) maintained at 30 wt % to form the main thermally conductive path in the composites, and the nanosized functionalized Al2O3 (n-f-Al2O3) act as connection role to provide additional channels for the heat flow. The thermal conductivity of the f-Al2O3/PEN-t-ph composites were investigated as a function of n-f-Al2O3 loading. Also, a remarkable improvement of the thermal conductivity from 0.206 to 0.467 W/mK was achieved at 30 wt % n-f-Al2O3 loading, which is nearly 2.7-fold higher than that of pure PEN-t-ph polymer. Furthermore, the mechanical testing reveals that the tensile strength increased from 99 MPa for pure PEN-t-ph to 105 MPa for composites with 30 wt % m-f-Al2O3 filler loading. In addition, the PEN-t-ph composites possess excellent thermal properties with glass transition temperature (T-g) above 184 degrees C, and initial degradation temperature (T-id) over 490 degrees C. (C) 2014 Wiley Periodicals, Inc.
机译:已经开发了基于聚合物的导热复合材料。它基于通过溶液浇铸法将微米级和纳米级氧化铝(Al2O3)分散在邻苯二甲腈封端的聚(亚芳基醚腈)(PEN-t-ph)中。用酞菁(Pc)对不同粒径的Al2O3进行功能化,该酞菁用作偶联剂以改善Al2O3与PEN-t-ph基质的相容性。微米尺寸的功能化Al2O3(m-f-Al2O3)的含量保持在30 wt%以形成复合材料中的主要导热路径,而纳米尺寸的功能化Al2O3(n-f-Al2O3)起到连接作用,为热流提供额外的通道。研究了f-Al2O3 / PEN-t-ph复合材料的热导率与n-f-Al2O3载荷的关系。同样,在载量为30%(重量)的n-f-Al2O3时,热导率从0.206 W / mK显着提高,比纯PEN-t-ph聚合物高近2.7倍。此外,机械测试表明,拉伸强度从纯PEN-t-ph的99 MPa增加到m-f-Al2O3填充量为30 wt%的复合材料的105 MPa。此外,PEN-t-ph复合材料具有出色的热性能,玻璃化转变温度(T-g)高于184摄氏度,初始降解温度(T-id)超过490摄氏度。(C)2014 Wiley Periodicals,Inc.

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