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首页> 外文期刊>Journal of Applied Polymer Science >Properties of thermally conductive silicone rubbers filled with admicellar polymerized polypyrrole-coated Al2O3 particles
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Properties of thermally conductive silicone rubbers filled with admicellar polymerized polypyrrole-coated Al2O3 particles

机译:用巢角聚合聚合的聚吡咯涂覆的Al2O3颗粒的导热硅橡胶的性质

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摘要

Polypyrrole (PPy) nanolayers were introduced on the surface of alumina (Al2O3) particles via admicellar polymerization. The properties of silicone rubbers (SRs) filled with PPy-coated Al2O3 and pristine Al2O3 as thermally conductive fillers were studied and compared. The results demonstrate that the addition of PPy-coated Al2O3 leads to a better interfacial compatibility but lower cross-linking density of the composites than pristine Al2O3. The improvement in the compatibility and the decrease in the cross-linking density are paradoxes in affecting mechanical properties. The improvement in the compatibility shows a slight predominance on the strength at low-filler contents. Lower cross-linking density of modified-Al2O3/SR composites led to a better processing performance and a higher maximum filler loading amount than the pristine Al2O3/SR composites, which is beneficial to increasing the thermal conductivity and maintaining a relatively good strength. The PPy-coated Al2O3/SR composite with 83 wt% filler content has a thermal conductivity of 1.98 W/(m K) and a tensile strength of 2.9 MPa, and the elongation at break was 63%. Functionalized fillers by admicellar polymerization used in the fabrication of filler/SR composites not only improve the interfacial compatibility but also optimize and expand the functions of the composites, which has great significance for the production and application of thermally conductive SR in some branches of industry (automotive, electrical engineering, etc.) in the future.
机译:通过共混合聚合在氧化铝(Al2O3)颗粒表面引入聚吡咯(PPy)纳米层。研究并比较了PPy包覆Al2O3和纯Al2O3作为导热填料填充硅橡胶(SRs)的性能。结果表明,与纯Al2O3相比,PPy包覆Al2O3的加入使复合材料的界面相容性更好,但交联密度更低。相容性的改善和交联密度的降低是影响力学性能的悖论。在填料含量较低的情况下,相容性的改善对强度有轻微的优势。与原始Al2O3/SR复合材料相比,低交联密度的改性Al2O3/SR复合材料具有更好的加工性能和更高的最大填充量,这有利于提高导热系数和保持相对良好的强度。填充量为83%的PPy包覆Al2O3/SR复合材料的导热系数为1.98w/(mk),拉伸强度为2.9mpa,断裂伸长率为63%。通过共混聚合制备的功能化填料用于填充/SR复合材料的制备,不仅改善了界面相容性,而且优化和扩展了复合材料的功能,这对未来导热SR在一些工业部门(汽车、电气工程等)的生产和应用具有重要意义。

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