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首页> 外文期刊>Journal of Materials Research and Technology >Preparation, characterization, and thermal conductivity of polyvinyl-formaldehyde/MWCNTs foam: A low cost heat sink substrate
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Preparation, characterization, and thermal conductivity of polyvinyl-formaldehyde/MWCNTs foam: A low cost heat sink substrate

机译:聚乙烯 - 甲醛/ MWCNTS泡沫的制备,表征和导热率:低成本散热器基材

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摘要

Preparation of polyvinyl-formaldehyde (PVF)/multi walled carbon nanotubes (MWCNTs) foams as an efficient heat sink nanocomposites was presented here. The PVF foam was loaded with 1 wt%, 2 wt%, and 4 wt% of MWCNTs. Thermal conductivity of the PVF/MWCNTs foams are investigated within the temperature range 25–200 °C. The structure of the prepared foams were characterized by Fourier transform infrared (FTIR), Raman spectroscopy, and differential scanning calorimetry (DSC). The results show that the MWCNTs are homogeneously distributed inside the PVF foam and attached to the PVF matrix via van der Waals forces. The addition of the MWCNTs increased the thermal stability of the PVF foam through connecting and filling the pores of the PVF foam. The maximum thermal conductivity value was found to be ≈5 W/mK for 4 wt% of PVF/MWCNTs foam at room temperature. This value is 166 times higher than the thermal conductivity of neat PVF foam. In addition, this value is higher than that of the previously published values for many carbon nanomaterials (CNMs)/polymer nanocompsites heat sinks. The thermal conductivity of the 4 wt% of PVF/MWCNTs reached 65 W/mK at 200 °C. The 4 wt% PVF/MWCNTs foam lowered the temperature of a hot surface from ≈ 40 to 30 °C, leading to cooling efficiency of 40%. Based on the experimental results, the PVF/MWCNTs foams show an improved capability for heat dissipation through easily and scalable preparation method.
机译:这里给出了聚乙烯醇 - 甲醛(PVF)/多壁碳纳米管(MWCNT)泡沫作为有效散热纳米复合材料的制备。 PVF泡沫加载1wt%,2wt%和4wt%的MWCNT。在25-200℃的温度范围内研究PVF / MWCNT泡沫的热导率。通过傅里叶变换红外(FTIR),拉曼光谱和差示扫描量热法(DSC)的特征在于制备的泡沫的结构。结果表明,MWCNT在PVF泡沫内均匀分布,并通过van der WaaS力附接到PVF矩阵。通过连接和填充PVF泡沫的孔,增加MWCNT的添加增加了PVF泡沫的热稳定性。在室温下发现最大导热率值为4wt%的PVF / MWCNT泡沫。该值比整齐PVF泡沫的导热系数高166倍。此外,该值高于许多碳纳米材料(CNMS)/聚合物纳米培养物散热器的先前公布的值。 4wt%的PVF / MWCNT的导热率在200℃下达到65w / mk。 4wt%pvf / mwcnts泡沫从≈40至30℃的热表面的温度降低,导致冷却效率为40%。基于实验结果,PVF / MWCNTS泡沫通过容易和可扩展的制备方法显示出散热的改进能力。

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