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通过无机体系定制橡胶纳米复合材料的热导率:其在轮胎配方中应用的机遇与挑战

Tailoring the Thermal Conductivity of Rubber Nanocomposites by Inorganic Systems: Opportunities and Challenges for Their Application in Tires Formulation.

作者信息

Mirizzi Lorenzo, Carnevale Mattia, D'Arienzo Massimiliano, Milanese Chiara, Di Credico Barbara, Mostoni Silvia, Scotti Roberto

机构信息

Department of Materials Science, University of Milano-Bicocca, INSTM, Via R. Cozzi 55, 20125 Milano, Italy.

Department of Chemistry, University of Pavia, 27100 Pavia, Italy.

出版信息

Molecules. 2021 Jun 10;26(12):3555. doi: 10.3390/molecules26123555.

Abstract

The development of effective thermally conductive rubber nanocomposites for heat management represents a tricky point for several modern technologies, ranging from electronic devices to the tire industry. Since rubber materials generally exhibit poor thermal transfer, the addition of high loadings of different carbon-based or inorganic thermally conductive fillers is mandatory to achieve satisfactory heat dissipation performance. However, this dramatically alters the mechanical behavior of the final materials, representing a real limitation to their application. Moreover, upon fillers' incorporation into the polymer matrix, interfacial thermal resistance arises due to differences between the phonon spectra and scattering at the hybrid interface between the phases. Thus, a suitable filler functionalization is required to avoid discontinuities in the thermal transfer. In this challenging scenario, the present review aims at summarizing the most recent efforts to improve the thermal conductivity of rubber nanocomposites by exploiting, in particular, inorganic and hybrid filler systems, focusing on those that may guarantee a viable transfer of lab-scale formulations to technological applicable solutions. The intrinsic relationship among the filler's loading, structure, morphology, and interfacial features and the heat transfer in the rubber matrix will be explored in depth, with the ambition of providing some methodological tools for a more profitable design of thermally conductive rubber nanocomposites, especially those for the formulation of tires.

摘要

开发用于热管理的高效导热橡胶纳米复合材料对从电子设备到轮胎行业等多种现代技术来说都是一个棘手的问题。由于橡胶材料通常表现出较差的热传递性能,必须添加高负载量的不同碳基或无机导热填料才能实现令人满意的散热性能。然而,这会极大地改变最终材料的力学性能,成为其应用的实际限制。此外,当填料加入聚合物基体时,由于声子谱的差异以及相之间混合界面处的散射,会产生界面热阻。因此,需要进行适当的填料功能化处理以避免热传递出现间断。在这种具有挑战性的情况下,本综述旨在总结通过利用特别是无机和混合填料体系来提高橡胶纳米复合材料热导率的最新研究成果,重点关注那些能够保证将实验室规模的配方成功转化为技术适用解决方案的研究。将深入探讨填料的负载量、结构、形态和界面特征与橡胶基体中热传递之间的内在关系,旨在为更有效地设计导热橡胶纳米复合材料,尤其是用于轮胎配方的复合材料,提供一些方法工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f62/8230438/57fe9961c4ff/molecules-26-03555-g001.jpg

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