The effect of filler parameters on the healing of thermal conductivity and mechanical properties of a thermal interface material based on a self-healable organic-inorganic polymer matrix

Journal Article (2016)
Author(s)

Nan Zhong (TU Delft - Novel Aerospace Materials)

Santiago Garcia Espallargas (TU Delft - Novel Aerospace Materials)

S Van Der Zwaag (TU Delft - Novel Aerospace Materials)

Research Group
Novel Aerospace Materials
DOI related publication
https://doi.org/10.1088/0964-1726/25/8/084016
More Info
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Publication Year
2016
Language
English
Research Group
Novel Aerospace Materials
Issue number
8
Volume number
25

Abstract

Thermal interface materials (TIMs) are widely used in all kinds of electronic devices to handle the heat dissipation and the mechanical anchoring of the heat producing component. The aging of TIMs may lead to delamination and internal crack formation causing a loss of heat transfer and mechanical integrity both leading to premature device failure. In the present work, a novel TIM system based on a self-healing organic-inorganic polymer matrix filled with spherical glass beads is presented which is capable of healing both the thermal conductivity and the mechanical properties upon thermal activation. The effect of particle volume concentration (PVC) and particle size on tensile strength and thermal conductivity healing behavior is investigated. The results show that a higher PVC increases the mechanical property but decreases mechanical healing. For the same PVC, bigger particles lead to lower mechanical properties but higher thermal conductivities and higher mechanical healing efficiencies.

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