English

Compressive mechanical response of graphene foams and their thermal resistance with copper interfaces

Materials Science 2017-03-14 v1

Abstract

We report compressive mechanical response of graphene foams (GFs) and the thermal resistance (RTIMR_{TIM}) between copper (Cu) and GFs, where GFs were prepared by the chemical vapor deposition (CVD) method. We observe that Young's modulus (EGFE_{GF}) and compressive strength (σGF\sigma_{GF}) of GFs have a power law dependence on increasing density (ρGF\rho_{GF}) of GFs. The maximum efficiency of absorbed energy (ηmax\eta_{max}) for all GFs during the compression is larger than ~0.39. We also find that a GF with a higher ρGF\rho_{GF} shows a larger ηmax\eta_{max}. In addition, we observe that the measured RTIMR_{TIM} of Cu/GFs at room temperature with a contact pressure of 0.25 MP applied increases from ~50 to ~90 mm2K/Wmm^2K/W when ρGF\rho_{GF} increases from 4.7 to 31.9 mg/cm3mg/cm^3.

Keywords

Cite

@article{arxiv.1702.07816,
  title  = {Compressive mechanical response of graphene foams and their thermal resistance with copper interfaces},
  author = {Wonjun Park and Xiangyu Li and Nirajan Mandal and Xiulin Ruan and Yong P. Chen},
  journal= {arXiv preprint arXiv:1702.07816},
  year   = {2017}
}