Thermal and electrical Measrurements of Cold Welding Epoxy - Graphite

Published: 12 September 2024| Version 1 | DOI: 10.17632/3c6pwdp3tp.1
Contributor:
Juan José Reyes Salgado

Description

Measures presented in the IMRC 2024's conference titled: "Characterization of the physical properties of cold welding epoxy matrix composites with graphite inclusions to design supercapacitor materials." The data reservoir contains information from the samples' Electrical Impedance Spectroscopy, Thermal Relaxation, and Laser Flash Instruments. The samples were fabricated from Cold-Welding Epoxies and Graphite inclusions with varying volume fraction ratios. JB Weld SteelStick 82675 (Steel reinforced epoxy putty), Devcon 3-40 (High-grade steel-filled epoxy putty), Devcon R2-42 (Steel filled epoxy adhesive), and Permatex Steel Weld 84109 (Multimetal epoxy adhesive) were cold welding epoxies used.

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Steps to reproduce

Resistance and Capacitance were estimated from Bobe and Nyquist Plots corresponding to each sample organized in the Electrical Impedance Spectroscopy Folder. Volumetric Heat Capacity was measured by fitting the initial region-decreasing section of the plots generated by files with the legend Down in the Thermal Measures Folder. Thermal Diffusivity was measured from the middle-time rising of the plots generated by files with the legend Flash in the Thermal Measures Folder. The first column of the Thermal Measures files corresponds to the time number of measure; the base time used was 850 micro-seconds, the second column is the environment temperature, and the third column is the sample temperature; temperatures were measured in Fahrenheit degrees. The data will be treated as indicated in the following references: [1] Hatta, I., Heat capacity measurements by means of thermal relaxation method in medium temperature range. Review of Scientific Instruments 50, 292–295 (1979). [2] Magli ́c, K.D., Taylor, R.E.: In: Magli ́c, K.D., Cezairliyan, A., Peletsky, V.E. (eds.) The Apparatus for Thermal Diffusivity Measurement by the Laser Pulse Method, pp. 281–314. Springer, Boston, MA (1992).

Institutions

Universidad Popular Autonoma del Estado de Puebla

Categories

Capacitance, Electrical Impedance, Thermal Conductivity

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