The role of crystallization and annealing on the thermal conductivity of material extrusion additively manufactured parts

Author:

Braconnier Daniel J.,Dunn Ryan M.,Wetzel Eric D.,Erb Randall M.

Funder

US Army DEVCOM ARL

DEVCOM Army Research Laboratory

US Army Research Office

Publisher

Elsevier BV

Reference47 articles.

1. M. Smith. 3D Printing Allows for Complex, High Surface Area Geometries Optimized for Convection Cooling. Electronics Cooling. 〈https://www.electronics-cooling.com/2019/07/3d-printing-allows-for-complex-high-surface-area-geometries-optimized-for-convection-cooling/〉 (accessed 2022).

2. U. Ankalkhope. Design Optimization for Heat Sinks Using nTopology. Excel3D. 〈https://www.excel3d.com/post/topology-optimization-for-heat-sinks-using-ntop-software〉 (accessed 2022).

3. B.J.M. Paudel, Mohammad; Thompson, Scott M., "Multi-Objective Topology Optimization of Additively Manufactured Heat Exchangers," presented at the Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference, 2019.

4. I. Blanco, G. Cicala, G. Recca, and C. Tosto, Specific Heat Capacity and Thermal Conductivity Measurements of PLA-Based 3D-Printed Parts with Milled Carbon Fiber Reinforcement, Entropy, vol. 24, no. 5, 〈doi:10.3390/e24050654〉.

5. Castable and printable dielectric composites exhibiting high thermal conductivity via percolation-enabled phonon transport;Gurijala;Matter,2020

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