3d Printed Polylactic Acid/Graphene Nanocomposites with Tailored Multifunctionality Towards Superior Thermal Management and High-Efficient Electromagnetic Interference Shielding

27 Pages Posted: 27 May 2022

See all articles by Shaohong Shi

Shaohong Shi

Guangxi University

Mingyao Dai

Guangxi University

Xingyu Tao

Guangxi University

Fengxia Wu

Guangxi University

Jianping Sun

Guangxi University

Yinghong Chen

Sichuan University

Abstract

The relative lack of printable materials with tailored functionalities limits the development of three-dimensional (3D) printing techniques. Herein, a promising multifunctional filament was fabricated by incorporating graphene nanosheets (GNs) into polylactic matrix via a solution-blending method. With this strategy, the uniform-distributed GNs were obtained in the matrix, even with a high GNs concentration (9.08 vol.%). The resultant nanocomposites exhibited desired functionalities, that the thermal conductivity (Tc) was up to 3.22 W/m·k, more than ten times that of pure one (0.25 W/m·k), and the electromagnetic interference shielding (EMI SE) reached 34.9 dB at X-band region, meaning 99.97% shielding efficiency to EWMs energy. Thereafter, by tapping into the manufacturing potential of 3D printing, a series of ideal parts featuring arbitrarily designated structures and exceptional performance was constructed. Particularly, the 3D-printed heat sinks possessed outstanding behaviors in thermal management, where the corresponding initial dissipating rate achieved a 266% improvement over that of the pure one. Besides, the 3D-printed shielding module posed high-efficiency EMI SE performance, corresponding to 35.8 dB at a specific Bluetooth-interaction signal (2.4 GHz). Overall, this innovative study not only enriches the printable materials with tailored multifunctionality but also brings the promising potential for applications in the next-generation functional parts.

Keywords: Three-dimensional printing, graphene nanosheets, polylactic acid, thermal management, Electromagnetic interference shielding

Suggested Citation

Shi, Shaohong and Dai, Mingyao and Tao, Xingyu and Wu, Fengxia and Sun, Jianping and Chen, Yinghong, 3d Printed Polylactic Acid/Graphene Nanocomposites with Tailored Multifunctionality Towards Superior Thermal Management and High-Efficient Electromagnetic Interference Shielding. Available at SSRN: https://ssrn.com/abstract=4120903 or http://dx.doi.org/10.2139/ssrn.4120903

Shaohong Shi

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Mingyao Dai

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Xingyu Tao

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Fengxia Wu

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Jianping Sun

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Yinghong Chen (Contact Author)

Sichuan University ( email )

No. 24 South Section1, Yihuan Road,
Chengdu, 610064
China

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