4.8 Article

Laser-Induced Graphene Paper Heaters with Multimodally Patternable Electrothermal Performance for Low-Energy Manufacturing of Composites

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 12, 期 20, 页码 23284-23297

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.0c02188

关键词

laser-induced graphene; graphene papers; thin film heaters; flexible electronics; polymeric composites

资金

  1. Chinese government
  2. Beihang University
  3. National Natural Science Foundation of China (NSFC) [61701015]
  4. Beijing Natural Science Foundation [3202017]
  5. Commercial Aircraft Corporation of China, Ltd. [COMAC-SFGS-2017-36740]
  6. Chinese Aeronautical Establishment [2017ZF51077]

向作者/读者索取更多资源

Low-energy manufacturing of polymeric composites through two-dimensional electrothermal heaters is a promising strategy over the traditional autoclave and oven. Laser-induced graphene paper (LIGP) is a recent emergent multifunctional material with the merits of one-step computer aided design and manufacturing (CAD/CAM) as well as a flexible thin nature. To fully explore its capabilities of in situ heating, herein, we adventurously propose and investigate the customizable manufacture and modulation of LIGP enabled heaters with multimodally patternable performance. Developed by two modes (uniform and nonuniform) of laser processing, the LIGP heaters (LIGP-H) show distinctively unique characteristics, including high working range (>600 degrees C), fast stabilization (<8 s), high temperature efficiency (similar to 370 degrees C.cm(2)/W), and superb robustness. Most innovatively, the nonuniform processing could section LIGP-H into subzones with independently controlled heating performance, rendering various designable patterns. The above unique characteristics guarantee the LIGP-H to be highly reliable for in situ curing composites with flat, curved, and even inhomogeneous structures. With enormous energy-savings (similar to 85%), superb curing accuracy, and comparable mechanical strength, the proposed device is advantageous for assuring high-quality and highly efficient manufacturing.

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