JOURNAL ARTICLE

Room-Temperature Self-Healing Ablative Composites via Dynamic Covalent Bonds for High-Performance Applications

Yuanbo CaiHuawei ZouZhengguang HengYang ChenMei Liang

Year: 2020 Journal:   ACS Applied Polymer Materials Vol: 2 (9)Pages: 3977-3987   Publisher: American Chemical Society

Abstract

High-performance ablative composites demonstrate promising applications in the field of aerospace for thermal protection. In this study, the preparation of flexible thermal ablative composites with fast room-temperature self-healing properties was reported. First, a facile route to synthesize transparent and self-healing PDMS-polyurethane (PU) elastomers was proposed. Results showed that the room-temperature self-healing efficiency of PDMS-PU elastomers can reach as high as 92.9% for 3 h. Low-field NMR analysis indicated that the mobility of molecular chains plays a critical role in determining the self-healing efficiency of PDMS-PU elastomers. Afterward, polymeric thermal protection composites which can be self-healed at room temperature within 24 h were prepared. Results indicated that the self-healed composites can withstand flame erosion at nearly 1300 °C. This work provides insights into expanding the application of self-healing materials in the aerospace industry, where heat ablation and the intactness of thermal protection systems are both primary concerns.

Keywords:
Materials science Self-healing Elastomer Composite material Ablative case Polyurethane Aerospace Thermal Polymer

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Cited By
5.37
FWCI (Field Weighted Citation Impact)
44
Refs
0.97
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Citation History

Topics

Polymer composites and self-healing
Physical Sciences →  Materials Science →  Polymers and Plastics
Flame retardant materials and properties
Physical Sciences →  Materials Science →  Polymers and Plastics
Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering

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