Challenges and Opportunities of Self‐Healing Polymers and Devices for Extreme and Hostile Environments

Проблемы и возможности самовосстанавливающихся полимеров и устройств для экстремальных и агрессивных сред
James Ekeocha, Christopher Ellingford, Min Pan, Alan M. Wemyss, Chris Bowen, Chaoying Wan
2021-06-24

dynamic repairextreme environmentsharsh-environment materialsself-healing devicesself-healing polymers
Engineering materials and devices can be damaged during their service life as a result of mechanical fatigue, punctures, electrical breakdown, and electrochemical corrosion. This damage can lead to unexpected failure during operation, which requires regular inspection, repair, and replacement of the products, resulting in additional energy consumption and cost. During operation in challenging, extreme, or harsh environments, such as those encountered in high or low temperature, nuclear, offshore, space, and deep mining environments, the robustness and stability of materials and devices are extremely important. Over recent decades, significant effort has been invested into improving the robustness and stability of materials through either structural design, the introduction of new chemistry, or improved manufacturing processes. Inspired by natural systems, the creation of self-healing materials has the potential to overcome these challenges and provide a route to achieve dynamic repair during service. Current research on self-healing polymers remains in its infancy, and self-healing behavior under harsh and extreme conditions is a particularly untapped area of research. Here, the self-healing mechanisms and performance of materials under a variety of harsh environments are discussed. An overview of polymer-based devices developed for a range of challenging environments is provided, along with areas for future research.
1
Future research should address the challenges and opportunities involved in translating self-healing polymers and devices to extreme-environment applications.
2
Harsh environments—including extreme temperatures, nuclear, offshore, space, and deep-mining conditions—create stringent requirements for material and device robustness and stability.
3
Research on self-healing polymers remains in its infancy, with healing performance under harsh and extreme conditions identified as a particularly underexplored area.
4
Self-healing polymers could reduce unexpected failures, inspections, repairs, replacements, energy consumption, and costs caused by service-related damage.
5
The paper reviews self-healing mechanisms and material performance across diverse harsh environments and surveys polymer-based devices developed for challenging operating conditions.

self-healing polymers and polymer-based devices for extreme and hostile environments

self-healing mechanisms and performance under harsh environmental conditions

Publication Details
Publication Date
2021-06-24
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Authors
James Ekeocha
Christopher Ellingford
Min Pan
Alan M. Wemyss
Chris Bowen
Chaoying Wan
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