4.7 Article

Self-Reinforced Nylon 6 Composite for Smart Vibration Damping

Journal

POLYMERS
Volume 13, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/polym13081235

Keywords

self-reinforced composites; nylon 6; polycaprolactam; polymer coil actuator; 3D extrusion printing; vibration damping; polymer crystallinity

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A novel vibration dampening polymer composite with smart thermoresponsive actuator was developed, showing high mechanical robustness and proven efficacy in active dampening of oscillatory vibration. The shape modification to a coiled structure and appropriate annealing of the reinforcing actuators directly influenced the vibration dampening capacity of the composite structure.
Passive vibration control using polymer composites has been extensively investigated by the engineering community. In this paper, a new kind of vibration dampening polymer composite was developed where oriented nylon 6 fibres were used as the reinforcement, and 3D printed unoriented nylon 6 was used as the matrix material. The shape of the reinforcing fibres was modified to a coiled structure which transformed the fibres into a smart thermoresponsive actuator. This novel self-reinforced composite was of high mechanical robustness and its efficacy was demonstrated as an active dampening system for oscillatory vibration of a heated vibrating system. The blocking force generated within the reinforcing coiled actuator was responsible for dissipating vibration energy and increase the magnitude of the damping factor compared to samples made of non-reinforced nylon 6. Further study shows that the appropriate annealing of coiled actuators provides an enhanced dampening capability to the composite structure. The extent of crystallinity of the reinforcing actuators is found to directly influence the vibration dampening capacity.

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