4.8 Article

Dual Adaptation of a Flexible Shape Memory Polymer Adhesive

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 13, Issue 23, Pages 27656-27662

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c05434

Keywords

shape memory polymer; dry adhesives; underwater adhesives; fabric adhesives; flexible adhesives

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The shape memory polymer (SMP) adhesive shows strong adhesion to various surfaces and the ability to adapt to different shapes and flexures, allowing for potential applications in common fabrics. The dual adaptation of an SMP adhesive, with a thin SMP layer and backing fabric, is proposed to optimize both shape and flexure adaptations for improved performance. Research in this field involves theoretical rationale, computational studies, and experimental demonstrations of the SMP adhesive's capabilities, particularly in dry and underwater conditions.
A shape memory polymer (SMP) adhesive forms a conformal and hermetic contact with a target surface at the soft, rubbery state and provides a high-strength dry adhesion at the rigid, glassy state. In particular, recent SMP adhesive studies show SMP's ability to adhere to various rough and even underwater yet rigid surfaces. However, achieving and retaining the strong adhesion on flexible target surfaces such as common fabrics has not been reported since a flexible target surface would easily be peeled off from an SMP adhesive, which is too rigid to accommodate the target surface flexing. Here, we introduce the dual adaptation of an SMP adhesive composed of a thin SMP layer and a backing fabric, which involves the shape adaptation to make a strong adhesive contact and the flexure adaptation to tolerate a target surface flexing. To discover the criteria for optimizing both shape and flexure adaptations, we present the theoretical rationale as well as the computational and experimental studies in this work. Based on the findings here, we design a thin SMP adhesive and demonstrate its dry and underwater adhesive performances on common clothes to highlight its potential applications.

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