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A Review of the State of Dry Adhesives: Biomimetic Structures and the Alternative Designs They Inspire

机译:干胶状态回顾:仿生结构及其启发的替代设计

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摘要

Robust and inexpensive dry adhesives would have a multitude of potential applications, but replicating the impressive adhesive organs of many small animals has proved challenging. A substantial body of work has been produced in recent years which has illuminated the many mechanical processes influencing a dry adhesive interface. The especially potent footpads of the tokay gecko have inspired researchers to develop and examine an impressive and diverse collection of artificial fibrillar dry adhesives, though study of tree frogs and insects demonstrate that successful adhesive designs come in many forms. This review discusses the current theoretical understanding of dry adhesive mechanics, including the observations from biological systems and the lessons learned by recent attempts to mimic them. Attention is drawn in particular to the growing contingent of work exploring ideas which are complimentary to or an alternative for fibrillar designs. The fundamentals of compliance control form a basis for dry adhesives made of composite and ?¢????smart,?¢???? stimuli-responsive materials including shape memory polymers. An overview of fabrication and test techniques, with a sampling of performance results, is provided.
机译:健壮和廉价的干胶将具有许多潜在的应用,但是复制许多小型动物令人印象深刻的胶粘器官已被证明具有挑战性。近年来,已经完成了大量工作,阐明了影响干胶界面的许多机械过程。尽管对树蛙和昆虫的研究表明成功的胶粘剂设计有多种形式,但tokay壁虎特别有力的脚垫启发了研究人员开发和研究令人印象深刻且多样化的人造纤维状干胶粘剂。这篇综述讨论了目前对干式胶粘剂力学的理论理解,包括从生物系统中获得的观察结果以及最近尝试模仿它们的经验教训。特别要注意的是,不断涌现的工作探索构想是对原纤维设计的补充或替代。依从性控制的基础构成了由复合材料和“智能”,“塑料”制成的干胶的基础。刺激响应材料,包括形状记忆聚合物。提供了制造和测试技术的概述,并提供了性能结果的样本。

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