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天然被动液压致动器中力产生机制的评估。

Evaluation of force generation mechanisms in natural, passive hydraulic actuators.

作者信息

Le Duigou A, Castro M

机构信息

Polymer and Composite, European University of Brittany (UEB), LIMATB-UBS, Lorient, France.

出版信息

Sci Rep. 2016 Jan 4;6:18105. doi: 10.1038/srep18105.

Abstract

Pine cones are well known natural actuators that can move their scales upon humidity gradient. The mechanism manifests itself through a displacement easily observable by the naked eye, but coupled with stress generation. In ancient Egypt, wooden wedges were used to break soft blocks of stone by the generated swelling stress. The purpose of the present study is to evaluate the ability of pine cone scales to generate forces while being wetted. In our experiments, a blocking force of around 3N is measured depending on the position on the pine cone where the scales are extracted. A fairly good agreement is obtained when theoretical results based on bimetallic strip systems are compared with experimental data, even if overestimation is observed arising from the input data considered for dry tissues. Inspired by a simplified pine cone microstructure, a biocomposite analogue is manufactured and tested. Although an adequate blocking force can be generated, it has a lower value compared to natural pine cones which benefit from optimized swelling tissue content and interfacial bond strength between them. This study provides new insights to understand the generation of force by pine cones as well as to develop novel biocomposite functionalities.

摘要

松果是众所周知的天然致动器,能够在湿度梯度作用下移动其鳞片。该机制通过肉眼易于观察到的位移表现出来,但同时伴随着应力的产生。在古埃及,人们利用木制楔块通过产生的膨胀应力来破碎软石块。本研究的目的是评估松果鳞片在被润湿时产生力的能力。在我们的实验中,根据从松果上提取鳞片的位置不同,测得的阻挡力约为3N。当将基于双金属条系统的理论结果与实验数据进行比较时,即使观察到由于考虑干燥组织的输入数据而产生高估,但仍获得了相当好的一致性。受简化的松果微观结构启发,制造并测试了一种生物复合材料类似物。尽管可以产生足够的阻挡力,但与天然松果相比,其值较低,天然松果受益于优化的膨胀组织含量以及它们之间的界面粘结强度。本研究为理解松果产生力的原理以及开发新型生物复合材料功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e84c/4733047/77d2fd032f49/srep18105-f1.jpg

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