Autonomous self-burying seed carriers for aerial seeding

被引:0
|
作者
Danli Luo
Aditi Maheshwari
Andreea Danielescu
Jiaji Li
Yue Yang
Ye Tao
Lingyun Sun
Dinesh K. Patel
Guanyun Wang
Shu Yang
Teng Zhang
Lining Yao
机构
[1] Carnegie Mellon University,Morphing Matter Lab, Human
[2] Accenture Labs,Computer Interaction Institute
[3] Zhejiang University,College of Computer Science and Technology
[4] Zhejiang University City College,School of Art and Archeology
[5] University of Pennsylvania,Materials Science and Engineering
[6] Syracuse University,Department of Mechanical and Aerospace Engineering
[7] Syracuse University,BioInspired Syracuse
来源
Nature | 2023年 / 614卷
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学科分类号
摘要
Aerial seeding can quickly cover large and physically inaccessible areas1 to improve soil quality and scavenge residual nitrogen in agriculture2, and for postfire reforestation3–5 and wildland restoration6,7. However, it suffers from low germination rates, due to the direct exposure of unburied seeds to harsh sunlight, wind and granivorous birds, as well as undesirable air humidity and temperature1,8,9. Here, inspired by Erodium seeds10–14, we design and fabricate self-drilling seed carriers, turning wood veneer into highly stiff (about 4.9 GPa when dry, and about 1.3 GPa when wet) and hygromorphic bending or coiling actuators with an extremely large bending curvature (1,854 m−1), 45 times larger than the values in the literature15–18. Our three-tailed carrier has an 80% drilling success rate on flat land after two triggering cycles, due to the beneficial resting angle (25°–30°) of its tail anchoring, whereas the natural Erodium seed’s success rate is 0%. Our carriers can carry payloads of various sizes and contents including biofertilizers and plant seeds as large as those of whitebark pine, which are about 11 mm in length and about 72 mg. We compare data from experiments and numerical simulation to elucidate the curvature transformation and actuation mechanisms to guide the design and optimization of the seed carriers. Our system will improve the effectiveness of aerial seeding to relieve agricultural and environmental stresses, and has potential applications in energy harvesting, soft robotics and sustainable buildings.
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页码:463 / 470
页数:7
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