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自主式自动埋种飞行器。

Autonomous self-burying seed carriers for aerial seeding.

机构信息

Morphing Matter Lab, Human-Computer Interaction Institute, Carnegie Mellon University, Pittsburgh, PA, USA.

Accenture Labs, San Francisco, CA, USA.

出版信息

Nature. 2023 Feb;614(7948):463-470. doi: 10.1038/s41586-022-05656-3. Epub 2023 Feb 15.

Abstract

Aerial seeding can quickly cover large and physically inaccessible areas to improve soil quality and scavenge residual nitrogen in agriculture, and for postfire reforestation and wildland restoration. 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 temperature. Here, inspired by Erodium seeds, 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), 45 times larger than the values in the literature. 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.

摘要

航空播种可以快速覆盖大面积且难以到达的区域,改善土壤质量,并在农业中清除残留氮,还可用于灾后造林和荒地恢复。然而,由于未掩埋的种子直接暴露在强烈的阳光下、风和食谷鸟类的影响下,以及不理想的空气湿度和温度,导致其发芽率很低。在这里,受紫堇属种子的启发,我们设计并制造了自钻式种子载体,将单板变成具有极高刚性的(干燥时约为 4.9 GPa,湿润时约为 1.3 GPa)和吸湿弯曲或卷曲致动器,其弯曲曲率非常大(1854 m),比文献中的值大 45 倍。我们的三尾载体在两次触发循环后,在平地的钻孔成功率为 80%,这归因于其尾部锚固的有利休止角(25°-30°),而天然紫堇属种子的成功率为 0%。我们的载体可以携带各种大小和内容的有效载荷,包括生物肥料和植物种子,其大小与白皮松的种子一样大,约 11mm 长,约 72mg 重。我们通过实验和数值模拟的数据比较来阐明曲率变换和驱动机制,以指导种子载体的设计和优化。我们的系统将提高航空播种的效果,以缓解农业和环境压力,并且在能量收集、软机器人和可持续建筑方面具有潜在的应用。

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