Investigation on the Mechanical Properties and Shape Memory Effect of Landing Buffer Structure Based on NiTi Alloy Printing

Author:

Yu Zhenglei,Xin Renlong,Xu Zezhou,Zhu Yining,Zhang Xiaolong,Hao Shijie,Zhang Zhihui,Liang Ping

Abstract

AbstractWith the deepening of human research on deep space exploration, our research on the soft landing methods of landers has gradually deepened. Adding a buffer and energy-absorbing structure to the leg structure of the lander has become an effective design solution. Based on the energy-absorbing structure of the leg of the interstellar lander, this paper studies the appearance characteristics of the predatory feet of the Odontodactylus scyllarus. The predatory feet of the Odontodactylus scyllarus can not only hit the prey highly when preying, but also can easily withstand the huge counter-impact force. The predatory feet structure of the Odontodactylus scyllarus, like a symmetrical cone, shows excellent rigidity and energy absorption capacity. Inspired by this discovery, we used SLM technology to design and manufacture two nickel-titanium samples, which respectively show high elasticity, shape memory, and get better energy absorption capacity. This research provides an effective way to design and manufacture high-mechanical energy-absorbing buffer structures using bionic 3D printing technology and nickel-titanium alloys.

Funder

Supported by the National Key R&D Program of China

the National Natural Science Foundation of China

the Science and Technology Development Program of Jilin Province

the Capital construction fund plan within the budget of Jilin Province

Chongqing Natural Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference31 articles.

1. F M Zeng, J Z Yang, W Zhu, et al. Research on design method of lunar Lander landing buffer mechanism. Spacecraft Engineering, 2010, 20: 46-51.

2. Z Yan. Design and analysis of outrigger buffers for vtol reusable launch vehicles. Harbin: Harbin Institute of Technology, 2019. (in Chinese)

3. S V Wal, R G Reid, D J Scheeres. Simulation of nonspherical asteroid landers: Contact modeling and shape effects on bouncing. Journal of Spacecraft and Rockets, 2020, 57: 109-130.

4. Z Y Chen, M Imholz, L Li, et al. Transient landing dynamics analysis for a lunar lander with random and interval fields. Applied Mathematical Modelling, 2020, 88: 827-851.

5. R F Li, W Z Guo. Novel design of a family of legged mobile landers based on decoupled landing and walking functions. Journal of Mechanical Science and Technology, 2020, 34: 3851-3822.

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