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Simon Stapperfend
Simon Stapperfend
Technische Universität Berlin
在 freenet.de 的电子邮件经过验证
标题
引用次数
引用次数
年份
Two-dimensional laser melting of lunar regolith simulant using the MOONRISE payload on a mobile manipulator
S Linke, A Voß, M Ernst, PA Taschner, J Baasch, S Stapperfend, ...
3D Printing and Additive Manufacturing 9 (3), 223-231, 2022
102022
The MOONRISE: payload for mobile selective laser melting of lunar regolith
J Neumann, M Ernst, P Taschner, N Gerdes, S Stapperfend, S Linke, ...
International Conference on Space Optics—ICSO 2020 11852, 2791-2798, 2021
72021
Application of CubeSat Technologies for Research and Exploration on the Lunar Surface
M von Unwerth, L Fox, M Manthey, R Mahoney, S Stapperfend, I Kolek, ...
Advances in Astronautics Science and Technology 6 (2), 57-72, 2023
32023
The MOONRISE-payload as proof of principle for mobile selective laser melting of lunar regolith
J Neumann, M Ernst, P Taschner, J Perwas, R Kalms, T Griemsmann, ...
International Conference on Space Optics—ICSO 2022 12777, 2706-2714, 2023
22023
Simulation of the robotic lunar prototype MIRA3D
M von Unwerth, A Voß, S Stapperfend, S Linke, E Stoll
Deutsche Gesellschaft für Luft-und Raumfahrt-Lilienthal-Oberth eV, 2020
22020
Rover Testing for Lunar Landing Sites and Terrains: Exploring Lunar Analogues on Vulcano Island
SM Molony, RD Dominguez, LF Fox, TS Stark, PW Willenbrock, AF Felmet, ...
LPI Contributions 2887, 2941, 2023
2023
Field Campaign to Test a Nano-Rover in a Moon-Analog Environment and 3D Mapping Using LiDAR and Stereoscopic Camera
T Planitzer, S Stapperfend, L Fox, B Foing, V Unnithan
LPI Contributions 2887, 2956, 2023
2023
Additive Manufacturing with Molten Lunar Regolith under Vacuum Conditions
S Stapperfend, S Linke, KU Hess, D Dingwell, E Stoll
2023
High temperature characterisation of improved fidelity lunar regolith simulants
J Sutherland, A Mueller, S Stapperfend, D Dingwell, T Hansen, E Stoll
44th COSPAR Scientific Assembly. Held 16-24 July 44, 2978, 2022
2022
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