Papers
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Total Citations
3
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About
Lukas Boxberger is a researcher focused on bio-inspired engineering, particularly the development of invertible, tubular structures that mimic biological systems. His key research areas include simulation-driven design of growing structures and the application of biological principles to engineering challenges. Boxberger’s major contribution lies in his work on everting tubular net structures, which demonstrate a high change in volume between inactive and active states—a principle inspired by living organisms that temporarily enable additional functions. His most-cited paper, "Development of Everting Tubular Net Structures Using Simulation for Growing Structures" (2020), has garnered 3 citations, laying foundational groundwork for adaptive, deployable systems. This research holds promise for applications in robotics, medical devices, and aerospace, where compact, expandable structures are critical. Boxberger’s work exemplifies the intersection of biology and engineering, offering innovative solutions for dynamic, shape-changing materials. His achievements highlight the potential of bio-inspired design to revolutionize how we approach structural adaptability and growth in technology.
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