Papers
2
Total Citations
8
H-Index
2
About
Huiliang Sun is a researcher specializing in structural mechanics and composite materials, with a particular focus on the dynamic behavior of advanced material systems used in robotics. His most recognized work centers on the mechanical performance of Glass Fiber Reinforced Polymer (GFRP) spherical shells, specifically investigating how these structures respond to low velocity impact conditions encountered during the normal operation of spherical robots. This research addresses a critical engineering challenge: ensuring that spherical shell structures can both withstand routine operational impacts and maintain protective capability against higher-strength, low-probability impact events. Sun's 2020 study on the dynamic response and damage assessment of GFRP spherical shells has garnered attention within the robotics and structural engineering communities, accumulating citations that reflect its relevance to researchers designing resilient robotic platforms. By combining dynamic response analysis with damage assessment methodologies, his work provides practical guidance for engineers seeking to optimize the protective and structural integrity of composite shell components. Sun's contributions sit at the intersection of composite materials science, impact mechanics, and robotics engineering, offering foundational insights that support the development of more durable and reliable spherical robotic systems.
Research Focus
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Top Papers
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