Papers
1
Total Citations
5
H-Index
1
About
Xianan Gu is a researcher at the forefront of advanced manufacturing, specializing in the additive manufacturing of carbon fiber reinforced thermoplastic composites using robotic systems. Their most-cited work, "Analysis and Optimization of Laying Process Parameters of Carbon Fiber Reinforced Thermoplastic Composites for Additive Manufacturing Using Robot" (2023), has garnered 5 citations, marking a foundational contribution to the field. Gu’s research focuses on optimizing process parameters—such as temperature, pressure, and layup speed—to enhance the mechanical properties and precision of 3D-printed composite structures. This work addresses critical challenges in automated fiber placement, enabling stronger, lighter, and more cost-effective components for aerospace, automotive, and robotics applications. By bridging material science and robotic automation, Gu’s findings offer practical guidelines for industrial-scale production, reducing waste and improving repeatability. Their achievements highlight a commitment to sustainable manufacturing and the integration of intelligent systems into composite fabrication. As a rising voice in additive manufacturing, Gu’s research continues to influence both academic inquiry and real-world engineering solutions, paving the way for next-generation composite materials.
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Top Papers
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