Effect of Ambient Temperature on the Flexural Behavior of 3D Printed Composite Beams
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2018, 2018
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Soc. for the Advancement of Material and Process Engineering Janie@sampe.org
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Abstract
Adaptation of the additive manufacturing technology with 3D printers may lead to a new track in the manufacturing of composite materials. This additive manufacturing technology aims to mitigate manufacturing challenges and related design limitations of traditional composite manufacturing methods. The implementation of 3D printing of composite materials has the potential of decreasing the material cost by developing scientific methodologies to understand and optimize this printing process. This study focuses on understanding the flexural behavior of 3D printed composite beam elements and providing material data of both matrix and reinforcement components of composite materials. In this study, the flexural performance at different thermal conditions is experimentally investigated. This investigation involves the effect of the matrix material with and without short-fiber reinforcements for a specified fiber placement in the beam and fiber filaments placement in compression and tension sides of the composite beam elements along with the ambient temperature change. © 2018 Elsevier B.V., All rights reserved.
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Keywords
Beaches, Composite Beams and Girders, Composite Materials, Printing Presses, Reinforcement, Temperature, Additive Manufacturing Technology, Ambient Temperature Change, Composite Manufacturing, Compression and Tension, Design Limitations, Flexural Performance, Manufacturing Challenges, Scientific Methodology, 3D Printers
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International SAMPE Technical Conference -- SAMPE Long Beach 2018 Conference and Exhibition -- Long Beach; CA; Long Beach Convention Center -- 137766
Volume
2018-May
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AFFORDABLE AND CLEAN ENERGY

11
SUSTAINABLE CITIES AND COMMUNITIES
