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- W4285152504 endingPage "333" @default.
- W4285152504 startingPage "297" @default.
- W4285152504 abstract "Natural fibers are moisture-sensitive due to their complex polysaccharidic composition. Upon moisture intake, they exhibit large hygroexpansion, which is controlled by their multiscale architecture. Composite materials using natural fibers are therefore affected by humidity, which limits their application. The most common approach found in the literature is to modify the fiber chemistry to reduce hygroscopic swelling. However, a biomimetic approach can use the humidity sensitivity of the natural fiber to generate shape-change transformations—hygromorphing. Inspired by the pinecone scale’s architecture-to-function relationship, hygromorph biocomposites (HBCs) are a novel class of shape-changing materials. Complex hierarchical architecture is often the key to biological structures. Four-dimensional (4D) printing encompasses a set of methods to propose and imagine HBC mechanisms with a predetermined response for various applications. The presented chapter is divided into two sections. The first section aims to gather foundational knowledge on the natural fiber microstructure, mechanical performance, composite applications, and biomimetic technical transfer as they apply to 4D printing. The second section addresses the application of 4D printing methods for the development of HBC materials, mechanisms, and material organization strategies. This section also envisions further technical developments, identifies current challenges, and outlines research outlooks in this novel field." @default.
- W4285152504 created "2022-07-14" @default.
- W4285152504 creator A5028805624 @default.
- W4285152504 creator A5041848713 @default.
- W4285152504 date "2022-01-01" @default.
- W4285152504 modified "2023-09-27" @default.
- W4285152504 title "4D printing of natural fiber composite" @default.
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- W4285152504 doi "https://doi.org/10.1016/b978-0-12-824082-3.00028-3" @default.
- W4285152504 hasPublicationYear "2022" @default.
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