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- W4313422940 abstract "Over the last decades, 3D printing has found applications in all areas of engineering, ranging from electronics to biomedical industries, due to its efficiency in the use of the material in terms of mass customization and waste reduction and its high resolution and precision during the prototyping stage. Nevertheless, while the traditional additive manufacturing industry is developing new applications or proposing some improvement of the static and inanimate 3D printed components, a novel technology, i.e., 4D printing, is arising. 4D printing adds a temporal dimension to 3D by providing vitality to the design of shape-memory materials using an external stimulus to trigger the object transformation into another designed structure. This contribution aims to improve the available information on the Polylactic Acid (PLA) shape memory polymer (SMP) behaviour under the effect of homogeneous thermal stimuli. Consequently, this study deals with a first analysis to understand the proper methodology to activate the shape memory effect (SME) and achieve a programmed deformation. The preliminary experimental results are compared with a simplified Finite Element Analysis (FEA) model to analyze and better understand the SME. This work lays the foundation for later research to understand which optimal specimens' geometric parameters may enlarge the activation range in PLA specimens, enhancing their shape capabilities of detecting temperature modification close to the glass transition temperature (Tg)." @default.
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- W4313422940 date "2022-01-01" @default.
- W4313422940 modified "2023-10-01" @default.
- W4313422940 title "Preliminary optimization of shape memory polymers geometric parameters to enhance the thermal loads' activation range" @default.
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- W4313422940 doi "https://doi.org/10.1016/j.prostr.2022.12.163" @default.
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