2018
DOI: 10.1049/trit.2018.0004
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Self‐regulation in chemical and bio‐engineering materials for intelligent systems

Abstract: Herein, the authors review the self-regulation system secured by well-designed hybrid materials, composites, and complex system. As a broad concept, the self-regulated material/system has been defined in a wide research field and proven to be of great interest for use in a biomedical system, mechanical system, physical system, as the fact of something such as an organisation regulating itself without intervention from external perturbation. Here, they focus on the most recent discoveries of self-regulation phe… Show more

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Cited by 7 publications
(1 citation statement)
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“…108 From this basin, authors have determined the optimal model for predicting thermal conductivity and established a transport training model that links thermal conductivity with molecular structure. 116 However, because the sample data set contains only 28 points, the characteristics of the model are not reliable. Therefore, in the molecular design stage, the intermediate characteristics of TG and TM are taken as the design objectives, and the transcription model is taken as the subsequent selection tool to accelerate molecular manufacturing.…”
Section: Case Studies Of Materials Design Based On Mechine Lerningmentioning
confidence: 99%
“…108 From this basin, authors have determined the optimal model for predicting thermal conductivity and established a transport training model that links thermal conductivity with molecular structure. 116 However, because the sample data set contains only 28 points, the characteristics of the model are not reliable. Therefore, in the molecular design stage, the intermediate characteristics of TG and TM are taken as the design objectives, and the transcription model is taken as the subsequent selection tool to accelerate molecular manufacturing.…”
Section: Case Studies Of Materials Design Based On Mechine Lerningmentioning
confidence: 99%