Self-recovery and fatigue resistance behavior of the C4-G20-P20
Par un écrivain mystérieux
Last updated 15 juillet 2024
![Self-recovery and fatigue resistance behavior of the C4-G20-P20](https://www.researchgate.net/publication/330829759/figure/fig4/AS:721842004320257@1549111953065/Self-recovery-and-fatigue-resistance-behavior-of-the-C4-G20-P20-conjoined-network.png)
Download scientific diagram | Self-recovery and fatigue resistance behavior of the C4-G20-P20 conjoined-network hydrogel. (A) Sequential loading-unloading compression tests without interval and (B) the corresponding calculated total and dissipated toughness of the C4-G20-P20 hydrogel under different strains (ɛ = 0.2, 0.4, 0.6, and 0.8). (C) Recovery cyclic compression tests and (D) the corresponding calculated total and dissipated toughness of the C4-G20-P20 hydrogel for different relaxation times under a constant strain (ɛ = 0.6). (E) Fatigue resistance and (F) the corresponding calculated total and dissipated toughness of the C4-G20-P20 hydrogel with five successive loading-unloading cycles without interval under a constant strain (ɛ = 0.6). (G) Proposed mechanism for the self-recovery and fatigue resistance ability: Ionic bonds reformed at original sites or other accessible sites. from publication: Conjoined-network rendered stiff and tough hydrogels from biogenic molecules | Hydrogels from biological sources are expected as potential structural biomaterials, but most of them are either soft or fragile. Here, a new strategy was developed to construct hydrogels that were both stiff and tough via the formation of the conjoined-network, which was | Hydrogel, Biocompatible Materials and Biocompatibility | ResearchGate, the professional network for scientists.
![Self-recovery and fatigue resistance behavior of the C4-G20-P20](https://www.researchgate.net/publication/330829759/figure/fig2/AS:721842000109568@1549111952994/Construction-of-C-G-P-physical-conjoined-network-hydrogel-A-and-B-Scheme-of-A.jpg)
Construction of C-G-P physical conjoined-network hydrogel. (A and B)
![Self-recovery and fatigue resistance behavior of the C4-G20-P20](https://assets.isu.pub/document-structure/230517132842-721794ae1d223d63315e885d0baf1dda/v1/19d4e24f853387a53234c8a9841c66d5.jpeg)
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Structure features of a conjoined-network hydrogel. (A and B) A
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Self-recovery and fatigue resistance behavior of the C4-G20-P20
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Tunable mechanical properties of C-G-P conjoined-network hydrogels via
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