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- W4316042016 abstract "In the context of computational modeling of fracture in chemo-mechanical environments, physically-sound and strong coupling between different fields is essential. Furthermore, our knowledge of the fracture in a purely mechanical setting should be extended to the new realm adequately. In this work, we apply the cohesive phase-field (CPF) fracture models to address damage initiation and progression in a chemo-mechanical coupled environment. Since CPF models are shown to be independent of the length scale parameter, such models allow a unified simulation framework for bulk and interface damages that concurrently and competitively occur in the battery materials. First, a thermodynamical framework is discussed to obtain all the possible coupling terms consistently. Through a systematic derivation from dissipation inequality and by performing various studies, we intend to comparatively demonstrate the role of different coupling terms and their impact on the obtained results. Specifically, we focus on (1) the influence of the stress field as well as the damage variable on the flux vector, (2) concentration-dependent fracture properties, (3) advantages of cohesive phase-field formulation in the multiphysics environment, and (4) influence of phase-transformation on the cracking mechanism in solids. Finally, we present some initial studies on a simplified system of a solid-state battery system, where cracking inside a single crystalline active material surrounded by a solid electrolyte is under focus. The results of the study show the dominant crack patterns. Such investigations open up opportunities for better design of battery microstructures and enhance their lifetime and performance at the cell level." @default.
- W4316042016 created "2023-01-14" @default.
- W4316042016 creator A5009754958 @default.
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- W4316042016 creator A5066374264 @default.
- W4316042016 creator A5066628269 @default.
- W4316042016 date "2023-04-01" @default.
- W4316042016 modified "2023-10-01" @default.
- W4316042016 title "A cohesive phase-field fracture model for chemo-mechanical environments: Studies on degradation in battery materials" @default.
- W4316042016 cites W1950717060 @default.
- W4316042016 cites W1987895449 @default.
- W4316042016 cites W2002718799 @default.
- W4316042016 cites W2021893249 @default.
- W4316042016 cites W2025301209 @default.
- W4316042016 cites W2040847832 @default.
- W4316042016 cites W2063677883 @default.
- W4316042016 cites W2068843786 @default.
- W4316042016 cites W2112311198 @default.
- W4316042016 cites W2120970762 @default.
- W4316042016 cites W2122106930 @default.
- W4316042016 cites W2130091774 @default.
- W4316042016 cites W2141374225 @default.
- W4316042016 cites W2170133891 @default.
- W4316042016 cites W2193211475 @default.
- W4316042016 cites W2288547490 @default.
- W4316042016 cites W2304127934 @default.
- W4316042016 cites W2313515426 @default.
- W4316042016 cites W2329754800 @default.
- W4316042016 cites W2330721086 @default.
- W4316042016 cites W2398221586 @default.
- W4316042016 cites W2471672950 @default.
- W4316042016 cites W2518099942 @default.
- W4316042016 cites W2519076633 @default.
- W4316042016 cites W2520131369 @default.
- W4316042016 cites W2522941144 @default.
- W4316042016 cites W2549393160 @default.
- W4316042016 cites W2560348663 @default.
- W4316042016 cites W2578966001 @default.
- W4316042016 cites W2593326986 @default.
- W4316042016 cites W2617331090 @default.
- W4316042016 cites W2622261719 @default.
- W4316042016 cites W2725925537 @default.
- W4316042016 cites W2742132188 @default.
- W4316042016 cites W2775719356 @default.
- W4316042016 cites W2787322343 @default.
- W4316042016 cites W2792677321 @default.
- W4316042016 cites W2796282060 @default.
- W4316042016 cites W2803083062 @default.
- W4316042016 cites W2806888145 @default.
- W4316042016 cites W2808136086 @default.
- W4316042016 cites W2808383530 @default.
- W4316042016 cites W2808914478 @default.
- W4316042016 cites W2809601962 @default.
- W4316042016 cites W2883501047 @default.
- W4316042016 cites W2886366124 @default.
- W4316042016 cites W2891975168 @default.
- W4316042016 cites W2894097233 @default.
- W4316042016 cites W2898084507 @default.
- W4316042016 cites W2906328214 @default.
- W4316042016 cites W2910842313 @default.
- W4316042016 cites W2921015645 @default.
- W4316042016 cites W2944008706 @default.
- W4316042016 cites W2963112682 @default.
- W4316042016 cites W2965579814 @default.
- W4316042016 cites W2969485815 @default.
- W4316042016 cites W2979952945 @default.
- W4316042016 cites W2985958607 @default.
- W4316042016 cites W2989860015 @default.
- W4316042016 cites W2999696544 @default.
- W4316042016 cites W3003981393 @default.
- W4316042016 cites W3004884044 @default.
- W4316042016 cites W3010003093 @default.
- W4316042016 cites W3019152834 @default.
- W4316042016 cites W3028372249 @default.
- W4316042016 cites W3037011244 @default.
- W4316042016 cites W3048055373 @default.
- W4316042016 cites W3059087437 @default.
- W4316042016 cites W3095338855 @default.
- W4316042016 cites W3104918094 @default.
- W4316042016 cites W3107541746 @default.
- W4316042016 cites W3110799822 @default.
- W4316042016 cites W3111582260 @default.
- W4316042016 cites W3119044016 @default.
- W4316042016 cites W3124479838 @default.
- W4316042016 cites W3129276260 @default.
- W4316042016 cites W3133415437 @default.
- W4316042016 cites W3143141125 @default.
- W4316042016 cites W3152543799 @default.
- W4316042016 cites W3165567131 @default.
- W4316042016 cites W3177880987 @default.
- W4316042016 cites W3181393748 @default.
- W4316042016 cites W3198779831 @default.
- W4316042016 cites W3216354714 @default.
- W4316042016 cites W4200485651 @default.
- W4316042016 cites W4207062261 @default.
- W4316042016 cites W4210636570 @default.