Resilience and dissipation in architected microstructures in large deformation아키텍티드 마이크로구조체의 대변형 형상회복 및 에너지 소산

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dc.contributor.advisorCho, Hansohl-
dc.contributor.advisor조한솔-
dc.contributor.authorLee, Gisoo-
dc.date.accessioned2023-06-26T19:32:29Z-
dc.date.available2023-06-26T19:32:29Z-
dc.date.issued2022-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1008446&flag=dissertationen_US
dc.identifier.urihttp://hdl.handle.net/10203/309716-
dc.description학위논문(석사) - 한국과학기술원 : 항공우주공학과, 2022.8,[viii, 57 p. :]-
dc.description.abstractIn this paper, we investigated the mechanical behavior of architected microstructures on cubic crystal lattices under large deformation and cyclic loading condition. Interpenetrating morphologies were presented as a counter part of dispersed morphologies. We investigated the effect of co-continuity on the mechanical performance at large strain. Representative volume elements in the principal crystallographic directions were presented to evaluate the anisotropy of the architected microstructures at large strain. The mechanical behavior of each constituent material under large deformation has been characterized. Then, a non-linear constitutive model for each constituent material was suggested and applied to a boundary value problem for the architected microstructures under finite deformation. Representative architected microstructures were fabricated on a high-resolution 3D printer, and compression tests were conducted using a mechanical testing machine. In experimental data and numerical simulation results, we elucidated the effect of co-continuity on stiffness, energy dissipation, shape recovery, and anisotropy of architected microstructures at large strain. Further, we presented architected microstructures that exhibit no reduction in stress response during cyclic loading at extreme stains.-
dc.languageeng-
dc.publisher한국과학기술원-
dc.subjectArchitected▼aCrystal▼aAdditive manufacturing▼aLarge deformation▼aEnergy dissipation▼aResilient-
dc.subject아키텍티드▼a크리스탈▼a적층 제조▼a대변형▼a에너지 소산▼a형상 회복-
dc.titleResilience and dissipation in architected microstructures in large deformation-
dc.title.alternative아키텍티드 마이크로구조체의 대변형 형상회복 및 에너지 소산-
dc.typeThesis(Master)-
dc.identifier.CNRN325007-
dc.description.department한국과학기술원 :항공우주공학과,-
dc.contributor.alternativeauthor이기수-
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