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- W2996119370 abstract "Architectedmaterials are a class of materials with novelproperties that consist of numerous periodic unit cells. Inpast investigations, researchers have demonstrated how architected materialscan achieve these novel properties by tailoring the features of the unit cellswithout changing the bulk materials. Here, a groupof architected materials called Phase Transforming Cellular Materials (PXCMs)are investigated with the goal of mimicking the novel properties of shape-memoryalloys. A general methodology is developed forcreating 1D PXCMs that exhibit temperature-induced reverse phasetransformations (i.e., shape memory effect) after undergoing largedeformations. During this process, the PXCMs dissipateenergy but remain elastic (i.e., superelasticity). Next, inspired bythe hydration-induced shape recovery of feathers, a PXCM-spring system is developedthat uses the superelasticity of PXCMs to achieve shape recovery. Followingthese successes, the use of PXCMs to resist simulated seismic demands isevaluated. To study how they behave in a dynamic environment and how well theirresponse can be estimated in such an environment, a single degree offreedom-PXCM system is subjected to a series of simulated ground motions.Lastly, the concept of PXCMs is extended into two dimensions by creating PXCMsthat achieve superelasticity in two or more directions. Overall, the findingsof this investigation indicate that PXCMs: 1) canachieve shape memory and recovery effects through temperature changes, 2) offera novel alternative to traditional building materials for resisting seismic demands,and 3) can be expanded into two dimensions while still exhibitingsuperelasticity." @default.
- W2996119370 created "2019-12-26" @default.
- W2996119370 creator A5032470775 @default.
- W2996119370 date "2019-11-28" @default.
- W2996119370 modified "2023-09-24" @default.
- W2996119370 title "Stress- and Temperature-Induced Phase Transforming Architected Materials with Multistable Elements" @default.
- W2996119370 doi "https://doi.org/10.25394/pgs.11250002.v1" @default.
- W2996119370 hasPublicationYear "2019" @default.
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