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Titlebook: Shape Memory Composites Based on Polymers and Metals for 4D Printing; Processes, Applicati Muni Raj Maurya,Kishor Kumar Sadasivuni,Samrana

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Nitinol-Based Shape-Memory Alloys,ral works were carried out to fabricate nitinol with the desired composition using magnetron co-sputtering of Ti elemental target and Ni–Ti alloy target. In addition to that, nitinol was also developed using magnetron co-sputtering of individual Ni and Ti elemental targets by regulating their target
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Molecular Dynamics Simulations for Nanoscale Insight into the Phase Transformation and Deformation ymers (SMPs). The phase transformations causing the shape-memory effects are due to the atomic/molecular-level rearrangements of atoms/molecules, which are difficult and expensive to monitor through in situ experimental studies. In this scenario, molecular dynamics (MD) simulations provide significa
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Meso, Micro, and Nano Particulate Filled Shape-Memory Polymers,n this chapter, emphasis was given to various types of filler particulates such as Meso, Micro, and Nanostructures, and their behavior after incorporation in polymers was discussed. The spatial distribution of fillers in the polymeric matrix determines the final desired properties of nanocomposites.
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Fiber- and Fabric-Reinforced Shape-Memory Polymers,nd also in what way to consolidate shape-memory capacities toward therapeutic gadgets. Fit as a shape-memory fiber part, carbon fiber, natural fiber, and conductive fiber will be presented and its potential applications. Nanosize shape-memory fiber or nonwoven will be an autonomous part of its novel
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