Shape Memory Polymer Composites: Characterization and Modeling
Shape Memory Polymer Composites: Characterization and Modeling
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- More about Shape Memory Polymer Composites: Characterization and Modeling
This research explores the bending and micro-buckling behavior of smart polymer beams using a phenomenological approach and numerical analysis. It models shape memory polymer and its composites, estimates thermomechanical properties, and performs non-linear bending analysis. Experimental case studies are included, along with MATLAB code to model material dependent properties.
Format: Hardback
Length: 214 pages
Publication date: 18 December 2023
Publisher: Taylor & Francis Ltd
Here is the rephrased text:
Exploring the Bend and Micro-Buckling Behavior of Smart Polymer Beams
Shape memory polymer (SMP) and its composites have gained significant attention in recent years due to their unique properties, such as shape memory effect, self-healing capabilities, and excellent mechanical properties. In this research, we focus on investigating the bending and micro-buckling behavior of smart polymer beams.
A phenomenological approach is employed to model shape memory polymer and its composites. This approach allows for the estimation of thermomechanical properties under dynamic temperature variations. The numerical analysis is conducted to perform non-linear bending analysis of smart polymer composites.
Various types of smart polymer composites, including shape memory polymer (SMP) beams, shape memory polymer (SMP) composites with fiber reinforcements, and shape memory polymer (SMP) composites with nanoparticles, are covered in this research. Experimental case studies are conducted for each type of composite to validate the theoretical models and numerical analysis.
Furthermore, MATLAB code is included to model material-dependent properties of shape memory polymer composites. This code enables researchers to simulate the behavior of these composites and predict their performance under different loading conditions.
By exploring the bending and micro-buckling behavior of smart polymer beams, this research contributes to the understanding of these materials' mechanical properties and their potential applications in various fields, such as aerospace, automotive, and medical devices. The phenomenological approach and numerical analysis methods used in this research provide valuable insights into the behavior of shape memory polymer composites and can be used to optimize their design and performance.
In conclusion, this research explores the bending and micro-buckling behavior of smart polymer beams using a phenomenological approach and numerical analysis. Various types of smart polymer composites are covered, and experimental case studies are conducted to validate the theoretical models and numerical analysis. MATLAB code is included to model material-dependent properties of shape memory polymer composites, enabling researchers to simulate their behavior and optimize their design.
Weight: 570g
Dimension: 234 x 156 (mm)
ISBN-13: 9781032489940
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