Testing and Modeling of Cellular Materials
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Testing and Modeling of Cellular Materials
Spear, Derek G; Palazotto, Anthony N
Taylor & Francis Ltd
12/2024
184
Mole
9781032290249
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1. Introduction. 2. Background Theory. 3. Experimental Methodology. 4. Uniaxial Compression of Lattices. 5. Mechanical Properties of Lattices and Design Variations. 6. Split Hopkinson Pressure Bar Test Results. 7. Strain Rate-Sensitive Constitutive Model for Lattice Structure. 8. Lattice Damage Model. 9. Computational Modeling Techniques and Results. 10. Projectile Impact Results. 11. Conclusions.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Additive manufacturing;lattices;impact testing;split Hopkinson pressure bar;time dependent material properties;mechanical characterization;SHPB Test;Smoothed Particle Hydrodynamics Models;Strain Rate Sensitivity Parameter;True Stress Strain Response;Flow Stress Model;Power Law Terms;Stress Strain Response Curve;Digital Image Correlation;SHPB Setup;Densification Strain;Plateau Stress;Stress Strain Response;Diamond Lattice;SPH Particle;Topology Optimization;Lattice Core;Strain Rate;Uniaxial Compression;Primitive Lattice;Strain Rate Sensitive;Melt Pool;BESO Method;SPH Model;Simp Method
1. Introduction. 2. Background Theory. 3. Experimental Methodology. 4. Uniaxial Compression of Lattices. 5. Mechanical Properties of Lattices and Design Variations. 6. Split Hopkinson Pressure Bar Test Results. 7. Strain Rate-Sensitive Constitutive Model for Lattice Structure. 8. Lattice Damage Model. 9. Computational Modeling Techniques and Results. 10. Projectile Impact Results. 11. Conclusions.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Additive manufacturing;lattices;impact testing;split Hopkinson pressure bar;time dependent material properties;mechanical characterization;SHPB Test;Smoothed Particle Hydrodynamics Models;Strain Rate Sensitivity Parameter;True Stress Strain Response;Flow Stress Model;Power Law Terms;Stress Strain Response Curve;Digital Image Correlation;SHPB Setup;Densification Strain;Plateau Stress;Stress Strain Response;Diamond Lattice;SPH Particle;Topology Optimization;Lattice Core;Strain Rate;Uniaxial Compression;Primitive Lattice;Strain Rate Sensitive;Melt Pool;BESO Method;SPH Model;Simp Method