Pages that link to "Item:Q2674071"
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The following pages link to Computationally efficient and effective peridynamic model for cracks and fractures in homogeneous and heterogeneous materials (Q2674071):
Displaying 17 items.
- Data-driven feature modeling, recognition and analysis in a discovery of supersonic cracks in multimillion-atom simulations (Q885181) (← links)
- Strength-induced peridynamic modeling and simulation of fractures in brittle materials (Q2021232) (← links)
- An adaptive peridynamics material point method for dynamic fracture problem (Q2138810) (← links)
- Numerical simulation of dynamic fracture in functionally graded materials using peridynamic modeling with composite weighted bonds (Q2420334) (← links)
- Modeling via peridynamics for large deformation and progressive fracture of hyperelastic materials (Q2679500) (← links)
- A peridynamic-informed neural network for continuum elastic displacement characterization (Q2693390) (← links)
- An efficient algorithm for modelling progressive damage accumulation in disordered materials (Q3369189) (← links)
- An Improved Peridynamic Model with Energy-Based Micromodulus Correction Method for Fracture in Particle Reinforced Composites (Q5106297) (← links)
- A hybrid polymer-water peridynamics model for ballistic penetration damage of soft materials (Q6096455) (← links)
- Modeling of hyperelastic polymer gels under blunt ballistic impact with three-dimensional flexibilities (Q6099232) (← links)
- A coupled 3D thermo-mechanical peridynamic model for cracking analysis of homogeneous and heterogeneous materials (Q6120176) (← links)
- Physics-informed neural network frameworks for crack simulation based on minimized peridynamic potential energy (Q6153887) (← links)
- Accelerating convergence of crack propagation simulation in peridynamic models via high-order temporal discretization (Q6170069) (← links)
- A Fast Implementation of the Linear Bond-Based Peridynamic Beam Model (Q6189879) (← links)
- Dual order-reduced Gaussian process emulators (DORGP) for quantifying high-dimensional uncertain crack growth using limited and noisy data (Q6194158) (← links)
- The fully coupled thermo-mechanical dual-horizon peridynamic correspondence damage model for homogeneous and heterogeneous materials (Q6194203) (← links)
- Three-dimensional peridynamic modeling of damage and penetration in composite plates exposed to localized explosive blasts (Q6663388) (← links)