COMPUTATIONAL STUDY OF INTERFACE EFFECT ON IMPACT LOAD SPREADING IN SiC MULTI-LAYERED TARGETS
From MaRDI portal
Publication:3573663
DOI10.1142/S0219876205000545zbMath1189.74099OpenAlexW2039380690MaRDI QIDQ3573663
No author found.
Publication date: 1 July 2010
Published in: International Journal of Computational Methods (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s0219876205000545
interface crack propagationintersonic crack speedmultiple crack initiationload spreadingsic multi-layered targets
Composite and mixture properties (74E30) High-velocity fracture (74R15) Impact in solid mechanics (74M20)
Related Items (1)
Uses Software
Cites Work
- Sliding interfaces with contact-impact in large-scale Lagrangian computations
- Microcrack-induced damage accumulation in brittle rock under dynamic loading
- Recent developments in large-scale finite element Lagrangian hydrocode technology
- A numerical investigation of penetration in multilayered material/structure systems
- Computational modelling of impact damage in brittle materials
- Finite element simulation of dynamic fracture and fragmentation of glass rods
- Modeling impact-induced delamination of woven fiber-reinforced composites with contact/cohesive laws
- Enhanced ballistic performance of confined multi-layered ceramic targets against long rod penetrators through interface defeat
- Three-dimensional modeling of intersonic shear-crack growth in asymmetrically loaded unidirectional composite plates
- Analysis of intersonic crack growth in unidirectional fiber-reinforced composites
- Intersonic crack propagation in bimaterial systems
- A finite deformation continuum/discrete model for the description of fragmentation and damage in brittle materials.
- A Continuum Model for Void Nucleation by Inclusion Debonding
- A uniform strain hexahedron and quadrilateral with orthogonal hourglass control
This page was built for publication: COMPUTATIONAL STUDY OF INTERFACE EFFECT ON IMPACT LOAD SPREADING IN SiC MULTI-LAYERED TARGETS