Zhang et al., 2022 - Google Patents
Failure behavior of sandwich beams with glass fiber-reinforced epoxy/aluminum laminates face-sheets and aluminum honeycomb core under three-point bendingZhang et al., 2022
- Document ID
- 5457461281495255772
- Author
- Zhang J
- Zhu Y
- Yuan H
- Huang W
- Publication year
- Publication venue
- Thin-Walled Structures
External Links
Snippet
The failure behavior and energy absorption performance of aluminum honeycomb sandwich beams with glass fiber-reinforced epoxy/aluminum laminates (GLARE) face-sheets under three-point bending are experimentally and numerically studied. The experimental …
- 210000003660 Reticulum 0 title abstract description 75
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE, IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C70/00—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
- B29C70/04—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
- B29C70/06—Fibrous reinforcements only
- B29C70/08—Fibrous reinforcements only comprising combinations of different forms of fibrous reinforcements incorporated in matrix material, forming one or more layers, and with or without non-reinforced layers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE, IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C70/00—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
- B29C70/04—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
- B29C70/28—Shaping operations therefor
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Zhang et al. | Failure behavior of sandwich beams with glass fiber-reinforced epoxy/aluminum laminates face-sheets and aluminum honeycomb core under three-point bending | |
Yang et al. | Ballistic impact responses and failure mechanism of composite double-arrow auxetic structure | |
Wei et al. | Fabrication and mechanical behaviors of an all-composite sandwich structure with a hexagon honeycomb core based on the tailor-folding approach | |
He et al. | Experimental and numerical research on the low velocity impact behavior of hybrid corrugated core sandwich structures | |
Sun et al. | On compressive properties of composite sandwich structures with grid reinforced honeycomb core | |
Zhang et al. | Dynamic response of sandwich plates with GLARE face-sheets and honeycomb core under metal foam projectile impact: Experimental and numerical investigations | |
Jiang et al. | Flexural performances of fiber face-sheets/corrugated core sandwich composite structures reinforced by horizontal stiffeners | |
Ivañez et al. | FEM analysis of dynamic flexural behaviour of composite sandwich beams with foam core | |
Zhang et al. | Experimental and numerical study on energy absorption performance of CFRP/aluminum hybrid square tubes under axial loading | |
Jiang et al. | A numerical study on the energy-absorption of fibre metal laminate conical frusta under quasi-static compression loading | |
Naresh et al. | Single and multi-layer core designs for Pseudo-Ductile failure in honeycomb sandwich structures | |
Mottaghian et al. | Numerical and experimental investigations into post-buckling responses of stainless steel-and magnesium-based 3D-fiber metal laminates reinforced by basalt and glass fabrics | |
Sebaey et al. | Crushing behavior of a unit cell of CFRP lattice core for sandwich structures’ application | |
Yu et al. | The impact resistance of composite Y-shaped cores sandwich structure | |
Wang et al. | Three-point bending of physically asymmetric metal sandwich beams with aluminum foam core: Failure behavior and optimal design | |
Zhang et al. | Failure behavior of a sandwich beam with GLARE face-sheets and aluminum foam core under three-point bending | |
Zhang et al. | Effect of stepwise gradient on dynamic failure of composite sandwich beams with metal foam core subject to low-velocity impact | |
Taheri-Behrooz et al. | Effect of stacking sequence on failure mode of fiber metal laminates under low-velocity impact | |
Li et al. | Postbuckling of pressure-loaded auxetic sandwich cylindrical shells with FG-GRC facesheets and 3D double-V meta-lattice core | |
Dariushi et al. | A study on flexural properties of sandwich structures with fiber/metal laminate face sheets | |
Yiru et al. | Core reinforcement design for improving flexural energy-absorption of corrugated sandwich composite structure | |
Nečemer et al. | Fatigue behaviour of re-entrant auxetic structures made of the aluminium alloy AA7075-T651 | |
Mei et al. | Investigation on the shear behaviors of carbon fiber composite sandwich panels with the X-core | |
Zhou et al. | Temperature effects on the compressive properties and failure mechanisms of composite sandwich panel with Y-shaped cores | |
Albayrak et al. | Experimental and numerical investigation of the geometrical effect on low velocity impact behavior for curved composites with a rubber interlayer |