Tunusoğlu, 2011 - Google Patents
The effects of light-weight interface material on the stress wave propagation in the multilayered composite armor systemTunusoğlu, 2011
View PDF- Document ID
- 10454026367894886827
- Author
- Tunusoğlu G
- Publication year
- Publication venue
- PQDT-Global
External Links
Snippet
The main purpose of the current study is to investigate the effect of interlayer material on the ballistic performance of composite armor and stress wave propagation both experimentally and numerically. Three different interlayer materials, EPDM rubber, Teflon and Aluminum …
- 239000002131 composite material 0 title abstract description 209
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0442—Layered armour containing metal
- F41H5/045—Layered armour containing metal all the layers being metal layers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0414—Layered armour containing ceramic material
- F41H5/0428—Ceramic layers in combination with additional layers made of fibres, fabrics or plastics
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0442—Layered armour containing metal
- F41H5/0457—Metal layers in combination with additional layers made of fibres, fabrics or plastics
- F41H5/0464—Metal layers in combination with additional layers made of fibres, fabrics or plastics the additional layers being only fibre- or fabric-reinforced layers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0471—Layered armour containing fibre- or fabric-reinforced layers
- F41H5/0485—Layered armour containing fibre- or fabric-reinforced layers all the layers being only fibre- or fabric-reinforced layers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0414—Layered armour containing ceramic material
- F41H5/0421—Ceramic layers in combination with metal layers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H1/00—Personal protection gear
- F41H1/02—Armoured or projectile- or missile-resistant garments; Composite protection fabrics
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H7/00—Armoured or armed vehicles
- F41H7/02—Land vehicles with enclosing armour, e.g. tanks
- F41H7/04—Armour construction
- F41H7/042—Floors or base plates for increased land mine protection
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Akella et al. | Composite armour—A review | |
Yahaya et al. | Quasi-static penetration and ballistic properties of kenaf–aramid hybrid composites | |
Garcia-Avila et al. | Ballistic performance of a composite metal foam-ceramic armor system | |
Ali et al. | Ballistic impact properties of woven bamboo-woven E-glass-unsaturated polyester hybrid composites | |
Pai et al. | Development of materials and structures for shielding applications against Blast and Ballistic impact: A Detailed Review | |
Doddamani et al. | Analysis of light weight natural fiber composites against ballistic impact: A review | |
Luo et al. | The influence of metal cover plates on ballistic performance of silicon carbide subjected to large-scale tungsten projectile | |
Samir et al. | Preparation and characterization of bullet-proof vests based on polyamide fibers | |
Andraskar et al. | Impact response of ceramic structures-A review | |
Vargas-Gonzalez et al. | Hybridized composite architecture for mitigation of non-penetrating ballistic trauma | |
Rahbek et al. | Dynamic behaviour of ceramic armour systems | |
Okhawilai et al. | Hard armor composites from ballistic fiber-reinforced polybenzoxazine alloys | |
Ellis | Ballistic impact resistance of graphite epoxy composites with shape memory alloy and extended chain polyethylene spectra™ hybrid components | |
Palacios | Invariant manifolds in beam dynamics: free vibrations and nonlinear normal modes | |
Pathak et al. | A computational analysis of the high-velocity impact performance of lightweight 3D hybrid composite armors | |
Maulana et al. | Antiballistic material, testing, and procedures of curved-layered objects: A systematic review and current milestone | |
Tunusoğlu | The effects of light-weight interface material on the stress wave propagation in the multilayered composite armor system | |
Yu et al. | Review of the penetration resistance performance of lightweight ceramic composite armor under high-speed impact | |
Prasad et al. | The Energy Absorption Capability of Composite Materials and Structures: Influence of Impact Loading | |
Cegła | Special ceramics in multilayer ballistic protection systems | |
Rahman | Impact resistance of laminated hybrid composite panels composed of compliant and rigid plies | |
Sánchez-Gálvez et al. | Analytical and numerical simulations of ballistic impact on composite lightweight armours | |
Karagiozova et al. | Impact of cellular materials | |
Khalaf et al. | Exploring the impact resistance of hybrid sandwich composite body armor through experimental analysis | |
McLaurin | Dual-Hardness Titanium Body Armor for Concealable Applications |