See how micrometric powder deposition and thermal lamination produce continuous roll-form stab-
See how a strain-rate-hardening elastomeric coating on ballistic fabric defeats both bullets an
See how inflatable strut tubes filled with compressed granular material create rigid shelters t
See how a segmented bed hood uses a nested movable portion and composite ballistic boards to pr
See how controlled axial extension in a compression apparatus improves fiber-to-composite stren
See how a desk-chair assembly with ballistic material and pivoting arm creates a convertible sa
Sequential water-repellent layers help aramid fabric retain bulletproof performance when wet, while an aramid pad reduces rear deformation.
Thermally fused high-tenacity open woven fabrics cut yarn cost and breakage while maintaining stab and ballistic resistance.
Liquid coating, tension, and fiber spreading flatten high-tenacity yarns into thinner, more uniform layers for stronger ballistic composites.
A support-assisted transfer process applies incompatible polymer coatings to a fiber web in one pass, improving layer bonding and coating consistency.
A flexible ethylene acrylic acid coating lets multi-threat fabric run in continuous rolls, cutting sheet scrap and preserving stab protection over time.
Separate stab-resistant and ballistic layers with angled unidirectional prepreg strips help protective vests balance dual-threat defense and manufacturability.
Spaced high-tenacity elongate bodies are woven and thermally fused to improve stab and ballistic resistance without tight weaves or fine yarns.
A multilayer wax and binder coating helps soft body armor resist abrasion while improving ballistic penetration resistance and durability.
A fluoropolymer multilayer coating helps soft ballistic fabrics resist seawater and solvents while retaining flexibility and ballistic performance.
Auxetic ballistic fabric wraps powerline implosion sleeves to attenuate shock, sound, and debris while preserving conductor joint integrity.
Clamped interface zones, bayonet couplings, and shock-resistant filling strengthen segmented cable shields while keeping assembly removable.
Opposite-doped poly resistor regions counter package-induced stress shifts, helping analog circuits keep more stable resistance.
Mounted standoff ballistic panels shield transformer cooling fins from elevated gunfire while avoiding heavy walls, long construction, and airflow blockage.
Light or laser beams at a defined mine safe level detect unsafe passenger posture and warn occupants without changing the vehicle body.
Modular connector arms and fasteners secure armor panels into a continuous, adjustable barrier for ballistic and blast protection.
An axially offset mounting surface separates load torque from the protective element, enabling high-load attachment without exceeding safe limits.
Integrated protrusion stiffeners in composite skin plates raise local rigidity while avoiding defect-prone fastening and added assembly steps.
A layered 3D structure redirects and dissipates impact energy to improve protection while preserving flexibility, conformability, and breathability.
Interconnected tetrahedral outer and inner structures spread and redirect impact energy to protect flexible, non-planar surfaces.
Localized diffusion-bond barriers create non-bonded regions in layered metallic armor to constrain cracks and dissipate projectile impact energy.
An outer-inner 3D structure redirects and absorbs impact forces to improve shielding while preserving flexibility and breathability.
Tailored laser shock peening creates deeper, reproducible compressive stress profiles in ballistic armor to mitigate spalling, shear plugging, and weld weakness.
Double-walled panels and vertical strengthening members harden ISO containers against blast, ballistic, and forced entry threats with simpler field fabrication.
A shield plate with deformable tabs traps screw heads during explosive impact, preventing fasteners from becoming interior projectiles.
A spaced plate with deformable tabs traps sheared screw heads during explosions, preventing inward projection from inspection hatch fixings.
An adapter chassis fits infantry FLIR into vehicle ISUs using existing mounts while preserving optical alignment, shock protection, and visibility.
Nested armor and breakaway hand pockets secure ballistic panels while enabling discreet access to waistband items without visible hand movement.
Controlled flange sliding between draw rings forms deep-drawn helmet preforms with less wrinkling, bridging, and material non-uniformity.
Preheated adhesive bonding joins ceramic and metal layers into a lighter composite that resists impact, delamination, and repeated hits.
Interconnected filaments and node-constraining material layers improve impact energy absorption, stiffness, and strength-to-weight ratio.
A lay-flat yoke and adjustable straps improve body armor comfort and weapon access while maintaining protective plate support.
A yoke-based armor hub keeps throat and deltoid guards attached during carrier swaps, reducing reattachment time while preserving comfort and mobility.
A modular upper protector keeps throat and deltoid guards attached during armor carrier swaps, improving mobility, fit, and protection.
A passive fiber optic backup sight keeps angle mirror image transmission available during power loss while avoiding a second mirror assembly.
Modular ballistic panels shield energy transmission equipment, preserve airflow, and trigger emergency alerts after detected impacts.
A telescoping panel barrier deploys manually in seconds without winches, providing durable perimeter protection for security and crowd control.
Interlocking ballistic wall panels allow quick shoot house assembly on uneven terrain while reducing ricochet risk during training.
Flexible body armor panels and segmented hook-and-loop straps improve vest mobility, comfort, and fit without sacrificing protection.
A sacrificial panel connector absorbs blast loads through tubular inversion and core crushing to limit load transfer and structural collapse.
Integrated impact sensors on removable ballistic panels detect gunfire events and notify emergency services while preserving vest visibility and wearability.
A bridge-and-sleeve cummerbund enables quick torso-size adjustment while maintaining the rigidity needed to securely support attached equipment.
A bridge-and-sleeve belt structure balances rigid item support with wearer comfort using simple girth adjustment and secure hook-and-loop attachment.
Split inner liner sections and a support sling make soft armor easier to insert and remove while improving comfort and uniform appearance.
Movable ballistic panels in an elastic carrier self-center on the torso to improve comfort, mobility, and shoulder load distribution.
A body-conforming vest insert uses a recessed bottom edge to support concealment and natural movement while maintaining ballistic protection.
Rotatable and sliding wall panels fold into a corner, then deploy as a ballistic barrier with a protected interior for students.
Corrugated profiles and sacrificial transverse ribs absorb projectile energy through controlled deformation, limiting penetration and structural damage.
Interconnected microlattice filaments absorb repeated impacts through elastic buckling while preserving shape and supporting lightweight protective structures.
Independent panel movement within an elastic carrier helps a ballistic vest follow torso motion while easing shoulder load.
Aluminum foam compresses between ductile metal sheets to absorb projectile energy while frames limit deflection across large protected areas.
A door plate and handle linked through one adjacent penetration reduce complex drilling while maintaining structural integrity.
Elastic and sliding attachments support carrier changes without repositioning attached throat and deltoid guards.
An external lens and fiber-optic path add a compact backup view when electronic periscope imaging loses power.
Interlocking spacer panels customize armor fit for female wearers while absorbing impact and resisting lateral displacement.
This case uses stiffened foam rims, adjustable fit features, and energy-absorbing spacers to limit plate tilt and ballistic trauma.
Partitioned cells filled with nonflammable materials delay crack development while distributing impact forces.