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FILBE Rucksack Frame – High-Resolution 3D Scan
This listing features a high-resolution 3D scan of a FILBE (Family of Improved Load Bearing Equipment) rucksack frame, captured directly from an original physical frame and preserved with its authentic geometry, structural features, and surface detail intact.
The model accurately represents the injection-molded polymer load frame, including its distinctive open lattice structure, weight-reduction cutouts, mounting slots, curvature, and reinforcement ribs. Fine surface details such as molded texture, parting lines, wear marks, and manufacturing artifacts are retained, making this scan an excellent real-world reference that goes far beyond a clean, hand-modeled approximation.
Key Features
True-to-life proportions based on a real FILBE frame
Accurate lattice and rib geometry, including structural cutouts and reinforcement zones
Authentic curvature and profile, matching the ergonomic back-mounted form
Detailed slotting and mounting interfaces for straps and attachment hardware
Preserved surface texture, including molded polymer grain and wear variation
Asymmetric real-world imperfections typical of used field equipment
Ideal Use Cases
Hard-surface reference for CAD or clean retopology
Game-ready asset creation (military, survival, simulation, or tactical titles)
Film / VFX props and realistic equipment dressing
Product design and load-bearing system studies
Reverse-engineering or visualization projects
3D printing prep after cleanup and solidification (as needed)
Technical Notes
Delivered as a raw 3D scan mesh
Not retopologized, decimated, or optimized
Intended for professional workflows requiring cleanup or adaptation
Scale matches the real-world object (verify units in your pipeline)
Minor scan artifacts and occluded areas may be present, consistent with complex open-frame geometry
Important Disclaimer
This is a digital 3D model only.No physical equipment or gear is included.The model is provided for visualization, reference, educational, and artistic purposes.
REVIEWS & COMMENTS
accuracy, and usability.
