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Anonymous1769574289
01-28 04:42
Model Name
storage cabinet 3d model
Tags
furniture
rendering
realistic
Prompt
Generate an engineering-grade 3D CAD model of a Unit Load Automated Guided Vehicle (AGV) with a fixed, double-sided, fall-proof rack system and a dedicated bottom electronics workspace. The AGV is conceptually designed to transport books; however, the CAD model must not include any books, payloads, wiring, cables, or electronic components. All such elements must be represented only as empty internal volumes. The rack is permanently mounted to the AGV base and is not removable. The structure is a single integrated assembly. The bottom portion is a fully enclosed electronics compartment with a clean industrial exterior, ventilation slots or perforations on the side panels, a flat internal mounting plate, and a closed service access panel. No internal components or wiring are visible. A 20–40 mm vertical gap is provided between the bottom electronics enclosure and the rack base to allow airflow, cable routing space, and visual separation, while remaining empty. The top rack system is fully enclosed on the left and right sides, with two opposing user-access faces (front and rear) for loading and unloading. The rack is split by a full-height central vertical divider, creating two mirrored storage bays. Shelves are accessible from both user-facing sides, while the remaining surfaces are solid panels for structural rigidity and safety. Shelves are evenly spaced, front-and-rear accessible, and no books or placeholders are included. The rack is structurally designed to support up to 50 books total (25 per side) as a design reference only. Each shelf includes fall-proof features consisting of 20–30 mm retaining lips on the exposed access edges to prevent sliding during AGV motion. All lips, edges, and corners are rounded and filleted, and shelf side surfaces include raised safety borders. The AGV chassis is a low-profile rectangular industrial base with approximate dimensions of 800 mm (length) × 500 mm (width), ground clearance of ~30 mm, and reserved space for a four-wheel configuration (two powered wheels and two caster wheels) to maintain a low center of gravity. The CAD model must use fully parametric, editable solid geometry with clean topology, manufacturable features, proper fillets and chamfers, and modular parts including the chassis, electronics enclosure, rack frame, shelves, and center divider. Include mounting provisions for sensors such as LiDAR or ultrasonic sensors and a flush-mounted emergency stop housing, without exposing any wiring or electronics. The output must be a solid CAD model compatible with STEP, IGES, and STL formats, use millimeters (mm), and follow functional industrial design principles only, with no artistic styling.
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