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dg2510425
10-18 05:01
Model Name
desk organizer 3d model
Tags
3d printing
3d printing modern
desk organizer
furniture
furniture 3d printing
furniture 3d printing modern
furniture modern
modern
Prompt
Design a 3D-printable "Auto-Swivel Light" smart drawer module based on the following technical and aesthetic specifications: 🔶 Overall Concept Create an organically shaped desk organizer drawer inspired by smooth river stones or sculptural forms — not boxy or cubic. The design must be ergonomic, minimal, and futuristic, with continuous flowing surfaces. The product consists of two main parts: Outer housing (static shell) Inner sliding drawer (movable part) 🧩 Functional Design Requirements 1. Drawer Mechanism The drawer must slide smoothly into the housing with ~0.3 mm clearance on each side. Include internal slide rails or shallow grooves (1.5–2 mm deep) for guiding the drawer. Add a stopper feature to prevent full detachment. 2. LED Light Channel On the top front edge of the drawer, add a continuous LED channel: Dimensions: ~9 mm wide × 6 mm deep Curved and angled downward about 20–25° to illuminate the desk when closed. When the drawer opens, the LED moves with it, shifting its beam to illuminate the inside of the drawer. 3. Conductive Rail Power System Inside the housing floor, add two parallel conductive rails (2 mm wide × 0.5 mm thick) labeled “+” and “–”. On the drawer base, add spring-loaded contact wipers that maintain contact with the rails as it slides. Create small internal channels for wires leading from the wipers to the LED strip. 4. Touch Sensor Zone On the drawer’s front surface, integrate a subtle, circular touch-sensitive area (Ø8 mm × 2 mm recess) for turning the LED on/off. It should look seamless—no physical button, just a touch area. 5. Magnet Connection (Optional) On each side surface, add small neodymium magnet holes (Ø6 mm × 2 mm) to allow modular side-by-side attachment. 💡 Light Diffuser Model a thin, translucent diffuser cap that fits over the LED channel: Material thickness: 1.2–1.5 mm Snap-fit design (0.3 mm clearance). Follows the organic curvature of the drawer front. Evenly diffuses light (avoid hot spots). ⚙️ Printing Considerations Fully 3D-printable using FDM technology. Main body: PLA or PLA+ Diffuser: Translucent PLA or PETG (natural color) Maintain printability without excessive supports; orient for minimal post-processing. 🧱 Dimensions (Approximate) Width: 150 mm Depth: 120 mm Height: 60 mm All walls: 2.2–2.5 mm thickness. 🎨 Aesthetic and Finish Outer body: matte, soft organic surfaces with subtle concave details. Drawer front: seamless integration of LED diffuser and touch zone. Style reference: futuristic, minimalist, luminous sculpture. Goal: Generate a detailed 3D model (STL or STEP) that is ready for single-user FDM printing and assembly. Include all internal mechanical spaces and electrical routing paths as described. Prioritize smooth glide motion, ergonomic form, and aesthetic fidelity. Output format: .STEP or .STL file suitable for slicing in Cura or PrusaSlicer.
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