Enclosures and housings
Spice Rack Multi-Part
- Bounding box
- 235.0 × 150.0 × 80.0 mm
- Engine
- Precision B-rep
- Parameters
- 15
- Published
- September 6, 2026
Download
Free to download and use. See the terms.
The prompt
Design a simple, sturdy 3D-printable spice rack based on this description and reference photo: Overall dimensions: - Length (left-right): 135 mm - Height: 150 mm - Depth/Width (front-back): 80 mm Geometry and style: - Rectangular open-frame structure resembling a low wall or shelf with an open front and top. - Vertical back panel and two short side walls form a U-shaped enclosure. - Back panel features a decorative hexagonal honeycomb lattice pattern (open cells) that fills most of the back face, leaving a solid outer frame around the edges for strength. - The lattice should be clean, regular, and evenly spaced, similar to a hexagonal mesh. - Two long horizontal support arms/legs extend forward from the bottom front edge of the side walls, creating a stable base that sits on a countertop. - The front is completely open so spice jars can slide in easily. - All edges should be clean and slightly filleted for better printability and strength. - Wall thickness: approximately 3–4 mm for good rigidity while remaining lightweight. - Lattice struts: ~1.5–2 mm thick so they remain strong but print quickly. Printability requirements (critical): - Design the two front legs/support arms as separate printable parts that attach to the main body (via simple snap-fit, pegs, or screw holes) so the main body can be printed flat on the build plate without supports or tall vertical features. - The main body (back + sides + lattice) should lie flat on the print bed to minimize print time and support material. - Legs should be simple rectangular or slightly tapered beams that can be printed horizontally. - Ensure the assembled rack is reasonably sturdy and does not tip easily under the weight of typical spice jars. Style: modern, minimalist, industrial look with the hexagonal pattern as the main visual feature. Dark gray matte plastic appearance is fine for visualization. Output a clean, manifold solid model ready for 3D printing, with the main body and two separate leg parts clearly defined.
Parameters
| Name | Value | Range |
|---|---|---|
| Body Length (X) | 135 mm | 80 – 300 |
| Body Height (Y) | 150 mm | 80 – 300 |
| Body Depth (Z) | 80 mm | 40 – 200 |
| Wall Thickness | 3.5 mm | 2.5 – 5 |
| Lattice Hex Cell Size | 12 mm | 6 – 30 |
| Lattice Strut Thickness | 1.8 mm | 1 – 3 |
| Lattice Outer Frame Margin | 10 mm | 4 – 30 |
| Leg Length (X) | 35 mm | 20 – 80 |
| Leg Height (Y) | 15 mm | 5 – 30 |
| Leg Depth (Z) | 80 mm | 40 – 150 |
| Snap Peg Diameter | 4 mm | 2 – 8 |
| Snap Peg Height | 5 mm | 2 – 12 |
| Snap Peg Count | 2 mm | 1 – 6 |
| Fillet Radius | 0.8 mm | 0.1 – 2 |
| Exploded Layout Gap (X) | 15 mm | 5 – 100 |
Every value above is a live dimension. Open a model like this in the editor and each one becomes a slider you can drag before exporting.
More models
Browse the full gallery →Cylindrical Stainless Steel Basket with Folding Handles
Design a cylindrical 304 stainless steel basket with an outer diameter of 200 mm and height of 250 mm. The basket has solid side walls with no perforations. The bottom plate contai
Spur Gearbox
design gearbox
Trumpet Lyre Mount Main Body
A single 3D mechanical CAD part for a trumpet music lyre mount (Main Body with Paddle). Geometry details: 1. A 18mm-wide semi-cylindrical clamp arc for a 28mm diameter cylinder, w
