Brackets and mounts
Industrial Square-Tube Kitting Rack with 4 Stored Support Legs
- Bounding box
- 4050.8 × 1000.0 × 1500.0 mm
- Engine
- Precision B-rep
- Parameters
- 21
- Published
- September 10, 2026
Download
Free to download and use. See the terms.
The prompt
Generate a parametric 3D CAD assembly of an industrial welded steel kitting rack made from 2x2 inch square tube profiles. The rack should be a long rectangular space-frame with a lower base frame, upper frame, vertical posts, cross members, and bottom skids/support rails. Keep the structure simple, welded, editable, and logically divided into components. Add 4 separate stored parts named Leg_1, Leg_2, Leg_3, Leg_4, each as an individual component. Place them on the rack in their storage/transport position, not in their final installed position. Each leg should sit in its own bay between frame posts, with simple supports and locating features to keep it fixed. Each leg should be modeled as a welded support part with: one vertical tube member, one lower horizontal tube member, one diagonal brace forming a triangular stiffened shape, simplified mounting plates at the ends. Allow small differences between the legs, but keep them within the same structural family. Support the legs on the lower frame with multiple contact points. Add simple stops, locator plates, or pockets to prevent sliding and tipping while keeping removal possible from the top or side. Prioritize structural logic, correct spatial arrangement, and future editability. Do not add bolts or fine manufacturing details. Use realistic industrial proportions and create a clean assembly with at least these components: Main_Frame, Base_Skids, Positioning_Stops, Leg_1, Leg_2, Leg_3, Leg_4. If exact dimensions are unknown, use reasonable industrial proportions and keep the whole assembly consistent.
Parameters
| Name | Value | Range |
|---|---|---|
| Overall Length | 4000 mm | 2000 – 8000 |
| Overall Width | 1000 mm | 600 – 2000 |
| Overall Height | 1500 mm | 800 – 2500 |
| Square Tube (2x2 in) | 50.8 mm | 25 – 100 |
| Number of Bays | 4 ea | 2 – 6 |
| End Stop Plate Height | 100 mm | 30 – 250 |
| End Stop Plate Thickness | 12 mm | 4 – 40 |
| Side Rail Stop Height | 80 mm | 20 – 200 |
| Side Rail Stop Thickness | 10 mm | 4 – 40 |
| Locator Tab Height | 60 mm | 15 – 150 |
| Locator Tab Thickness | 10 mm | 4 – 30 |
| Leg Mount Plate Thickness | 12 mm | 4 – 30 |
| Leg Mount Plate Size | 150 mm | 60 – 300 |
| Leg 1 Height | 1200 mm | 600 – 1300 |
| Leg 2 Height | 1180 mm | 600 – 1300 |
| Leg 3 Height | 1150 mm | 600 – 1300 |
| Leg 4 Height | 1220 mm | 600 – 1300 |
| Leg 1 Base Length | 500 mm | 250 – 800 |
| Leg 2 Base Length (brace angle) | 560 mm | 250 – 800 |
| Leg 3 Base Length | 500 mm | 250 – 800 |
| Leg 4 Base Length (lower member) | 620 mm | 250 – 800 |
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 →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
UAV Ogive Nose Cone
Design a watertight, 3D-printable aerodynamic nose cone module for a fixed-wing tactical UAV, optimized for printing in Carbon Fiber Filled PETG (PETG-CF). The base of the nose con
Flat-Strap Reel Spool
Create a 3D model of a custom flat-strap reel spool for a home plate housing cavity. Geometry: - A reel spool consisting of two parallel circular outer flanges connected by a cent
