Commercial & industrial fabrication

Parts made practical.

Product-ready 3D modeling and precision 3D printing for teams that need a real solution—not just a prototype that looks good on a desk.

01Design support
from day one
02Low-volume
production ready
03Built for real-world
use cases
X / 240.00
Z / 165.20
86.4 mm
42.0 mm
BUILD STATUSProduction-ready
Built for work

When off-the-shelf
doesn’t fit the job.

We help businesses turn physical problems into useful parts. Bring us a CAD file, a broken component, a rough drawing, or simply the outcome you need—we’ll help define the right path forward.

Practical engineering. Clear communication. No unnecessary complexity.

Capabilities / 01

From idea to
useful object.

One partner for the thinking and the making. Each project is reviewed for geometry, material demands, finish, quantity, and real-world use.

01

3D printing

Durable, dimensionally considered parts for prototypes, tools, fixtures, enclosures, and end-use applications.

  • Functional parts
  • Material guidance
  • Small batches
02

3D modeling

Manufacturing-minded CAD built from sketches, measurements, reference parts, or an early-stage idea.

  • Part design
  • Design repair
  • Drawing to CAD
03

Rapid prototyping

Fast physical iterations that help teams validate fit, ergonomics, assembly, and function before committing.

  • Fit checks
  • Design iteration
  • Proof of concept
04

Low-volume production

Repeatable short runs for bridge production, replacement inventory, specialty products, and field needs.

  • Repeatable output
  • Part tracking
  • Batch delivery
05

Post-processing & finishing

Surface preparation, painting, and finish work that transforms printed parts into polished pieces with an automotive-grade appearance.

  • Surface refinement
  • Painted parts
  • Automotive-grade finish
Applications / 02

Parts with a
purpose.

The best use of 3D printing is not a novelty. It is a part that removes friction, answers a question, or keeps a project moving.

01

Jigs & fixtures

Make repetitive work faster, safer, and easier to reproduce.

02

Legacy replacement parts

Recreate unavailable components and keep useful equipment working.

03

Custom enclosures

Protect electronics with purpose-built housings, mounts, and interfaces.

04

Product development

Move from napkin sketch to a testable object with fewer handoffs.

05

Sales & presentation models

Make complex equipment or ideas tangible for customers and stakeholders.

06

Specialty production

Produce low-quantity parts where traditional tooling does not make sense.

Selected work / 03

From screen to
finished part.

Real projects reveal more than a capability list. This series follows the decisions that carry an idea from digital model to physical result.

Case study / 001Model → specification → production

Multi-part product development

Complex wearable
headset system

  • 3D modeling
  • Fit validation
  • Color specification
  • Production translation
Grayscale 3D model of a complex headset fitted to a digital head form
01 Fit & proportion study
Annotated headset model showing planned black, accent, chrome, and gray finishes
02 Color & finish specification
The challenge

Translate an intricate concept into a wearable, multi-component physical build while preserving silhouette, fit, surface layering, and finish intent.

The approach

The design was evaluated on a digital head form, organized into distinct components, and mapped with a detailed color plan before moving into production.

The result

A finished assembly that closely carries the designed geometry, layered detailing, and color placement into the physical product.

Finished black, gray, and pink multi-part headset product photographed on white
Physical production
03 Final production result
Case study / 002Full-scale system → CAD adaptation → presentation model

Industrial scale modeling

Building-scale cooling
system model

24inches wide
  • CAD adaptation
  • Scale modeling
  • Complex assembly
  • Presentation model
Front CAD view of a large modular industrial cooling system
01 Front system geometry
Three-quarter CAD view showing the cooling system structure and repeated modules
02 Assembly & structure study
The challenge

Reduce a building-sized cooling system to a manageable display format without losing the modular architecture and defining engineering features that make the equipment recognizable.

The approach

The CAD geometry was adapted for scale production, balancing structural clarity, repeated cooling modules, enclosure details, and the practical needs of a large multi-part assembly.

The result

A two-foot-wide physical model that communicates the full system’s form, modular layout, and brand identity at tabletop scale.

Front view of the finished two-foot-wide AtmosZero cooling system scale model
24 in. finished width
03 Final front view
Three-quarter view of the finished AtmosZero industrial cooling system scale model
Physical production
04 Final three-quarter view
Case study / 003Need → CAD design → TPU prototypes in under one week

Rush functional prototyping

RFID belt
clip

≤1week turnaround
  • TPU printing
  • CAD design
  • Functional prototype
  • Rush delivery
Front CAD view of a branded RFID device holder with rounded corners
01 Protective body & branding
Rear CAD view showing the integrated flexible belt clip geometry
02 Integrated retention geometry
The challenge

Create a wearable RFID holder on a rush schedule, with an integrated belt clip, protected edges, and a compact form suitable for everyday handling.

The approach

GeekFabLab designed the holder and printed the prototypes in flexible TPU, combining the protective body, belt-retention feature, rounded edges, and customer branding in one coordinated design.

The result

Designed and prototyped within one week, producing a finished flexible holder that translated the approved CAD geometry into a physical, branded part.

Finished black TPU RFID holder with contrasting white branding
Flexible TPU
03 Finished branded face
Rear view of the finished TPU RFID holder showing its integrated belt clip
Under one week
04 Finished belt-clip detail
The process / 04

A clear path from
problem to part.

  1. 01
    Share the need

    Send your files, measurements, photos, quantity, and what the part must do.

  2. 02
    Define the solution

    We review manufacturability, clarify assumptions, and recommend the right approach.

  3. 03
    Approve the plan

    You receive a clear scope and quote before design or production begins.

  4. 04
    Make & deliver

    Your part is produced, checked against the agreed requirements, and delivered.

A good fit?

Let’s make the next
thing work better.

You need a custom part without investing in tooling.

You have an idea but need help making it manufacturable.

You need a small run, replacement, prototype, jig, or fixture.

You value practical guidance and a direct working relationship.

Start a project / 05

What are we
building?

A useful first quote starts with context. Tell us what the part needs to accomplish; we’ll help work through the rest.

Not sure which service you need?
Choose “Not sure yet” and describe the problem.

What do you need?

Creates a prefilled project brief in your email app. Add your GeekFabLab contact before sending.