Skip to main content
E3

EZ2-3D

EZ2-3D provides an online platform for ordering custom 3D printed parts with instant pricing and lead‑time estimates. The service automates file validation, orientation, and support generation, offers a material library of engineering‑grade polymers, and delivers parts from a distributed network of high‑resolution printers, with order tracking and inspection reports available through a web dashboard.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Businesses and hobbyists often need rapid, high‑quality 3D printed parts but face long lead times, complex file preparation, and limited material options from traditional manufacturing services.

Solution

EZ2‑3D offers an online platform that streamlines the ordering of custom 3D printed components. Users upload STL or OBJ files, select from a curated catalog of engineering‑grade materials, and receive instant pricing and lead‑time estimates. The service automates file validation, orientation, and support generation to reduce errors and accelerate production. Printed parts are produced on a network of CNC‑grade printers and shipped directly to the customer, with tracking and quality‑assurance reports available through a web dashboard.

Target Audience

Primary customers are product designers, engineers, and small‑batch manufacturers who require on‑demand, low‑volume 3D printed parts for prototyping, testing, or short‑run production.

Features

  • Web‑based quoting tool with real‑time cost and delivery estimates
  • Automated mesh repair, orientation optimization, and support structure generation
  • Material library including PLA, PETG, ABS, Nylon, and carbon‑fiber reinforced polymers
  • Production on a distributed fleet of high‑resolution FDM and SLA printers for fast turnaround
  • Integrated order tracking and downloadable inspection reports (dimensional tolerance, surface finish)
  • API access for bulk ordering and ERP integration
This profile is AI-generated and may contain inaccuracies.