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AT-JECT

AT-JECT provides injection molding technology that bridges the gap between 3D printing and traditional steel tooling, enabling high‑precision production of advanced materials.

Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Manufacturers needing low‑volume, high‑complexity components in advanced materials often face a trade‑off: 3D printing lacks the material performance and surface quality required, while traditional steel‑tool injection molding entails high upfront tooling costs and long lead times.

Solution

AT‑JECT offers a proprietary injection‑molding service that fills this gap by eliminating the need for dedicated steel molds while delivering the precision and material properties of conventional molding. The MICA‑JECT line produces alumina and zirconia parts with superior thermal resistance, META‑JECT handles titanium to Inconel isotropic components featuring intricate geometries, and POLI‑JECT creates complex PEEK and POM parts. By using reusable, high‑temperature molds and rapid cycle times, the platform enables cost‑effective production of small batches with tight tolerances. The service integrates material selection, design validation, and post‑processing, allowing customers to obtain aerospace‑grade, medical‑grade, or industrial‑grade parts without the capital expense of traditional tooling. This approach shortens development cycles and supports iterative design in sectors where performance and reliability are critical.

Target Audience

Primary customers are aerospace, medical‑device, and industrial manufacturers that require low‑volume, high‑complexity parts in advanced ceramics, metals, or polymers, as well as R&D teams seeking rapid, high‑performance prototyping.

Features

  • Proprietary injection‑molding process that operates without permanent steel tooling, reducing upfront costs
  • Material families covering high‑temperature ceramics (alumina, zirconia), high‑strength metals (titanium, Inconel), and high‑performance polymers (PEEK, POM)
  • Capability to produce isotropic metal parts with complex, free‑form geometries in low‑volume runs
  • Exceptional thermal performance for ceramic components, meeting aerospace and high‑heat applications
  • Integrated design‑for‑manufacturing workflow that validates part geometry and material suitability before production
  • Rapid cycle times and reusable molds enable fast turnaround for iterative prototyping and small‑batch production
This profile is AI-generated and may contain inaccuracies.