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Advanced Manufacturing for Extreme Environments

Radiation shielding.
Scientific hardware.
Built for extreme environments.

Shield3D is accepting pilot projects in radiation-engineered composites and custom scientific hardware, while building a high-density metal additive manufacturing platform for fusion energy, space, and nuclear. US-based and structured for ITAR-controlled programs.

What We Do

Four offerings. One trajectory.

Pilot projects open now. A high-density metal additive manufacturing platform in development underneath.

01Accepting pilot projects

Radiation-Engineered Polymer Composites

Custom-formulated, printable composites for radiation shielding, built on standard and high-performance polymers loaded with boron carbide or tungsten. Formulations are tuned to your spectrum and geometry, and validated in simulation before a part is printed.

  • Boron carbide and tungsten composites
  • Standard and high-performance polymers
  • Functionally graded shielding
  • Simulation-validated performance
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02Accepting pilot projects

Scientific & Industrial Custom Fabrication

Custom components, scientific hardware, displays, and specialized parts. Design, simulation, printing, and testing under one roof: an engineering partnership built for speed.

  • Short iteration cycles
  • Engineers, not a sales queue
  • Design-simulate-print-test workflow
  • Low-volume and one-off parts
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03In development

Precision Subtractive Manufacturing

5-axis CNC machining is in development for our in-house equipment, adding precision subtractive capability alongside additive. Machined features, tight tolerances, and finished parts under the same roof.

  • 5-axis CNC machining
  • Tight-tolerance features on printed parts
  • One shop for additive and subtractive
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04In development

High-Density Metal Additive Manufacturing

Refractory and high-density metal printing, including tungsten and novel material combinations, for fusion energy, space, and nuclear applications. In development and moving through qualification.

  • Tungsten and novel material combinations
  • Fusion, space, and nuclear targets
  • Early partner trials
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Ph.D.-Led Team

Depth in nuclear materials science and radiation transport.

US-Based

Domestic design and manufacturing capacity for critical components.

ITAR-Controlled Programs

US-based and structured for ITAR-controlled programs.

Simulation-Validated

Shielding performance modeled before a part is printed.

Partnerships & Investors

Building US capacity for critical components.

We are opening pilot projects with research institutions, government programs, and long-term partners to expand domestic manufacturing for fusion, space, and nuclear environments.

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