NOGA Innovations develops high-performance polymer (HPP) formulations for demanding environments like space and aviation. Their materials offer superior properties, are compatible with 3D DLP printing, and possess unique self-healing capabilities, enabling advanced applications in various industries.
Funding
$1.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Many industries, such as space, aviation, automotive, and chemical processing, require materials that can withstand extreme temperatures, harsh chemicals, and mechanical stress. Traditional polymers often fail to meet these demands, limiting the performance and lifespan of critical components. Existing high-performance materials can also be difficult and costly to manufacture using traditional methods.
Solution
NOGA Innovations develops and commercializes 3D-printable high-performance polymer (HPP) formulations designed for demanding environments. Their patented (pending) polymer formulations overcome the traditional high temperature/elongation tradeoff, boasting a Heat Deflection Temperature (HDT) of over 300°C. The materials are compatible with Digital Light Processing (DLP) printing, offering versatility in manufacturing and seamless integration into existing printing workflows. NOGA's HPPs enable the creation of lighter parts with less material waste, reduce transportation costs and emissions through on-demand printing, and offer higher durability, reducing the need for frequent replacements.
Target Audience
NOGA Innovations serves industries including space, aviation, automotive, and chemical processing, targeting manufacturers and engineers seeking high-performance materials for demanding applications.
Features
- High-performance polymers specifically designed for extreme environments
- Heat Deflection Temperature (HDT) of over 300°C
- Compatible with Digital Light Processing (DLP) 3D printing
- Solutions validated through rigorous lab testing and real-space exposure aboard the ISS
- Customizable polymer formulation characteristics to meet unique customer needs
- Self-healing materials that eliminate the need for vulnerable protective coatings
- On-demand printing capabilities for spare parts, reducing inventory costs and downtime