3DFoundri develops Magnetic-Field Assisted Finishing (MAF) technology that reduces mold manufacturing costs by at least 20% and decreases production time by 30% for Class A cosmetic parts. The startup also focuses on 3D metal printing, aiming to produce complex metal parts over 10 times faster than traditional methods while achieving mechanical properties comparable to forged metal.
Funding
$200K 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
Manufacturing molds for Class A cosmetic parts is expensive and time-consuming due to the manual labor required for polishing. Traditional 3D metal printing methods are also slow, limiting their applicability for producing complex metal parts with mechanical properties comparable to forged metal.
Solution
3DFoundri is developing advanced metal manufacturing technologies to reduce costs and increase part complexity. Their Magnetic-Field Assisted Finishing (MAF) technology, when used with a CNC platform, reduces mold manufacturing costs by eliminating manual polishing for Class A cosmetic parts. This also reduces mold manufacturing time, decreasing lead times for customers. 3DFoundri is also developing an advanced 3D metal printing technology that produces complex 3D metal parts faster than conventional printing technologies, achieving mechanical properties close to that of forged metal.
Target Audience
The primary customers are mold manufacturers producing Class A cosmetic parts, and industries requiring complex metal parts with high mechanical strength.
Features
- Magnetic-Field Assisted Finishing (MAF) slurry that reduces mold manufacturing costs by at least 20% when combined with a CNC platform.
- MAF reduces mold manufacturing time by 30%.
- Advanced 3D metal printing technology that produces parts over 10X faster than conventional methods.
- 3D metal printing achieves mechanical properties near that of forged metal.