Future Additive Manufacturing Aerospace
Defense & Space, 465 N Franklin St, Frankenmuth, Michigan, 48734, United States, 11-50 Employees
Phone Number: 98********
Who is FUTURE ADDITIVE MANUFACTURING AEROSPACE
Future Additive Manufacturing Aerospace: Home of the world's largest production metal 3D printer! Technology EBAM reduces the time and costs associated with traditional manufacturing (i.e...
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- Headquarters: 465 N Franklin St, Frankenmuth, Michigan, 48734, United States
- Date Founded: 2018
- Employees: 11-50
- Revenue: $1 Million to $5 Million
- Active Tech Stack: See technologies
Industry: Defense & Space
SIC Code: 3999
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Frequently Asked Questions Regarding Future Additive Manufacturing Aerospace
Answer: Future Additive Manufacturing Aerospace's headquarters are located at 465 N Franklin St, Frankenmuth, Michigan, 48734, United States
Answer: Future Additive Manufacturing Aerospace's phone number is 98********
Answer: Future Additive Manufacturing Aerospace's official website is https://famaero.com
Answer: Future Additive Manufacturing Aerospace's revenue is $1 Million to $5 Million
Answer: Future Additive Manufacturing Aerospace's SIC: 3999
Answer: Future Additive Manufacturing Aerospace has 11-50 employees
Answer: Future Additive Manufacturing Aerospace is in Defense & Space
Answer: Future Additive Manufacturing Aerospace contact info: Phone number: 98******** Website: https://famaero.com
Answer: Future Additive Manufacturing Aerospace: Home of the world's largest production metal 3D printer! Technology EBAM reduces the time and costs associated with traditional manufacturing (i.e. forgings and castings), and has a faster deposition rate (up to 10x) with industry-leading scalability. Simply put: Sciakys EBAM technology is the most cost-effective metal 3D printing process in the world. EBAM Advantage Sciaky's innovative IRISS process control virtually eliminates inconsistencies from the first to the last layer. Because IRISS is self-adjusting, it maintains key process characteristics through the manufacturing cycle, which results in high-quality parts. The iterative nature of our control technology results in designs with greater complexity, performance and cost reductions, compared to passive, open-loop monitoring systems offered by others in the AM industry. Massive Work Envelope Chamber Size 150"(X) x 170"(Y) x 120"(Z) 3810mm(X) x 4318mm(Y) x 3048mm(Z) Nominal Part Envelope 12'2"(X) x 6'10"(Y) x 5'2"(Z) 3708mm(X) x 2083mm(Y) x 1575mm(Z)
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