Design a rocket that could be built in place inside one of the four bays of the Vehicle Assembly Building (VAB) at Kennedy Space Center, which is 525 ft (160 m) tall. Utilize additive manufacturing (aka 3D printing) where possible, considering which materials might be able to be used and which ones may have to be brought in already manufactured.
3D manifacture in rocket system.For the other information in the report: https://www.dropbox.com/s/n2n9o9y45agtrn5/report%20PRINT%20MY%20ROCKET%20(2).pdf?dl=0%E2%80%8B
Manufacturing Technology for Aerospace structural materials – F.C. Campbell
Rocket and Spacecraft Propulsion – Principles, Practice and New Developments, Third edition – Martin J.L. Turner
Wikipedia - https://en.wikipedia.org/wiki/Space_Launch_System
The circuits are extremely lightweight, flexible, durable and thin, and conform - http://www.33rdsquare.com/2013/07/ultra-light-thin...
http://nasa3d.arc.nasa.gov/models
for the report: https://www.dropbox.com/s/n2n9o9y45agtrn5/report%20PRINT%20MY%20ROCKET%20(2).pdf?dl=0%E2%80%8B
Group name: ASTRAL
Group members:
Deniz BOSTANOV,
Berkay YILDIZ,
Ömer Furkan EVREN,
Bereket ASHYROV, and
Dikko Ladan BAKI.