Sustainer
Forward Retention Ring
Must withstand the force applied by the forward closure (4,330 lb)
Must be able to interface with motor casing (2.75”)
Must be able to interface with airframe (3”)
Piston Mount
Must withstand force applied by piston (60 lbs/bolt, 360 lbs total) [with minimal deformation, less than .1 mm]
Must fit within airframe
Must be able to interface with mission package tube and structures below
Must be able to interface with piston
Avionics Tower
Must be able to survive acceleration of the rocket
Must be able to survive the vibrations of the rockets
Must fit within mission package tube
Must hold all required avionics components and allow them to function
Must attach to piston below piston for ease of assembly
Nose Cone
Must be able to house recovery equipment
Must have the same outer diameter as the airframe
Must be COTS
- Airframe
ID must be able to slip over motor OD
Must be correct length for the rocket to have a stable margin
Must allow access to cameras and avionics controls
Must withstand axial load from piston recovery system
Booster
Forward Retention Ring
Must withstand the force applied by the forward closure (8,836 lb)
Must be able to interface with motor casing (3.75”)
Must be able to interface with Mission Package Tube (3.90”)
Avionics Bulkhead
Must withstand force applied by piston (80 lbs/bolt, 480 lbs total) [within safety factor of 2 for max yield strength of Polycarbonate and avionics PCBs]
Must fit within mission package tube
Must be able to interface with mission package tube and structures below
Must be able to interface with piston
Must mount avionics tower panels
Avionics Tower
Must be able to survive acceleration of the rocket (196 m/s^2)
Must be able to survive the vibrations of the rockets
Must fit within mission package tube
Must hold all required avionics components and allow them to function
Must attach to piston below piston for ease of assembly
- Mission Package Tube
ID must be able to slip over motor OD
Must be correct length for the rocket to have a stable margin
Must allow access to cameras and avionics controls
Must withstand axial load from piston recovery system
- Staging Cone
Must interface with sustainer nozzle
Must withstand weight of sustainer
Must be able to be machined using tooling in the deep
Aeroshells
Must be able to withstand aerodynamic forces outside the rocket
Must be shaped to minimize drag
Must house all Tarsier components (camera, PCB, ribbon cable)
Must house angled mirrors to reflect camera view upwards and downwards
Must maximize the FOV of the Tarsiers with transparent cover