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Unique Support Structure USS 02 Mechanical Design

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USS-02 CDR Rehearsal - 2. USS-02 Requirements ... USS-02 CDR Rehearsal - 5. USS-02 Design Features. All aluminum alloy primary structure ... – PowerPoint PPT presentation

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Title: Unique Support Structure USS 02 Mechanical Design


1
Unique Support Structure (USS) - 02 Mechanical
Design
  • Ross A. Harold
  • Lockheed Martin Space Operations

2
USS-02 Requirements
  • Integrate the AMS-02 Experiment to Shuttle and
    Station per Program Requirements Document and
    Project Management Plan for the AMS Payload
    Integration Hardware (PIH) (JSC-27296 /
    LMSEAT-31947)
  • Interface with the AMS-02 Experiment Components
    per the AMS-02 Experiment/PIH Interfaces
    (JSC-29095)

3
USS-02 Requirements
  • Structural requirements per AMS Structural
    Verification Plan (SVP) JSC 28792
  • Corrosion Control Plan developed with Rajib
    Dasgupta of LM/Materials
  • Interface with Space Shuttle per the Space
    Shuttle Core ICD (NSTS-21000-IDD-ISS)
  • Interface with ISS per the Attached Payload
    Interface Requirements Document (SSP57003)

4
USS-02 Requirements
  • Protect payload safety critical components from
    Micro Meteoroid and Orbital Debris (MMOD) per
    SSP57003

5
USS-02 Design Features
  • All aluminum alloy primary structure
  • Riveted box beam and joint construction
  • Comprised of 4 bolted separable subassemblies
  • Friction Stir Welded (FSW) closed section beams

6
USS-02 Design Features
  • The VC is an integral, load carrying part of the
    structure
  • Experiment components are bolted directly to the
    USS-02/VC
  • "Generic" hole pattern allows for experiment
    integration flexibility

7
AMS-02 Experiment Interfaces
  • Transition Radiation Detector (TRD) Upper Time
    of Flight (TOF)
  • 4 dedicated interfaces to Upper VC Joints.
  • Brackets mounted to VC joints then TOF and TRD
    mounted to joints.
  • Thermally isolating shims between bracket and VC
    joint.
  • Silicon Tracker (Tracker)
  • 8 dedicated interfaces to VC Conical Flange near
    Inner Cylinder

8
AMS-02 Experiment Interfaces
  • Anticoincidence Counter (ACC)
  • 32 dedicated interfaces to the VC Conical Flange
    near inner Cylinder
  • Lower Time of Flight (TOF)
  • 4 dedicated interfaces to the Lower VC Joint
  • 4 dedicated interfaces to the Lower USS
    centerbody joints
  • Ring Imaging Cherenkov Counter (RICH)
  • 8 dedicated interfaces to Lower USS box beams

9
AMS-02 Experiment Interfaces
  • Electromagnetic Calorimeter (ECAL)
  • 4 dedicated interfaces to Lower USS centerbody
    joints
  • Electronic Crates Thermal Control System (TCS)
    Radiators
  • 6 interfaces to the USS-02 generic hole pattern
    on the Upper Lower Trunnion Bridge Beams, and
    Lower VC Joint

10
AMS-02 Experiment Interfaces
  • Cryomagnet Avionics Box (CAB)
  • 2 interfaces to the USS-02 generic hole pattern
    on the Upper Upper Trunnion Bridge Beams
  • Tracker Thermal Control System (TTCS)
  • Interfaces with Lower Trunnion Bridge Beams
  • TRD Gas Supply (UGBS)
  • 2 interfaces to the Upper Lower Trunnion Bridge
    Beams

11
AMS-02 Experiment Interfaces
  • Cryomagnet Discharge System
  • 8 interfaces to both of the Y Sill Joints
  • Cryomagnet Uninterruptible Power Source (UPS)
  • 2 crates mounted to the -X, Y Upper VC Joint
  • Cryomagnet Warm Helium Crate
  • Mounted to the -X, Y Lower Trunnion Bridge Beam

12
Shuttle Interfaces
  • 4 Sill Trunnions
  • 2 Primary, orbiter coordinates Xo 1155.53
  • 2 Secondary, orbiter coordinates Xo 1234.20
  • 1 Keel Trunnion
  • Orbiter coordinates Xo 1167.33
  • Offset from primary trunnions 11.80" in Xo
  • 4 Scuff Plates

13
Shuttle Interfaces
  • Remotely Operated Electrical Umbilical (ROEU)
    Payload Disconnect Assembly (PDA)
  • PDA centerline orbiter coordinates Xo 1100.47
  • Wire harness clamp mounted facing outboard (Yo
    69.20)
  • Flight Releasable Grapple Fixture (FRGF)

14
ISS Interfaces
  • Payload Attach System (PAS)
  • Guide Pins
  • Unloadable/Releasable Capture Bar
  • Scuff Plates
  • Umbilical Mechanism Assembly (UMA)
  • EVA Contingency Release Bolts
  • EVA Contingency Release Capture Bar Handle
  • Berthing Cues System (BCS) Camera

15
ISS Interfaces
  • EVA Interface Panel EVA Connectors
  • Power Video Grapple Fixture (PVGF)

16
USS-02 Structural Design
  • Materials
  • Trunnions and Shear Pins made from Custom 455
    H1000 Stainless Steel
  • All joints are machined from aluminum alloy plate
    7050-T7451 (8" thick maximum)
  • Lower USS-02 Sill Tubes, Centerbody Tubes, and
    Keel Tubes are made from the same lot of extruded
    aluminum alloy 7075-T74511 4" x 4" box beams as
    used on AMS-01.

17
USS-02 Structural Design
  • Materials
  • Diagonal Tubes made from 6061-T6 Extruded
    Aluminum alloy round tube
  • Custom made Eccentric Bushings made from Aluminum
    Bronze
  • All bolts, washers, and inserts are A-286
    Stainless Steel Alloy
  • Shims made from Aluminum Alloy or Stainless Steel
    laminated shim stock

18
USS-02 Structural Design
  • Materials
  • Thermal isolating shims made from G-10 glass
    fiber laminated epoxy sheet (non-structural
    interfaces) or titanium sheet (structural
    interfaces).
  • Rivets are NAS1398 series Monel or aluminum alloy.

19
USS-02 Structural Design
  • Materials
  • Self-aligning, self-lubricating, rod-end bearings
    are per MIL-B-81935 except
  • Body 15-5PH, heat treated to condition H1025,
    passivated
  • Ball 13-8Mo per AMS5629 with PTFE liner
  • Race 17-4PH Stainless Steel

20
USS-02 Structural Design
  • Trunnion Bridge Beams are Friction Stir Welded
    (FSW) box beams.
  • Made from 7050-T0 plate
  • Machined into two c-channel profiles
  • FSW c-channels together to form a closed section
    box beam
  • Post weld heat treated to the 7050-T73 condition
  • FSW Process developed by Dan Rybicki JSC's ES
    Division

21
USS-02 Structural Design
  • USS will be assembled upside down on the Assembly
    Fixture
  • The Assembly Fixture replicates the interfaces of
    the Orbiter, VC and Experiment.
  • Laser Tracker system will be used to maintain
    /- .010 precision to all interfaces.
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