AIAA S-114-2005 Moving Mechanical Assemblies for Space and Launch Vehicles《空间和运载火箭动机械组件》.pdf
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1、 Standard AIAA S-114-2005 Moving Mechanical Assemblies for Space and Launch Vehicles AIAA standards are copyrighted by the American Institute of Aeronautics and Astronautics (AIAA), 1801 Alexander Bell Drive, Reston, VA 20191-4344 USA. All rights reserved. AIAA grants you a license as follows: The r
2、ight to download an electronic file of this AIAA standard for temporary storage on one computer for purposes of viewing, and/or printing one copy of the AIAA standard for individual use. Neither the electronic file nor the hard copy print may be reproduced in any way. In addition, the electronic fil
3、e may not be distributed elsewhere over computer networks or otherwise. The hard copy print may only be distributed to other employees for their internal use within your organization. AIAA S-114-2005 Standard Moving Mechanical Assemblies for Space and Launch Vehicles Sponsored by American Institute
4、of Aeronautics and Astronautics Approved 30 June 2005 Abstract This standard specifies general requirements for the design, manufacture, quality control, testing, and storage of moving mechanical assemblies (MMAs) to be used on space and launch vehicles. This standard is applicable to the mechanical
5、 or electromechanical devices that control the movement of a mechanical part of a space or launch vehicle relative to another part. The requirements apply to the overall MMA as well as to the mechanical components and instrumentation that are an integral part of these mechanical assemblies. AIAA S-1
6、14-2005 ii Library of Congress Cataloging-in-Publication Data Moving mechanical assemblies for space and launch vehicles / sponsored by American Institute of Aeronautics and Astronautics. p. cm. AIAA S-114-2005.“ Includes bibliographical references. ISBN 1-56347-774-2 (hardcopy) - ISBN 1-56347-775-0
7、 (electronic) 1. Space robotics-Standards. 2. Space vehicles-Design and construction-Standards. I. American Institute of Aeronautics and Astronautics. TL1097.M68 2005 629.892-dc22 2005012319 Published by American Institute of Aeronautics and Astronautics 1801 Alexander Bell Drive, Reston, VA 20191 C
8、opyright 2005 American Institute of Aeronautics and Astronautics All rights reserved No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without prior written permission of the publisher. Printed in the United States of America AIAA S-114-2005 i
9、ii Contents Foreword .vii Introduction.viii 1 Scope 1 2 Tailoring.1 3 Applicable Documents1 4 Vocabulary 2 5 General Design Requirements.5 5.1 Performance Requirements .5 5.1.1 General Performance Requirements .5 5.1.2 Force/Torque Margins 6 5.1.3 Error Budget for Precision Control Assemblies.9 5.1.
10、4 Dynamic Performance 9 5.1.5 Off-nominal Operation 9 5.2 Environmental Design Requirements 10 5.2.1 Launch Environment.10 5.2.2 On-orbit Environment .10 5.2.3 Fabrication, Storage, Transportation, and Handling Environments .10 5.3 Physical Requirements.11 5.3.1 Identification and Marking 11 5.3.2 I
11、nterface Requirements 11 5.3.3 Operability .12 5.3.4 Interchangeability12 5.4 Electrical and Electronic Requirements.12 5.4.1 Cables and Wiring 12 5.4.2 Connectors12 5.4.3 Cable Supports and Strain Relief.13 5.4.4 Cable Loops13 5.4.5 Current Draw.13 5.4.6 Grounding13 5.4.7 Electromagnetic Interferen
12、ce/Electromagnetic Compatibility (EMI/EMC) .13 5.4.8 Electrostatic Discharge.13 5.4.9 Flight Instrumentation .13 5.5 Structural Requirements.13 5.6 Reliability .14 5.6.1 Single-point Failures .14 AIAA S-114-2005 iv 5.6.2 Failure Modes and Effects14 5.6.3 Service Life15 5.6.4 Maintainability .15 6 Co
13、mponent Design Requirements.15 6.1 Fasteners 15 6.1.1 Locking Devices16 6.1.2 Snap Rings16 6.2 Retention and Release Devices.16 6.2.1 Pyrotechnic Actuation Devices.17 6.2.2 Non-explosive Actuation Devices 17 6.2.3 Pin Pullers .17 6.2.4 Separation Nuts 17 6.2.5 Clamp Bands and Retention Cables17 6.3
14、Pivots and Hinges.18 6.4 Cable Systems18 6.5 Springs 18 6.6 Dampers19 6.6.1 Deformable Material Dampers .19 6.6.2 Viscous Dampers19 6.6.3 Eddy Current Dampers.19 6.7 Stops19 6.8 End-of-Travel Latches 20 6.9 Bearings 20 6.9.1 Bearing Materials20 6.9.2 Design and Selection20 6.9.3 Bearing Alignment 21
15、 6.9.4 Ball Bearings.22 6.10 Electric Motors 22 6.10.1 Stepper Motors .22 6.10.2 Torque Motors.22 6.10.3 Direct Current Brush Motors 23 6.11 Power and Signal Transfer Components 23 6.11.1 Slip-ring Assemblies .23 6.11.2 Cable Management Systems.24 6.12 Switches 24 6.13 Gears.24 AIAA S-114-2005 v 6.1
16、3.1 Design and Selection25 6.13.2 Harmonic Drives .25 6.13.3 Precision Gears 25 6.14 Pressurized Components.25 7 Parts, Materials, and Processes Requirements25 7.1 General Parts, Materials, and Processes25 7.2 Materials26 7.3 Lubricants26 7.3.1 Rolling Element Bearing Lubricants.27 7.3.2 Solid (Dry)
17、 Film Lubrication 28 7.4 Hard Coatings .28 7.5 Contamination.28 7.5.1 Fabrication and Handling .28 7.5.2 Device Cleanliness .28 7.5.3 Outgassing 29 8 Testing and Inspection Requirements .29 8.1 Parts, Materials, and Process Controls .29 8.1.1 Inspection of Parts 29 8.1.2 Inspection of Assemblies29 8
18、.1.3 Lubricant Processing Procedures30 8.2 Test Fixtures .30 8.3 Test Instrumentation.30 8.4 Test Plans and Procedures31 8.5 Development Tests.32 8.6 Qualification and Proto-qualification Tests 32 8.6.1 Functional and Environmental (Proto-)Qualification .33 8.6.2 Design Life Verification Tests.33 8.
19、7 Component and Subsystem Level Acceptance Tests 34 8.7.1 Run-in Test35 8.7.2 Functional and Environmental Acceptance.35 8.8 Vehicle Level Acceptance Tests36 8.9 Pre-launch Validation Testing and Inspection.36 8.9.1 Interface Tests 36 8.9.2 Inspection36 8.9.3 Pre-launch Validation Exercises 36 8.10
20、Modifications, Rework, and Retesting .36 AIAA S-114-2005 vi 9 Bibliography 38 Annex A Static Torque or Force Margins at Different Coordinate Points (Informative) .39 Tables Table 1 Minimum Recommended Static Torque or Force Margin for New Designs.7 Table 2 Allowable Contact Stress for Bearing Materi
21、als Under Yield Loads.21 AIAA S-114-2005 vii Foreword This standard is based on Military Specification MIL-A-83577B, Moving Mechanical Assemblies (MMA) for Space and Launch Vehicles, which was cancelled by the Department of Defense in the mid 1990s. It is most recently based on a Technical Operating
22、 Report prepared by Brian W. Gore of The Aerospace Corporation with support from the Air Force Space and Missile Systems Center (SMC) and the National Reconnaissance Office (NRO). This standard is the result of contributions received from many individuals, most notably those on the AIAA MMA Committe
23、e on Standards (CoS). At the time of approval, the members of the AIAA MMA CoS were: Stephen Brock, Liaison AIAA Leonard Demchek Lockheed Martin Corporation Ken Emerick, Co-Chair Space Systems/Loral Brian Gore, Co-Chair The Aerospace Corporation Michael Pollard, Co-Chair Lockheed Martin Corporation
24、Dave Putnam Lockheed Martin Corporation Dave Richman The Boeing Company Paul Reynolds Northrop Grumman Corporation Bert Timmerman Hi-Shear Technology Corporation The above consensus body approved this document in June 2005. The AIAA Standards Executive Council (Mr. Amr ElSawy, Chairman) accepted the
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