REG NASA-STD-5020-2012 REQUIREMENTS FOR THREADED FASTENING SYSTEMS IN SPACEFLIGHT HARDWARE.pdf
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1、APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED NASA TECHNICAL STANDARD NASA-STD-5020 National Aeronautics and Space Administration Approved: 03-12-2012 Washington, DC 20546-0001 REQUIREMENTS FOR THREADED FASTENING SYSTEMS IN SPACEFLIGHT HARDWARE MEASUREMENT SYSTEM IDENTIFICATION: METRIC/SI (E
2、NGLISH) Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 2 of 88 DOCUMENT HISTORY LOG Status Document Revision Approval Date Description Baseline 03-12-2012 Initial Release Provided b
3、y IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 3 of 88 FOREWORD This Standard is published by the National Aeronautics and Space Administration (NASA) to provide uniform engineering and techn
4、ical requirements for processes, procedures, practices, and methods that have been endorsed as standard for NASA programs and projects, including requirements for selection, application, and design criteria of an item. This Standard is approved for use by NASA Headquarters and NASA Centers, includin
5、g Component Facilities and Technical and Service Support Centers. This Standard establishes criteria for ensuring the integrity of threaded fastening systems in launch and space vehicles and their associated equipment. Requests for information, corrections, or additions to this Standard should be su
6、bmitted via “Feedback” in the NASA Standards and Technical Assistance Resource Tool at http:/standards.nasa.gov. Original Signed By: 03-12-2012 _ _ Michael G. Ryschkewitsch Approval Date NASA Chief Engineer Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS
7、-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 4 of 88 SECTION TABLE OF CONTENTS PAGE DOCUMENT HISTORY LOG . 2 FOREWORD . 3 TABLE OF CONTENTS . 4 LIST OF FIGURES . 8 LIST OF TABLES . 9 1. SCOPE . 10 1.1 Purpose . 10 1.2 Applicability . 10 1.3 Tailoring . 10 2. APPLICABLE DO
8、CUMENTS . 10 2.1 General . 10 2.2 Government Documents . 11 2.3 Non-Government Documents 11 2.4 Order of Precedence . 11 2.4.1 Document Conflicts 11 3. ACRONYMS AND DEFINITIONS . 12 3.1 Acronyms and Abbreviations . 12 3.2 Definitions 12 3.2.1 Definitions of Variables . 12 3.2.2 Definition of Terms 1
9、5 4. GENERAL REQUIREMENTS 19 4.1 Strength 19 4.1.1 Ultimate Design Loads . 19 4.1.2 Yield Design Loads 19 4.2 Fracture Control and Fatigue Life 20 4.3 Joint Separation 21 4.4 Locking Features 21 4.5 Fastening System Control Plan 22 5. DESIGN REQUIREMENTS AND CONSIDERATIONS . 22 5.1 Materials . 22 5.
10、2 Specification of Lubricants, Coatings, and Sealants 22 5.3 Thread Form Compatibility 23 5.4 Use of Washers and Chamfered Bolt Holes . 23 5.5 Locking Features 23 5.6 Thread Engagement, Dimensions, and Tolerances 24 Provided by IHSNot for ResaleNo reproduction or networking permitted without license
11、 from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 5 of 88 SECTION TABLE OF CONTENTS (Continued) PAGE 5.6.1 Fastener Length Selection for Thread Engagement . 24 5.6.2 Bolt Grip Selection to Prevent Interference . 25 5.7 Fastener Installation Specification and Control .
12、 25 5.8 Installation Torque Specification and Control . 26 6. CRITERIA FOR ANALYSIS OF THREADED FASTENING SYSTEMS . 26 6.1 Nominal, Maximum, and Minimum Preload . 27 6.2 Strength Under Ultimate Design Loads . 31 6.2.1 Ultimate-Strength Analysis for Tensile Loading . 31 6.2.2 Ultimate-Strength Analys
13、is for Shear Loading 33 6.2.3 Ultimate-Strength Analysis for Interaction of Tension, Shear, and Bending 34 6.3 Strength Under Yield Design Loads 35 6.4 Friction as a Load Path for Shear Loading: Joint-Slip Analysis 36 6.5 Joint Separation Analysis . 38 7. QUALITY ASSURANCE 38 7.1 As-Built Documentat
14、ion 38 7.2 Training 39 7.3 Installation Tools and Instruments . 39 7.4 Calibration of Installation Tools and Instruments 39 7.5 Threaded Fastening System Hardware Inspection . 39 7.6 Locking Feature Verification . 39 7.7 Fastening System Hardware Procurement, Inspection, and Storage 40 Provided by I
15、HSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 6 of 88 APPENDICES A. EXPLANATION AND JUSTIFICATION OF FASTENER ANALYSIS CRITERIA .41 A.1 Purpose of Appendix A . 41 A.2 Accounting for Preload Var
16、iation when Installing Fasteners with Torque Control (Supplement to Section 6.1) 41 A.2.1 Rationale for Eqs. (6.5b) and (A.2-3b) 46 A.3 Short-Term Relaxation of Preload (Supplement to Section 6.1) 47 A.4 Use of a Load-Introduction Factor (Supplement to Section 6.2.1.2) 47 A.5 Bolt Analysis: Separati
17、on Before Rupture (Supplement to Section 6.2.1) . 48 A.6 Ultimate Margin of Safety for Tensile Loading with Linear Theory (Supplement to Section 6.2.1.2) 53 A.7 Omission of Preload in Shear and Interaction Analyses (Supplement to Section 6.2.2) 55 A.8 Theoretical Treatment of Interaction Equations (
18、Supplement to Section 6.2.3) .56 A.9 Determining if Fastener Yielding is Detrimental for Separation or Joint Slip (Supplement to Section 6.3) 61 A.10 Margin of Safety for Joint Slip (Supplement to Section 6.4) 64 A.11 Margin of Safety for Bolted Joint Separation (Supplement to Section 6.5) 66 A.12 U
19、se of a Fitting Factor. 66 B. BEST PRACTICES FOR LOCKING FEATURES 68 B.1 Purpose of Appendix B . 68 B.2 Background and Introduction 68 B.3 Best Practices for Mechanical Locking Features 70 B.4 Best Practices for Prevailing Torque Locking Features 70 B.4.1 General 70 B.4.2 Prevailing Torque Locking D
20、evices 71 B.4.3 Inspect . 74 B.4.4 Installation and Verification 74 B.5 Best Practices for Adhesive Locking Features 75 B.5.1 Adhesives 75 B.5.2 Process Validation 76 B.5.3 Inspect . 78 B.5.4 Clean . 78 B.5.5 Prime (for anaerobic adhesives only) 78 B.5.6 Installation . 79 B.5.7 Verification . 79 B.5
21、.8 General 79 B.6 Best Practices for Free Spinning . 80 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 7 of 88 APPENDICES (Continued) C. JUSTIFICATION FOR THE LOW-RISK FATIGUE CLASS
22、IFICATION 81 C.1 Purpose of Appendix C . 81 C.2 Conclusions . 84 D. REFERENCES 85 D.1 Purpose of Appendix D . 85 D.2 Reference Documents . 85 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5020 APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UN
23、LIMITED 8 of 88 FIGURE LIST OF FIGURES PAGE 1 Logic Flow for Minimum Separation Factor of Safety 21 2 Dimensional Considerations in Selecting Fastening Hardware 25 3 Ultimate Strength Analysis of Fasteners Under Shear Loading 33 4 Dimensions Used to Calculate Load-Introduction Factor 48 5 Determinin
24、g Whether a Joint Separates Before Rupture When Loaded Solely in Tension 48 6 How to Quantify Ductility of a Fastening System from a Tension Test 49 7 Preloaded Joint in Which the Bolt Load Increases by a Relatively High Percentage of Applied Tensile Load 50 8 Separation Before Rupture for a Brittle
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