AGMA 2001 : D
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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FUNDAMENTAL RATING FACTORS AND CALCULATION METHODS FOR INVOLUTE SPUR AND HELICAL GEAR TEETH
Hardcopy
04-10-2016
English
01-01-2004
Foreword
1 Scope
2 Normative references, definitions and symbols
3 Application
4 Criteria for tooth capacity
5 Fundamental rating formulas
6 Geometry factors, I and J
7 Transmitted tangential load, W[t]
8 Dynamic factor, K[v]
9 Overload factor, K[o]
10 Service factor
11 Safety factors, S[H] and S[F]
12 Elastic coefficient, C[p]
13 Surface condition factor, C[f]
14 Hardness ratio factor, C[H]
15 Load distribution factor, K[m]
16 Allowable stress numbers, s[ac] and s[at]
17 Stress cycle factors, Z[N] and Y[N]
18 Reliability factor, K[R]
19 Temperature factor, K[T]
20 Size factor, K[s]
Bibliography
Annexes
A Method for determination of dynamic factor with AGMA 2000-A88
B Rim thickness factor, K[B]
C Application analysis
D Discussion of the analytical face or longitudinal load
distribution factor
E Gear material fatigue life
F Controlling section size considerations for through hardened
gearing
Figures
Tables
Describes a comprehensive method for rating the pitting resistance and bending strength of spur and helical involute gear pairs. Includes detailed discussions of factors influencing gear survival and calculation methods.
DevelopmentNote |
Supersedes AGMA 218.01 (03/2002) Supplement is available separately, see record AGMA 925. (02/2015) Metric Edition of this standard is available as AGMA 2101. (04/2016)
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DocumentType |
Standard
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Pages |
66
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PublisherName |
American Gear Manufacturers Association
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Status |
Superseded
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SupersededBy | |
Supersedes |
MIL-L-80277 Base Document:1989 | LATHES, PRECISION, TOOLROOM, VARIABLE SPEED, 11-INCH THROUGH 13-INCH |
03/314804 DC : DRAFT SEP 2003 | BS ISO 6336-3 - CALCULATION OF LOAD CAPACITY OF SPUR AND HELICAL GEARS - PART 3: CALCULATION OF TOOTH BENDING STRENGTH |
BS ISO 6336-3:2006 | Calculation of load capacity of spur and helical gears Calculation of tooth bending strength |
MIL-L-23251 Revision E:1989 | LATHES, ENGINE AND TOOLROOM 2516 AND 3220 |
CSA B354.5 : 2007 : R2016 | MAST-CLIMBING WORK PLATFORMS |
AGMA 6023 : REV A : 1988 : R2000 | DESIGN MANUAL FOR ENCLOSED EPICYCLIC GEAR DRIVES |
MIL-S-80271 Revision A:1992 | SHEARING MACHINE, METAL SQUARING MECHANICAL DRIVE |
AGMA 1012 : 2005 | GEAR NOMENCLATURE, DEFINITIONS OF TERMS WITH SYMBOLS |
B354.12-17 | Design, calculations, safety requirements, and test methods for mast climbing transport platforms (MCTPs) |
AGMA 6013:2016(R2021) | INDUSTRIAL ENCLOSED GEAR DRIVES |
A-A-59469 Base Document:1999 | Washer-Extractor, Laundry, 35 to 200 Pound Capacity (Naval Shipboard) |
ASME BTH 1 : 2017 | DESIGN OF BELOW-THE-HOOK LIFTING DEVICES |
AGMA 938 : A | SHOT PEENING OF GEARS |
03/314803 DC : DRAFT SEP 2003 | ISO 6336-2 - CALCULATION OF LOAD CAPACITY OF SPUR AND HELICAL GEARS - PART 2: CALCULATION OF SURFACE DURABILITY (PITTING) |
API SPEC 11E : 2013 | SPECIFICATION FOR PUMPING UNITS |
AGMA 912 : A | MECHANISMS OF GEAR TOOTH FAILURE |
AGMA 6010 : REV F : 1997 : R2003 | STANDARD FOR SPUR, HELICAL, HERRINGBONE AND BEVEL ENCLOSED DRIVES |
AGMA 6001 : REV D : 1997 | DESIGN AND SELECTION OF COMPONENTS FOR ENCLOSED GEAR DRIVES |
API 2C RUSSIAN : 2004 | SPECIFICATION FOR OFFSHORE PEDESTAL MOUNTED CRANES |
ISO/TS 10303-5001:2010 | Industrial automation systems and integration — Product data representation and exchange — Part 5001: Guidance on the usage of ISO 10303-214 for gear units |
ISO 6336-1:2006 | Calculation of load capacity of spur and helical gears Part 1: Basic principles, introduction and general influence factors |
B354.9-17 | Design, calculations, safety requirements, and test methods for mast climbing work platforms (MCWPs) |
API 11E RUSSIAN : 2013 | SPECIFICATION FOR PUMPING UNITS |
MIL-M-80255 Revision B:1990 | MACHINING CENTERS, VERTICAL, SINGLE SPINDLE, COMPUTER NUMERICAL CONTROL (CNC) |
AGMA 6023 : A | DESIGN MANUAL FOR ENCLOSED EPICYCLIC GEAR DRIVES |
AGMA 6023 : REV A : 1988 : R1993 | DESIGN MANUAL FOR ENCLOSED EPICYCLIC GEAR DRIVES |
AGMA 6010 : REV F : 1997 | STANDARD FOR SPUR, HELICAL, HERRINGBONE AND BEVEL ENCLOSED DRIVES |
ISO 6336-3:2006 | Calculation of load capacity of spur and helical gears Part 3: Calculation of tooth bending strength |
API 613:2003 | SPECIAL PURPOSE GEAR UNITS FOR PETROLEUM, CHEMICAL AND GAS INDUSTRY SERVICES |
API SPEC 11E CHINESE : 2013 | SPECIFICATION FOR PUMPING UNITS |
ISO 6336-2:2006 | Calculation of load capacity of spur and helical gears Part 2: Calculation of surface durability (pitting) |
06/30157507 DC : 0 | BS ISO 10431 - PETROLEUM AND NATURAL GAS INDUSTRIES - PUMPING UNITS - SPECIFICATION |
BS ISO 6336-2:2006 | Calculation of load capacity of spur and helical gears Calculation of surface durability (pitting) |
AGMA 923 : B | METALLURGICAL SPECIFICATIONS OF STEEL GEARING |
SAE J 1619 : 2017 | SINGLE TOOTH GEAR BENDING FATIGUE TEST |
CSA B354.5 : 2007 : INC : UPD 1 : 2008 : R2011 | MAST-CLIMBING WORK PLATFORMS |
BS ISO 6336-1:2006 | Calculation of load capacity of spur and helical gears Basic principles, introduction and general influence factors |
CSA B354.5:2007 | MAST-CLIMBING WORK PLATFORMS |
AGMA 6001 : REV D : 1997 : R2003 | DESIGN AND SELECTION OF COMPONENTS FOR ENCLOSED GEAR DRIVES |
AGMA 6010 : F | STANDARD FOR SPUR, HELICAL, HERRINGBONE AND BEVEL ENCLOSED DRIVES |
AGMA 937 : A2012(R2017) | AEROSPACE BEVEL GEARS |
04/30126837 DC : DRAFT DEC 2004 | BS ISO 6336-1 - CALCULATION OF LOAD CAPACITY OF SPUR AND HELICAL GEARS - PART 1: BASIC PRINCIPLES, INTRODUCTION AND GENERAL INFLUENCE FACTORS |
MIL-L-80007 Revision E:1989 | LATHES, TOOLROOM, 11-INCH THROUGH 13-INCH |
AGMA 6001 : D | DESIGN AND SELECTION OF COMPONENTS FOR ENCLOSED GEAR DRIVES |
API 2C : 2012 | OFFSHORE PEDESTAL-MOUNTED CRANES |
ASME NUM 1 : 2009 | RULES FOR CONSTRUCTION OF CRANES, MONORAILS, AND HOISTS (WITH BRIDGE OR TROLLEY OR HOIST OF THE UNDERHUNG TYPE) |
AGMA 933 : B | BASIC GEAR GEOMETRY |
AGMA 2015-1 : A | ACCURACY CLASSIFICATION SYSTEM - TANGENTIAL MEASUREMENTS FOR CYLINDRICAL GEARS |
AGMA 6011 : I | SPECIFICATION FOR HIGH SPEED HELICAL GEAR UNITS |
AGMA 246.02 : A | RECOMMENDED PROCEDURE FOR CARBURIZED AEROSPACE GEARING |
ISO/TR 10495:1997 | Cylindrical gears Calculation of service life under variable loads Conditions for cylindrical gears according to ISO 6336 |
ASTM A 291 : 2003 | Standard Specification for Steel Forgings, Carbon and Alloy, for Pinions, Gears and Shafts for Reduction Gears |
AGMA 427.01 : 0 | INFORMATION SHEET - SYSTEMS CONSIDERATIONS FOR CRITICAL SERVICE GEAR DRIVES |
AGMA 2000 : A | GEAR CLASSIFICATION AND INSPECTION HANDBOOK - TOLERANCES AND MEASURING METHODS FOR UNASSEMBLED SPUR AND HELICAL GEARS (INCLUDING METRIC EQUIVALENTS) |
AGMA 1010 : E | APPEARANCE OF GEAR TEETH - TERMINOLOGY OF WEAR AND FAILURE |
AGMA 2007 : C | GEARS - SURFACE TEMPER ETCH INSPECTION AFTER GRINDING |
AGMA 6000 : B | SPECIFICATION FOR MEASUREMENT OF LINEAR VIBRATION ON GEAR UNITS |
SAE AMS 2301 : 2015 | STEEL CLEANLINESS, AIRCRAFT QUALITY MAGNETIC PARTICLE INSPECTION PROCEDURE |
AGMA 925 : A | EFFECT OF LUBRICATION ON GEAR SURFACE DISTRESS |
AGMA 908 : B | GEOMETRY FACTORS FOR DETERMINING THE PITTING RESISTANCE AND BENDING STRENGTH OF SPUR, HELICAL AND HERRINGBONE GEAR TEETH |
AGMA 9005 : E | INDUSTRIAL GEAR LUBRICATION |
ASTM A 148/A148M : 2015-09 | SPECIFICATION FOR STEEL CASTINGS, HIGH STRENGTH, FOR STRUCTURAL PURPOSES |
ASTM A 535 : 1985 | Specification for Special-Quality Ball and Roller Bearing Steel (Withdrawn 1998) |
SAE AMS 2300 L : 2015 | STEEL CLEANLINESS, PREMIUM AIRCRAFT-QUALITY MAGNETIC PARTICLE INSPECTION PROCEDURE |
AGMA 927 : A | LOAD DISTRIBUTION FACTORS - ANALYTICAL METHODS FOR CYLINDRICAL GEARS |
ASTM E 709 : 2015 : REDLINE | Standard Guide for Magnetic Particle Testing |
AGMA 6033 : B | MATERIALS FOR MARINE PROPULSION GEARING |
AGMA 2004 : C | GEAR MATERIALS, HEAT TREATMENT AND PROCESSING MANUAL |
AGMA 1012 : 2005 | GEAR NOMENCLATURE, DEFINITIONS OF TERMS WITH SYMBOLS |
ASTM A 534 : 2017 : REDLINE | Standard Specification for Carburizing Steels for Anti-Friction Bearings |
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