ISO 53:1998
Current
Current
The latest, up-to-date edition.
Cylindrical gears for general and heavy engineering — Standard basic rack tooth profile
Available format(s)
Hardcopy , PDF
Language(s)
English, French
Published date
20-08-1998
€41.00
Excluding VAT
| Committee |
ISO/TC 60
|
| DevelopmentNote |
BS DRAFT 96/709992 DC REFERS TO A REVISION
|
| DocumentType |
Standard
|
| Pages |
6
|
| PublisherName |
International Organization for Standardization
|
| Status |
Current
|
| Supersedes |
| Standards | Relationship |
| JIS B 1701-1:2012 | Identical |
| NFE 23 011 : 1979 | Similar to |
| NBN EN 1175-3 : 1998 + A1 2010 | Identical |
| NEN ISO 53 : 1998 | Identical |
| NS 5001 : 1ED 1969 | Similar to |
| NS 5003 : 1969 | Similar to |
| PN ISO 53 : 2001 | Identical |
| BS 436-1:1967 | Similar to |
| BS 5246:1976 | Similar to |
| BS ISO 53:1998 | Identical |
| BS 436-2:1970 | Similar to |
| BS 2697:1976 | Identical |
| NF ISO-53 : 1998 | Identical |
| BS 3696-1:1977 | Similar to |
| UNE 18060:1978 | Identical |
| UNE 18016:1984 | Identical |
| 05/30132502 DC : DRAFT APR 2005 | ISO 4468 - GEAR HOBS - ACCURACY REQUIREMENTS |
| ISO/TS 6336-21:2017 | Calculation of load capacity of spur and helical gears — Part 21: Calculation of scuffing load capacity (also applicable to bevel and hypoid gears) — Integral temperature method |
| BS ISO 4468:2009 | Gear hobs. Accuracy requirements |
| BS 3696-1:1977 | Specification for master gears Spur and helical gears (metric module) |
| DIN 21772:2012-07 | GEARS - CYLINDRICAL INVOLUTE GEARS AND GEAR PAIRS - DEFINITION OF DEVIATIONS |
| BS 436-4:1996 | Spur and helical gears Definitions and allowable values of deviations relevant to corresponding flanks of gear teeth |
| DIN 3990-3:1987-12 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS; CALCULATION OF TOOTH STRENGTH |
| 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 |
| DIN 3990-21:1989-02 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS; APPLICATION STANDARD FOR HIGH SPEED GEARS AND GEARS OF SIMILAR REQUIREMENT |
| 04/30112626 DC : DRAFT APR 2004 | ISO 21771 - GEARS - CYLINDRICAL INVOLUTE GEARS AND GEAR PAIRS - CONCEPTS AND GEOMETRY |
| DIN 3990-4:1987-12 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS; CALCULATION OF SCUFFING LOAD CAPACITY |
| BS ISO 6336-3:2006 | Calculation of load capacity of spur and helical gears Calculation of tooth bending strength |
| BS ISO 9084:2000 | Calculation of load capacity of spur and helical gears. Application to high speed gears and gears of similar requirements |
| AGMA ISO 1328 2 : 1999 | CYLINDRICAL GEARS - ISO SYSTEM OF ACCURACY - PART 2: DEFINITIONS AND ALLOWABLE VALUES OF DEVIATIONS RELEVANT TO RADIAL COMPOSITE DEVIATIONS AND RUNOUT INFORMATION |
| ISO 6336-3:2006 | Calculation of load capacity of spur and helical gears — Part 3: Calculation of tooth bending strength |
| BS ISO/TR 13989-2:2000 | Calculation of scuffing load capacity of cylindrical, bevel and hypoid gears Integral temperature method |
| AGMA 1103 : H | TOOTH PROPORTIONS FOR FINE-PITCH SPUR AND HELICAL GEARING (METRIC EDITION) |
| ISO 4468:2009 | Gear hobs — Accuracy requirements |
| BS ISO 9083:2001 | Calculation of load capacity of spur and helical gears. Application to marine gears |
| BS 2062-1:1959 | Specification for gear hobs Hobs for general purposes, 1 d.p. to 20 d.p. inclusive |
| ISO/TR 10064-1:2017 | Code of inspection practice — Part 1: Measurement of cylindrical gear tooth flanks |
| 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) |
| ISO/TS 6336-20:2017 | Calculation of load capacity of spur and helical gears — Part 20: Calculation of scuffing load capacity (also applicable to bevel and hypoid gears) — Flash temperature method |
| ISO/TR 6336-30:2017 | Calculation of load capacity of spur and helical gears — Part 30: Calculation examples for the application of ISO 6336 parts 1,2,3,5 |
| AGMA 915-2 : A | INSPECTION PRACTICES - PART 2: CYLINDRICAL GEARS - RADIAL MEASUREMENTS |
| ISO 11106-1:1997 | Photography — Slide trays for projectors — Part 1: Straight slide tray, open type (European design) |
| ISO 6336-1:2006 | Calculation of load capacity of spur and helical gears — Part 1: Basic principles, introduction and general influence factors |
| ISO 2490:2007 | Solid (monobloc) gear hobs with tenon drive or axial keyway, 0,5 to 40 module — Nominal dimensions |
| BS ISO 2490:2007 | Solid (monobloc) gear hobs with tenon drive or axial keyway, 0,5 to 40 module. Nominal dimensions |
| BS ISO 21771:2007 | Gears. Cylindrical involute gears and gear pairs. Concepts and geometry |
| 04/30117864 DC : DRAFT DEC 2004 | BS ISO 2490 - SOLID (MONOBLOC) GEAR HOBS WITH TENON DRIVE OR AXIAL KEYWAY, 0,5 TO 40 MODULE - NOMINAL DIMENSIONS |
| ANSI IT9.1 : 1989 | IMAGING MEDIA (FILM) - SILVER GELATIN TYPE - SPECIFICATIONS FOR STABILITY |
| BS ISO/TR 13989-1:2000 | Calculation of scuffing load capacity of cylindrical, bevel and hypoid gears Flash temperature method |
| DIN 3990-2:1987-12 | CALCULATION OF LOAD CAPACITY CYLINDRICAL GEARS; CALCULATION OF PITTING RESISTANCE |
| ISO 9083:2001 | Calculation of load capacity of spur and helical gears — Application to marine gears |
| BS ISO 6336-1:2006 | Calculation of load capacity of spur and helical gears Basic principles, introduction and general influence factors |
| ISO 6336-2:2006 | Calculation of load capacity of spur and helical gears — Part 2: Calculation of surface durability (pitting) |
| AGMA 915-1 : A | INSPECTION PRACTICES - PART 1: CYLINDRICAL GEARS - TANGENTIAL MEASUREMENTS |
| ISO 9084:2000 | Calculation of load capacity of spur and helical gears — Application to high speed gears and gears of similar requirements |
| ISO 21771:2007 | Gears — Cylindrical involute gears and gear pairs — Concepts and geometry |
| ISO 6336-5:2016 | Calculation of load capacity of spur and helical gears — Part 5: Strength and quality of materials |
| DIN 3990-41:1990-05 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS; APPLICATION STANDARD FOR VEHICLE GEARS |
| DIN ISO 21771:2014-08 | Gears - Cylindrical involute gears and gear pairs - Concepts and geometry (ISO 21771:2007) |
| BS ISO 9085:2002 | Calculation of load capacity of spur and helical gears. Application for industrial gears |
| BS ISO 6336-2:2006 | Calculation of load capacity of spur and helical gears Calculation of surface durability (pitting) |
| DIN 3990-11:1989-02 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS; APPLICATION STANDARD FOR INDUSTRIAL GEARS; DETAILED METHOD |
| 15/30269176 DC : 0 | BS ISO 6336-5 - CALCULATION OF LOAD CAPACITY OF SPUR AND HELICAL GEARS - PART 5: STRENGTH AND QUALITY OF MATERIALS |
| BS ISO/TR 10064-4:1998 | Code of inspection practice Recommendations relative to surface texture and tooth contact pattern checking |
| PD ISO/TR 10064-1:2017 | Code of inspection practice Measurement of cylindrical gear tooth flanks |
| BS 436-5:1997 | Spur and helical gears Definitions and allowable values of deviations relevant to radial composite deviations and runout information |
| BS ISO TR 10064-2:1996 | Code of inspection practice Inspection related to radial composite deviations, runout, tooth thickness and backlash |
| PD ISO/TR 6336-30:2017 | Calculation of load capacity of spur and helical gears Part 30: Calculation examples for the application of ISO 6336 parts 1,2,3,5 |
| PD ISO/TR 18792:2008 | Lubrication of industrial gear drives |
| ANSI IT9.5 : 1992 | IMAGING MEDIA (FILM) - AMMONIA PROCESSED DIAZO FILMS - SPECIFICATIONS FOR STABILITY |
| ISO/TR 10064-2:1996 | Code of inspection practice — Part 2: Inspection related to radial composite deviations, runout, tooth thickness and backlash |
| AIIM MS8 : 0 | IMAGE MARK (BLIP) USED IN IMAGE MARK RETRIEVAL SYSTEMS |
| ISO/TR 10064-3:1996 | Code of inspection practice — Part 3: Recommendations relative to gear blanks, shaft centre distance and parallelism of axes |
| ISO/TR 13989-2:2000 | Calculation of scuffing load capacity of cylindrical, bevel and hypoid gears — Part 2: Integral temperature method |
| ISO 9085:2002 | Calculation of load capacity of spur and helical gears — Application for industrial gears |
| AIIM MS37 : 0 | RECOMMENDED PRACTICE FOR MICROPHOTOGRAPHY OF CARTOGRAPHIC MATERIALS |
| 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 |
| PD ISO/TS 6336-21:2017 | Calculation of load capacity of spur and helical gears Part 21: Calculation of scuffing load capacity (also applicable to bevel and hypoid gears) — Integral temperature method |
| AGMA 1003 : H | TOOTH PROPORTIONS FOR FINE-PITCH SPUR AND HELICAL GEARING |
| DIN 3990-1:1987-12 | CALCULATION OF LOAD CAPACITY OF CYLINDRICAL GEARS - INTRODUCTION AND GENERAL INFLUENCE FACTORS |
| PD ISO/TR 15144-1:2014 | Calculation of micropitting load capacity of cylindrical spur and helical gears Introduction and basic principles |
| BS ISO TR 10064-1:1992 | Code of inspection practice Inspection of corresponding flanks of gear teeth |
| BS ISO 6336-5:2016 | Calculation of load capacity of spur and helical gears Strength and quality of materials |
| DIN ISO 21771 E : 2014 | GEARS - CYLINDRICAL INVOLUTE GEARS AND GEAR PAIRS - CONCEPTS AND GEOMETRY (ISO 21771:2007) |
| BS ISO TR 10064-3:1996 | Code of inspection practice Recommendations relative to gear blanks, shaft centre distance and parallelism of axes |
| FD ISO/TR 10064-1 : 96 FD | CYLINDRICAL GEARS - CODE OF INSPECTION PRACTICE - PART 1: INSPECTION OF CORRESPONDING FLANKS OF GEAR TEETH |
| ISO/TR 15144-1:2014 | Calculation of micropitting load capacity of cylindrical spur and helical gears — Part 1: Introduction and basic principles |
| ISO/TR 10064-4:1998 | Code of inspection practice — Part 4: Recommendations relative to surface texture and tooth contact pattern checking |
| ISO 54:1996 | Cylindrical gears for general engineering and for heavy engineering — Modules |
Summarise
Access your standards online with a subscription
-
Simple online access to standards, technical information and regulations.
-
Critical updates of standards and customisable alerts and notifications.
-
Multi-user online standards collection: secure, flexible and cost effective.