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BS ISO 10300-1:2014

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by

Calculation of load capacity of bevel gears Introduction and general influence factors

Available format(s)

Hardcopy , PDF

Superseded date

31-08-2023

Superseded by

BS ISO 10300-1:2023

Language(s)

English

Published date

31-03-2014

£260.00
Excluding VAT

Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Symbols and units
5 Application
6 External force and application factor, K[A]
7 Dynamic factor, K[v]
8 Face load factors, K[H][BETA], K[F][BETA]
9 Transverse load factors, K[H][ALPHA], K[F][ALPHA]
Annex A (normative) - Calculation of virtual
        cylindrical gears - Method B1
Annex B (normative) - Calculation of virtual
        cylindrical gears - Method B2
Annex C (informative) - Values for application
        factor, K[A]
Annex D (informative) - Contact patterns
Bibliography

Defines the methods of calculation of the load capacity of bevel gears, the formulae and symbols used for calculation, and the general factors influencing load conditions.

Committee
MCE/5
DevelopmentNote
Supersedes 98/716023 DC. (10/2001) Supersedes 11/30229148 DC. (04/2014)
DocumentType
Standard
Pages
70
PublisherName
British Standards Institution
Status
Superseded
SupersededBy
Supersedes

This part of ISO10300 specifies the methods of calculation of the load capacity of bevel gears, the formulae and symbols used for calculation, and the general factors influencing load conditions. The formulae in ISO10300 (all parts) are intended to establish uniformly acceptable methods for calculating the pitting resistance and bending strength of straight, helical (skew), spiral bevel, Zerol and hypoid gears. They are applicable equally to tapered depth and uniform depth teeth. Hereinafter, the term “bevel gear” refers to all of these gear types; if not the case, the specific forms are identified. The formulae take into account the known major factors influencing pitting on the tooth flank and fractures in the tooth root. The rating formulae are not applicable to other types of gear tooth deterioration such as plastic yielding, micropitting, case crushing, welding, and wear. The bending strength formulae are applicable to fractures at the tooth fillet, but not to those on the active flank surfaces, to failures of the gear rim or of the gear blank through the web and hub. Pitting resistance and bending strength rating systems for a particular type of bevel gears can be established by selecting proper values for the factors used in the general formulae. If necessary, the formulae allow for the inclusion of new factors at a later date. Note, ISO10300 (all parts) is not applicable to bevel gears which have an inadequate contact pattern under load (see AnnexD). The rating system of ISO10300 (all parts) is based on virtual cylindrical gears and restricted to bevel gears whose virtual cylindrical gears have transverse contact ratios of εvα45°, for effective pressure angles αe>30° and/or for large face widths b>13mmn, the calculated results of ISO10300 (all parts) should be confirmed by experience.

Standards Relationship
ISO 10300-1:2014 Identical

ISO 701:1998 International gear notation Symbols for geometrical data
ISO/TR 10064-6:2009 Code of inspection practice Part 6: Bevel gear measurement methods
ISO 6336-5:2016 Calculation of load capacity of spur and helical gears Part 5: Strength and quality of materials
ISO 6336-1:2006 Calculation of load capacity of spur and helical gears Part 1: Basic principles, introduction and general influence factors
ISO/TR 22849:2011 Design recommendations for bevel gears
ISO 23509:2016 Bevel and hypoid gear geometry
ISO 10300-3:2014 Calculation of load capacity of bevel gears — Part 3: Calculation of tooth root strength
ISO 6336-6:2006 Calculation of load capacity of spur and helical gears Part 6: Calculation of service life under variable load
ISO 17485:2006 Bevel gears ISO system of accuracy
ISO 10300-2:2014 Calculation of load capacity of bevel gears — Part 2: Calculation of surface durability (pitting)

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