NF ISO 6336-3

NF ISO 6336-3

April 2020
Standard Current

Calculation of load capacity of spur and helical gears - Part 3 : calculation of tooth bending strength

This document specifies the fundamental formulae for use in tooth bending stress calculations for involute external or internal spur and helical gears with a rim thickness sR > 0,5 ht for external gears and sR > 1,75 mn for internal gears. In service, internal gears can experience failure modes other than tooth bending fatigue, i.e. fractures starting at the root diameter and progressing radially outward. This document does not provide adequate safety against failure modes other than tooth bending fatigue. All load influences on the tooth root stress are included in so far as they are the result of loads transmitted by the gears and in so far as they can be evaluated quantitatively. This document includes procedures based on testing and theoretical studies such as those of Hirt[11], Strasser[14] and Brossmann[10]. The results are in good agreement with other methods (References [5], [6], [7] and [12]). The given formulae are valid for spur and helical gears with tooth profiles in accordance with the basic rack standardized in ISO 53. They can also be used for teeth conjugate to other basic racks if the virtual contact ratio εαn is less than 2,5. The load capacity determined on the basis of permissible bending stress is termed "tooth bending strength". The results are in good agreement with other methods for the range, as indicated in the scope of ISO 6336‑1. If this scope does not apply, refer to ISO 6336-1:2019, Clause 4.

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Main informations

Collections

National standards and national normative documents

Publication date

April 2020

Number of pages

63 p.

Reference

NF ISO 6336-3

ICS Codes

21.200   Gears

Classification index

E23-030-3

Print number

2 - 01/12/2020

International kinship

Sumary
Calculation of load capacity of spur and helical gears - Part 3 : calculation of tooth bending strength

This document specifies the fundamental formulae for use in tooth bending stress calculations for involute external or internal spur and helical gears with a rim thickness sR > 0,5 ht for external gears and sR > 1,75 mn for internal gears. In service, internal gears can experience failure modes other than tooth bending fatigue, i.e. fractures starting at the root diameter and progressing radially outward. This document does not provide adequate safety against failure modes other than tooth bending fatigue. All load influences on the tooth root stress are included in so far as they are the result of loads transmitted by the gears and in so far as they can be evaluated quantitatively.

This document includes procedures based on testing and theoretical studies such as those of Hirt[11], Strasser[14] and Brossmann[10]. The results are in good agreement with other methods (References [5], [6], [7] and [12]). The given formulae are valid for spur and helical gears with tooth profiles in accordance with the basic rack standardized in ISO 53. They can also be used for teeth conjugate to other basic racks if the virtual contact ratio εαn is less than 2,5.

The load capacity determined on the basis of permissible bending stress is termed "tooth bending strength". The results are in good agreement with other methods for the range, as indicated in the scope of ISO 6336‑1.

If this scope does not apply, refer to ISO 6336-1:2019, Clause 4.

Replaced standards (1)
NF ISO 6336-3
October 2006
Standard Cancelled
Calculation of load capacity of spur and helical gears - Part 3 : calculation of tooth bending strength

Le présent document fait partie d'un ensemble de normes sur le calcul de la capacité de charge des roues cylindriques à denture intérieure ou extérieure et à profil en développante de cercle. Le présent document donne les formules à utiliser pour déterminer la résistance à la flexion des dents. Celles-ci tiennent compte des paramètres d'influence agissant sur la résistance à la rupture des dents, quand une évaluation quantitative de ces derniers est possible.

Table of contents
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  • 1 Domaine d'application
  • 2 Références normatives
  • 3 Termes, définitions, symboles et termes abrégés
  • 4 Rupture de dent et coefficients de sécurité
  • 5 Formules de base
  • 6 Facteurs de forme, Y F
  • 7 Facteurs de concentration de contraintes, Y S
  • 8 Facteur d'inclinaison, Yß
  • 9 Facteur d'épaisseur de jante, Y B
  • 10 Facteur de profondeur de dent, Y DT
  • 11 Contrainte nominale de référence pour la flexion
  • 12 Facteur de durée de vie, Y NT
  • 13 Facteur de sensibilité à l'entaille, Yd T, et facteurs de sensibilité relative à l'entaille, Yd rel T
  • 14 Facteurs d'état de surface, Y R, Y RT, et facteurs d'état de surface relatif, Y R rel T
  • 15 Facteur de dimension, Y
    X
  • Annexe A Contrainte de flexion admissible, s FP, obtenue à partir d'éprouvettes entaillées non-polies ou d'éprouvettes non-entaillées polies
  • Annexe B Valeurs indicatives pour le facteur d'influence de contrainte moyenne, Y M
  • Annexe C Dérivation de la force normale déterminante de la denture des engrenages cylindriques
  • Bibliographie
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