SIST-TP ISO/TR 10064-1:1998/TC 1:2006
(Main)ISO/TR 10064-1:1992/Cor 1:2006
ISO/TR 10064-1:1992/Cor 1:2006
Provides advice on gear inspection methods and gives an analysis of measurement results, so it supplements the standard ISO 1328, Part 1.
Code pratique de réception — Partie 1: Contrôle relatif aux flancs homologues de la denture — Rectificatif technique 1
Valjasti zobniki - Smernice za meritve – 1. del: Meritve odstopkov s tangencialnim preskušanjem – Tehnični popravek 1
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SIST-TP ISO/TR 10064-1:1998/TC 1:2006SLOVENSKIdecember 2006
STANDARDValjasti zobniki - Smernice za meritve – 1. del: Meritve odstopkov s tangencialnim preskušanjem – Tehnični popravek 1Cylindrial gears - Code of inspection practice - Part
1: Inspection of corresponding flanks of gear teeth - Technical Corrigendum 1©
Standard je založil in izdal Slovenski inštitut za standardizacijo. Razmnoževanje ali kopiranje celote ali delov tega dokumenta ni dovoljenoReferenčna številkaSIST-TP ISO/TR 10064-1:1998/TC 1:2006(en)ICS21.200
ICS
21.200 Ref. No. ISO/TR 10064-1:1992/Cor.1:2006(E)©
ISO 2006 – All rights reserved Printed in Switzerland
TECHNICAL REPORT ISO/TR 10064-1:1992 TECHNICAL CORRIGENDUM 1 Published 2006-08-01 INTERNATIONAL ORGANIZATION FOR STAND
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This document establishes a gear tooth classification system relevant to double flank radial composite deviations of individual cylindrical involute gears and sector gears. It specifies the appropriate definitions of gear tooth deviations, the structure of the gear tooth flank classification system, and the allowable values of the gear tooth deviations. It provides formulae to calculate tolerances for individual product gears when mated in double flank contact with a master gear. Tolerance tables are not included.
This document is applicable to gears with three or more teeth that have reference diameters of up to 600 mm.
This document does not provide guidance on gear design nor does it recommend tolerances.
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This document specifies requirements for the accuracy of general-purpose hobs of 0,5 module to 40 module.
These hobs are intended for producing gears which conform to ISO 53 and ISO 54.
This document applies to hobs for spur and helical gears. It applies to solid (monobloc) and inserted blade hobs.
The elemental features of hobs are graded according to accuracy, as follows:
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— Grade 3A;
— Grade 2A;
— Grade A;
— Grade B;
— Grade C;
— Grade D.
Grade 4A is the highest order of precision.
In addition to the elemental tests for hobs, this document gives permitted tolerances for composite tests that are taken along the cutting edges on the line of action. The two groups of tests are not equivalent and one can choose between one or the other. If there was no previous agreement, the hob is regarded as belonging to the precision class specified if it satisfies one or the other of the two methods of inspection.
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This document presents the basic principles of, an introduction to, and the general influence factors for the calculation of the load capacity of spur and helical gears. Together with the other documents in the ISO 6336 series, it provides a method by which different gear designs can be compared. It is not intended to assure the performance of assembled drive gear systems. It is not intended for use by the general engineering public. Instead, it is intended for use by the experienced gear designer who is capable of selecting reasonable values for the factors in these formulae based on the knowledge of similar designs and the awareness of the effects of the items discussed.
The formulae in the ISO 6336 series are intended to establish a uniformly acceptable method for calculating the load capacity of cylindrical gears with straight or helical involute teeth.
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— reference helix angle up to 30°;
— transverse contact ratio from 1,0 to 2,5.
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The formulae in the ISO 6336 series are not applicable when any of the following conditions exist:
— gears with transverse contact ratios less than 1,0;
— interference between tooth tips and root fillets;
— teeth are pointed;
— backlash is zero.
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The influence factors presented in these methods form a method to predict the risk of damage that aligns with industry and experimental experience. It is possible that they are not entirely scientifically exact. Therefore, the calculation methods from one part of the ISO 6336 series is not applicable in another part of the ISO 6336 series unless specifically referenced.
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