EQUIVALENCE Between ISO STANDARDS and NATIONAL STANDARDS Concerning Gear Technology



Similar documents
Standards for gears EC Regulations and standardisation. 1 October 2015 JTEKT Torsen Europe Strepy-Bracquegnies

Establishing Gear. Standards for Global Trade

Direct Gear Design for Optimal Gear Performance

Technical Product Specification (TPS)

Helical Gears K HG 1-20 R. Table of Contents. Catalog Number of KHK Stock Gears. Helical Gears. (Example) Direction of Helix (R) No.

DRAFTING MANUAL. Gears (Bevel and Hypoid) Drafting Practice

Formulas for gear calculation external gears. Contents:

Module 7 Screw threads and gear manufacturing methods

6.6 GEAR MANUFACTURING. Introduction. Gear forming

Gears and How Their World is Changing

HOBBING MACHINE TYPE ZFWZ 8000x40

Gear Cutting Tools. Hobbing Gear Milling. Leitz Metalworking Technology Group

Machine Design II Prof. K.Gopinath & Prof. M.M.Mayuram. Module 2 - GEARS. Lecture 17 DESIGN OF GEARBOX

Module 2 GEARS. Lecture 3 - INVOLUTE SPUR GEARS

Splined connections with involute splines based on reference diameters Part 1: Principles

Contact Mechanics in Gears A Computer-Aided Approach for Analyzing Contacts in Spur and Helical Gears

Topics. Introduction Gear schematics Types of gears Measuring gears

COMPUTER AIDED GEOMETRIC MODELLING OF CYLINDRICAL WORM GEAR DRIVE HAVING ARCHED PROFILE S.

Systematic Optimisation of Gearboxes for Hybrid and Electric Vehicles in Terms of Efficiency, NVH and Durability

The Influence of Tool Tolerances on the Gear Quality of a Gear Manufactured by an Indexable Insert Hob

Gear Reference Guide

Direct Gear Design for Spur and Helical Involute Gears

GEAROLOGY 2-1 SPUR GEARS SPUR GEARS

Module 2- GEARS. Lecture 9 - SPUR GEAR DESIGN

GEAROLOGY 4-1 WORMS AND WORM GEARS WORMS AND WORM GEARS

Tooling concepts Gear milling

Crowning Techniques in Aerospace Actuation Gearing

Module 2 - GEARS Lecture 7 - SPUR GEAR DESIGN

IMIA. Wind Turbine Generators. Claims. Codan Insurance / September 2007 Risk Engineer Truels Kjer

Gear Engineering Data. Spur Gear Gear Formulas Drive Selection Horsepower and Torque Tables

Coal Handling Plant Alignment Standards For Shaft To Shaft Alignment. By Makarand Joshi M.Tech

Introduction of the new gearbox design standard: a gap analysis between IEC and ISO

The software for all applications.

Comparative Analysis of Tooth-Root Strength Using ISO and AGMA Standards in Spur and Helical Gears With FEM-based Verification

Coordinate Measuring Machines SCANPAK. Bulletin No Scanning module for evaluation of workpiece contours, and 3D digitizing of surfaces

InvoMilling AGILE GEAR MANUFACTURING

NORD GEARED MOTORS F Getriebebau NORD. D R I V E S Y S T E M S

Analysis and Testing of Gears with Asymmetric Involute Tooth Form and Optimized Fillet Form for Potential Application in Helicopter Main Drives

Holroyd. Precision Worm & Helical Gears. Superior Gear Technology.

Pitting and Bending Fatigue Evaluations of a New Case-Carburized Gear Steel

Erich Lacher Präzisionsteile

How To Design A Bevel And Hypoid Gear Drive

The word teamster today means a truck driver,

Measurement Types in Machinery Monitoring

PLQE. The base of the economy gearboxes with square output flange. Economy Line. Formerly PLE

This last dimension, the thread pitch diameter, is the most important as it is a reference from which all other thread measurements originate

\ srl High Technology Gear Reducers and Cardan Shafts CERTIFIED QUALITY SYSTEM: UNI ISO EN 9001:2008 ICIM 2779/2; IQNET N. IT UNIVERSAL SHAFT

Always Following the Sun

INTRODUCTION. Dear Business Partners,

Martin Sprocket & Gear, Inc.

EFFECT OF OBSTRUCTION NEAR FAN INLET ON FAN HEAT SINK PERFORMANCE

Geared up for success.

Mechanical kiln inspection. Improves and ensures kiln availability by optimisation of: Kiln axis Kiln shell ovality Axial balance Kiln crank

AN OVERVIEW OF GEAR MANUFACTURING PROCESSES

ANGLgear. right angle drives Inch and Metric Series. The Original Right Angle Gear Drive Made in the U.S.A.

UNITED STATES CUTTING TOOL INSTITUTE Product Groupings for Standards Activities CUTTING TOOL PRODUCTS

Cutting Processes. Simulation Techniques in Manufacturing Technology Lecture 7

Highly flexible couplings

High-Performance Sintered-Steel Gears for Transmissions and Machinery: A Critical Review

High Precision Bearings for Combined Loads

In 1905, encouraged by President Theodore

Industrial Gear Oils and General Lubricating Oils

Icon Glossary. Icon Glossary. Technical Information N N. Number of Flutes. Center Cutting. Lengths. Coatings. Helix Angle. Ball Nose.

Overall Indicator: The student: recognizes the effects of forces acting on structures and mechanisms

High precision ball bearings

Surface Damage Caused by Gear Profile Grinding and Its Effects on Flank Load Carrying Capacity

Development of optimal tooth flank in spiral bevel gears by contact analysis and measurement

Geometry and dimensional tolerances of engine bearings

Rickmeier Solutions. Gear pumps for superior Lubrication

L I V E T O O L F O R O K U M A

8 AMSOIL ACTION NEWS / MARCH

Design Aspects of Robot Manipulators

12. REAR WHEEL/BRAKE/SUSPENSION

MDM-Metrosoft Guide to GearSoft program Versions Guide to GearSoft Software Code: 193 Versions

User orientated simulation strategy to analyse large drive trains in SIMPACK

Improved Broaching Steel Technology

T A B L E O F C O N T E N T S:

Drawing an Approximate Representation of an Involute Spur Gear Tooth Project Description

How To Use Castrol Spincawh

LOW VOLTAGE D.C. MOTORS & GEARBOX UNITS

in-service inspections

AGENDA: Understanding what makes Wind Different Wind Power Applications Application Requirements Windpower Oil Windpower Greases Summary

Catalog. Industrial Gear Units Helical and Bevel-Helical Gear Units ML..V..N Series Vertical mounting position Torque classes from 150 knm knm

Series 7500 Torque Sensor

Diametral Pitch Gear Ratios Herringbone Gears Idler Gear Involute Module Pitch Pitch Diameter Pitch Point. GEARS-IDS Optional Gear Set Straight Edge

Coating Solutions for Wind Energy

Miter Gears M MSG 2-20 R. Table of Contents. Catalog Number of KHK Stock Gears. Miter Gears. (Example) Direction of Spiral ( R ) No.

Guidelines for Securing by Welding of Chain Cable Studs in Service Guidance for Anchoring Equipment in Service

Spur Gears. Catalog Number of KHK Stock Gears. Spur Gears S S G Gears. Spur. Helical. Gears. Internal. Gears. Racks. CP Racks. & Pinions.

Section. Tolerances. Aluminum Extrusion Manual. 4th Edition

Optimum Design of Worm Gears with Multiple Computer Aided Techniques

Harmonic Drive acutator P r e c i s i o n G e a r i n g & M o t i o n C o n t r o l

Development of Custom Gear Design and Modelling Software Solution

MACHINE TOOL DRIVES. Learning Objectives:

Wind Turbine Gearbox Reliability Database, Condition Monitoring, and O&M Research Update

PVD coatingsin transmissions: case studies I rivestimenti PVD su componenti di trasmissioni: esempi

How Noise is Generated by Wind Turbines The mechanisms of noise generation. Malcolm Hayes Hayes McKenzie Partnership Ltd Machynlleth & Salisbury

THRUST NEEDLE ROLLER AND CAGE ASSEMBLIES Assembly Dimensions, Load Ratings, Thrust Washer and Piloting Dimensions

Introduction to Accuracy and Repeatability in Linear Motion Systems

Transcription:

Between IO TANDARD and NATIONAL TANDARD 1/7 TC 60 TC 60 DOC 60 N 590 (Revision of IO 53:1974) IO 53 Cylindrical gears for general and heavy engineering -- Basic rack TC 60 (Revision of IO 54:1977) IO 54 Cylindrical gears for general engineering and for heavy engineering -- Modules TC 60 (Revision of IO 2490:) IO/DI 2490 olid (monobloc) gear hobs with tenon drive or axial keyway, 0,5 to 40 module -- Nominal dimensions TC 60/JWG-1: Wind Turbine Gearboxes TC60/JWG-1 IO 81400-4 Wind turbines art 4: Design and specification of gearboxes TC 60/WG 9: Acceptance Code for Gears TANDARD IN ROJCT TC60/WG 9 (Revision of IO 8579-1 :1993) IO 8579-1 Acceptence code for gears: art 1 - Determination of the airborne sound power levels emitted by gear units TC 60/WG 10: nclosed Gear Drives TC60/WG 10 (ubished 1 st Oct 99) IO/TR 13593 Gears -- Industrial nclosed gear drives TANDARD DIN 867 NF IO 53 UNI 6587 B 3696-1 B IO 53 Was AGMA 201.02 DIN 780-1 UNI 6586 B 3696-1 B IO 53 NF IO 54 B 5221 ANI/AGMA 1102-A03 UBLICATION or ROJCT 1986 1990 WITHDRAWN 1977 1990 199- TATU of Also 436-1 ANI/AGMA 6006-A03 DIN 45 635 23 B 7676-1 and 2 ANI/AGMA 6025-D98 NF IO 8579-1 ANI/AGMA 6113-A06 FD IO/TR 13593 1993

Between IO TANDARD and NATIONAL TANDARD 2/7 TC 60/WG 2: Accuracy of Gears TANDARD UBLICATION or ROJCT TATU of TC60/WG 2 (Revision of IO 1328:1975) IO 1328-1 Cylindrical gears -- IO system of accuracy -- art 1: Definitions and allowable values of deviations relevant to corresponding flanks of gear teeth TC60/WG 2 DOC 60/-/2 N 566 (ubished ) IO 1328-2 Cylindrical gears -- IO system of accuracy -- art 2: Definitions and allowable values of deviations relevant to radial composite deviation and runout TC60/WG 2 (ubished 1992) IO TR 10064-1 Cylindrical gears -- Code of inspection practice -- art 1 Inspection of corresponding flanks of gear teeth TC60/WG 2 (ubished ) IO/TR 10064-2 Cylindrical gears -- Code of inspection practice -- art 2 Inspection of radial composite deviations, runout, tooth thickness and backlash TC60/WG 2 (ubished ) IO/TR 10064-3 Cylindrical gears -- Code of inspection practice -- art 3: Recommendation relevant to blanks, center distance, parallelism of axes TC60/WG 2 (ubished ) IO/TR 10064-4 Cylindrical gears -- Code of inspection practice art 4: recommendations relative to surface texture and tooth contact pattern checking TC60/WG 2 (ubished ) IO/TR 10064-5 Cylindrical gears -- Code of inspection practice art 5: Recommendations relative to evaluation of gear measuring instruments TC60/WG2 (ubished ) IO 17485 Bevel gears IO system of accuracy TC60/WG2 IO 18653: Gears valuation of instruments for the measurement of individual gears DIN 3962 1, -2 DIN 3963 B 436-4 NF IO 1328-1 UNI IO 1328-2 ANI/AGMA 2015-1-A01 B 436-5 NF IO 1328-2 UNI IO 1328-2 ANI/AGMA 2015-1-A05 DIN 3960 B IO TR 10064-1 FD IO TR 10064-1 AGMA 915-1-A02 FD IO TR 10064-2 B IO TR 10064-2 AGMA 915-2-A05 FD IO TR 10064-3 B IO TR 10064-3 AGMA 915-3-A99 FD IO TR 10064-4 B IO TR 10064-4 Was AGMA 906-A94 FD IO TR 10064-5 AGMA 931-A02 NF IO 17485 ANI/AGMA 2009-B01 ANI/AGMA 2110-A94 ANI/AGMA 2113-A97 ANI/AGMA 2114-A98 NF IO 18653 1995 1992 WITHDRAWN R --

Between IO TANDARD and NATIONAL TANDARD 3/7 TC 60/C 1/WG 4 : Terminology and Notation of Gears TC60/C1/WG 4 (Revision of IO 701:) IO 701 International gear notation -- ymbols for geometrical data TC60/C1/WG 4 (Revision of IO 1122-1:1983) IO 1122-1 Glossary of gear terms -- art 1 : Definitions related to geometry TC60/C1/WG 4 IO 1122-2: Glossary of gear terms -- art 2 : Definitions related to worm gear geometry TC60/C1/WG 4 IO 10825:1995 Gears Wear and damage to teeth -- Terminology TC 60/C 1/WG 7 : Worm Gears TANDARD DIN 3999 NF IO 701 B 2519-2 UNI 6773 AGMA 900-G00 DIN 3998-1, -2, -3 DIN 868 DIN 3975 NF IO 1122-1 B IO 1122-1 UNI 4760-1, -2, -3 ANI/AGMA 1012-G05 DIN 3998-4 NF IO 1122-2 Will be B IO 1122-2 UNI 4760-4 ANI/AGMA 1012-G05 DIN 3975 NF IO 10825 ANI/AGMA 1010-95 UBLICATION or ROJCT 1974 1974 1975 1977 1979 R TATU of TC60/C1/WG 7 IO/TR 10828: Worms gears Geometry of worm profiles TC60/C1/WG 7 IO/DI 14521 Gears Calculation of load capacity of worm gears FD IO/TR 10828 B IO TR 10828 B 721 art 2 DIN 3996 B 721 art 2 ANI/AGMA 6034-B92 ANI/AGMA 6135-A02 1983 1983 R Cylindrical nveloping

Between IO TANDARD and NATIONAL TANDARD 4/7 TC 60/C 2/WG 6 : Gear Calculation TC60/C2/WG 6 IO 6336-1: Calculation of the load capacity of spur and helical gears art 1 : Basic principles, introduction and general influence factors TC60/C2/WG 6 IO 6336-2: Calculation of the load capacity of spur and helical gears art 2 : Calculation of surface durability (pitting) TC60/C2/WG 6 IO 6336-3: Calculation of load capacity of spur and helical gears art 3 : Calculation of tooth bending strength TC60/C2/WG 6 IO 6336-6: Calculation of load capacity of spur and helical gears art6: Calculation of service life under variable load TC60/C2/WG 6 IO 9083 Calculation of load capacity of spur and helical gears Application to marine gears TC60/C2/WG 6 IO 9085 Calculation of load capacity of spur and helical gears Application for industrial gears TANDARD DIN 3990-1 B IO 6336-1 B 436-3 UNI 8862-1, -2 ANI/AGMA 2101-D04 NF IO 6336-1 DIN 3990-2 B IO 6336-1 B 436-3 UNI 8862-3 ANI/AGMA 2101-D04 NF IO 6336-2 DIN 3990-3 B IO 6336-1 B 436-3 UNI 8862-4 ANI/AGMA 2101-D04 NF IO 6336-3 DIN 3990-6 ANI/AGMA 6032-A94 NF IO 6336-6 DIN 3990-31 ANI/AGMA 6032-A94 DIN 3990-11 NF 23 015 ANI/AGMA 6113-A06 UBLICATION or ROJCT 1991 1991 1984 R 1990 R 1989 1982 TATU of / / / / / / /

Between IO TANDARD and NATIONAL TANDARD 5/7 TC 60/C 2/WG 6 : Gear Calculation TC60/C2/WG 6 IO/TR 13989-1: Gears Calculation of scuffing load capacity of cylindrical, bevel and hypoid gears art 1 : Flash temperature method TC60/C2/WG 6 IO/TR 13989-2: Gears -- Calculation of scuffing load capacity of cylindrical, bevel and hypoid gears -- art 2: Integral temperature method TC60/C2/WG 6 IO 14104 urface temper etch after grinding TANDARD FD IO/TR 13989-1 AGMA 925-A03 FD IO/TR 13989-2 DIN 3990-4 AGMA 925-A03 FD IO 14104 ANI/AGMA 2007-C00 UBLICATION or ROJCT 1995 TATU of TC60/C2/WG 6 IO 14179-1 Gears -- Thermal capacity art 1: Rating gear drives with thermal equilibrium at 95 C sump temperature TC60/C2/WG 6 IO 14179-2 Gears -- Thermal capacity art 2: Thermal load-carrying capacity TC 60/C 2/WG 11 : High peed nclosed Gear Units (AI 613) TC60/C2/WG 11 IO 13691 Gears -- pecifications for high speed enclosed gear units AGMA IO 14179-1 ANI/AGMA 6113-A06 ANI/AI 613 DIN N IO 13691 1995 TC 60/C 2/WG 12 : Load Carrying capacity of oils TC60/C2/WG 12 IO 14635-1 Gears FZG test procedures art 1: FZG test method A/8, 3/90 for relative scuffing load-carrying capacity of oils TC60/C2/WG 12 IO 14635-2 Gears FZG test procedures art 2: FZG step load test A10/16, 6R/120 for relative scuffing loadcarrying capacity of high oils TC60/C2/WG 12 IO 14635-3 Gears FZG test procedures art 3: FZG test method A/2, 8/50 for relative scuffing load-carrying capacity and wear characteristics of semifluid gear greases DIN IO 14635-1 ANI/ATM D5182-91 1991

Between IO TANDARD and NATIONAL TANDARD 6/7 TC 60/C 2/WG 13 : Bevel Gears TC60/C2/WG 13 (was in TC60/C2/WG 6 before ) IO 10300-1 Calculation of load capacity of bevel gears -- art 1: Introduction and general influence factors TANDARD ANI/AGMA --B97 UBLICATION or ROJCT TATU of / TC60/C2/WG 13 (was in TC60/C2/WG 6 before ) IO 10300-2 Calculation of load capacity of bevel gears -- art 2: Calculation of surface durability (pitting) ANI/AGMA --B97 / TC60/C2/WG 13 (was in TC60/C2/WG 6 before ) IO 10300-3 Calculation of load capacity of bevel gears -- art 3: Calculation of tooth root strength ANI/AGMA --B97 / TC60/C2/WG 13 IO 23509 Bevel and hypoid gear geometry ANI/AGMA --B97 /

Between IO TANDARD and NATIONAL TANDARD 7/7 TC 60/C 2/WG 14 : trength and Quality of Materials TC60/C2/WG 14 (was in TC60/C2/WG 6 before ) IO 6336-5 Calculation of load capacity of spur and helical gears -- art 5: trength and quality of materials Other documents in charge of TC 60 TC 60 IO 677 traight bevel gears for general engineering and heavy engineering -- Basic rack TC60 IO 678 traight bevel gears for general engineering and heavy engineering Modules TC 60 IO 1340 Cylindrical gears Information to be given to the manufacturer by the purchaser in order to obtain the gear required TC 60 IO 1341 traight bevel gears -- Information to be given to the manufacturer by the purchaser in order to obtain the gear required TC 60 IO 4468 Gear hobs -- ingle-start -- Accuracy requirements TC 60/WG9 IO 8579-2 Acceptence code for gears: art 2 Determination of mechanical vibrations of gear units during acceptance testing TANDARD DIN 3990-5 B IO 6336-5 ANI/AGMA -2101-D04 B 545 UNI 6588 B 545 UNI 6586 DIN 3966-1 UNI 7462 AGMA -910-C90 FD 23-012 DIN 3966-2 B 436-1, 436-2 UNI 7463 FD 23-016 B 5221 ANI/AGMA 1102-A03 B 7676-2 ANI/AGMA 6000-B96 UBLICATION or ROJCT 1975 1975 R TATU of / TATU OF : : TRICTLY QUIVALNT : ARTIALY QUIVALNT / : ARTIALY QUIVALNT IN RVIION : TRICTLY QUIVALNT except FORWARD