AGMA 6006-A03-2003 Standard for Design and Specification of Gearboxes for Wind Turbines《风力涡轮机齿轮箱的设计标准和规范[替代 AGMA 921-A97]》.pdf
《AGMA 6006-A03-2003 Standard for Design and Specification of Gearboxes for Wind Turbines《风力涡轮机齿轮箱的设计标准和规范[替代 AGMA 921-A97]》.pdf》由会员分享,可在线阅读,更多相关《AGMA 6006-A03-2003 Standard for Design and Specification of Gearboxes for Wind Turbines《风力涡轮机齿轮箱的设计标准和规范[替代 AGMA 921-A97]》.pdf(101页珍藏版)》请在麦多课文档分享上搜索。
1、ANSI/AGMA/AWEA 6006-A03Supersedes AGMA/AWEA 921-A97Reaffirmed March 2010American National StandardStandard for Design andSpecifications of Gearboxes forWind TurbinesANSI/AGMA/AWEA6006-A03iiStandard for Design and Specification of Gearboxes for Wind TurbinesANSI/AGMA/AWEA 6006-A03Approval of an Ameri
2、can National Standard requires verification by ANSI that the require-ments for due process, consensus, and other criteria for approval have been met by thestandards developer.Consensus is established when, in the judgment of the ANSI Board of Standards Review,substantial agreement has been reached b
3、y directly and materially affected interests.Substantial agreement means much more than a simple majority, but not necessarily una-nimity. Consensus requires that all views and objections be considered, and that aconcerted effort be made toward their resolution.The use of American National Standards
4、 is completely voluntary; their existence does notin any respect preclude anyone, whether he has approved the standards or not, frommanufacturing, marketing, purchasing, or using products, processes, or procedures notconforming to the standards.The American National Standards Institute does not deve
5、lop standards and will in nocircumstances give an interpretation of any American National Standard. Moreover, noperson shall have the right or authority to issue an interpretation of an American NationalStandard in the name of the American National Standards Institute. Requests for interpre-tation o
6、f this standard should be addressed to the American Gear ManufacturersAssociation.CAUTION NOTICE: AGMA technical publications are subject to constant improvement,revision, or withdrawal as dictated by experience. Any person who refers to any AGMAtechnical publication should be sure that the publicat
7、ion is the latest available from the As-sociation on the subject matter.Tables or other self-supporting sections may be referenced. Citations should read: SeeANSI/AGMA/AWEA 6006-A03, Standard for Design and Specification of Gearboxes forWind Turbines, published by the American Gear Manufacturers Ass
8、ociation, 500 Mont-gomery Street, Suite 350, Alexandria, Virginia 22314, http:/www.agma.org.Approved January 9, 2004ABSTRACTThis standard is intended to apply to wind turbine gearboxes. It provides information for specifying, selecting,designing, manufacturing, procuring, operating and maintaining r
9、eliable speed increasing gearboxes for windturbine generator system service.Annex information is supplied on: wind turbine architecture, wind turbine load description, quality assurance,operation and maintenance, minimum purchaser gearbox manufacturer ordering data, lubrication selectionand monitori
10、ng, determination of an application factor from a load spectrum using the equivalent torque, andbearing stress calculations.Published byAmerican Gear Manufacturers Association500 Montgomery Street, Suite 350, Alexandria, Virginia 22314Copyright 2003 by American Gear Manufacturers AssociationAll righ
11、ts reserved.No part of this publication may be reproduced in any form, in an electronicretrieval system or otherwise, without prior written permission of the publisher.Printed in the United States of AmericaISBN: 1-55589-817-3.AmericanNationalStandardANSI/AGMA/AWEA 6006-A03AMERICAN NATIONAL STANDARD
12、iii AGMA 2003 - All rights reservedContentsPageForeword iv.1 Scope 1.2 Normative references 1.3 Definitions and symbols 2.4 Design specification 7.5 Gearbox design and manufacturing requirements 116 Lubrication 287 Other important items 33Bibliography 92.AnnexesA Wind turbine architecture 35.B Wind
13、turbine load description 41C Quality assurance 49D Operation and maintenance 55.E Minimum purchaser and gearbox manufacturer ordering data 57F Lubrication selection and condition monitoring 61.G General gear information 77.H Determination of the application factor, KA, from a given load spectrumusin
14、g the equivalent torque, Teq79I Bearing stress calculation 83.Figures1 3-stage parallel shaft gearbox 20.2 3-stage planet/helical hybrid 203 Bearing assembly 21Tables1 Symbols 3.2 Minimum basic rating life, Lh1013.3 Guide values for maximum contact stress for rolling element bearings atMiners sum dy
15、namic equivalent bearing load 134 Bearing lubricant operating temperature for calculation of viscosity ratio, 14.5 Temperature gradients for calculation of operating clearance 15.6 Required gear accuracy 177 Recommended gear tooth surface roughness 178 Bearings for combined loads 189 Bearings for pu
16、re radial load 1910 Bearings for pure axial loads 1911 Bearing selection matrix - legend to symbols 2212 Bearing selection matrix for the low speed shaft/planet carrier 2213 Bearing selection matrix for the low speed intermediate shaft 2314 Bearing selection matrix for the high speed intermediate sh
17、aft 24.15 Bearing selection matrix for the high speed shaft 25.16 Bearing selection matrix for the planet wheel 2617 Lubricant cleanliness 30.ANSI/AGMA/AWEA 6006-A03 AMERICAN NATIONAL STANDARDiv AGMA 2003 - All rights reservedForewordThe foreword, footnotes and annexes, if any, in this document are
18、provided forinformational purposes only and are not to be construed as a part of ANSI/AGMA/AWEA6006-A03, Standard for Design and Specification of Gearboxes for Wind Turbines.The operation and loading of a wind turbine speed increasing gearbox is unlike most othergear applications. The intent of this
19、 standard is to describe the differences. Much of theinformation is based on field experience. This standard is a tool whereby wind turbine andgearbox manufacturers can communicate and understand each others needs indeveloping a gearbox specification for wind turbine applications. The annexes presen
20、tinformative discussion of various issues specific to wind turbine applications and geardesign.A combined committee of AWEA and AGMA members representing wind turbinemanufacturers, operators, researchers, consultants, and gear, bearing and lubricantmanufacturers were responsible for the drafting and
21、 development of this standard.The committee first met in 1993 to develop AGMA/AWEA 921A97, RecommendedPractices for Design and Specification of Gearboxes for Wind Turbine Generator Systems.The AGMA Information Sheet was approved by the AGMA/AWEA Wind Turbine GearCommittee on October 25, 1996 and by
22、the AGMA Technical Division Executive Committeeon October 28, 1996. This standard supersedes AGMA/AWEA 921A97.The first draft of ANSI/AGMA/AWEA 6006-A03 was made in March, 2000. It was approvedby the AGMA membership in October, 2003. It was approved as an American NationalStandard on January 9, 2004
23、.Suggestions for improvement of this standard will be welcome. They should be sent to theAmerican Gear Manufacturers Association, 500 Montgomery Street, Suite 350, Alexandria,Virginia 22314.ANSI/AGMA/AWEA 6006-A03AMERICAN NATIONAL STANDARDv AGMA 2003 - All rights reservedPERSONNEL of the AGMA/AWEA W
24、ind Turbine CommitteeChairman: B. Reardon FPL Energy.Vice Chairman: J. Muller GEARTECH.ACTIVE MEMBERSJ.B. Amendola MAAG Gear AGC.D. Barrett BP Chemicals.J. Bello GE Transportation SystemsA.B. Cardis Exxon Mobil Rthe type of gearing; the gear arrangement; thenumber of high speed shafts; the location
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