SAE J 1121-2006 Helical Compression and Extension Spring Terminology《螺旋压缩弹簧和拉伸弹簧的术语》.pdf
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1、SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirelyvoluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefro
2、m, is the sole responsibility of the user.”SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions.Copyright 2006 SAE InternationalAll rights reserved. No part of this publication may be
3、reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying,recording, or otherwise, without the prior written permission of SAE.TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada)Tel: 724-776-4970 (outside USA)Fax: 724-
4、776-0790Email: CustomerServicesae.orgSAE WEB ADDRESS: http:/www.sae.orgSURFACEVEHICLERECOMMENDEDPRACTICEJ1121REV.SEP2006Issued 1975-11Revised 2006-09Superseding J1121 JUL1988Helical Compression and Extension Spring Terminology1. ScopeThe following recommended practice has been developed to assist en
5、gineers and designers in thepreparation of specifications for the major types of helical compression and extension springs. It is restrictedto a concise presentation of items which will promote an adequate understanding between springmanufacturer and spring user of the major practical requirements i
6、n the finished spring. Closer tolerances areobtainable where greater accuracy is required and the increased cost is justified.For the basic concepts underlying the spring design and for many of the details, see the SAE InformationReport MANUAL ON DESIGN AND APPLICATION OF HELICAL AND SPIRAL SPRINGS,
7、 SAE HS 795,which is available from SAE Headquarters in Warrendale, PA 15096. A uniform method for specifying designinformation is shown in the TYPICAL DESIGN CHECK LISTS FOR HELICAL SPRINGS, SAE J1122.Two types of helical springs are considered:a. Hot coiled compression springs for general automoti
8、ve use as well as for motor vehicle suspensions.b. Cold wound compression and extension springs for general automotive use.This recommended practice uses SI (metric) units in accordance with the provisions of SAE TSB 003.1.1 RationaleJ1121 has been reviewed and updated to reflect the current industr
9、y Standards.2. References2.1 Applicable PublicationsThe following publications form a part of the specification to the extent specifiedherein. Unless otherwise indicated the latest revision of SAE publications shall apply.2.1.1 SAE PUBLICATIONSAvailable from SAE, 400 Commonwealth Drive, Warrendale,
10、PA 15096-0001, Tel:877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org.SAE HS 84Manual on Shot PeeningSAE J217Stainless Steel 17-7 PH Spring Wire and SpringsSAE J230Stainless Steel, SAE 30302, Spring Wire and SpringsSAE J461Wrought and Cast Copper AlloysSAE HS J795SAE Man
11、ual on Design and Application of Helical and Spiral SpringsSAE J1122Helical Springs: Specification Check ListsSAE TSB 003Rules for SAE Use of SAE (Metric) UnitsCopyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from
12、 IHS-,-,-SAE J1121 Revised SEP2006-2-2.1.2 ASTM PUBLICATIONSAvailable from ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959,Tel: 610-832-9585, www.astm.org.ASTM A232/A232M-99Standard Specification for Chromium-Vanadium Alloy Steel Valve Spring QualityWireASTM A227/A227M-99Standard Speci
13、fication for Steel Wire, Cold-Drawn for Mechanical SpringsASTM A228/A228M-02Standard Specification for Steel Wire, Music Spring QualityASTM A229/A229M-99Standard Specification for Steel Wire, Oil-Tempered for Mechanical SpringsASTM A230/A230M-99Standard Specification for Steel Wire, Oil-Tempered Car
14、bon Valve Spring QualityASTM A401/A401M-03Standard Specification for Steel Wire, Chromium-Silicon AlloyASTM A679/A679M-00Standard Specification for Steel Wire, High Tensile Strength, Cold Drawn3. Hot Coiled Springs3.1 Materials and Heat TreatmentRound spring steel bars are available in carbon and al
15、loy analyses. The barsare generally used in the “as rolled” condition (either commercial hot rolled or precision hot rolled), but theymay be centerless ground before coiling.The heat treatment necessary to develop the required physical properties of the material may be accomplishedby direct quench i
16、mmediately after coiling, or by allowing the coiled spring to cool to a temperature below thecritical, then reheating to the required temperature and quenching; the quench is followed by tempering toproduce the specified hardness.Table 1 lists available materials. Their hardenability limitations dic
17、tate maximum bar size. For tensile andtorsional properties, see MANUAL, SAE HS 795, Chapter 2, Table 2.21.3.2 Shot PeeningShot peening is used to increase the fatigue life of springs. It consists of subjecting the springto a stream of shot moving at high velocity. The peening action of the shot redu
18、ces the effect of surface defectsand sets up beneficial stresses in a thin surface layer. It also results in cold working this layer. To be effective,the peening must reach the area of highest stress which for helical compression springs is the inside diameterof the coil.TABLE 1MATERIALS FOR HOT COI
19、LED COMPRESSION SPRINGSMaterials SpecificationMax. Bar(1)Dia., mm1. Based on a through hardened bar of 444 HB typical hardness ranges are 444 - 495 HB and 461 - 514 HB.Carbon Steels SAE 1085 10SAE 1095 10Carbon Boron Steel SAE 15B62H 25Alloy Steels SAE 5150 H 10SAE 5160 H 20SAE 9260 H 10SAE 51B60H 3
20、0SAE 4161 H 60SAE 6150 H 10Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE J1121 Revised SEP2006-3-The fatigue life of hot coiled springs is greatly impaired when the bar surface is afflicted by
21、such flaws asimpurities, cracks, seams, or decarburization, but it can be increased by the peening operation in the order of 4to 1. Even the much better fatigue life attainable in hot-coiled springs with nearly perfect bar surface will beimproved by peening in the order of more than 2 to 1. For furt
22、her details see MANUAL, SAE HS J795,Chapters 1 and 4, also SHOT PEENING MANUAL, SAE HS 84 J808.3.3 PresettingPresetting (also called scragging, cold setting, or bulldozing) is an operation during themanufacturing process in which the spring is compressed beyond the yield point of the heat treated ma
23、terial.In preparation for this, the spring is coiled to a free length in excess of the designated free length. The yieldingin the surface layers of the bar which occurs during presetting produces beneficial residual stresses, thusincreasing the elastic limit and thereby reducing the chances of settl
24、ing in subsequent service. The yieldingcauses the spring to take a permanent set, thus bringing it down to the designated free length. See alsoPreset Length, 3.6.3.3.3.1 WARM SETTINGIn order to reduce the “sag” of “settling” of helical suspension springs which occurs whenthey are subjected to vehicl
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