SAE AIR 5433B-2014 Lubricating Characteristics and Typical Properties of Lubricants Used in Aviation Propulsion and Drive Systems《航空推进和驱动系统中使用润滑剂的润滑特性和典型性能》.pdf
《SAE AIR 5433B-2014 Lubricating Characteristics and Typical Properties of Lubricants Used in Aviation Propulsion and Drive Systems《航空推进和驱动系统中使用润滑剂的润滑特性和典型性能》.pdf》由会员分享,可在线阅读,更多相关《SAE AIR 5433B-2014 Lubricating Characteristics and Typical Properties of Lubricants Used in Aviation Propulsion and Drive Systems《航空推进和驱动系统中使用润滑剂的润滑特性和典型性能》.pdf(43页珍藏版)》请在麦多课文档分享上搜索。
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 entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising there
2、from, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions. Copyright 2014 SAE International All rights reserved. No part of this p
3、ublication may be 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: +1 724-776-497
4、0 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AIR5433BAEROSPACEINFORMATION REPORT AIR5433 REV. BIssued 2001-05 Revised 2014-01
5、Superseding AIR5433A Lubricating Characteristics and Typical Properties of Lubricants Used in Aviation Propulsion and Drive Systems RATIONALE Since issuance of AIR5433A, it was discovered that the pressure viscosity coefficient values for 3 and 4 cSt oils listed in Table 3 were in error. In addition
6、, the specific heat units in Table 6 were incorrect. After review in the E-34C Lubricating Characteristics Subcommittee, these issues have been resolved in this revision. INTRODUCTION This SAE Aerospace Information Report (AIR) is intended as a guide toward standard practice, but may be subject to c
7、hange to keep pace with experience and technical advances. Hence, its use, where flexibility of revision is impractical, is not recommended. The information contained herein is an attempt to establish guidelines for the selection of properties governing the lubricating characteristics of lubricants
8、to be used in current and future aviation propulsion and drive systems. It is the intent of the SAE Committee E-34 on Propulsion Lubricants, that this document reflects currently accepted thinking in the industry and government agencies concerned with the lubrication of components in aviation primar
9、y propulsion systems, and associated power transfer gearboxes and transmissions. The content of this AIR is the result of communication among lubricant manufacturers, hardware manufacturers, lubricant specialists, tribologists, lubricant specifiers, and lubricant users. Continued communication will
10、be encouraged to maintain the information contained herein as current as possible. Users are advised that they can contribute to subsequent changes and additions to this document by their comments, suggestions and criticism. In present standards, some properties of importance in determining lubricat
11、ing ability and the methods to quantify these properties tend to be ignored and in some cases there are no standardized test methods. Because these properties are important to designers, they are included in this document even if methods are not specified or standardized. In these cases, typical val
12、ues obtained by particular methods are presented. It is intended that by including these data, focus will be brought on the deficiencies in these areas. It must also be recognized that the selection of properties relevant to lubricating characteristics must be made in the light of the other characte
13、ristics necessary or desirable in the lubricant. This document is not intended to specify the properties of fluids optimized for lubricating ability; instead it is intended to provide the guidance to be considered, along with the other requirements for the application, in determining the values to b
14、e specified for each property. Trade-off in the selection of limits for various properties must be made based on the relative impact of these properties on each other and on the system. SAE INTERNATIONAL AIR5433B Page 2 of 43 TABLE OF CONTENTS 1. SCOPE 42. REFERENCES 42.1 Applicable Documents 42.2 D
15、efinitions and Terminology . 42.3 Symbols and Abbreviations 53. FUNDAMENTALS OF LUBRICATION AND LUBRICANT PROPERTIES . 73.1 Lubricant Function . 73.2 Lubrication and Failure Mechanisms 83.2.1 Introduction . 83.2.2 Types of Contacts . 83.2.3 Structural Elements of a Lubricated Contact 93.2.4 Stress F
16、ields of a Lubricated Contact . 103.2.5 Lubrication Mechanisms . 103.2.6 Failure Processes . 134. PROPERTIES AND ATTRIBUTES . 164.1 Properties Significance . 174.1.1 Properties in Hydrodynamic Lubrication . 174.1.2 Properties in Elastohydrodynamic Lubrication 184.1.3 Properties for EHD Traction 234.
17、1.4 Properties for Boundary Lubrication . 244.1.5 Mixed Film Lubrication 255. COMMONLY USED LUBRICANT PROPERTIES FOR AIRCRAFT ENGINE AND POWER SYSTEMS 285.1 Background . 285.2 Properties and Test Methods for Lubricants Used in Aircraft Propulsion Systems 296. NOTES 37APPENDIX A LUBRICANT FILM THICKN
18、ESS CALCULATION 38FIGURE 1 STRUCTURAL ELEMENTS OF A LUBRICATED CONTACT 9FIGURE 2 EHD LUBRICATION . 11FIGURE 3 SURFACE FILMS FROM BOUNDARY LUBRICATION MECHANISMS . 12FIGURE 4 FIVE KEY TRIBOLOGY PARAMETERS 13FIGURE 5 PRESSURE-VISCOSITY COEFFICIENTS FOR 5 CST QUALIFIED PRODUCTS . 20FIGURE 6 AVERAGE PRE
19、SSURE-VISCOSITY COEFFICIENT REPRESENTING 5 CST QUALIFIED PRODUCTS 21FIGURE 7 COMPARISON OF THE ISOTHERMAL AND THERMAL SOLUTION FOR THE LUBRICANT FILM THICKNESS IN A GAS TURBINE ENGINE BEARING AS A FUNCTION OF TEMPERATURE . 22FIGURE 8 EFFECT OF STRESS AND SLIP ON TRACTION COEFFICIENT 23FIGURE 9 THE I
20、NFLUENCE OF TEMPERATURE AND SLIP ON TRACTION COEFFICIENT . 24FIGURE 10 BOUNDARY FILM FROM ANTI-WEAR ADDITIVE TRICRESYL PHOSPHATE (TCP) 25FIGURE 11 TRANSITION FROM EHD TO MIXED FILM LUBRICATION . 26FIGURE 12 PERFORMANCE MAP IN TERMS OF ENTRAINING AND SLIDING VELOCITY . 27FIGURE 13 LOAD CAPACITY TEST
21、SHOWING SCUFFING AND WEAR PERFORMANCE . 28TABLE 1 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS KINEMATIC VISCOSITY . 29TABLE 2 BRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS TEMPERATURE- VISCOSITY DATA 30TABLE 3 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS PRESS
22、URE- VISCOSITY COEFFICIENT 31TABLE 4 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS LOAD RATING (WEAR AND SCUFFING) . 32SAE INTERNATIONAL AIR5433B Page 3 of 43 TABLE 5 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS TRACTION COEFFICIENT 33TABLE 6 LUBRICANT PROPERTY SUMMARY FOR
23、 AIRCRAFT PROPULSION SYSTEMS SPECIFIC HEAT 34TABLE 7 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS DENSITY 35TABLE 8 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS THERMAL CONDUCTIVITY . 36TABLE 9 LUBRICANT PROPERTY SUMMARY FOR AIRCRAFT PROPULSION SYSTEMS ELECTRICAL CONDUCTI
24、VITY . 37SAE INTERNATIONAL AIR5433B Page 4 of 43 1. SCOPE This SAE Aerospace Information Report (AIR) establishes guidance for the specification of formulated lubricant properties which contribute to the lubricating function in bearings, gears, clutches and seals of aviation propulsion and drive sys
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