SAE AIR 6082-2011 Calculations to Determine Dimensions for Backup Rings to AS5781 AS5782 AS5860 AS5861《确定AS5781 AS5782 AS5860 AS5861的备份环尺寸的计算》.pdf
《SAE AIR 6082-2011 Calculations to Determine Dimensions for Backup Rings to AS5781 AS5782 AS5860 AS5861《确定AS5781 AS5782 AS5860 AS5861的备份环尺寸的计算》.pdf》由会员分享,可在线阅读,更多相关《SAE AIR 6082-2011 Calculations to Determine Dimensions for Backup Rings to AS5781 AS5782 AS5860 AS5861《确定AS5781 AS5782 AS5860 AS5861的备份环尺寸的计算》.pdf(38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 theref
2、rom, 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 2011 SAE International All rights reserved. No part of this publication ma
3、y 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: +1 724-776-4970 (outside US
4、A) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AIR6082AEROSPACEINFORMATIONREPORTAIR6082 Issued 2011-05 Calculations to Determine Dimensions fo
5、r Backup Rings to AS5781, AS5782, AS5860, AS5861 RATIONALEPrevious parts standards that were originally developed for backup rings used dimensions that were based only on the fit to hardware and O-ring dimensions at ambient. However, backup rings to AS5781, AS5782, AS5860, AS5861 were designed to su
6、it practical operating conditions and machining capabilities of the material. Thus, there is a requirement for a document that provides the means to determine the dimensions for these backup rings. This document has been compiled to meet this need. FOREWORDScarf cut backup rings to AS5781 and AS5860
7、 are dimensioned to accommodate cylinder breathing and thermal shrink at low temperature while maintaining a 50% minimum lap at the scarf cut. They are also designed, where possible, to ensure an axial clearance between the O-Ring, backup ring(s) and groove at high temperature with an overlap condit
8、ion at the scarf cut. These calculations under thermal conditions do not account for thermal changes to any of the hardware. Solid uncut backup rings to AS5782 and AS5861 are dimensioned in line with practical tolerances on diameters. TABLE OF CONTENTS 1. SCOPE . 32. REFERENCES. 32.1 Applicable Docu
9、ments . 32.1.1 SAE Publications 32.1.2 U.S. Government Publications . 42.2 DEFINITIONS 42.3 Abbreviations . 52.3.1 General 52.3.2 Abbreviations used in Equations 53. DESIGN CALCULATIONS FOR BACKUP RINGS 73.1 Backup Ring Thickness “T” (Axial Dimension) 73.1.1 Axial Clearance Calculations . 83.2 Radia
10、l Wall Dimension of Backup Rings “W” dimension . 113.2.1 Piston Backup Rings 113.2.2 Rod Backup Rings . 123.3 Backup Ring Diameters . 133.3.1 Solid (uncut) Backup Rings 133.3.2 Diameter of Scarf-cut Backup Rings 143.4 Axial Clearance Calculations . 213.4.1 Axial Clearance Scarf-cut Piston Backup Rin
11、gs . 213.4.2 Axial Clearance Scarf-cut Rod Backup Rings 243.4.3 Axial Clearance Solid Backup Rings 25Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE AIR6082 Page 2 of 383.5 Cross Section Area Occ
12、upancy Calculations 263.5.1 Cross Section Area Occupancy Check on Scarf-cut Backup Rings atMaximum Overlap Position 263.5.2 Cross Section Area Occupancy Check on Solid (Uncut) Backup Rings . 293.6 Volume Occupancy Calculations . 303.6.1 Volume Occupancy Check - Scarf-cut Piston Backup Rings 303.6.2
13、Volume Occupancy Check Scarf-cut Rod Backup Rings . 323.6.3 Volume Occupancy Check Solid (Uncut) Backup Rings 344. GLAND AND BACKUP RING DESIGN PRACTICES 345. SPREADSHEETS FOR AS5781, AS5782, AS5960, AS5861 . 346. NOTES . 346.1 Change Status . 34FIGURE 1 GLAND DESIGN AS4716, AS5857 . 4FIGURE 2 SCARF
14、-CUT BACKUP RING CONTROLLED FEATURES AS5781, AS5860 . 4FIGURE 3 SOLID BACKUP RING CONTROLLED . 5FIGURE 4 COMPRESSED O-RING WITH SINGLE BACKUP IN PISTON SEAL GLAND 8FIGURE 5 COMPRESSED O-RING WITH TWO BACKUPS IN PISTON SEAL GLAND 8FIGURE 6 O-RING IN FREE CONDITION 9FIGURE 7 COMPRESSED O-RING IN ZERO
15、BACKUP WIDTH PISTON SEAL GLAND . 9FIGURE 8 AXIAL CLEARANCE “Z” WITH O-RING Packing, Hydraulic, General Requirements For (Inactive for New Design) FED-STD-595 Colors Used in Government Procurement 2.2 DEFINITIONS GLAND DESIGN DIMENSIONS: The key hardware dimensions for glands, as defined in AS4716 an
16、d AS5857, are as shown in Figure 1. FIGURE 1 KEY DIMENSIONS FOR GLAND DESIGN - AS4716, AS5857 BACKUP RING DIMENSIONS: The key hardware dimensions for backup rings, as defined in AS5781, AS5782, AS5860 and AS5861, are as shown in Figures 2 and 3. FIGURE 2 - KEY DIMENSIONS FOR SCARF-CUT BACKUP RING -
17、AS5781, AS5860 Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE AIR6082 Page 5 of 38FIGURE 3 - KEY DIMENSIONS FOR SOLID BACKUP RING - AS5782, AS5861 BACKUP VOLUME: This is the volume of the backup
18、 ring and is calculated at ambient temperature and at the maximum operating temperature of 275 F (135 C) for gland occupancy purposes.RACETRACK SHAPE: This is the shape of a squeezed O-ring cross section as shown in Figures 4, 5, and 7 (Refer to 3.1.1).2.3 Abbreviations 2.3.1 General B/U Backup Ring
19、 C/X Cross Section I.D. Inside Diameter Nom Nominal dimension O.D. Outside Diameter PTFE Polytetrafluoroethylene t Temperature Tol Tolerance dimension Typ Typical 2.3.2 Abbreviations used in Equations 2.3.2.1 General Abbreviations BVCYHBackup Volume O-ring I.D. O ring radius to mean of cross-section
20、 O-ring cross section radius G Maximum gap at scarf-cut when held against gauge G1Groove width, one backup Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE AIR6082 Page 6 of 38G2Groove width, two
21、backup GAR1 Groove cross-section area perpendicular sidewalls, including corner radii, 1 backup groove widthGAR2 Groove cross-section area perpendicular sidewalls, including corner radii, 2 backup groove width GV1 Groove volume perpendicular sidewalls, excluding corner radii, 1 backup groove width G
22、V2 Groove volume perpendicular sidewalls, excluding corner radii, 2 backup groove width GVR1 Groove volume perpendicular sidewalls, including corner radii, 1 backup groove width GVR2 Groove volume perpendicular sidewalls, including corner radii, 2 backup groove width H O-ring radius to center of C/X
23、 l Length of flat on racetrack shape of squeezed O-ring cross section L Overall axial length of O-ring when installed in compressed condition LeOverall axial length of O-ring when installed in compressed condition and at temperature due to thermal expansionP O-ring I.D. (maximum) PS Radial groove de
24、pth q Cross section of O-ring when in compressed installed condition Q O-ring cross section diameter in the free condition R Groove corner radius RA2 Area of two (2) groove corner radii RV2 Volume of two (2) groove corner radii T Backup thickness (axial length) TExpBackup thickness (max) at overlapp
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