SAE J 2405-1997 Low-Permeation Fuel Fill and Vent Tube《低渗燃料灌装和通风管》.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 2007 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.orgSURFACEVEHICLESTANDARDJ2405REAF.JUL2007Issued 1997-08Reaffirmed 2007-07Superseding J2405 AUG1997Low-Permeation Fuel Fill and Vent Tube1. ScopeThis SAE Standard covers the minimum requirements for a low-permeation tubing (100 g/m2
5、day orless) for use as a low pressure (14.5 kPa) liquid- or vapor-carrying component for use in gasoline or diesel fuelfiller, vent, and vapor systems. The construction shall be designed to be functional over a temperature rangeof 40 C to 100 C for the T1 designation, or 40 C to 125 C for the T2 des
6、ignation.1.1 RationaleReviewed by SAE Non-Hydraulic Hose Committee and reinstated without change.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
7、 apply.2.1.1 SAE PUBLICATIONAvailable from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001, Tel:877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org.SAE J1737Recommended Practice for Measurement of Permeation Resistance by the RecirculationTechnique2.1.2 ASTM PUBLIC
8、ATIONSAvailable from ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959,Tel: 610-832-9585, www.astm.org.ASTM D 380Methods of Testing Rubber HoseASTM D 413Test Methods for Rubber Property: Adhesion to Flexible SubstrateASTM D 471Test for Rubber Property: Effect of LiquidsASTM D 1149Test Me
9、thod for Rubber Deterioration: Surface Ozone Cracking in a Chamber (FlatSpecimens)2.2 Related PublicationsThe following publications are provided for information purposes only and are not arequired part of this document.SAE J2405 Reaffirmed JUL2007-2-2.2.1 SAE PUBLICATIONSAvailable from SAE, 400 Com
10、monwealth Drive, Warrendale, PA 15096-0001, Tel:877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org.SAE J30Fuel and Oil HosesSAE J1645Fuel System Electrostatic ChargeSAE J1681Gasoline/Methanol Mixtures for Material TestingSAE J2260Nonmetallic Fuel System Tubing With One o
11、r More Layers2.2.2 ASTM PUBLICATIONSAvailable from ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959,Tel: 610-832-9585, www.astm.org.ASTM D 257DC Resistance or Conductance of Insulating MaterialsASTM D 412Test for Rubber Properties in TensionASTM D 573Test for Rubber: Deterioration in an
12、 Air Oven2.2.3 RMA PUBLICATIONAvailable from Rubber Manufacturers Association, 1400 K Street, NW, Suite 900,Washington, DC 20005, Tel: 202-682-4800, www.rma.org.RMA IP-2Method for Measuring Electrical Resistance of Hose3. ConstructionThe construction typically consists of a smooth bore or laminated
13、tube of one or moresynthetic rubber compound(s) and/or thermoplastic material(s) resistant to chemical attack, swelling, andpermeation by gasoline, alcohol extended gasoline, or diesel fuel. It may also be covered with a suitable oil,ozone, and heat-resistant synthetic rubber compound or thermoplast
14、ic. The specific construction details are tobe agreed between the supplier and the original purchaser.4. Dimensions4.1 The ends of the tube shall be square within 3.0 mm for sizes up to but excluding 25.4 mm ID, 6.4 mm for sizes25.4 mm through 50.8 mm ID, and 9.5 mm for sizes over 50.8 mm ID. Refere
15、nce Table 1.4.2 When tubing is supplied in specific cut or long lengths, the length tolerances shall be as in Table 2.4.3 End squareness shall be measured as the angle between a plane intersecting the long and short extremes ofthe tube end and a plane perpendicular to the tube axis. The allowable ma
16、ximum out-of-squareness isspecified in Table 1.5. When a tube is supplied as a preformed item, the tolerance shall be as follows:5.1 Squareness of EndsThe tolerance on squareness of ends of preformed parts shall be a minimum 15% ofthe nominal tube OD on all sizes through 25.4 mm ID, 6.3 mm for sizes
17、 over 25.4 mm ID through 50.8 mm ID,and 9.5 mm for sizes over 50.8 mm ID. End squareness shall be measured as described in 4.1.5.2 Arms LengthsMeasured from end to intersection of nearest centerline. Each end shall be as described inSection 4. These tolerances apply also to the length of an expanded
18、 end.5.3 General LayoutDimensions locating bend intersections are to establish the theoretical centerline of thetube. Actual outside contour of the tube must be held within 4.8 mm in all planes with respect to the theoreticaloutside contour. To check contour, tube ends should first be placed in nomi
19、nal position (it may have to beflexed to correct any distortion caused by handling after vulcanization in the producing plant or in shipment) ina checking fixture made in accordance with user requirements from which contour deviation can be measured.Allowance shall be provided in the end-mounting ar
20、ea of the fixture for the arm length tolerances which areapplicable.SAE J2405 Reaffirmed JUL2007-3-When the ID of an end of the tube is enlarged, the wall gauge of the enlarged end normally changes.Allowable change should be +0.8 0.5 mm. The wall gauge within bends of a preformed tube may differ fro
21、mthe gauge in straight portions. The difference shall not exceed 33%.TABLE 1DIMENSIONS AND TOLERANCESNominalSizemmInsideDiametermmOutsideDiameter(1)mm1. Concentricity based on total indicator reading between the inside bore and the outer surface of the tube shall not exceed the values given as follo
22、ws:Sizes 6.4 mm and under:0.762 mmSizes over 6.4 mm up to 12.7 mm:1.016 mmSizes over 12.7 mm:1.270 mmEnd Out-ofSquarenessAngle, Deg(2)2. These values were determined by the equation:A = 15 degrees K X Dwhere:A = Maximum out-of-squareness angleK = 0.12 degree per mm of diameter (a slope factor derive
23、d from linear best-fit previous squareness requirement)D = Nominal inside diameter in millimeters4.0 4.0 0.4 9.1 0.6 14.54.8 4.8 0.4 10.3 0.6 14.45.6 5.6 0.4 11.1 0.6 14.36.4 6.4 0.4 12.7 0.6 14.27.0 7.0 0.4 13.5 0.6 14.17.9 7.9 0.4 14.3 0.6 14.08.7 8.7 0.4 15.1 0.6 14.09.5 9.5 0.4 15.9 0.6 13.911.1
24、 11.1 0.6 18.3 0.8 13.712.7 12.7 0.6 19.8 0.8 13.515.9 15.9 0.8 23.8 0.8 13.119.1 19.1 0.8 28.6 0.8 12.725.4 25.4 0.8 34.9 1.6 12.031.8 31.8 1.0not specified(3)3. The wall gauge for sizes 31.8 mm to 50.8 mm shall be between 4.3 to 5.9 mm, and for sizes 57.2 mm to 63.5 mm, between 4.3 to 6.4 mm.11.23
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