SAE J 1918-2002 Method for the Determination of Expansion and Water absorption of automotive Sealers《汽车密封层膨胀率和吸水率测定方法》.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.TO PLACE A DOCUMENT ORDER: (724) 776-4970 FAX: (724) 776-0790SAE WEB ADDRESS http:/www.s
3、ae.orgCopyright 2002 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001RECOMMENDEDPRACTICEJ1918REV.JAN2002Issued 1988-05Revised 2002-01Superseding J1918 MAY1988(R) Method for the Determination of Expansion and Wa
4、ter Absorption in Automotive SealersForewordThis document describes three different methods for measuring the expansion of an automotive sealerMethod #1Gravimetric MethodMethod #2Volumetric MethodMethod #3Vertical Methodand two methods for measuring water absorptionMethod #1Uncut MethodMethod #2Cut
5、MethodThe gravimetric and volumetric methods would be used to determine the amount of compound needed tocompletely fill an enclosed or “boxed in” area to effect a moisture and/or sound resistant barrier. The gravimetricmethod, Method #1, is analytical in nature and thus is more precise in its calcul
6、ated values, and is especialy usefulwhen measuring expansions of less than 100%. The volumetric method, Method #2, is a quick way to checkexpansion where errors of 5% points are not crucial.The vertical expansion method, Method #3, measures the vertical rise that a sealer achieves and is useful inde
7、termining bead size and expansion requirements in sealing applications, such as roof bows, where the criticalfunction of the compound involves “jumping” an air gap, thereby joining two irregularly spaced surfaces.The water absorption methods measure a sealers resistance to moisture transmission when
8、 the sealers outersurface is intact and/or damaged. Generally water absorption values, after 24 h immersion, of 2% or less for intactfilms and 3% or less for cut films are acceptable.1. ScopeThis SAE Recommended Practice sets forth methods for determining total expansion gravimetricallyand volumetri
9、cally, calculating vertical expansion and measuring the water absorption of cut and uncut sealerbeads.Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-SAE J1918 Revised JAN2002-2-2. References2.1 Relate
10、d PublicationsThe following publications are provided for information purposes only and are not arequired part of this document.2.1.1 DAIMLERCHRYSLER PUBLICATIONSAvailable from DaimlerChrysler Corporation, ?LP-463NB-5-01 Change CVolume Change of Heat Expandable SealersDetermination of,DaimlerChrylse
11、r Corporation, Laboratory Procedure (Gravimetric Test Method)LP-463NB-33-01 Change ASealersVertical Rise Method of Determining Volume Change,DaimlerChrysler Corporation, Laboratory Procedure (Vertical Expansion Test Method)LP-463NB-07-01 Change CSealersWater AbsorptionDetermination of, DaimlerChrysl
12、erCorporation, Laboratory Procedure (Water Absorption Test Method)2.1.2 FORD PUBLICATIONSAvailable from Ford Motor Company, ?FLTM BV 108-02 1992 01 21Volume Change Test for Adhesives and Sealants, Ford Motor Company,Automotive Safety and Engineering Standards (Gravimetric Test Methods)ESB-M18P11-A 1
13、988 12 093.8 Expansion, Ford Motor Company, Engineering Material Specification(Vertical Expansion Test Method)FLTM BV 117-01 1992 02 03Water Absorption Test for Adhesives and Sealants, Ford Motor Company,Engineering Material Specification (Water Absorption Test Method)2.1.3 GENERAL M OTORS CORPORATI
14、ONAvailable from General Motors Corporation, ?GM9037P September 1988Test for Measuring Expansion of Sealers, General Motors EngineeringStandards, Materials and ProcessesProcedures (Gravimetric Test Method)GM9640P January 1992Water Absorption Test for Adhesives and Sealants, General MotorsEngineering
15、 Standards, Materials and ProcessesProcedures (Water Absorption Test Method)GM9764P October 1989Test for Measuring the Ramp Expansion of Sealers, General MotorsEngineering Standards, Materials and ProcessesProcedures (Vertical Expansion Test Method)3. EquipmentThe following materials are required:3.
16、1 Expansion3.1.1 GRAVIMETRIC TEST METHODS (METHOD #1)a. Sealer to be testedb. Mechanical Convection Ovenc. Analytical Balance (0.0001 g accuracy)d. 150 mL beakere. Three count 0.9 x 25 x 62 mm (0.035 x 1 x 2.5 in) Aluminum Coupons with 0.25 mm diameter wiref. 0.9 x 300 x 300 mm (0.035 x 12 x 12 in)
17、Cold Rolled Steel Panelg. 0.9 x 75 x 150 mm (0.035 x 3 x 6 in) Cold Rolled Steel PanelCopyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-SAE J1918 Revised JAN2002-3-3.1.2 VOLUMETRIC TEST METHODS (METHOD #
18、2)a. Sealer to be testedb. Mechanical Convection Ovenc. 500 mL graduated cylinder (50 mm (2.0 in) diameter)d. Three count 15 mL (0.5 oz) seamless containers with 0.25 mm (0.010 in) diameter wiree. 0.9 x 300 x 300 mm (0.035 x 12 x 12 in) Cold Rolled Steel Panel3.1.3 VERTICAL E XPANSION TEST METHODS (
19、METHOD #3)a. Sealer to be testedb. Mechanical Convection Ovenc. Six count 0.9 x 100 x 300 mm (0.035 x 4 x 12 in) Cold Rolled Steel Panelsd. Six count 32 mm Wide Spring Clips3.2 Water Absorptiona. Sealer to be testedb. Mechanical Convection Ovenc. Analytical Balance (0.001 g accuracy)d. 0.9 x 25 x 62
20、 mm (0.035 x 1 x 2.5 in) Aluminum Coupons without wiree. 0.9 x 300 x 300 mm (0.035 x 12 x 12 in) Cold Rolled Steel Panel4. Gravimetric Expansion Procedure (Method #1)4.1 Fabricate a small platform, from a 75 x 150 x 0.9 mm (3 x 6 x 0.035 in) steel panel, that will support a 150 mLbeaker full of wate
21、r as shown in Figure 1 (exact dimensions will vary depending on the model of balance used).The positioning of the platform and beaker should be arranged to allow complete freedom of movement of thepan.4.2 Individually identify each of three 0.9 x 25 x 62 mm (0.035 x 1 x 2.5 in) aluminum coupon assem
22、blies, asshown in Figure 2, and determine the dry weight of each panel (W1) to the nearest milligram (0.0001).4.3 Determine the wet weight of each coupon assembly (W2) to the nearest milligram (0.0001) after suspendingeach coupon in water as in Figure 3, making sure the entire coupon is submerged.4.
23、4 The volume of each coupon (V1) in milliliters is equal to the difference between the dry and wet weights dividedby the specific gravity of water, 1 g/mL(Eq. 1)4.5 Apply a semi-circular bead of sealer, approximately 10 mm (0.39 in) in diameter, down the center of eachpanel.4.6 Trim the ends of each
24、 bead leaving a 38 mm (1.5 in) length of sealer centered on each coupon as shown inFigure 4.V1 W1 mg()W2 mg()1 g mL-=Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-SAE J1918 Revised JAN2002-4-FIGURE 1
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