FORD ESB-M2G347-A-1990 ADHESIVE EPOXY HYBRID - TWO COMPONENT ROOM TEMPERATURE CURE OR INDUCTION CURING STRUCTURAL《结构用两组分室温固化或感应固化环氧树脂混合型胶粘剂》.pdf
《FORD ESB-M2G347-A-1990 ADHESIVE EPOXY HYBRID - TWO COMPONENT ROOM TEMPERATURE CURE OR INDUCTION CURING STRUCTURAL《结构用两组分室温固化或感应固化环氧树脂混合型胶粘剂》.pdf》由会员分享,可在线阅读,更多相关《FORD ESB-M2G347-A-1990 ADHESIVE EPOXY HYBRID - TWO COMPONENT ROOM TEMPERATURE CURE OR INDUCTION CURING STRUCTURAL《结构用两组分室温固化或感应固化环氧树脂混合型胶粘剂》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONMaterial Name Specification NumberDate Release No. Release/Revision1990 06 28 NBENE10079497000 Released K. R. King E.R. Rezendes M. PerchardWP 3948-a Page 1 of 10 ADHESIVE, EPOXY HYBRID, TWO COMPONENT, ROOM ESB-M2G347-ATEMPERATURE OR INDUCTION CURING, STRUCTURAL1.
2、SCOPEThe material defined by this specification is a pumpable, two-component,room temperature or induction heat curing, epoxy hybrid base, structuraladhesive.2. APPLICATIONThis specification was released originally for material used for structuralbon ding of metal-to-metal body components such as th
3、e inner and outerpanels (hem flange) of deck lid s, doors and hoods, etc. This adhesive canbe use d to bond oily, unclean metal substrates, such as galvanized steel,sheet-zinc rich primer coated steel, and CRLC steel.3. REQUIREMENTS3.1 STATISTICAL PROCESSSupplie rs must conform to the requirements o
4、f Ford Quality SystemStand ard Q-101. A mutually acceptable Control Plan as describedtherein is required for material/source approval. Appropriatestatist ical tools must be used to analyze process/product data sothat variation in the final product is continuously reduced.3.2 INFRARED SPECTROPHOTOMET
5、RY AND/OR THERMAL ANALYSISFord Motor Company, at its option, may conduct infrared and/ortherma l analysis of material/parts supplied to this specification.The IR spectra and thermograms established for i nitial approval shallconst itute the reference standard and shall be kept on file at thedesignat
6、ed material laboratory. All samples sha ll produce IR spectraand thermograms that correspond to the reference standard when testedunder the same conditions.3.3 CONDITIONING AND TEST CONDITIONSAll test values indicated herein are based on ma terial conditioned ina control led atmosphere of 23 +/- 2 C
7、 and 50 +/- 5 % relativehumidity for not less than 24 h prior to testing and tested under thesame conditions unless otherwise specified.ENGINEERING MATERIAL SPECIFICATIONESB-M2G347-AWP 3948-b Page 2 of 10 3.4 UNCURED MATERIAL CHARACTERISTICSInitial adhesive streng ths are achieved after 1.5 h room t
8、emperaturecur ing or induction heating at 121 C for 2 s metal temperature.Re commended post bakes for full adhesive cure are 171 C metaltemperature for 10 minutes minimum and 205 C met al temperature for 30minutes maximum.3.4.1 Viscosity(FLTM BV 3-1, 2.64 mm orifice, 550 kPaair pressure, Method A, t
9、est at 25+/- 2 C)3.4.1.1 As received. Base 4 - 6 s. Curative 30 - 50 s3.4.1.2 Aged, 7 days at 40 +/- 2 C. Base 5 s max increase. Curative from initialviscosity3.4.1.3 Aged, 90 days at 27 +/- 2 C. Base 10 s max increase. Curative from initialviscosity3.4.2 Solids, min 100 %(ASTM D 2834, except 3 h at
10、 102 +/-3 C, save sample for next test)3.4.3 Ash, max 30 %(Based on solids weight)Test Method: Place the crucible containing the s olids residuein a cool muffle furnace. Slowly heat to and ma intain at 760+/- 30 C for 1 h, cool in desiccator, and weigh.3.4.4 Weight per Volume +/- 0.02 kg/L(ASTM D 81
11、6) The weight tolerance for any one supplier shall be based onth e recorded weight of his originally approved productionsample. Refer to para 5.7 for additional information.ENGINEERING MATERIAL SPECIFICATIONESB-M2G347-AWP 3948-b Page 3 of 10 3.4.5 Sag Resistance, max No sag at high or(FLTM BV 18-1,
12、6 mm material low bakethickness, CRLC steel substrate,per para 5.3, cure temperaturesper para 5.4, one panel at eachbake schedule).3.4.6 Expansion No porosity orexpansion. Extrud e a 13 x 200 mm adhesive bead onto a 100 x 300 mm,CRLC steel substrate as identified per para 5.3. Place the test panel i
13、n an air circulating oven and bakeat 205 +/- 2 C for 30 minutes. Conditi on test panel at 23 +/- 2 C for 1 h minimum afterbaking. Cut t he adhesive bead and panel lengthwise through thecenter of the adhesive bead. Examin e the adhesive for any voids, porosity or expansioncaused by entrapped air or i
14、nternal gassing.3.4.7 Storage StabilityTh e material shall be stored in closed containers attemper atures below 27 C away from all sources of heat. Heatgreatly accelerates aging. Under these storage condition s, theshelf life of the material shall be 3 months. However, whenstored at 4 C, the shelf l
15、ife is extended to 6 months. Whenthese materials are stored at temperatures below 23 C, theyshall be conditioned at room temperature prior to applic ation.Ade quate conditioning permits the material to obtain itsmaximum application properties.3.4.8 Material ConsistencyThe material shall be a smooth
16、homogeneous mixture, free fromforeign materials and properties detrimental to normalproduction operations.This adhesive should be deaired during manufacture and bottomfilled into drums to avoid inclusion of air. Additionally,adhesi ve should be filtrated through a No. 30 mesh micronfilter system pri
17、or to drum filling.ENGINEERING MATERIAL SPECIFICATIONESB-M2G347-AWP 3948-b Page 4 of 10 3.5 INDUCTION CURED MATERIAL PERFORMANCE3.5.1 Lapshear Adhesion Strength, min(FLTM BV 119-01)Substrates per paragraph 5.5, 0.25 mm adhesive bondlinethickness, 13 mm/minute pull rate. Induction heat as spe cifiedb
18、elow with single side coil. Measure metal temperature fromcoil side.GALV. CRLC3.5.1.1 Initial with 121 C 7.7 MPa 5.5 MPaInduction Cure 7.7 MPa(Induction heat 6 samplesat 121 C +/- 2 C for 2 s). 3 samples: Condit ion at room temp. 1 h, thentest.3.5.1.2 Aged with 121 C 10.0 MPa 9.9 MPaInduction Cure(I
19、nduction heat 3 samplesat 121 C +/- 2 C for 2 sfollowed by 1.5 h at roomtemp., expose samples to thefollowing environments)- 29 +/- 2 C for 7 days PLUS38 +/- 2 C and 100 % R.H. for 7 days PLUS40 +/- 2 C for 7 days PLUS23 +/- 2 C for 1 day3.5.1.3 Elevated Temperatures 1.4 MPa 0.8 MPa(Induction heat 9
20、 samplesat 121 C +/- 2 C for 2 sfollowed by 1.5 h at roomtemp., test as follows):. 3 Samples: Condition at room temp. 72 h, testat 149 C metal temp. Oven temp . is159 C. 3 Samples: Condit ion at room temp. 72 h, testat 177 C metal temp. Oven temp . is187 C. 3 Samples: Condition at room temp. for 72
21、h,te st at 205 C metal temp Oventemp. is 215 C.3.5.2 Wash Resistance No wash-off(FLTM BV 16-1, Method A, 11.5 mmmaterial thickness)ENGINEERING MATERIAL SPECIFICATIONESB-M2G347-AWP 3948-b Page 5 of 10 3.5.3 Electrocoat Compatibility Shall not contaminate(FLTM BV 19-1, use current electrocoat primerpr
22、oduction paints as identified bath or causeby the Body and Chassis electrocoat fileProduct Engineering Office) irregularities3.6 INDUCTION CURED/OVEN CURED MATERIAL PERFORMANCE3.6.1 Lapshear Adhesion Strength, minIndu ction bond 15 test assemblies at 121 +/- 2 C metaltemper ature for 2 s. Use single
23、 side coil and measure metaltemp erature from coil side. Test samples should then beexposed t o the post bake identified in para 5.6.2. Threesamples shall be tested for each condition. 13 mm/minut e pullrate.3.6.1.1 Normal, min(Condi tion for 30 minutes at specified temperatureprior to test)GALV. CR
24、LC. Test at 23 +/- 2 C 10.0 MPa 7.0 MPa. Test at 82 +/- 1 C 3.4 MPa 3.4 MPa. Test at -29 +/- 1 C 10.0 MPa 10.0 MPa3.6.1.2 Aged, min(Condition at 23 +/- 2 C for24 h after exposure, test at23 +/- 2 C). Thermal Cycle 10.0 MPa 10.0 MPa. (10 times)88 +/- 2 C for 4 h PLUS38 +/- 2 C and 100 % R.H. for 4 h
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