FORD WSB-M4G340-A-2014 SEALER URETHANE BASED HEAT CURING PAINTABLE ANTI-CRACKING TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATIONMaterial Name Specification NumberDate Action Changes1991 07 30 NB00E10147324000 Released W. Curtiss E. Rezendes M. PerchardWP 3948-a Page 1 of 9SEALER, URETHANE BASED, HEAT CURING, PAINTABLE, WSB-M4G340-AANTI-CRACKING1. SCOPEThe material defined by this specificat
2、ion is a urethane based, extrudable,sag resistant, paintable, heat cure sealer.2. APPLICATIONThis specification was released originally for material used to sealexterior body coach joints where excessive movement in sheet metal occurs.This material can be applied to body electrocoat primed surfaces.
3、 Thematerial performs best if applied directly to the seam in a bead form.Minimize wiping or brushing the material since it is not easily removedfrom the electrocoated surface. The material is incompatible with vinylbased sealers and cross contamination must be avoided.3. REQUIREMENTS3.1 STATISTICAL
4、 PROCESSSuppliers must conform to the requirements of Ford Quality SystemStandard Q-101. A mutually acceptable Control Plan as describedtherein is required for material/source approval. Appropriatestatistical tools must be used to analyze process/product data sothat variation in the final product is
5、 continuously reduced.3.2 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSISFord Motor Company, at its option, may conduct infrared and/orthermal analysis of material/parts supplied to this specification.The IR spectra and thermograms established for initial approval shallconstitute the reference st
6、andard and shall be kept on file at thedesignated material laboratory. All samples shall 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 material conditi
7、oned ina controlled atmosphere of 23 +/- 2 C and 50 +/- 5 % relativehumidity for not less than 24 h prior to testing and tested under thesame conditions unless otherwise specified.NOT TO BE USED FOR NEW DESIGN2014 N Status No replacment named L. Sinclair ,NAENGINEERING MATERIAL SPECIFICATIONWSB-M4G3
8、40-AWP 3948-b Page 2 of 93.4 SOLIDS, min 95 %(ASTM D 2834, except heat at 100 +/- 2 Cfor 3 h in a mechanical convectional oven.Save sample for next test, para 3.5)3.5 ASH, max 50 %(Based on the solids weight)Test Method:. Place the crucible c ontaining the solids residue in a cool mufflefurnace. Slo
9、wly heat to and maintain at 760 +/- 30 C for 1 h. Cool crucible in a desiccator and weigh.3.6 WEIGHT PER VOLUME(ASTM D 816)The weig ht tolerance for any one supplier shall be +/- 0.02 kg/L,based on the recorded weight of his original approved productionsample.3.7 VISCOSITY(SAE J1524, VIS-2, 1.32 mm
10、orifice,280 kPa)3.7.1 As Received +/- 2 sec(Conditioning Method B)3.7.2 Aged, max No more than(Material aged in closed container 50 % increasefor 72 h at 40 +/- 1 C, conditioning from originalMethod B) approvalThe viscosity tolerance for any one supplier shall be +/- 2 sec,based on the recorded visc
11、osity of the original approved productionsample.Final a pproval of a specific material viscosity for productionshipments shall be made by the affected manufacturing activity. Inall c ases, the viscosity shall be within specification limits asidentified on the material control plan.3.8 BRIDGING, max
12、6 mm(SAE J243, ADS-9, Method D, non-flow). Condition the test fixture with material bead for 15 minutes at23 +/- 2 C, then bake fixture at the minimum bake schedule per para5.3. Measure the amount of material sag through hole.ENGINEERING MATERIAL SPECIFICATIONWSB-M4G340-AWP 3948-b Page 3 of 93.9 SAG
13、 RESISTANCE3.9.1 Horizontal, max 6 mm3.9.2 Vertical, max 6 mm3.9.3 Inverted No loss ofmaterialTest Method:. Apply a 3 x 30 x 200 mm ribbon of material along the centerline of three electrocoa ted panels prepared per para 5.2. Scribe panels to mark the initial material location. Position the panels w
14、ith the material in the attitude abovefor 1 h. Immediately after conditioning, place panels in a n oven tocure material at the minimum bake schedule per para 5.3.Maintain panels in the specified attitude during baking andcooling. Allow the panel to cool to 23 +/- 2 C. Determine the sag by measuring
15、the material movem ent belowthe scribe mark.3.10 ADHESION(SAE J1600 - Method A, except spacer thickness shall be 6.0 mm)Shall not be peeled off in a continuous film at any thickness.Test Method:. Apply 6 - 0 mm tapered material ribbon on two electrocoated panelsprepared per para 5.2. Subject one tes
16、t pan el to the minimum bake schedule and the othertest panel to the maximum bake schedule identified per para 5.3. Condition panels after baking at 23 +/- 2 C for 1 h minimum. Evaluate adhesion by cutting a 25 mm wide str ip across the taperedribbon. Using the tip of a square spatula, lift the mate
17、rial atboth the thin and thick film edges then attempt to hand peelmaterial at 90 degrees from substrate. Save test panels for Heat Stability Test, para 3.11 and CorrosionResistance Test, para 3.12.ENGINEERING MATERIAL SPECIFICATIONWSB-M4G340-AWP 3948-b Page 4 of 93.11 HEAT RESISTANCE TEST No eviden
18、ce of blistering,cracking, charring or otherdeleterious effectsTest Method: Examine the maximum bake panel prepared for Adhe sion Test, para 3.10,for any of the above conditions.3.12 CORROSION RESISTANCE TESTTest Method:. Expose the panels prepared in para 3.10 for 240 h in the salt spraycabinet des
19、cribed per ASTM B 117. Condition the test panels after exposure at 23 +/- 2 C for 24 h. Evaluate material adhesion as described in pa ra 3.10. Observe forany evidence of corrosion originating directly under material.3.13 MANDREL BEND TEST No cracking or(FLTM BV 122-01, material bake schedule adhesio
20、n failureper para 5.3, heat age test specimen 14days at 70 +/- 1 C before test)3.13.1 Test at 23 +/- 2 C3.13.2 Test at - 30 +/- 1 C3.14 CRACK RESISTANCE, min 5000 cycles(FLTM BV 115-01, bake 2 sets of panels per5.3 for normal and aged tests. Substratesidentified per para 5.2)ENGINEERING MATERIAL SPE
21、CIFICATIONWSB-M4G340-AWP 3948-b Page 5 of 93.15 COMPATIBILITY WITH PRODUCTION PAINTSNo tackiness, staining, discoloration, pinholing from sealeroutgassing or other deleterious effects on topcoats.3.15.1 Fluorescent UV Exposure 500 h(SAE J2020)3.15.2 14 days at 70 CTest Method:. Prepare test panels p
22、er SAE J1800, Method 3, using a sealergel oven bake of 10 minutes at 120 +/- 2 C, a primer bakeschedule of 135 +/- 1 C for 8 minutes metal temperature anda topcoat bake schedule of 130 +/- 1 C for 10 minutes metaltemperature. Apply current production paints as identifiedby the Body Engineering Mater
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