FORD WSS-M4G359-A3-2017 DUPLEX SEALER VINYL BASED NON-YELLOWING PUMPABLE OR AIRLESS SPRAYABLE LOW DENSITY HEAT CURING PAINTABLE IMPROVED STONE CHIP PERFORMANCE INTERIOR AND EXTERIO.pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 3 2017 05 31 Revision/ Released A3 See Summary of Revisions W. Janitschke, FOE 2010 06 16 Revised See Summary of Revisions M. Mehandru, FNA W. Janitschke, FOE 1995 07 13 Activated W. Curtiss G. Molnar Controlled document at www.MATS Copy
2、right 2017, Ford Global Technologies, LLC Page 1 of 5 DUPLEX SEALER, VINYL BASED, NON-YELLOWING, PUMPABLE WSS-M4G359-A OR AIRLESS, SPRAYABLE, HEAT CURING, PAINTABLE, INTERIOR AND EXTERIOR DUPLEX SEALER, VINYL BASED, NON-YELLOWING, PUMPABLE WSS-M4G359-A3 OR AIRLESS, SPRAYABLE, LOW DENSITY, HEAT CURIN
3、G, PAINTABLE, IMPROVED STONE CHIP PERFORMANCE, INTERIOR AND EXTERIOR, CONVENTIONAL PAINT SYSTEMS 1. SCOPE The material defined by this specification is a vinyl based, pumpable, or airless sprayable, paintable, heat curing sealer which is non-yellowing. WSS-M4G359-A is suitable for three wet and trad
4、itional paint systems; however compatibility with paints should be verified for any material on the approved source list. Upon initial qualification, sealers are tested to paint systems in current use and need to be validated on a regional basis. WSS-M4G359-A3 needs to be fully cured (e.g. in Primer
5、 Oven) before paint application used in conventional paint systems. 2. APPLICATION This specification was released originally for sealing interior and exterior body seams, including door hem flanges, Underbody Coating and Roof Ditch Sealing. The material is intended for use in the paint shop and app
6、lied over freshly baked electrocoat. Acceptable paintability is achieved with or without primer surfacer. The material has been formulated to prevent topcoat yellowing and allow topcoat cure in low airflow conditions. 3. REQUIREMENTS 3.1 APPROVED SOURCES This specification requires the use of approv
7、ed sources. Only the sources identified on the Ford Approved Source List (ASL) can be used when this specification is listed on the drawing, CAD file, or other documents. The list of approved sources is located within Ford at or available externally through a Ford Materials Engineer. 3.2 RHEOLOGY S
8、uppliers must submit flow characterization data to Ford Motor Company for flow modeling and process window determination. For a specified temperature range, the requested properties include, but are not limited to, viscosity and yield stress. This data constitutes the reference standard and shall be
9、 kept on file at the designated material laboratory. ENGINEERING MATERIAL SPECIFICATION WSS-M4G359-A/A3 Copyright 2017, Ford Global Technologies, LLC Page 2 of 13 Rheometer Instrument: e.g. Bohlin CVO 50 or equivalent equipment Parameter: Viscometry: Shear Rate Measuring System: PP 20 Gap: 500m Temp
10、erature Modus: Isotherm Temperature: 20C Temperature Time out: 100 s Pre-Shear: off Sweep Type: Table, linear Start: 131.0 s-1 End: 0.0 s-1 Ramp: down Delay: 5 s Integration: 1 s Delay Time: constant Data Points: 20 Viscosity: Measure 30 times at 30 sec and 90 sec; calculate the mean and the standar
11、d Deviation. Yield stress: Take the data points 1 18 and calculate the regression line. The intersection to the y-axe is the Yield stress. 3.2.1. Initial A A3 Viscosity at 30 sec Pas: Report or 3 5 3 5 Viscosity at 90 sec Pas: Report or 5.5 7.5 5.5 7.5 Yield stress Pa: Report or 220 - 280 100 160 3.
12、2.2 Aged + 50 % from Initial max (Material aged in closed container for 168 h at 40 +/- 1 C, conditioning Method A) 3.3 SOLIDS 96% min (FLTM BV 150-10. After 30 minutes curing per FLTM BV 150-05 (nominal), for each region to be used. Save sample for next test, para 3.4) 3.4 ASH (Based on solids weig
13、ht) 40% max (FLTM BV 150-10, 760 +/- 30 C) The ash content tolerance for any one supplier shall be +/- 5% based on the recorded ash content for their originally approved production sample. 3.5 WEIGHT PER VOLUME A A3 (ASTM D 816) 1.20 1.61 kg/L 0.8 1.19 kg/L The weight tolerance for any one supplier
14、shall be +/- 0.05 kg/L, not to exceed either limit, based on the recorded weight of their original approved production sample 3.6 FLASHPOINT 100 C (ASTM D 93, Method A) Note: If testing at higher temperatures is not feasible because of gelling of test material, the supplier must certify in writing t
15、hat each separate volatile ingredient has a flash point 100 C. ENGINEERING MATERIAL SPECIFICATION WSS-M4G359-A/A3 Copyright 2017, Ford Global Technologies, LLC Page 3 of 13 3.7 VISCOSITY at 23 C (SAE J1524, VIS-2, 1.32 mm orifice, 280 kPa) Final approval of a specific material viscosity for producti
16、on shipments shall be made by the affected manufacturing activity. In all cases, the viscosity shall be within process limits as identified on the material control plan. The viscosity tolerance for any one supplier shall be +/- 10%, based on the recorded viscosity of the original approved production
17、 sample. A A3 3.7.1 As received as received +/- 10% 30 - 70 s (Conditioning Method A) 3.7.2 Aged Original + 50% max (Material aged in closed container for 168 h at 40 +/- 1 C, conditioning Method A) 3.7.3 90 Day Storage Stability at 23 +/-2 C The supplier shall provide a viscosity profile versus tim
18、e from initial through 90 days storage at 23 +/- 2 C and 32 +/- 2 C. Measurements shall be taken at weekly intervals. Curves shall be made available to Materials Engineering prior to addition on the Approved Source List. 3.8 SAG RESISTANCE 3.8.1 Horizontal 6.4 mm max 3.8.2 Vertical 6.4 mm max 3.8.3
19、Inverted No loss of material Test Method: Apply a 3 x 30 x 200 mm ribbon of material along the center line of two of the three electrocoated panels prepared per para 4.2 Scribe panels to mark the initial material location. Position the panels with the material in the attitude above for 1 h at RT. Im
20、mediately after conditioning, place panels in an oven to cure material at the minimum bake schedule per FLTM BV 150-05 table according to the region to be used. Maintain panels in the specified attitude during baking and cooling. Allow the panel to cool to 23 +/- 2 C. Determine the sag by measuring
21、the material movement below the scribe mark. Repeat the test using the second set of panels at the maximum bake per FLTM BV 150-05 table according to the region to be used. ENGINEERING MATERIAL SPECIFICATION WSS-M4G359-A/A3 Copyright 2017, Ford Global Technologies, LLC Page 4 of 13 3.9 BRIDGING 3.0
22、mm max sagging Test Method: Apply a 20 x 40 x 160 mm material bead over the 6.4 mm diameter holes shown in sketch below. Condition the test fixture with material bead for 15 minutes at 23 +/- 2 C, then bake fixture at the minimum bake schedule acc. to FLTM BV 150-05 for each region to be used. Measu
23、re the amount of material sag through hole. Max. 3 mm according to para 3.8 BRIDGING TEST FIXTURE 3.10 ADHESION Shall not be peeled off in a continuous film at any thickness. Test Method: Apply 6.4 - 0 mm tapered material ribbon on two electrocoated panels. See sketch below. Subject one test panel,
24、to the minimum bake schedule and the other test panel to the maximum bake schedule acc. to FLTM BV 150-05 for each region to be used. Condition panels after baking at 23 +/- 2 C for 1 h minimum. Evaluate adhesion by cutting a 25 mm wide strip across the tapered ribbon. Using the tip of a square spat
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- FORDWSSM4G359A32017DUPLEXSEALERVINYLBASEDNONYELLOWINGPUMPABLEORAIRLESSSPRAYABLELOWDENSITYHEATCURINGPAINTABLEIMPROVEDSTONECHIPPERFORMANCEINTERIORANDEXTERIOPDF

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