FORD WSB-M4G177-D-2016 SEALER VINYL BASED SELF-LEVELING PAINTABLE BIOCIDE ENHANCED IMPROVED PAINTABILITY TO BE USED WITH FORD WSS-M99P1111-A .pdf
《FORD WSB-M4G177-D-2016 SEALER VINYL BASED SELF-LEVELING PAINTABLE BIOCIDE ENHANCED IMPROVED PAINTABILITY TO BE USED WITH FORD WSS-M99P1111-A .pdf》由会员分享,可在线阅读,更多相关《FORD WSB-M4G177-D-2016 SEALER VINYL BASED SELF-LEVELING PAINTABLE BIOCIDE ENHANCED IMPROVED PAINTABILITY TO BE USED WITH FORD WSS-M99P1111-A .pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 03 2016 12 02 Revised See Summary of Revisions S. Short, NA 2016 11 07 Revised See Summary of Revisions S. Short, NA 1995 11 22 Activated W. Curtiss, G. Molnar, NA Copyright 2016, Ford Global Technologies, LLC Page 1 of 10 SEALER, VINYL
2、BASED, SELF-LEVELING, PAINTABLE, WSB-M4G177-D BIOCIDE ENHANCED, IMPROVED PAINTABILITY 1. SCOPE The material defined by this specification is a vinyl based, self-leveling, paintable, heat curing sealer. This material has biocide added and has improved paintability. 2. APPLICATION This specification w
3、as released originally for sealing the roof ditch and is intended for use over electrocoat primer. Acceptable paintability is achieved with or without sealer gel bake. Ultraviolet light absorbers, light stabilizers, and biocide have been added to these materials to improve paint durability. 3. REQUI
4、REMENTS 3.1 APPROVED SOURCES This specification requires the use of approved 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
5、 or available externally through a Ford Materials Engineer. 3.2 RHEOLOGY Suppliers 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,
6、yield stress, apparent activation energy for viscosity and apparent activation energy for yield stress. This data constitutes the reference standard and shall be kept on file at the designated material laboratory. 3.3 SOLIDS 95% min (ASTM D2834, except heat at 102 +/- 1 C for 3 h in a mechanical con
7、vectional oven. Save sample for next test, para 3.4) 3.4 ASH +/- 5% max (ISO 3491, Method A, 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 (refer to para 4.1). 3.5 WEIGHT PER VOLUME +/-
8、0.02 kg/L (ASTM D816) The weight tolerance for any one supplier shall be +/- 0.02 kg/L, based on the recorded weight of their original approved production sample (refer to para 4.2). ENGINEERING MATERIAL SPECIFICATION WSB-M4G177-D Copyright 2016, Ford Global Technologies, LLC Page 2 of 9 3.6 VISCOSI
9、TY (SAE J1524, VIS-2, 1.32 mm orifice, 280 kPa) Final approval of a specific material viscosity for production 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 toleranc
10、e for any one supplier shall be +/- 10%, based on the recorded viscosity of the original approved production sample. Reference para 4.3. 3.6.1 As Received +/- 10% (Conditioning Method A) 3.6.2 Aged No more than 100% (Material aged in closed increase from container for 72 h at 40 +/- original approva
11、l 1 C, conditioning Method A) The supplier shall provide a viscosity profile versus temperature at 16oC, 20 C, 23 C, 27 C, 43 C, and after 2 weeks at 32 C 3.6.3 90 Day Storage Stability at 23 +/-2 C and 32 +/- 2 C The supplier shall provide a viscosity profile versus time from initial through 90 day
12、s 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. 3.7 FLOW RATE 15 - 250 mm (Initial at 23 +/- 2 C and after 90 days storage at 23 +/- 2 C and 32 +/- 2 C) Test
13、 Method: Block the 6.4 mm groove in the flow rate fixture (Fig. 1) 150 mm from the top edge. Fill the 150 mm upper portion of the groove with material specified in this specification. Remove the block, allow material to flow for 30 minutes, then subject the test assembly to the minimum bake per para
14、 4.4. Remove test assembly from heat exposure and measure the total amount of flow. Final approval of a specific material flow rate for production shipments shall be made by the affected manufacturing activity. In all cases, the flow rate shall be within limits identified on the Material Control Pla
15、n. ENGINEERING MATERIAL SPECIFICATION WSB-M4G177-D Copyright 2016, Ford Global Technologies, LLC Page 3 of 9 3.8 ADHESION Shall not be peeled off in a continuous film. Test Method: . Apply a ribbon of material, 25 x 200 x 3 mm on two electrocoated panels, identified per para 4.5. . Subject one test
16、panel to the minimum bake schedule and the other test panel to the maximum bake schedule identified per para 4.4. . Evaluate adhesion by cutting a 25 mm wide strip across the ribbon. Using the tip of a square spatula, lift the material, then attempt to hand peel material at 90 deg from substrate. .
17、Save test panels for heat resistance test, para 3.9, and corrosion resistance test, para 3.10. 3.9 HEAT RESISTANCE TEST No evidence of blistering, (336 h Heat Age at 70 +/- 2 C) cracking, charring or other deleterious effects Test Method: . Examine the test material prepared for Adhesion Test, para
18、3.8, for any of the above conditions. 3.10 LABORATORY ACCELETRATED CYCLIC No corrosion or CORROSION TEST adhesion loss (CETP 00.00-L-467, 6 weeks) Evaluate material adhesion as described in para 3.8. Observe for any evidence of corrosion originating directly under material. 3.11 MANDREL BEND TEST No
19、 cracking or (FLTM BV 122-01, substrates per adhesion failure para 4.5, material bake schedule per para 4.4, heat age test specimen 14 days at 70 +/- 1 C before test) Test at 23 +/- 2 C ENGINEERING MATERIAL SPECIFICATION WSB-M4G177-D Copyright 2016, Ford Global Technologies, LLC Page 4 of 9 3.12 COM
20、PATIBILITY WITH PRODUCTION PAINTS - INITIAL REQUIREMENTS No tackiness, staining, discoloration, dulling, softening, paint transfer, significant color shift, difference in orientation of metallic flakes (metallic paints) or other objectionable appearance defects in the paint over the sealer. Note: Ev
21、idence of any defects as stated above shall be reviewed with Body and Assembly Paint Operations and Materials Engineering. Test Method: . Prepare test panels per matrix provided by the material engineering of the region. Use current production paints as identified by the Paint Engineering. Panels sh
22、all be kept horizontal prior to baking, during the painting operation and during cure. Use gas fired oven for paint cure. . Condition painted panels at 23 +/- 2 C for 4 - 24 h. . After 4 - 24 h at 23 +/- 2 C, perform the following tests on each panel: . Cross hatch adhesion check - FLTM BI 106-01, M
23、ethod B . Resistance to Xylene - Using a back and forth motion, rub surface of enamel 10 times with a small wad of cheesecloth which has been wetted with xylene. 3.13 COMPATIBILITY WITH PRODUCTION PAINTS - WEATHERING REQUIREMENTS No tackiness, staining, discoloration, chalking, gloss change or other
24、 deleterious effects on topcoats when compared to paint not over sealer. After 2 years Florida exposure, 5 % adhesion loss and 20 % UVA loss maximum when compared to paint not over sealer. Test Method: Prepare test panels per matrix provided by the material engineering of the region. Use current pro
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