FORD WSS-M4G362-A-2016 SEALER TAPE DUAL LAYER HEAT CURING PAINTABLE TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Changes 2016 07 05 N Status Replaced by WSS-M18P20-A1 B. Witkowski, NA 1998 05 11 Activated W. Curtiss W. Scholz WP 3948-a Page 1 of 13 SEALER/TAPE, DUAL LAYER, HEAT CURING, WSS-M4G362-A PAINTABLE NOT TO BE USED FOR N
2、EW DESIGN 1. SCOPE The material defined by this specification is a heat curing dual layer sealer/tape; the top layer is a paintable, non-tacky, non-flowing film and the bottom layer is a flowable, thermosetting sealer. 2. APPLICATION This specification was released originally for material used to se
3、al the roof ditch joint and provide a smooth surface for adhesively bonding a roof ditch molding. The material is applied on the sealer deck after vehicle electrocoat. The film portion of the sealer/tape is paintable and is suitable for use on non-visible exterior surfaces. The sealer portion of the
4、 tape has flow properties providing a seal for the metal edge and any potential weld burn throughs. Note: Flow properties of this material may be adjusted depending on the application and plant conditions. The 45 degree flow must be specified on the engineering drawing. Material performance limits l
5、isted herein are representative of the sealer/tape released for the original application. 3. REQUIREMENTS 3.1 QUALITY SYSTEM REQUIREMENTS Material suppliers and part producers must conform to Quality System Requirements, QS-9000. Material specification requirements are to be used for initial qualifi
6、cation of materials. A Control Plan for ongoing production verification is required. This plan must be reviewed and approved by the relevant Ford Materials activity and/or Ford Supplier Technical Assistance (STA) prior to production parts submission. Appropriate statistical tools must be used to ana
7、lyze process/product data and assure consistent processing of the materials. Part producers using this material in their products, must use Ford approved materials and must conform to a process control plan which has been approved by STA and/or the relevant Materials Activity. ENGINEERING MATERIAL S
8、PECIFICATION WSS-M4G362-A WP 3948-b Page 2 of 13 3.2 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS Ford Motor Company, at its option, may conduct infrared and/or thermal analysis of material/parts supplied to this specification. The IR spectra and thermograms established for initial approval sh
9、all constitute the reference standard and shall be kept on file at the designated material laboratory. All samples shall produce IR spectra and thermograms that correspond to the reference standard when tested under the same conditions. 3.3 CONDITIONING AND TEST CONDITIONS All test values indicated
10、herein are based on material conditioned in a controlled atmosphere of 23 +/- 2 C and 50 +/- 5 % relative humidity for not less than 24 h prior to testing and tested under the same conditions unless otherwise specified. 3.4 DIMENSIONS As specified on engineering drawing and/or in Trim and Sealer man
11、ual 3.5 MATERIAL PROPERTIES 3.5.1 Solids (without film), min 98 % (ASTM D 2834, except heat at 102 +/- 3 C for 3 h in a mechanical convection oven) 3.5.2 Ash (based on solids weight) (ISO 3491, Method A, 760 +/- 30 C, reference para 5.2) The ash content tolerance for any one supplier shall be +/- 5
12、% based on the recorded ash content for their originally approved production sample. 3.5.3 Specific Gravity (uncured material - with film) (ASTM D 297, water displacement method: reference para 5.3) The specific gravity tolerance for any one supplier shall be +/- 0.1 based on the recorded specific g
13、ravity of their originally approved production sample. ENGINEERING MATERIAL SPECIFICATION WSS-M4G362-A WP 3948-b Page 3 of 13 3.5.4 Shelf Life 90 Day Storage Stability at 23 +/- 2 C and 32 +/- 2 C. The supplier shall provide flow properties and cured adhesion data from initial through 90 days storag
14、e at 23 +/- 2 C and 32 +/- 2 C. Measurements shall be taken at monthly intervals. Data shall be made available to Materials Engineering prior to addition to the Approved Source List. Note: Heat greatly accelerates aging. Storage conditions for materials conforming to the requirements of this specifi
15、cation may vary depending on the individual product chemistry. In all cases, shelf life at 23 +/- 2 C shall be a min of 45 d. 3.6 MANUFACTURING PROPERTIES (with and without polyester film) 3.6.1 Flow Properties Horizontal 45 degree 2 - 7 mm * Test Method: Horizontal Panels - Apply a section of seale
16、r/tape (with film) 150 x 25 +/- 0.1 to three 300 x 100 x 0.80 mm electrocoated steel panels per para 5.5. 45 Degree Panel - Apply a 3.7 cm2 section of sealer/tape (without film) to the center of three 300 x 100 x 0.80 mm electrocoated panels. Horizontal and 45 Degree Test - Preheat the panels for 15
17、 minutes at 110 +/- 2 C prior to sealer application. This will heat stake the sealer to the panel. Allow the panels to cool at 23 +/- 2 C for 30 minutes. Scribe the original location of the samples prior to baking. Horizontal Panels - Bake the panels flat per the min bake schedule in para 5.4. Repea
18、t this procedure for the max bake schedule. 45 Degree Panels - Bake the panels at a 45 degree orientation per the min bake schedule in para 5.4. Repeat this procedure for the max bake schedule. Remove panels from oven, cool, and measure material flow from original scribe. Save panels for para 3.7.4.
19、 *45 degree flow will be specified on the engineering drawing and on the part/material control plan. ENGINEERING MATERIAL SPECIFICATION WSS-M4G362-A WP 3948-b Page 4 of 13 3.6.2 Curl Test No curl allowed after 2 rebakes. Test Method: Apply a section of sealer/tape (with film) 150 x 25 +/- 0.1 to thr
20、ee 300 x 100 x 0.80 mm electrocoated steel panels per para 5.5. Preheat the panels for 15 minutes at 110 +/- 2 C prior to sealer application. This will heat stake the sealer to the panel. Allow the panels to cool at 23 +/- 2 C for 30 minutes. Prepare test panels per matrix in Table 1, process number
21、 2. Use current production paint as identified by the appropriate engineering office. Record any curling of the film after initial paint application. Using a razor blade, cut through the paint film at one side edge and the top edge of each sample. The cut shall be made approximately 1 mm away from t
22、he polyester film. Do not cut the polyester film. Subject the panel to an additional basecoat/clearcoat bake. Remove from oven and observe for evidence of curling. Repeat this procedure once more for a total of 3 basecoat/clearcoat bakes. Report any evidence of curling and the paint system used. ENG
23、INEERING MATERIAL SPECIFICATION WSS-M4G362-A WP 3948-b Page 5 of 13 3.6.3 Bridging 3.6.3.1 Overlap Joint Test Method: Prepare two test fixtures using 0.8 x 100 x 300 mm electrocoated panels prepared per para 5.5 as shown in Figure 1. FIGURE 1 BRIDGING TEST FIXTURE PREPARATION ENGINEERING MATERIAL SP
24、ECIFICATION WSS-M4G362-A WP 3948-b Page 6 of 13 Apply a 25 x 200 mm ribbon of material (with film) to each test fixture as shown in Figure 2. FIGURE 2 SEALER APPLICATION . Position ribbon such that it is centered over the seam. . Cure one test fixture at the min bake schedule per para 5.4. Subject t
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