FORD WSS-M2G410-A2-2002 AFTERMARKET ADHESIVE WELDABLE RIVETABLE AIR DRY STRUCTURAL ALUMINUM TO BE USED WITH FORD WSS-M99P1111-A 《铝结构用晾干式可铆钉、可焊的零件市场用胶粘剂 与标准FORD WSS-M99P1111-A一起使.pdf
《FORD WSS-M2G410-A2-2002 AFTERMARKET ADHESIVE WELDABLE RIVETABLE AIR DRY STRUCTURAL ALUMINUM TO BE USED WITH FORD WSS-M99P1111-A 《铝结构用晾干式可铆钉、可焊的零件市场用胶粘剂 与标准FORD WSS-M99P1111-A一起使.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M2G410-A2-2002 AFTERMARKET ADHESIVE WELDABLE RIVETABLE AIR DRY STRUCTURAL ALUMINUM TO BE USED WITH FORD WSS-M99P1111-A 《铝结构用晾干式可铆钉、可焊的零件市场用胶粘剂 与标准FORD WSS-M99P1111-A一起使.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions 2002 12 10 Revised Para 3.0 inserted ; Para 3.1, 3.2, 3.3, 3.9, 3.10, 4 deleted 2002 05 06 Activated T. Muller, S. Ward, J. Crist, J. Hughes Printed copies are uncontrolled Page 1 of 16 Copyright 2002, Ford
2、Global Technologies, Inc. AFTERMARKET ADHESIVE, WELDABLE, RIVETABLE, AIR DRY, WSS-M2G410-A2 STRUCTURAL, ALUMINUM 1. SCOPE The materials defined by this specification are pumpable, two component, air dry curing, weldable, or rivetable structural adhesives for aluminum. 2. APPLICATION This specificati
3、on is released for materials used to structurally bond body components such as: top rails, quarter panels, roofs, rear sills, and cross members to floor pans and inners to outers in a wheel house. These adhesives can be used to bond E-coated service parts including pretreated aluminum sheet, casting
4、s, and extrusions during warranty and after collision damage repairs. Aftermarket repairs may or may not require the use of a pretreatment to provide optimal characteristics. Bond line spacers are required components to maintain bond line thickness during the service repair process. These materials
5、are to be room temperature cured or can be force cured using temperatures no higher than 140 F/60 C panel temperature in the field. The Manufacturing Properties and Engineering Performance requirements defined in this specification are based on laboratory sample testing and define the minimum accept
6、ance criteria for adhesive performance. The pass /fail test criteria for these products will be raised within three years of specification release to raise/improve the durability of currently available products. The function and design requirements for the Sub-system Design Specification (SDS) defin
7、es the application, key life test requirements, or vehicle program requirements. Prior to use, the adhesive must be evaluated using parameters listed in this specification. The choice of substrates types, and specific design application may affect adhesive performance. Compliance with this specifica
8、tion does not guarantee the adhesive will function for all potential applications on a vehicle. 3. REQUIREMENTS Material specification requirements are to be used for initial qualification of materials. 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must con
9、form to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). ENGINEERING MATERIAL SPECIFICATION WSS-M2G410-A2 Page 2 of 16 Copyright 2002, Ford Global Technologies, Inc. 3.4 SYSTEM COMPATIBILITY Initial adhesive approval is based on a specific material system, which includes
10、 the substrate, E-coat and adhesive. Substrate choice, service part processing conditions may affect adhesive performance. If any of these parameters are changed, the adhesive performance must be validated using the new parameters. 3.5 MATERIAL PROPERTIES 3.5.1 Cure Requirements Air Dry & Force Cure
11、 Report (Define the process cure window for material cure, Report minimum and maximum time at temperature requirements to define performance boundaries) Critical performance characteristics shall include, but are not limited to, the following Stress Durability, para 3.7.2 Fracture Toughness, para 3.
12、7.4 Fatigue, para 3.7.5 Tensile Properties, para 3.7.7 3.5.2 Expansion No porosity or expansion Substrates per Para 5.1, cure per Para 5.2, one panel for each substrate and cure) Extrude a 13 x 200 mm adhesive bead onto a 100 x 300 mm panel. Room temperature cure. Place the test panel in an air-circ
13、ulating oven and bake at 140 F / 60 C for 40 minutes oven time. After bake, condition test panel at 23 +/- 2 C for 1 h min. Cut the panel length wise through the center of the adhesive. Examine the adhesive for any voids, porosity or expansion caused by entrapped air or internal gassing. 3.6 MANUFAC
14、TURING PROPERTIES 3.6.1 Rheology (SAE J1524, Brookfield Viscosity measurement. Report production material batch/lot number and identify Brookfield model used, including spindle and speed used. Submit plot for viscosity vs. temperature. Initial (as received) Test at Room temperature application Test
15、over range 140 F/60 C to 170 F/76 at increments of 10 F ENGINEERING MATERIAL SPECIFICATION WSS-M2G410-A2 Page 3 of 16 Copyright 2002, Ford Global Technologies, Inc. Aged (age then test at 23 C and room temperature application) 7 days at 40 +/- 1 C 90 days at 32 +/- 1 C The rheology variation for any
16、 one supplier shall be +/- 50%, based on the recorded rheology of the original approved production sample. The flow curves established for initial approval shall constitute the reference standard and shall be kept on file at the designated material laboratory. All samples shall produce flow curves t
17、hat correspond to the reference standard when tested under the same conditions. Final approval of material rheology for service stock production shipments shall be made by the affected activity. In all cases, the rheology shall be within the limits as identified on the material control plan. 3.6.2 P
18、umpability/Dispense Capability Report Materials being considered for approval to this specification shall be evaluated for processing capability using existing aftermarket methodologies. The pumpability/dispensing capability report must be approved by the affected service activity operation. Cartrid
19、ge sizes for materials will be 50 ml. and 225 ml. No extreme measures will be accepted to improve pumpability of the materials. Results shall be made available to Materials Engineering prior to material approval and release. 3.6.3 Sag Resistance (FLTM BV 118-01, lab caulking gun applied 5 mm diamete
20、r bead, substrates per para 5.1, condition for 24 h at 140 F/60 C, oven schedule per para 5.2, one panel each bake) Horizontal No measurable movement Vertical No measurable movement Inverted No loss of material 3.6.4 Slump Resistance, max 3 mm Assembly aged 30 days at 50 +/- 1 C Test Assembly: Two 2
21、5 x 100 mm coupons, prepared per para 5.1, with two 38 x 12 x 3 mm spacers. The spacers are placed at each end of one of the coupons, and sufficient adhesive is applied between the spacers to fill the gap. The second coupon is placed on top of the adhesive and spacers (Figure 1). Clamp the assembly
22、with spring clips at each end. Remove excess adhesive from all exterior edges with a spatula. Test Method: Prepare three assemblies per substrate and subject to exposure After exposure, condition assemblies at 23 +/- 2 C for 24 hours, then bake at minimum bake per para 5.2. ENGINEERING MATERIAL SPEC
23、IFICATION WSS-M2G410-A2 Page 4 of 16 Copyright 2002, Ford Global Technologies, Inc. Determine the slump by measuring adhesive loss from the bottom of the assembly. Photograph and record observations of any adhesive loss after exposure and force curing. Repeat the above procedures for maximum force c
24、uring per Para 5.2. 3.6.5 Bridging, max 3 mm (SAE J243 ADS-9, Section 3.3, Method D, non-flow fixture, substrates per Para 5.1, photograph after exposure and after material cure, force curing conditions per Para 5.2) Assembly aged 30 days at 50 +/- 1 C 3.6.6 Paint Material Compatibility Use current
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