FORD WSS-M2G411-A-2009 ADHESIVE WELDABLE EXPANDABLE THERMAL CURE STRUCTURAL STEEL TO BE USED WITH FORD WSS-M99P1111-A 《钢结构用热固化、可膨胀型可焊胶粘剂 与标准FORD WSS-M99P1111-A一起使用 [使用 FORD WSB.pdf
《FORD WSS-M2G411-A-2009 ADHESIVE WELDABLE EXPANDABLE THERMAL CURE STRUCTURAL STEEL TO BE USED WITH FORD WSS-M99P1111-A 《钢结构用热固化、可膨胀型可焊胶粘剂 与标准FORD WSS-M99P1111-A一起使用 [使用 FORD WSB.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M2G411-A-2009 ADHESIVE WELDABLE EXPANDABLE THERMAL CURE STRUCTURAL STEEL TO BE USED WITH FORD WSS-M99P1111-A 《钢结构用热固化、可膨胀型可焊胶粘剂 与标准FORD WSS-M99P1111-A一起使用 [使用 FORD WSB.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2009 09 30 N-STATUS Replaced by WSB-M2G388-A B. Witkowski, NA 2004 11 19 Activated J. Crist Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 1 of 9 ADHESIVE, WELDABLE, EXPANDABLE, THERMAL CURE, WSS-M2G411-A ST
2、RUCTURAL, STEEL NOT TO BE USED FOR NEW DESIGN 1. SCOPE The materials defined by this specification are pumpable, one component, thermal curing, weldable, expandable structural adhesives for steel. 2. APPLICATION This specification was released originally for materials used to structurally bond body
3、components such as top rails, rear sills, and cross members to floor pans and inners to outers in a wheel house. This adhesive can be used to bond oily, unclean cold rolled and galvanized steel for body-in white applications. Optimal adhesion strengths and bond durabilities are achieved with adhesiv
4、e bondlines of 0.25 mm and the use of galvanized steel. The material is cured in the electrocoat oven. The Manufacturing Properties and Engineering Performance requirements defined in this specification are based on laboratory sample testing and define the minimum acceptance criteria for adhesive pe
5、rformance. The function and design requirements for the application are defined by the Sub-system Design Specification (SDS), key life test requirements, or vehicle program requirements. Prior to use, the adhesive must be evaluated under the production parameters. The choice of substrates, stamping
6、lubricants, stamping plant processing conditions, assembly plant processing conditions and specific design application may affect adhesive performance. Compliance with this specification does not guarantee the adhesive will function for all potential applications on a vehicle. 3. REQUIREMENTS 3.1 ST
7、ANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.2 SYSTEM COMPATIBILITY Initial adhesive approval was based on a specific material system which included the substrate, st
8、amping lubricants and adhesive. The material system was oven cured using specific production process parameters. Substrate choice, stamping lubricants, stamping plant processing conditions and assembly plant processing conditions may affect adhesive performance. If any of these parameters are change
9、d, the adhesive performance must be validated using the new parameters. ENGINEERING MATERIAL SPECIFICATIONWSS-M2G411-A Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 2 of 9 3.3 MATERIAL PROPERTIES 3.3.1 Weight Per Volume Report (ASTM D 816) The weight tolerance fo
10、r any one supplier shall be +/- 0.02 kg/L, based on the recorded weight of their original approved production sample. Reference para 4.1. 3.3.2 Volatile Organic Compounds (VOC) Content Report (EPA Method 24, Procedure B) The VOC Content variation for any one supplier shall be +/- 0.01 kg/L, based on
11、 the recorded VOC Content of their original approved production sample. Reference para 4.2. 3.3.3 Cure Requirements Report (Define the process cure window for material cure. Report minimum and maximum time at temperature requirements to define performance boundaries) Critical performance characteris
12、tics shall include, but are not limited to, the following: Shear Strength, para 3.5.1.1 Fracture Toughness, para 3.5.4 Volume Expansion, para 3.5.5 Vertical Expansion Adhesion, para 3.5.6 Tensile Properties, para 3.5.8 3.4 MANUFACTURING PROPERTIES 3.4.1 Rheology (SAE J1524, rotational rheometer with
13、 40 mm diameter parallel plates, 500 micron gap, 50 Pa/sec ramp, stress controlled rheometers use stress range 0 - 3500 Pa, strain controlled rheometers use strain range 0 - 100 sec-1, evaluate material to highest stress or strain as the formulation will allow, report material batch/lot number, iden
14、tify rheometer make and model, for each test condition report yield stress and submit plots for shear stress vs shear rate, submit plot for viscosity vs temperature at mid-range shear rate). Initial (as received) Test at 23 +/- 1 C Test over range 10 to 50 C at increments of 10 C Aged (age then test
15、 at 23 C and application temperature) 7 days at 40 +/- 1 C 90 days at 32 +/- 1 C ENGINEERING MATERIAL SPECIFICATIONWSS-M2G411-A Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 3 of 9 The rheology variation for any one supplier shall be +/- 10%, based on the recorde
16、d 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 that correspond to the reference standard when tested
17、 under the same conditions. Final approval of material rheology for production shipments shall be made by the affected manufacturing activity. In all cases, the rheology shall be within the limits as identified on the material control plan. 3.4.2 Differential Scanning Calorimetry (20 +/- 1 mg sample
18、 size, 5 C/min heating rate, 25 - 250 C temperature range, submit Heat Flow vs. Temperature curve) Onset of reaction, min 80 C 3.4.3 Sag Resistance (FLTM BV 118-01, lab calking gun applied 5 mm diameter bead, substrates per para 4.3, condition for 24 h at 40 C, oven schedule per para 4.4, one panel
19、each bake) Horizontal No measurable movement Vertical No measurable movement Inverted No loss of material 3.4.4 Slump Resistance, max 3 mm Assembly aged 30 days at 23 +/- 2 C Assembly aged 30 days at 50 +/- 2 C Test Assembly: Two 25 x 100 mm coupons, prepared per para 4.4, with two 38 x 12 x 3 mm sp
20、acers. 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 with spring clips at each end. Remove excess adhesive from all exteri
21、or edges with a spatula. Test Method: Prepare 3 assemblies per substrate. Subject one assembly per substrate to exposures. After exposure, condition assemblies at 23 +/- 2 C for 24 hours, then bake at minimum bake per para 4.4. Determine the slump by measuring adhesive loss from the bottom of the as
22、sembly. Photograph and record observations of any adhesive loss after exposure or after bake. Repeat the above procedures for maximum bake per para 4.4. ENGINEERING MATERIAL SPECIFICATIONWSS-M2G411-A Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 4 of 9 3.4.5 Brid
23、ging, max 3 mm (SAE J243 ADS-9, Section 3.3, Method D, nonflow fixture, substrates per para 4.3, photograph after exposure and after material cure, bake conditions per para 4.4) Assembly aged 30 days at 23 +/- 2 C Assembly aged 30 days at 50 +/- 1 C 3.4.6 Wash Resistance No measurable movement, disp
24、lacement or wash-off. 3.4.6.1 North American Production (FLTM BV 116-03, 2000 psi) 3.4.7 Electrocoat Compatibility (FLTM BV 119-01, use current production paints as identified by Material Engineering, substrates per para 4.3) Shall not contaminate electrocoat primer bath or cause electrocoat film ir
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