FORD SK-M4G9508-A-2009 SEALER WELDABLE EXPANDING HEAT CURING POLYACRYLIC ESTER TO BE USED WITH FORD WSS-M99P1111-A 《可焊、膨胀型热固化聚丙烯酸酯密封剂 与标准FORD WSS-M99P1111-A一起使用 》.pdf
《FORD SK-M4G9508-A-2009 SEALER WELDABLE EXPANDING HEAT CURING POLYACRYLIC ESTER TO BE USED WITH FORD WSS-M99P1111-A 《可焊、膨胀型热固化聚丙烯酸酯密封剂 与标准FORD WSS-M99P1111-A一起使用 》.pdf》由会员分享,可在线阅读,更多相关《FORD SK-M4G9508-A-2009 SEALER WELDABLE EXPANDING HEAT CURING POLYACRYLIC ESTER TO BE USED WITH FORD WSS-M99P1111-A 《可焊、膨胀型热固化聚丙烯酸酯密封剂 与标准FORD WSS-M99P1111-A一起使用 》.pdf(7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 Changes 2009 10 14 A2- INACTIVE A- N-STATUS Replaced by global strategy B. Witkowski, NA 1996 03 06 Revised Updated and retyped W. Scholz 1975 01 09 Released SM/ET0859 TP WP 3948-a Page 1 of 7 SEALER, WELDABLE, EXPAND
2、ING, HEAT CURING SK-M4G9508-A POLYACRYLIC ESTER NOT TO BE USED FOR NEW DESIGN SEALER, WELDABLE, HEAT CURING, BUTYL RUBBER INACTIVE SK-M4G9508-A2 1. SCOPE The materials defined by these specifications are spot weldable, heat curing sealers based on polyacrylic ester or butyl rubber. 2. APPLICATION Th
3、ese materials were released originally for materials used for sealing spot weld seams e.g. sealing of side panel to wheel arch (SK-M4G9508-A) and sealing of floor pan (SK-M4G9508-A2) or as specified on Engineering drawing and is applied to oiled surfaces in body assembly. 3. REQUIREMENTS 3.1 QUALITY
4、 SYSTEM REQUIREMENTS Material suppliers and part producers must conform to Quality System Requirements, QS-9000. Material specification requirements are to be used for initial qualification of materials. A Control Plan for ongoing production verification is required. This plan must be reviewed and a
5、pproved 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 analyze process/product data and assure consistent processing of the materials. Part producers using this material in th
6、eir 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. 3.2 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS Ford Motor Company, at its option, may conduct infrared and/or thermal analysis of m
7、aterial/parts supplied to this specification. The IR spectra and thermograms established for initial approval shall 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
8、 standard when tested under the same conditions. ENGINEERING MATERIAL SPECIFICATION SK-M4G9508-A SK-M4G9508-A2 WP 3948-b Page 2 of 7 3.3 CONDITIONING AND TEST CONDITIONS All test values indicated herein are based on material conditioned in a controlled atmosphere of 23 +/- 2 C and 50 +/- 5 % relativ
9、e humidity for not less than 24 h prior to testing and tested under the same conditions unless otherwise specified. 3.4 COLUR Black 3.5 SOLIDS, min SK-M4G9508-A: 85 % (FLTM BV 150-10) SK-M4G9508-A2: 98 % 3.6 ASH, max 45 % (FLTM BV 150-10) 3.7 FLASH POINT 56 C (ASTM D 56) 3.8 DENSITY AT 20 C 1.0 to 1
10、.6 kg/l (ASTM D 1475) 3.9 VISCOSITY AT 20 C (FLTM BV 103-1, line pressure 0.392 MN/m2, nozzle diameter 2 mm) If the finished part does not allow the preparation of specimens, the supplier is required to provide, together with the Initial Sample Report, specimens of same material and equivalent manuf
11、acture used for the finished part. Samples for control and routine checks shall be submitted assured by Quality Control. 3.9.1 As Received SK-M4G9508-A: 70 - 200 s SK-M4G9508-A2: 200 - 600 s 3.9.2 After Ageing SK-M4G9508-A: max 200 s SK-M4G9508-A2: max 600 s 3.10 FLOW RATE max 3 mm (FLTM BV 153-1, M
12、ethod A, except oiled panels according to FLTM BZ 150-11, “Normal Grade“) 3.11 COLD RESISTANCE AFTER AGEING No loss of adhesion or chipping. Test Method: 1. Apply 250 x 30 x 3 mm ribbons of test material in the middle of 300 x 100 x 0.8 - 0.9 mm test panels prepared according to FLTM BZ 150-11, “Nor
13、mal Grade“. ENGINEERING MATERIAL SPECIFICATION SK-M4G9508-A SK-M4G9508-A2 WP 3948-b Page 3 of 7 2. Expose separately test assemblies according to FLTM BV 150-5, Table 1: a) minimum curing cycle b) maximum curing cycle 3. Expose test assemblies in a mechanically convected air-drying oven at 80 +/- 2
14、C for two weeks. 4. After cooling to 23 +/- 2 C expose test assemblies and bending fixture (see FLTM BV 153-4, except 100 mm mandrel) in a cold box at - 30 +/- 1 C for 4 h. 5. While still in the cold box bend test assemblies within 2 s around the 100 mm mandrel through an angle of 90 degrees. 3.12 F
15、LAMMABILITY AND CORROSION (FLTM BV 159-2, Method A. Immediately after welding separate the welded parts using a test fixture according to FLTM BV 159-1, Figure 4. Examine after 48 h at 23 +/- 2 C.) No burning, no corrosion. 3.13 CORROSION RESISTANCE The material shall protect the test panel from cor
16、rosion. No corrosion or blistering at the borderline sealer/EC/steel. Test Method: 1. Test panel preparation according to FLTM BV 159-2, Method A. 2. After 2 h at 23 +/- 2 C wash, phosphate and electrocoat test assemblies under normal production conditions. 3. Expose separately test assemblies accor
17、ding to FLTM BV 150-5, Table 1. a) minimum curing cycle b) maximum curing cycle 4. After 24 h at 23 +/- 2 C expose test assemblies to a salt spray fog according to ASTM B 117 for 240 h. 5. Separate welded assemblies using a test fixture according to FLTM BV 159-1, Figure 4 and examine. ENGINEERING M
18、ATERIAL SPECIFICATION SK-M4G9508-A SK-M4G9508-A2 WP 3948-b Page 4 of 7 3.14 WASH RESISTANCE No wash-off of sealer, no deformation of sealer surface permitted. Test Method: 1. Apply two 250 x 30 x 3 mm ribbons of test material in the middle and 50 mm apart from each other to a 300 x 100 x 0.8 - 0.9 m
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