FORD WSB-M3G138-B-2007 TAPE ACRYLIC CARRIER TWO SIDE COATED PRESSURE SENSITIVE INTERIOR AND EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《汽车内部和外部用压敏双面涂布氨基甲酸泡沫载体式胶带 与标准FORD WSS-M.pdf
《FORD WSB-M3G138-B-2007 TAPE ACRYLIC CARRIER TWO SIDE COATED PRESSURE SENSITIVE INTERIOR AND EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《汽车内部和外部用压敏双面涂布氨基甲酸泡沫载体式胶带 与标准FORD WSS-M.pdf》由会员分享,可在线阅读,更多相关《FORD WSB-M3G138-B-2007 TAPE ACRYLIC CARRIER TWO SIDE COATED PRESSURE SENSITIVE INTERIOR AND EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《汽车内部和外部用压敏双面涂布氨基甲酸泡沫载体式胶带 与标准FORD WSS-M.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2007 08 13 N-STATUS Replaced by WSS-M11P65-A2 M. Mehandru 2005 10 19 Revised Inserted 3.0; Deleted 3.1, 3.2, 3.3, 3.10, 3.11, 4 1991 02 19 Released NB00E10118943000 W. Curtiss, E. Rezendes, M. Perchard Printed copies are uncontrolled Copyright
2、 2007, Ford Global Technologies, LLC Page 1 of 7 TAPE, ACRYLIC CARRIER, TWO SIDE COATED, WSB-M3G138-B PRESSURE SENSITIVE, INTERIOR AND EXTERIOR NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by this specification is an acrylic tape coated on both sides with an acrylic, pressure sensitiv
3、e adhesive and protected with polyethylene or polyethylene polypropylene copolymer release liners. The tape carrier may be foam or non-foam type. 2. APPLICATION This material was released originally for material used to retain exterior bodyside moldings. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR
4、 PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.4 TAPE DIMENSIONS As specified on the Engineering Drawing 3.5 PHYSICAL TAPE REQUIREMENTS 3.5.1 Thickness (ASTM D 412, 2 mm diameter foot, 57 g w
5、t) Tape plus Adhesive 1.14 +/- 0.15 mm 3.5.2 Density The density tolerance for any one supplier shall be +/- 12%, based on the recorded density of their original approved production sample. 3.5.3 Tensile Strength, min (ASTM D 412, Die “C“) As Received 550 kPa Aged 70 h at 100 C 550 kPa 3.5.4 Elongat
6、ion, min (ASTM D 412, Die “C“) As Received 600% Aged 70 h at 100 C 600% ENGINEERING MATERIAL SPECIFICATIONWSB-M3G138-B Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 2 of 7 3.5.5 Water Absorption, max 3% Test Method: Form a circular ring of tape approximately 25 x
7、 75 mm or equivalent, to obtain an exposure area of approximately 3900 mm2. A minimum contact area of the ends is used to hold the tape in a ring form. The ring is weighed and immersed in water at 23 C. A stainless steel grid is used to retain the tape under water. After 22 h immersion, carefully re
8、move the tape, shake excess water off, remove the remaining surface water with air at 70 - 100 kPa, and weigh immediately. Calculate the average of 3 samples as a percent of the original weight for water absorption. Exercise care to minimize contact with the pressure sensitive adhesive coated surfac
9、es during this test procedure. 3.6 TAPE ADHESION REQUIREMENTS 3.6.1 Peel Adhesion, min (FLTM BU 112-02, Method A) The samples shall meet the adhesion requirements as received and after environmental aging conditions listed below. Samples must be preconditioned for 72 h at 23 +/- 2 C prior to environ
10、mental exposure and tested between 1 and 4 hours after removal from exposure conditions, unless otherwise noted. All values expressed in N/mm width. Apply a 30 micrometre thick polyester film to the unlined adhesive side of the tape before testing and determine adhesion to anodized aluminum, stainle
11、ss steel, chromium plating, and current exterior body quality enameled panels prepared per para 5.1. Expose four samples to each of the following conditions: Room Temperature Aging, min (Do not precondition for 72 h) 1 h 1.1 72 h 1.3 Heat Aging, min 2 weeks at 88 +/- 2 C 1.3 Humidity, min 3 days at
12、38 C and 98 +/- 2% R.H. 1.3 2 weeks at 38 C and 98 +/- 2% R.H. 1.3 Water Immersion, min (FLTM BI 104-01) 240 hours 1.3 ENGINEERING MATERIAL SPECIFICATIONWSB-M3G138-B Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 3 of 7 Cycle Test, min (5 cycles consisting of:) 8
13、h at 90 +/- 2 C 1.3 16 h at -40 +/- 2 C 8 h at 38 +/- 2 C and 98%/- 2% R.H. 16 h at -40 +/- 2 C 3.6.2 Shear Adhesion, min (FLTM BU 101-06, Method A) As Received: Enamel/Enamel 200 kPa Enamel/Anodized Aluminum 240 kPa Painted RIM Panels/Painted Panels RIM 140 kPa Prepare three 645 mm2overlap shear te
14、st specimen with each of the above material combinations and age for 24 h. 3.6.3 Liner Removal, max (ASTM D 1000 with exceptions below) As Received 1.0 N/mm 1 h at 54 C 1.0 N/mm ASTM D 1000, except apply the unlined adhesive side of the tape to a clean metal panel with light finger contact and no ad
15、ded roller weight. Measure the force required to peel the liner from the tape. 3.6.4 Holding Power, min (FLTM BU 101-06, Method B) At 23 C 100 h At 70 C 100 h Prepare 2 enamel/enamel plate or enamel/anodized aluminum 645 mm2overlap shear test specimens. After conditioning for 24 h, hang 1 test speci
16、men vertically at 23 C and one at 70 C. Gently attach 1000 g weights to both specimens. Both bonded assemblies must support 1000 g weights for the specified time. 3.6.5 Heat Resistance, max displacement 1.0 mm Prepare 1 enamel/enamel plate or enamel/anodized aluminum 645 m2overlap shear test specime
17、n as described in para 3.6.4. After conditioning for 1 h at 23 C, attach a 230 g weight to one end of the test specimen and hang it vertically in a mechanical convection oven at 120 C for 30 minutes. Allow the specimen to cool to 23 C and determine whether any displacement from the original bonded p
18、osition has occurred. ENGINEERING MATERIAL SPECIFICATIONWSB-M3G138-B Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 4 of 7 3.7 PERFORMANCE REQUIREMENTS FOR CHEMICAL OR ALUMINUM BARRIER ASSEMBLIES 3.7.1 Adhesion Strength, min (FLTM BU 112-02, Method C) The samples
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