FORD ESB-M80J4-A-2012 CLEAR TOPCOAT UV CURABLE ABRASION RESISTANT TRANSPARENT ACRYLIC PARTS TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev 02 2012 05 21 N Status No usage or replacement N. Benipal, NA 2005 07 29 Revised Inserted 3.0; Deleted 3.1, 3.2, 3.8 and 4 1991 02 05 Released Released GAM, John A. Faunt, MP Controlled document at www.MATS Copyright 2012, Ford Global Tec
2、hnologies, LLC Page 1 of 6 CLEAR TOPCOAT, UV CURABLE, ABRASION RESISTANT, ESB-M80J4-A TRANSPARENT ACRYLIC PARTS NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by this specification is a weatherable, clear, UV curable, multi-functional monomeric resin solution. 2. APPLICATION This specif
3、ication was released originally to describe the typical properties necessary for a clear protective coating either applied directly to a acrylic lamp lens or applied over pad stamp ink, paint or other decorative treatment applied to the lens. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION
4、MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.3 COMPOSITION 3.3.1 Vehicle A multi-functional monomeric resin with a UV absorber blended in an appropriate manner to meet all the requirements of this spec
5、ification. Minor amounts of modifiers and/or plasticizers are allowed. 3.3.2 Specific Composition The supplier will furnish the specific composition of the formulation upon request. 3.4 PHYSICAL PROPERTIES 3.4.1 Viscosity, Package 20 - 30 mPa.s (ASTM D 2196, Brookfield RVT #2 at 20 RPM) 3.4.2 Non-Vo
6、latile, min 40% This procedure is a modification of FLTM BI 102-01 and ASTM D 2369. Since the coating contains reactive monomers and oligomers that will evaporate during the forced air drying, a cure cycle must be incorporated before drying. ENGINEERING MATERIAL SPECIFICATION ESB-M80J4-A Copyright 2
7、012, Ford Global Technologies, LLC Page 2 of 6 Equipment Required: . Laboratory balance . Desiccator with desiccant . 10 mL disposable syringe . Cotton gloves . Laboratory UV curing unit . Aluminum foil dish - 3 dishes per sample . Forced draft oven, Type IIA or Type IIB as specified in ASTM E 145 P
8、rocedure: . Determine weight of an aluminum foil dish. Record weight as (W1). . Mix the sample until homogeneous. If air bubbles are observed stir by hand until the air is removed. . For coatings believed to have a nonvolatile content 60%: Use the syringe to transfer 0.30 +/- 0.10 g of the coating i
9、nto a tared aluminum foil dish. Record weight as (S). Place the sample immediately into a UV curing unit capable of 300 watts/in output. Cure the sample for 45 seconds at full power. . For lower nonvolatile coatings: Use the syringe to transfer 0.50 +/- 0.10 g of the coating into a tared aluminum fo
10、il dish. Record weight as (S). Flash sample for at least 5 minutes then place the sample into a UV curing unit capable of 300 watts/in output. Cure the sample for 45 seconds at full power. . Remove the sample from the UV curing cabinet then, place the sample into a forced air oven set at 175 C for 5
11、 minutes to volatilize residual photoinitiators. Air should be present to inhibit thermal polymerization of residual reactive diluent. . Remove the sample from the oven, place into a desiccator. When cool, weigh the sample and record as (W2). . Calculate weight solids (NV %): W2 - W1 NV % = - x 100
12、S 3.4.3 Volume Non-Volatile, at Application Viscosity, min 34% (EPA Method No. 24) Volatile Organic Compounds, max 0.50 kg/L Allowable Content at Application Viscosity (ASTM D 2369, Procedure B) ENGINEERING MATERIAL SPECIFICATION ESB-M80J4-A Copyright 2012, Ford Global Technologies, LLC Page 3 of 6
13、3.4.4 Density 0.90 +/- 0.03 kg/L (ASTM D 1475) 3.5 PREPARATION OF TEST PANELS Prepare according to the following procedure: 3.5.1 Panels Unless otherwise specified, thermoplastic or thermosetting plastic materials, 2.5 - 4.0 mm thick of any convenient size, representative of production material. The
14、 panels shall be cleaned by an acceptable commercial process to remove mold release agents, fingerprints, oils, dirt, moisture and any other surface contamination prior to coating. 3.5.2 Clear Topcoat Apply sufficient clearcoat to achieve 20 - 30 micrometers dry film thickness. Cure clear topcoat pe
15、r manufacturers recommendation. Film Thickness (FLTM BI 117-01) Procedure: Substitute a steel panel for the thermoplastic panel, (para 3.5.1), apply topcoat and cure per manufacturers recommendation. Measure film thickness on the steel panel. Record all readings. 3.6 APPEARANCE 3.6.1 Color, max Clea
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