FORD ESB-M99J337-A-2012 CHIP RESISTANT COATING ONE-COMPONENT URETHANE PAINTABLE HEAT CURING NONMASKING 130 MICROMETER MINIMUM FILM THICKNESS TO BE USED WITH FORD WSS-M99P1111-A 《.pdf
《FORD ESB-M99J337-A-2012 CHIP RESISTANT COATING ONE-COMPONENT URETHANE PAINTABLE HEAT CURING NONMASKING 130 MICROMETER MINIMUM FILM THICKNESS TO BE USED WITH FORD WSS-M99P1111-A 《.pdf》由会员分享,可在线阅读,更多相关《FORD ESB-M99J337-A-2012 CHIP RESISTANT COATING ONE-COMPONENT URETHANE PAINTABLE HEAT CURING NONMASKING 130 MICROMETER MINIMUM FILM THICKNESS TO BE USED WITH FORD WSS-M99P1111-A 《.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev 03 2012 02 16 N Status No replacement named N. Benipal, NA 2006 03 08 Revised Inserted 3.0; Deleted 3.7, 3.8, 4 1985 12 20 Released CAP1-CR535123 Controlled document at www.MATS Copyright 2012, Ford Global Technologies, LLC Page 1 of 6 CH
2、IP RESISTANT COATING, ONE-COMPONENT URETHANE, ESB-M99J337-A PAINTABLE, HEAT CURING, NON MASKING, 130 MICROMETER MINIMUM FILM THICKNESS CHIP RESISTANT COATING, ONE-COMPONENT URETHANE, ESB-M99J337-A2 PAINTABLE, HEAT CURING, NON-MASKING, 130 MICROMETER MINIMUM FILM THICKNESS, ACCENT TOPCOAT COMPATIBLE
3、NOT TO BE USED FOR NEW DESIGN 1. SCOPE The materials defined by these specifications are heat curing one-component urethane coatings which can be sprayed to a 130 - 200 micrometer film on cathodic electrocoated CRS and cathodic electrocoated galvanized steel. The materials shall provide a paintable
4、corrosion resistant film which will withstand stone chipping. 2. APPLICATION These specifications were released originally for a one-component urethane coating that provides stone chipping protection on a vehicles lower bodyside. This area of a vehicle received severe stone chipping abuse. Since the
5、 material has good adhesion at extremely low film thicknesses, no masking operations are required during its application. ESB-M99J337-A2 is also capable of a wet-on-wet-on-wet application, under the body spray primer and followed by a low gloss topcoat. This 3 layer system is cured by the spray prim
6、er bake cycle. 3. REQUIREMENTS Material specification requirements are to be used for initial qualification of materials. The material shall meet all requirements detailed in this section. Approved production material applied and tested under identical conditions shall be used as the control. In the
7、 event that both the sample under test and the control material fail any requirements, that test shall be repeated. These requirements apply to both laboratory-prepared and production batches of the coating. 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers mus
8、t conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.1 COMPOSITION 3.1.1 Non-Volatile, %, min 60 (FLTM BI 102-01) ENGINEERING MATERIAL SPECIFICATION ESB-M99J337-A/A2 Copyright 2012, Ford Global Technologies, LLC Page 2 of 6 3.1.2 Toxicity The material shall be
9、 non-toxic and shall not cause skin rash or irritation (dermatitis) to exposed handlers in normal production operations. Benzene and chlorinated hydrocarbon solvents are considered toxic and their use is strictly prohibited in compounding material to these specifications. 3.2 PHYSICAL PROPERTIES 3.2
10、.1 Weight per Volume at 23 +/- 2 C, kg/L 1.15 - 1.40 3.2.2 Viscosity, KU 70 - 95 (ASTM D 562) 3.2.3 Heat Stability, KU, max 105 (FLTM BI 102-03) Test Method: Make the following exceptions to FLTM BI 102-03: . Measure the viscosity per ASTM D 562. . Place in an oven at 49 C for 5 days. 3.3 PREPARATIO
11、N OF TEST PANELS Materials submitted for initial approval shall be tested on both cold rolled steel and minimum spangle temper rolled quality galvanized steel (ESB-M1A62 type) panels for all requirements of this specification. 3.3.1 System Components 3.3.1.1 Panel Preparation with Spray Primer . Sub
12、strates: Ford PTQ cold rolled steel and WSB-M1A250-C3 98G98G galvanized steel. . Pre-treatment: ESB-M3P1 zinc phosphate. . Primer: ESB-M64J28 high build cathodic electrocoat primer, 30 - 33 micrometer followed by the specified bake cycle. . Stone Chip Material: 130 - 200 micrometer. Do not reduce th
13、e material. Within 3 minutes after the stone chip material application, make a wet-on-wet application of spray primer. . Spray Primer: ESB-M6J152, 19 - 25 micrometer; co-bake stone chip material and the spray primer as specified in para 3.3.2. ENGINEERING MATERIAL SPECIFICATION ESB-M99J337-A/A2 Copy
14、right 2012, Ford Global Technologies, LLC Page 3 of 6 . Topcoat: Prepare three sets of topcoated panels. Set I: ESB-M50J107 - Quality acrylic enamel, 38 - 51 micrometer followed by the specified bake cycle. Set II: ESB-M33J100 - Quality high solids acrylic enamel, 38 - 51 micrometer followed by the
15、specified bake cycle. Set III: ESB-M33J3-A - High solids basecoat/clearcoat; dry film thicknesses - basecoat: 15 - 20 micrometer, and clearcoat: 40 - 50 micrometer, followed by the specified bake cycle. 3.3.1.2 Panel Preparation with Spray Primer and Low Gloss Topcoat (ESB-M99J337-A2 requirement onl
16、y) . Substrates: Ford PTQ cold rolled steel and ESB-M1A62 galvanized steel. . Pre-treatment: ESB-M3P1 zinc phosphate. . Primer: ESB-M64J23 high build cathodic electrocoat primer, 30 - 33 micrometer followed by the specified bake cycle. . Stone Chip Material: 130 - 200 micrometer. Do not reduce the m
17、aterial. Within 3 minutes after the stone chip material application, make a wet-on-wet application of spray primer. . Spray Primer: ESB-M6J152, 19 - 25 micrometer. Within 3 minutes after applying the spray primer, make a wet-on-wet application of low gloss black topcoat. . G“ Gloss Black Topcoat: ES
18、B-M32J106, 39 50 micrometer. Bake this 3 layer wet-on-wet system as specified in para 3.3.2. 3.3.1.3 Panel Preparation with Spray Primer Deleted (ESB-M99J337-A requirement only) . Substrates: Ford PTQ cold rolled steel and ESB-M1A62 galvanized steel. . Pre-treatment: ESB-M3P1 zinc phosphate. . Prime
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