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    FORD WSS-M99P49-A1-2016 LABEL PERFORMANCE RADIO FREQUENCY IDENTIFICATION (RFID) THERMAL TRANSFER PRINTABLE TO BE USED WITH FORD WSS-M99P1111-A .pdf

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    FORD WSS-M99P49-A1-2016 LABEL PERFORMANCE RADIO FREQUENCY IDENTIFICATION (RFID) THERMAL TRANSFER PRINTABLE TO BE USED WITH FORD WSS-M99P1111-A .pdf

    1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 0 2016 04 05 Released W. Curtiss, NA; I.Gruenwald, EU Controlled document at www.MATS Copyright 2016, Ford Global Technologies, LLC Page 1 of 4 LABEL PERFORMANCE, RADIO FREQUENCY IDENTIFICATION (RFID), WSS-M99P49-A1 THERMAL TRANSFER PRIN

    2、TABLE 1. SCOPE The materials defined by this specification are calendered insulation paper with high inherent dielectric strength and radio frequency indentification (RFID) inlay laminate transponder which communicates vehicle information to the plant and transportation readers. The RFID label is th

    3、ermal transfer printable and is resilient to the production environment from body shop through paint, final trim, and shipping to the dealer. 2. APPLICATION This specification was released originally for materials used for tracking vehicles within production control and management by Radio Frequency

    4、 Identification (RFID) technology. The label is mechanically fastened to the vehicle body structure and remains with the body through the cleaner, phosphate, electrocoat, and paint processes. The RFID label is intended to be removed by the dealer prior to delivery to the final customer. In addition

    5、to the RFID transponder, the label will contain visible identification numbers or characters / marks / barcodes. 3. REQUIREMENTS 3.1 APPROVED SOURCES This specification is performance based and does not have approved sources. 3.2 SYSTEM COMPATIBILITY Initial label approval was based on a specific ma

    6、terial system which included calendered insulation paper (covering material), RFID transponder and adhesives. Material selection, processing conditions and assembly plant processing conditions may affect label performance. If any of these parameters are changed, the label performance must be validat

    7、ed using the new parameters. 3.3 DIMENSIONS As specified on engineering drawing 3.4 INITIAL ACCEPTANCE CRITERIA Labels must meet radio frequency transponder requirements as defined on the engineering drawing. The thermally printed labels shall be clearly legible and void of any surface imperfections

    8、 that will make them unsuitable for the intended usage. Any numbers or identification characters / marks / barcodes shall be readable by line operators and electronic scanners (if required). ENGINEERING MATERIAL SPECIFICATION WSS-M99P49-A1 Copyright 2016 Ford Global Technologies, LLC Page 2 of 4 3.5

    9、 EXPOSURE CONDITIONS Expose labels to paragraph 3.5.1 through 3.5.7 and then evaluate. 3.5.1 Resistance to Production Cleaners No change Test Method: Expose six thermally printed labels with RFIDs to production cleaners utilized prior to phosphate for 1 minute at 70 +/- 2 C. Immerse the labels so th

    10、at none of them are touching and they are completely covered by the cleaner solution. Remove the labels from the cleaner solution, rinse with deionized water, and inspect the labels within 1 hour at 23 C. 3.5.2 Resistance to Production Phosphate No change Test Method: Expose the six labels tested in

    11、 para 3.5.1 to production phosphate utilized prior to the electrocoat for 3 minutes at 50 +/- 2 C. Immerse the labels so that none of them are touching and they are completely covered by the phosphate solution. Remove the labels from the phosphate solution, rinse with deionized water, and inspect th

    12、e labels within 1 hour at 23 C. 3.5.3 Resistance to Production Electrocoat No change and no damage to the ecoat film Test Method: Expose the six labels tested in para 3.5.2 to production electrocoat for 5 minutes at 40 2 C. Immerse the labels so that none of them are touching and they are completely

    13、 covered by the electrocoat solution. After 5 minutes of soak, electrocoat a phospated steel panel utilizing the ecoat bath solution containing the labels per FLTM BV 119-01. Remove the labels and the ecoated panel from the electrocoat solution and rinse with deionized water. Bake the ecoated panel

    14、and labels for 30 minutes metal temperature at 200 2 C and inspect after cool down to 23 C. Examine the ecoated panel for evidence of paint damage or craters and report results. 3.5.4 Paint Bake Exposure No change Primer surfacer bake: Expose the labels from 3.5.3 to a primer surfacer bake of 30 min

    15、utes at 177 2 C. Base Coat/ Clear Coat bake: Expose the labels to a base coat / clear coat bake of 30 minutes at 155 2 C. 3.5.5 Thermal Cycle Test No change Condition 3 labels from 3.5.4 for 24 to 48 h at 23 2 C, and then expose the labels to the following cycle two times: 4 h at 38 2 C and 98 2 % R

    16、.H 4h at -20 1 C 16 h min at 23 2 C ENGINEERING MATERIAL SPECIFICATION WSS-M99P49-A1 Copyright 2016 Ford Global Technologies, LLC Page 3 of 4 3.5.6 Heat Resistance No change Condition 3 labels from 3.5.4 for 24 to 48 h at 23 2 C, and then expose the labels to 30 min at 220 2 C in an oven. Return to

    17、room temperature and evaluate within 60 minutes after exposure. 3.5.7 Water Immersion No change (24 h at 32 2C) Immerse 3 new labels and evaluate. Acceptance Criteria After Exposure After sequentially exposing the labels to the conditions listed in 3.5.1 through 3.5.7, the label transponders must re

    18、main functional and meet the radio frequency requirements as defined on the engineering drawing. The label must not show visual evidence of peeling, loss of printing or legibility, curling of edges, staining, blistering, cracking, excessive shrinkage, or any other effect which would detract from its

    19、 proper function or appearance. Any numbers or identification characters / marks / barcodes shall be readable by line operators and electronic scanners (if required). 3.6. FUNCTIONAL EVALUATION Labels being evaluated for initial approval to the specification shall be subjected to a production trial

    20、in an area intended for use. This trial will be conducted after all other specification requirements have been met. 3.7 STORAGE STABILITY No change (3 months at 40 C) 4. GENERAL INFORMATION The information given below is provided for clarification and assistance in meeting the requirements of this s

    21、pecification. Contact for questions concerning Engineering Material Specifications. 4.1 SUPPLIERS ONGOING RESPONSIBILITY All materials must be equivalent in all characteristics to the material upon which approval was originally granted. Prior to making any changes to the material originally approve

    22、d, whether or not such changes affect the materials ability to meet the specification requirements, the supplier shall notify the affected Supplier Technical Assistance (STA), Purchasing, and Materials Engineering activities of the proposed changes (with reasons) by submission of a completed Supplie

    23、rs Request for Engineering Approval, SREA. For parts and components using Ford Engineering Material Specifications, all samples tested to the specifications for Design Verification (DV), Production Verification (PV) and Production Part Approval Process (PPAP) sign off must be kept until Job 1. ENGIN

    24、EERING MATERIAL SPECIFICATION WSS-M99P49-A1 Copyright 2016 Ford Global Technologies, LLC Page 4 of 4 4.2 RESTRICTED SUBSTANCE MANAGEMENT STANDARD Substance restrictions imposed by regulations or Company direction applies to the materials addressed by this document. The restrictions are identified in

    25、 the Restricted Substance Management Standard WSS-M99P9999-A1 which is updated yearly. It is the suppliers responsibility to comply with this standard on a continuing basis through IMDS and or GMAP reporting. 4.3 The label is attached to the vehicle body with a nylon clip as originally released. 5. SUMMARY OF REVISIONS


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