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    FORD WSS-M99D68-A3-2018 THERMOPLASTIC PROPERTY DETERMINATION OF CREEP PROPERTIES FOR CAE ANALYSIS TO BE USED WITH FORD WSS-M99P1111-A .pdf

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    FORD WSS-M99D68-A3-2018 THERMOPLASTIC PROPERTY DETERMINATION OF CREEP PROPERTIES FOR CAE ANALYSIS TO BE USED WITH FORD WSS-M99P1111-A .pdf

    1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 01 2018 07 19 Editorial See Summary of Revisions C. Lewis, NA 2018 07 02 Released C. Lewis, NA Controlled document at www.MATS Copyright 2018, Ford Global Technologies, LLC Page 1 of 4 THERMOPLASTIC PROPERTY DETERMINATION OF CREEP PROPER

    2、TIES WSS-M99D68-A3 FOR CAE ANALYSIS 1. SCOPE This specification defines the requirements for measuring creep properties used in CAE simulation or equivalent modeling of automotive components made from thermoplastic production materials. 2. APPLICATION This specification was released originally to co

    3、mmunicate test methods and test parameters for creep property data collection to the thermoplastic material suppliers. The data can then be combined with other material property data to model automotive components made from the material. 3. REQUIREMENTS 3.1 APPROVED SOURCES This specification does n

    4、ot use approved sources. 3.2 CONDITIONING AND TEST CONDITIONS All test values are based on material conditioned for not less than 24 h prior to testing in a controlled environment of 23 +/- 2 C and 50 +/- 5% relative humidity. Testing of the material should occur in the conditioning environment or s

    5、oon after removal. 3.3 SAMPLE PREPARATION Specimen A 150 minimum x 10 x 4.0 +/- 0.2 mm (ISO 527-2, Type 1A) Test specimens must be milled (high speed milling) out of injection molded plaques with film gate injection on the short side. Plaque size should be approximately 250 mm x 150 mm x 2.5 mm (+/-

    6、 0.6 mm). Other dimensions are possible but must be discussed beforehand with the Ford Materials Engineering and/or Ford CAE experts. The specimens must not be taken from the edges or in the film gate area of the plaque to avoid skin effects of the injection molding process. For fiber reinforced the

    7、rmoplastics it is important that the plaques show a strong fiber orientation and fiber alignment in the extraction area. Other plaque dimensions and extraction areas must be mutually agreed upon by Ford Materials Engineering and Ford CAE. Injection molding simulations can be used to prove the suitab

    8、ility of other plaque geometries and extraction areas. 3.3.1 Number of Test Specimens The number of samples will be determined by Ford Materials Engineering, Ford CAE, and the material supplier based on the number of optional conditions selected. Supplement A is to be used to communicate the number

    9、of optional test parameters included in the material testing. Laboratories capable of running the test methods are listed in the General Information section. ENGINEERING MATERIAL SPECIFICATION WSS-M99D68-A3 Copyright 2018, Ford Global Technologies, LLC Page 2 of 4 3.4 DETERMINATION OF CREEP BEHAVIOR

    10、 (ISO 899-1, Specimen A) Required Test Specimen Orientation: 0 As mutually agreed upon by Ford D&R Engineering, Functional CAE SME and Ford Materials Engineering: 45, 90 or other orientations. Required Stress Levels: 10%, 30%, and 60% of yield stress at each temperature. Other Stress Levels allowed

    11、as mutually agreed upon by Ford D&R Engineering, Functional CAE SME and Ford Materials Engineering. Required Temperature: 23 C As mutually agreed upon by Ford D&R Engineering, Functional CAE SME and Ford Materials Engineering: -30 C, 65 C, 90 C and 110 C or other temperatures. Required Times: 250 ho

    12、urs, 1000 hours Other times allowed as mutually agreed upon by Ford D&R Engineering, Functional CAE SME and Ford Materials Engineering. Provide data creep plots (% Strain vs. Time in hours), individual data points at each stress level and Isochronous Stress-Strain Plot. Table 1: Minimum Sample Size

    13、Para. Test Minimum Lots Specimens per Condition (minimum) Total Test Specimens all Required Conditions (minimum) 3.4 Determination of Creep Behavior 1 2 12 4. GENERAL INFORMATION This information given below is provided for clarification and assistance in meeting the requirements of this specificati

    14、on. Contact for questions concerning Engineering Material Specifications. This specification is intended to compliment existing Ford Engineering Material Specifications for thermoplastics and the data collected and stored in the Ford Materials Database. Test laboratories with known test capability.

    15、 This list is only an extraction from a list of suitable test laboratories. Other test laboratories can be chosen as mutually agreed with Ford Materials Engineering and/or Ford CAE experts: DatapointLabs http:/ 95 Brown Road #102, Ithaca, NY 14850 USA Phone: +1 607-266-0405 Fax: 607-266-0168 Toll-Fr

    16、ee (U.S.): 1-888-328-2422 EDAG GmbH & Co. KGaA ATC FULDA, Jan Frster ENGINEERING MATERIAL SPECIFICATION WSS-M99D68-A3 Copyright 2018, Ford Global Technologies, LLC Page 3 of 4 Steinauerstrae 20 36100 Petersberg Germany Phone.: +49 661 6000-9151 Fax: +49 661 6000 818 Fraunhofer-Institut fr Betriebsfe

    17、stigkeit und Systemzuverlssigkeit LBF Dr. Sebastian Mnnich Schlossgartenstr. 6 64289 Darmstadt Germany Phone: +49 6151-705 8751 Fax: +49 6151-705 8601 5. SUMMARY OF REVISIONS 2018 07 19 - Editorial 3.4 as to who will direct orientation, rate and temperature ENGINEERING MATERIAL SPECIFICATION WSS-M99

    18、D68-A3 Copyright 2018, Ford Global Technologies, LLC Page 4 of 4 Supplement A CAE Modeling Data that compliments an existing Resin Specification Material Name _ Supplier Name _ Material Specification _ Testing Laboratory _ Circle optional parameters to make them required. Creep Modulus Required Stress Levels: _MPa Required Temperatures: 23 C Optional: 65 C 90 C 110 C Other:_ Times: _ Material Card _ Date_ Materials Engineering Signature _


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