FORD WSS-M99D68-A1-2017 THERMOPLASTIC PROPERTY DETERMINATION FOR CAE HIGH STRAIN RATE TENSILE AND CREEP TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 2 2017 01 17 Editorial See Summary of revisions L. Soreide, NA 2016 07 05 Revised See Summary of Revisions L. Soreide, NA 2013 08 05 Released M. Corley, EU L. Soreide, FNA Controlled document at www.MATS Copyright 2017, Ford Global Techn
2、ologies, LLC Page 1 of 6 THERMOPLASTIC PROPERTY DETERMINATION FOR CAE, WSS-M99D68-A1 HIGH STRAIN RATE TENSILE AND CREEP 1. SCOPE This specification defines the requirements for measuring selected material properties used in CAE simulation or equivalent modeling of automotive components made from the
3、rmoplastic production materials. 2. APPLICATION This specification was released originally to communicate test methods and test parameters for material property data collection to the thermoplastic material suppliers. The data can then be combined with other material property data to model automotiv
4、e components made from the material. 3. REQUIREMENTS 3.1 APPROVED SOURCES This specification does not use approved sources. Any reliable supplier meeting these requirements may be used. 3.2 CONDITIONING AND TEST CONDITIONS All test values are based on material conditioned for not less than 24 h prio
5、r 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 soon after removal. 3.3 SAMPLE PREPARATION Specimen A 150 minimum x 10 x 4.0 +/- 0.2 mm (ISO 527-2, Type 1A) Specimen J 80 mm x 15 mm x 2.5
6、+/- 0.6 mm (ISO 8256, Type 3; see Figure 1) 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 (+/- 0.6 mm). Other dimensions are possible but must be discussed be
7、forehand 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. Specimen J test specimens must be extracted from the position described in Figure 2. ENG
8、INEERING MATERIAL SPECIFICATION WSS-M99D68-A1 Copyright 2017, Ford Global Technologies, LLC Page 2 of 6 Figure 1 Specimen J, ISO 8256, Type 3 11111250 mm150 mmFilm Gate on short side20mm35mmSample ExtractionArea35mm80mm11Figure 2 Test Specimen Extraction Area Definition For fiber reinforced thermopl
9、astics 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 suitability
10、 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 of op
11、tional 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-A1 Copyright 2017, Ford Global Technologies, LLC Page 3 of 6 3.4 HIGH STRAIN RATE TENSILE TESTING OF
12、POLYMERS Report All Data (SAE J2749, Except Test Specimen Preparation for Specimen J described above, (ISO 8256 Type 3, see Figure 1). Alternative methods are allowed if it can be documented that the results are comparable) Sample orientation to flow direction: 3.4.1 Non-fiber reinforced material Re
13、quired Test Specimen Orientation: 0 As directed Ford Materials Engineering/Ford CAE: 90, 45 or other orientations as mutually agreed upon Required Strain Rates: 0.01/sec, 1/sec, 100/sec As directed Ford Materials Engineering/Ford CAE: 10/sec, 300/sec, or other strain rates as mutually agreed upon Re
14、quired Temperature: 23 C As directed Ford Materials Engineering/Ford CAE: -30 C, 65 C or other temperatures as mutually agreed upon 3.4.2 Fiber reinforced material Required Test Specimen Orientation: 0, 90, As directed Ford Materials Engineering/Ford CAE: 45 or other orientations as mutually agreed
15、upon Required Strain Rates: 0.01/sec, 1/sec, 100/sec As directed Ford Materials Engineering/Ford CAE: 10/sec, 300/sec, or other strain rates as mutually agreed upon Required Temperature: 23 C As directed Ford Materials Engineering/Ford CAE: -30 C, 65 C or other temperatures as mutually agreed upon T
16、he described strain rates are nominal strain rates. The tests can be performed with constant crosshead speed. A specific device allowing the equipment to reach desired crosshead speed (e.g. startup length, delay block) before loading the specimens must be used. Local strain measurement on the sample
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