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本文(FORD WSS-M4D651-B2-2013 POLYPROPYLENE COPOLYMER 10% MINERAL FILLED MOLDING COMPOUND TO BE USED WITH FORD WSS-M99P1111-A .pdf)为本站会员(wealthynice100)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

FORD WSS-M4D651-B2-2013 POLYPROPYLENE COPOLYMER 10% MINERAL FILLED MOLDING COMPOUND TO BE USED WITH FORD WSS-M99P1111-A .pdf

1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev 1 2013 04 23 Revised See Summary of Revisions for details T. Nover, EU 2011 06 06 Activated Replaces WSK-M4D651-A2 M. Corley, FoE Controlled document at www.MATS Copyright 2013, Ford Global Technologies, LLC Page 1 of 5 POLYPROPYLENE COPO

2、LYMER WSS-M4D651-B2 10% MINERAL FILLED, MOLDING COMPOUND 1. SCOPE The material defined by this specification is a thermoplastic polypropylene copolymer molding compound, 10% mineral filled for general purpose non-visible exterior use. 2. APPLICATION This specification was released originally for mat

3、erial used for retainers, bumper to body. 2.1 LIMITATIONS Material approved to this specification is unlikely to contain UV stabilizers, therefore long term exposure to direct sunlight could cause chalking and loss of gloss. This material may not be suitable for under hood applications because it ha

4、s not been tested against the relevant oil and chemical resistance requirements. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements for Production Materials (WSS-M99P1111-A). Many 4D resin specif

5、ications prior to 2011, identified certain requirements with the symbol (s), which indicated that the mean and +/- 3 sigma values were to be reported. The specification minimum, maximum or range was established using 3 sigma data. For 2011 and beyond, refer to Table 1 for number of samples required

6、for each test to establish specification limits. 3.1.1 This specification is based on virgin materials, however materials with recycled content as defined by WRS-M99P42-A1 (post-consumer and/or post industrial recyclates and repolymerised recycled materials) should be used whenever technically feasi

7、ble and following all materials and PV testing required by Ford Materials Engineering. The use of regrind is permitted, for economic/environmental reasons, with compliance as indicated in WSS-M99P1111-A. 3.1.2 Performance Criteria: Parts made of this material must fulfill all relevant SDS requiremen

8、ts. 3.2 SAMPLE PREPARATION Unless otherwise specified all tests shall be carried out on injection molded, one-end gated test specimens. The test specimens A and D shall be molded using molding conditions defined in ISO 1873-2. No annealing is allowed. See Table 1 for the number of samples required.

9、ENGINEERING MATERIAL SPECIFICATION WSS-M4D651-B2 Copyright 2013, Ford Global Technologies, LLC Page 2 of 5 Specimens shall be as follows: Specimen A 150 minimum x 10 x 4.0 +/- 0.2 mm (ISO 527-2, Specimen Type 1A) Specimen B 355 x 100 x 1.0 +/- 0.1 mm (ISO 3795) Specimen C 145 x 60 x 3.2 +/- 0.2 mm S

10、pecimen D Center of Specimen A, 80 x 10 x 4.0 +/- 0.2 mm Specimen E 100 mm diameter x 3.2 mm Specimen F 80 mm diameter x 3.2 mm Specimen G 90 mm x 200 mm Specimen H 50 +/- 1 mm diameter x 3.2 +/- 0.2 mm Specimen I 100 mm x 150 mm, min 3.3 MATERIAL PROPERTIES 3.3.1 Mineral Filler Content 8-14 % (ISO

11、3451-1, Method A, 1 hr at 650 +/- 50 C, test portion 2 to 2.5 g) 3.3.2 Density 0.96-1.01 g/cm3 (ISO 1183, Method A) 3.3.3 Tensile Strength at Yield 21 MPa min (ISO 527-1 & ISO 527-2, Specimen A, 50 mm/minute test speed) 3.3.4 Tensile Modulus 1.6 GPa min (ISO 527-1 & ISO 527-2, Specimen A, 1 mm/min t

12、est speed) 3.3.5 Flexural Modulus 1.6 GPa min (ISO 178, Specimen D, 64 mm support span, 2 mm/min test speed) 3.3.6 Impact Strength, Notched Izod (ISO 180/1A, Specimen D) 3.3.6.1 At 23 +/- 2 C 4 kJ/m2 min Report Break Type 3.3.6.2 At -40 +/- 2 C 1.8 kJ/m2 min Report Break Type 3.3.6.3 At 0 +/- 2 C 3

13、kJ/m2 min Report Break Type The test specimen must be conditioned for minimum of 6 hours at the above specified temperature prior to impact test. Low temperature testing shall be done within the cold chamber, if not possible, test may be conducted outside, but within 5 seconds. ENGINEERING MATERIAL

14、SPECIFICATION WSS-M4D651-B2 Copyright 2013, Ford Global Technologies, LLC Page 3 of 5 3.3.7 Heat Deflection Temperature 54 C min (ISO 75-1 & ISO 75-2 Specimen D, flatwise, 0.34 +/- 0.1 mm deflection. At 1.80 MPa) 3.3.8 Heat Aging Performance (ISO 188, except 150 +/- 50 air changes/h, 1000 h at 140 +

15、/- 2 C. Unaged property values shall be determined at the time of the aged properties determination) 3.3.8.1 Tensile Strength at Yield, Change +/- 25% (Test method per para 3.3.3) 3.3.8.2 Impact Strength, Notched Izod, Change +/- 25% (Test Method per para 3.3.6.1, specimens to be notched before Heat

16、 Aging) 3.3.9 Flammability (ISO 3795/SAE J369 Specimen B smooth surface) Burn Rate 100 mm/minute max 3.4 MATERIAL PROPERTIES REPORT ONLY Values are retained in Ford Materials Database . 3.4.1 Melt Flow Rate Report Value, g/10 minutes (ISO 1133, 230C, 2.16 kg) 3.4.2 Molding Shrinkage (Report method u

17、sed, sample size and value) After 48 h at 23 +/- 2 C Report Value, % 3.4.3 Coefficient of Linear Thermal Expansion (ISO 11359-2, -30 +/- 2 to 100 +/- 2 C) Flow Report Value, E-5 mm/mm/ C Across Flow Report Value, E-5 mm/mm/ C 3.4.4 Poissons Ratio Report Ratio (ISO 527-1/2, Specimen A 1 mm/minute tes

18、t speed) ENGINEERING MATERIAL SPECIFICATION WSS-M4D651-B2 Copyright 2013, Ford Global Technologies, LLC Page 4 of 5 3.4.5 Impact Strength Charpy, Notched (ISO 179-1/2, Specimen D) 3.4.5.1 At 23 +/- 2 C Report Value, kJ/m2 Report Break Type 3.4.5.2 At -40 +/- 2 C Report Value, kJ/m2 Report Break Type

19、 3.4.5.3 At 0 +/- 2 C Report Value, kJ/m2 Report Break Type The test specimen must be conditioned for minimum of 6 hours at the above specified temperature prior to impact test. Low temperature testing shall be done within the cold chamber, if not possible, test may be conducted outside, but within

20、5 seconds. 3.4.6 Additional FMD Required Information FTIR/TGA/DSC/CLTE Curves 4. GENERAL INFORMATION The information given below is provided for clarification and assistance in meeting the requirements of this specification. The tests requested below must be performed and reported. Specific values c

21、an be obtained from the resin supplier or Ford Material Database . 4.1 TYPICAL PROPERTIES USING METHODS IN SECTION 3.4 Test Typical Value Units 3.4.1 Melt Flow Rate 15-20 g/10 minutes 3.4.2 Molding Shrinkage (method variable) (For specific method and sample size, contact Materials Engineering) Appro

22、x 1.0 % 3.4.3 Coefficient of Linear Thermal Expansion 7-12 E-5 mm/mm/ C 4.2 MATERIAL IDENTIFICATION FOR RECYCLING PURPOSES PP-MD10 (ISO 1043) ENGINEERING MATERIAL SPECIFICATION WSS-M4D651-B2 Copyright 2013, Ford Global Technologies, LLC Page 5 of 5 Table 1: Minimum Sample Size Initial Approval New M

23、anufacturing Location for Previously Approved Material Test Minimum Lots Specimens per lot Total Test Specimens Lots Specimens per lot Total Test Specimens 3.1 WSS-M99P1111-A 3.3.1 Mineral Filler Content* 3 1 3 1 1 1 3.3.2 Density 1 3 3 3.3.3 Tensile Strength at Yield* 3 5 15 1 5 5 3.3.4 Tensile Mod

24、ulus 1 10 10 3.3.5 Flexural Modulus* 3 10 30 1 10 10 3.3.6 Impact Strength, Notched Izod (per condition)* 3 10 30 1 10 10 3.3.7 Heat Deflection Temperature* 3 2 6 1 2 2 3.3.8 Heat Aged Performance 3.3.8.1 Tensile Strength at Yield Change 1 5 5 3.3.8.2 Impact Strength, Notched Izod Change 1 10 10 3.3

25、.9 Flammability 1 5 5 3.4.1 Melt Flow Rate 3 1 3 1 1 1 3.4.2 Mold Shrinkage 1 5 5 1 5 5 3.4.3 Coefficient of Linear Thermal Expansion (per condition) 1 3 3 3.4.4 Poissons Ratio 1 5 5 3.4.5 Impact Strength Notched Charpy (per condition) 1 10 10 1 10 10 3.4.6 Data plots FTIR, TGA, DSC, CLTE 1 1 1 per test * For these requirements the 3 sigma value from the raw data is used to meet the requirements. 5. SUMMARY OF REVISIONS 2013 04 23 Changed the Flex Modulus from 1.7 GPa to 1.6 GPa.

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