FORD WRS-M4D968-B4-2013 POLYAMIDE (PA) 6 HEAT STABILIZED 30% GLASS FIBER MINERAL REINFORCED 70% PCR AND OR PIR RECYCLED CONTENT TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD.pdf
《FORD WRS-M4D968-B4-2013 POLYAMIDE (PA) 6 HEAT STABILIZED 30% GLASS FIBER MINERAL REINFORCED 70% PCR AND OR PIR RECYCLED CONTENT TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD.pdf》由会员分享,可在线阅读,更多相关《FORD WRS-M4D968-B4-2013 POLYAMIDE (PA) 6 HEAT STABILIZED 30% GLASS FIBER MINERAL REINFORCED 70% PCR AND OR PIR RECYCLED CONTENT TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 3 2013 07 19 Revised See Summary of Revisions for Details G. Kowalski, NA 2013 04 26 Revised See Summary of Revisions for Details V. Cerato, EU 2010 08 26 Activated Activated B1 V.Cerato, EU & Global Materials Team Controlled document at
2、 www.MATS Copyright 2013, Ford Global Technologies, LLC Page 1 of 7 POLYAMIDE (PA) 6, HEAT STABILIZED 30% GLASS WSS-M4D968-B1 FIBER/MINERAL REINFORCED POLYAMIDE (PA) 6, HEAT STABILIZED 30% GLASS WRS-M4D968-B2 FIBER/MINERAL REINFORCED, 25% PCR AND/OR PIR RECYCLED CONTENT POLYAMIDE (PA) 6, HEAT STABIL
3、IZED 30% GLASS WRS-M4D968-B3 FIBER/MINERAL REINFORCED, 50% PCR AND/OR PIR RECYCLED CONTENT (The specifications for a recycled version of this resin are under development. Contact Materials Engineering (FoE) for status) POLYAMIDE (PA) 6, HEAT STABILIZED 30% GLASS WRS-M4D968-B4 FIBER/MINERAL REINFORCE
4、D, 70% PCR AND/OR PIR RECYCLED CONTENT 1. SCOPE The materials defined by these specifications are thermoplastic injection molding compound based on heat stabilized 10% glass fiber and 20% mineral reinforced polyamide 6. 2. APPLICATION These specifications were released originally for material used f
5、or engine NVH and beauty covers. 2.1 LIMITATIONS This material absorbs and retains moisture. Part design and tolerances must accommodate changes in part dimensions and physical properties due to moisture absorption or loss in the service/assembly environment. This material does not contain UV stabil
6、izers, long term exposure to direct sunlight will cause chalking and loss of gloss. This material is not suitable for direct long term exposure to engine coolant, or direct exposure to strong acids or bases. It is not suitable for use above 150C. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCT
7、ION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements for Production Materials (WSS-M99P1111-A). 3.1.1 Many 4D resin specifications prior to 2011, identified certain requirements with the symbol (s), which indicated that the mean and +/- 3 sigma value
8、s were to be reported. The specification minimum, maximum or range was established using 3 sigma values. For 2011 and beyond, refer to Table 1 for number of samples required for each test. 3.1.2 WSS-M4D968-B1 is based on virgin materials. 3.1.3 WRS-M4D968-B2 must contain 25% recycled content as defi
9、ned by WRS-M99P42-A1 (post- consumer and/or post industrial recyclates and repolymerised recycled materials) The remaining portion of the material can come from virgin sources. ENGINEERING MATERIAL SPECIFICATION WSS-M4D968-B1 / WRS-M4D968-B2/B3/B4 Copyright 2013, Ford Global Technologies, LLC Page 2
10、 of 7 3.1.4 WRS-M4D968-B3/B4 must contain 50% and 70% recycled content as defined by WRS-M99P42-A (post-consumer and/or post industrial recyclates and repolymerised recycled materials). The remaining portion of the material can come from virgin sources. 3.1.5 WRS-M4D968-B4 must contain 70% recycled
11、content as defined by WRS-M99P42-A (post-consumer and/or post industrial recyclates and repolymerised recycled materials). The remaining portion of the material can come from virgin sources. 3.1.6 The use of regrind is permitted, for economic/environmental reasons, with compliance as indicated in Fo
12、rd Engineering CAD and Drafting Standard E-4. 3.1.7 Dry as molded: All test values indicated herein are based on material and specimens with moisture content not exceeding 0.2% except where noted (Moisture Conditioned) (test according to ISO 15512 Method B/ASTM D 6869). All test materials have to be
13、 sealed in moisture-proof containers and stored at 23 +/- 2 C for at least 24 h immediately after processing. If the moisture content exceeds 0.2%, conditioning the material for a minimum of 16 h at 40 50 C at a reduced pressure below 133 kPa. Conduct tests in a controlled atmosphere of 23 +/- 2 C a
14、nd 50 +/- 5% relative humidity. Individual specimens shall not be removed from closed containers until immediately before testing. 3.1.8 Performance Criteria Parts using this specification shall meet the appropriate performance specifications, WSS-M15P50-B. 3.1.9 As specified in WSS-M99P1111-A, para
15、graph 3.5, Ford Materials Engineering may request a Control Plan and Certificate of Analysis (CoA) containing lot testing requirements which must include, but are not limited to: Melt Flow Rate Filler Content Impact Strength, Notched Charpy at 23C Flexural Modulus 3.2 SAMPLE PREPARATION Unless other
16、wise 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 1874-2. See Table 1 for the number of samples required. Specimens shall be as follows: Specimen A 150 minimum x 10 x 4.0
17、 +/- 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 Specimen 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 +/-
18、 1 mm diameter x 3.2 +/- 0.2 mm ENGINEERING MATERIAL SPECIFICATION WSS-M4D968-B1 / WRS-M4D968-B2/B3/B4 Copyright 2013, Ford Global Technologies, LLC Page 3 of 7 Specimen I 100 mm x 150 mm, min 3.3 MATERIAL PROPERTIES 3.3.1 Melt Temperature 210 - 223 C (ISO 11357, 10 C/min heating rate) 3.3.2 Filler
19、Content 27 - 33 % (ISO 3451-4, test temperature 600 +/- 25C, Test portion 2-2.5g) 3.3.3 Density 1.32 - 1.45 g/cm3 (ISO 1183, Method A) 3.3.4 Tensile Strength at Break 80 MPa min (ISO 527-1 and ISO 527-2, Specimen A, 50 mm/minute test speed) 3.3.5 Tensile Modulus 5.0 GPa min (ISO 527-1 and ISO 527-2,
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