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本文(FORD ESP-M8G212-A1-2012 GASKET CELLULOSE FIBER NITRILE BUTADIENE RUBBER - CHLOROPRENE RUBBER ENCAPSULATED - TEFLON COATED FOR RELEASE TO BE USED WITH FORD WSS-M99P1111-A .pdf)为本站会员(priceawful190)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 ESP-M8G212-A1-2012 GASKET CELLULOSE FIBER NITRILE BUTADIENE RUBBER - CHLOROPRENE RUBBER ENCAPSULATED - TEFLON COATED FOR RELEASE TO BE USED WITH FORD WSS-M99P1111-A .pdf

1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions Rev 02 2012 05 09 N Status No usage or replacement N. Benipal, NA 2000 09 25 Revised Updated A. Cockman 1987 10 22 PCR #161483 Released T. P. Koch Controlled document at www.MATS Page 1 of 4 Copyright 2012,

2、Ford Global Technologies, Inc. GASKET, CELLULOSE FIBER/NITRILE BUTADIENE ESP-M8G212-A1 RUBBER - CHLOROPRENE RUBBER ENCAPSULATED - TEFLON COATED FOR RELEASE GASKET, CELLULOSE FIBER - MINERAL/NITRILE ESP-M8G212-A2 BUTADIENE RUBBER - NITRILE BUTADIENE ENCAP- SULATED OVER STYRENE BUTADIENE ENCAPSULATION

3、 - TEFLON COATED FOR RELEASE NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by the A1 specification consists of cellulose fibers bonded with nitrile butadiene rubber and totally encapsulated with chloroprene rubber. The material defined by the A2 specification consists of cellulose fibe

4、r and mineral fillers bonded with nitrile butadiene rubber and encapsulated with a layer of styrene butadiene rubber and nitrile butadiene rubber. The encapsulation is added to both base materials to aid in sealing flange microfinish and to prevent migration of automatic transmission fluid through t

5、he gasket. 2. APPLICATION These specifications were released originally for gasketing materials used on external transmission joints to seal automatic transmission fluid. 3. REQUIREMENTS Material specification requirements are to be used for initial qualification of materials. All tests shall be con

6、ducted in accordance with ASTM F 104 Type 3 material unless otherwise specified. All testing shall be done on totally encapsulated test samples. All testing to be done at 23 +/- 2 C and 55 +/-5% relative humidity. Material approval will be based on actual ASTM test samples. Results on finished gaske

7、ts are to agree with the material specification. 3.1 QUALITY SYSTEM REQUIREMENTS Material suppliers and part producers must conform to the Companys Quality System Requirements. 3.2 ORIGINAL PROPERTIES A1 A2 3.2.1 Encapsulated Gasket Thickness, mm 0.29 - 0.47 0.66 - 0.92 ENGINEERING MATERIAL SPECIFIC

8、ATION ESP-M8G212-A1/A2 Page 2 of 4 Copyright 2012, Ford Global Technologies, Inc. A1 A2 3.2.2 Encapsulated Thickness per side, mm 0.0120-0.0330 0.0200-0.0356 (SEM Referee Method) 3.2.3 Compressibility of Encapsulated Gasket, % At 6.9 Mpa 7 17 4 - 14 At 34.5 Mpa 14 25 13 - 25 3.2.4 Recovery, %, min 4

9、0 40 At 34.5 MPa 3.2.5 Flexibility AMD 7X 10X WMD 25X 12X 3.3 OVEN AGING (168 h at 150 C) 3.3.1 Weight Change, %, max -10 -2 3.3.2 Compressibility, %, At 34.5 Mpa 6 18 4 - 14 3.3.3 Recovery, %, min 25 40 3.3.4 Tensile Change, %, max -75 -55 Test Method: Place 3 weight change samples 25 mm x 50 mm x

10、sample thickness, 3 tensile change samples 13 mm x 100 mm x samples size and compressibility samples between 100 mm x 125 mm x 13 mm steel plates. Place in furnace set at 150 +/- 3 C for 168 h. 3.4 FLUID IMMERSIONS 3.4.1 ASTM #1 Oil (5 h at 150 C) Weight Change, % -5 to +5 0 to +12 Thickness Change,

11、 % 0 to +10 0 to +5 Tensile Change, %, max -40 -10 ENGINEERING MATERIAL SPECIFICATION ESP-M8G212-A1/A2 Page 3 of 4 Copyright 2012, Ford Global Technologies, Inc. A1 A2 3.4.2 ASTM #3 Oil (5 h at 150 C) Weight Change, % 0 to +25 0 to +25 Thickness Change, % 0 to +15 0 to +10 Tensile Change, %, max -40

12、 -25 3.4.3 Three Currently Approved ATFs (See Note 1, 168 h at 150 C) Weight Change, % 0 to +25 0 to +20 Thickness Change, % 0 to +6 0 to +6 Tensile Change, %, max -65 -35 Flexibility, AMD 35X 10X Compressibility, At 34.5 Mpa No more than 3 percentage points change from original. 3.5 DENSITY, mg/m3

13、0.93 - 1.04 1.28 - 1.38 3.6 SEALABILITY, air, mL/min 35 0 (ASTM F 37, 2.1 MPa Flange Load, 3.8 micrometre surface finish, 103.5 kPa air pressure) 3.7 SURFACE COATING Must be hand removable without Aluminum to Aluminum scraping, and shall not corrode Aluminum to Steel the plates. Test Method: A 15.9

14、mm I.D. x 38.1 mm O.D. test specimen is clamped between 2 discs of 13.5 mm I.D. x 51 mm O.D. metal plates (maximum thickness 1.57 mm) backed by 12.7 mm steel plates. A 12.7 mm steel bolt is inserted through the hole and a nut placed on it. Tighten the bolt to 79 N-m. Heat the assembly at 121 +/- 3 C

15、 for 5 h. Remove from oven and allow to cool to room temperature. A1 A2 3.8 DIMENSIONAL STABILITY, % WMD AMD WMD AMD Length Change After 0 to +0.3 0 to +3.2 0 to +0.3 0 to +1.0 Immersion in H2O for 22 h ENGINEERING MATERIAL SPECIFICATION ESP-M8G212-A1/A2 Page 4 of 4 Copyright 2012, Ford Global Techn

16、ologies, Inc. A1 A2 Length Change after 0 to -0.5 -1.6 to 0 0 to -0.3 0 to -0.5 Immersion in Air at 100 +/- 2 C for 5 h Test Method: Cut twelve 2.54 x 20 cm specimens in the WMD and twelve in the AMD. Precondition samples for 24 h at 50% R.H. at 23 +/- 2 C. After preconditioning measure the length o

17、f each test specimen. Place 6 specimens of each direction in a tray of de-ionized water to a depth of 1.2 cm for a 22 h period. Remove specimens from water, immediately lightly blot excess water from the surface and immediately remeasure the length. Place the 6 remaining specimens of each direction

18、in a recirculating hot air oven at 100 +/- 2 C for 5 h. Remove from oven and place immediately in a desiccator containing anhydrous calcium chloride. Cool to room temperature, remove and immediately remeasure the length. 3.9 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS IR spectra and thermogra

19、ms established for initial approval shall constitute the reference standard and shall be kept on file at the designated material laboratory. All samples shall produce IR spectra and thermograms that correspond to the reference standard when tested under the same conditions. 3.10 SUPPLIERS RESPONSIBI

20、LITY All materials supplied to this specification must be equivalent in all characteristics to the material upon which approval was originally granted. Prior to making any changes to the material originally approved under this specification, whether or not such changes affect the materials ability t

21、o meet the specification requirements, the Supplier shall notify the affected Purchasing, and Materials Engineering activities (with reasons) of the proposed changes. Upon notification of the Company, further instructions will be provided. Note: Suppliers should be prepared to provide test data and

22、samples demonstrating compliance to this specification, if requested. Substance restrictions imposed by regulations or Company direction applies to the materials addressed by this document. The restrictions are identified in Restricted Substance Management Standard WSS-M99P9999-A1. 4. APPROVAL OF MA

23、TERIALS Materials defined by this specification for direct supply to the Company must have prior approval. Certain materials subcontracted by part suppliers may also require prior approval. These include materials critical to the Companys business for regulatory, safety, environmental or compatibili

24、ty requirements or contractual agreements. Suppliers desiring approval of their materials shall first obtain an expression of interest from Purchasing, Design or Materials Engineering activity. Upon request, the Supplier shall submit a completed copy of their laboratory test reports, signed by a qualified and authorized representative of the test facility, demonstrating full compliance with all the requirements of this specification.

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