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    FORD ESE-M8G182-A-2012 GASKET ASBESTOS FREE REINFORCING COMPOUNDS AND NITRILE RUBBER - TYPE 6 TO BE USED WITH FORD WSS-M99P1111-A .pdf

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    FORD ESE-M8G182-A-2012 GASKET ASBESTOS FREE REINFORCING COMPOUNDS AND NITRILE RUBBER - TYPE 6 TO BE USED WITH FORD WSS-M99P1111-A .pdf

    1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Release No. Release/Revision Rev 01 2012 05 08 N Status No usage or replacement N Benipal, NA 1985 04 16 CE3P-RD863100-E154 Released E. J. Duda Page 1 of 4 GASKET, ASBESTOS FREE ESE-M8G182-A REINFORCING COMPOUNDS AND NITRILE

    2、 RUBBER - TYPE 6 NOT TO BE USED FOR NEW DESIGN 1. SCOPE: The material defined by this specification is a high grade fuel resistant gasketing material comprised of asbestos free reinforcing compounds in combination with a nitrile elastomeric binder. 2. APPLICATION: This specification was released ori

    3、ginally for a fuel and oil resistant material requiring high flange loads to seal against internal pressures at temperatures up to 177 C, such as the intake manifold gasket. The material has good conformability and can be used on rough or wavy flange surfaces. 3. REQUIREMENTS: All tests shall be con

    4、ducted in accordance with ASTM F 104 Type 6 material unless otherwise specified. Test specimens are to be selected from finished gaskets when practicable. 3.1 ORIGINAL PROPERTIES (All thicknesses) 3.1.1 Tensile Strength, min 12.1 MPa 3.1.2 Compressibility 10 to 20% 3.1.3 Recovery, min 50% 3.2 HEAT A

    5、GING (All thicknesses) (22 h at 150 +/- 3 C) 3.2.1 Weight Change, max -1.5% 3.2.2 Compressibility, max 15% 3.2.3 Recovery, min 55% Test Method: Place 3 weight change samples 25 x 50 mm x sample thickness and 3 tensile change 13 x 100 mm x sample thickness or any sample size which is practicable betw

    6、een 100 x 125 x 13 mm steel plates. Place in furnace set at 150 +/- 3 C for 22 h. ENGINEERING MATERIAL SPECIFICATION ESE-M8G182-A Page 2 of 4 3.3 IMMERSION IN LIQUIDS (Only thickness of 0.8 mm thru 1.6 mm apply) 3.3.1 ASTM #1 Oil (5 h at 150 +/- 3 C) Thickness Change 0 to +5% Tensile Strength Change

    7、, max -25% 3.3.2 ASTM #3 Oil (5 h at 150 +/- 3 C) Thickness Change 0 to 10% Tensile Strength Change, max -28% 3.3.3 ASTM Fuel C (5 h at 23 +/- 2 C) Thickness Change 0 to +25% Tensile Strength Change, max -50% 3.3.4 ASTM Fuel C 80% and Ethanol 20% (5 h at 23 +/- 2 C) Thickness Change 0 to +40% Tensil

    8、e Strength Change, max -78% 3.3.5 ESE-M97B44-A Coolant & Water 50/50 (24 h at boiling) Thickness Change, max +30% Tensile Strength Change, max -74% 3.4 CREEP RELAXATION, max 33% (ASTM F 38, Method B, 22 h at 150 C, 0.78 mm thick only) 3.5 DENSITY 1550-1700 kg/m3 3.6 SEALABILITY, max 5 mL/h (ASTM F 3

    9、7, 760 mm Hg, 1.7 MPa) 3.7 IGNITION LOSS 41 to 49% (ASTM F 495) ENGINEERING MATERIAL SPECIFICATION ESE-M8G182-A Page 3 of 4 3.8 SURFACE COATING Must not stick or show any evidence of corrosion. Metal Plates Aluminum to Aluminum Aluminum to Steel Steel to Steel Test Method: A 15.9 mm I.D. x 38.1 mm O

    10、.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 put on it. Tighten the bolt to 79 Nm. Heat the assembly to 149 +/- 3 C for 5h. Remove and all

    11、ow to cool to room temperature. The specimen shall come off the metal plates without tearing and the metal plates must show no evidence of corrosion. 3.9 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS Ford Motor Company, at its option, may conduct infrared and/or thermal analysis of material/par

    12、ts supplied to this specification. The IR spectra and thermogram 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 thermogram that correspond to the reference standard whe

    13、n tested under the same conditions. 3.10 SUPPLIERS RESPONSIBILITY 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 change in the properties, composition, construction, color, process

    14、ing or labeling of the material originally approved under this specification, whether or not such changes affect the materials ability to meet the specification requirements, the Supplier shall notify Purchasing, Toxicology and the affected Materials Engineering activity of the proposed changes and

    15、obtain the written approval of the Materials Engineering activity. Test data, test samples and a new code identification are to be submitted with the request. Substance restrictions imposed by law, regulations or Ford, apply to the materials addressed by this document. The restrictions are defined i

    16、n Engineering Material Specification WSS-M99P9999-A1, unless a different suffix (e.g., A2 or A3) is specified on the engineering document for the application. ENGINEERING MATERIAL SPECIFICATION ESE-M8G182-A Page 4 of 4 4. APPROVAL OF MATERIALS: Materials defined by this specification must have prior

    17、 approval by the responsible Materials Engineering activity. Suppliers desiring approval of their materials shall first obtain an expression of interest from the affected Purchasing, Design and Materials Engineering activity. Upon request, the Supplier shall submit to the affected Materials Engineering activity its own laboratory report to the specification (test results, not nominal values), the material designation and code number, and test specimens for Ford evaluation. Upon approval, the material will be added to the Engineering Material Approved Source List.


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