FORD ESE-M2D364-A-2009 SILICONE RUBBER HIGH ELONGATION - LONG LIFE GASKET TO BE USED WITH FORD WSS-M99P1111-A 《长寿命垫片用高伸长率硅橡胶 与标准FORD WSS-M99P1111-A一起使用 [使用 FORD ESE-M2D236-A FO.pdf

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1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2009 08 26 N-STATUS Replaced by ESE-M2D236-A C. Mracna, NA 2004 09 13 Revised Para 3.0 inserted; para 3.1, 3.2, 3.6 & 4 deleted 1986 07 16 Released E.205 CE3Q-RD836100 Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, L

2、LC Page 1 of 3 SILICONE RUBBER, HIGH ELONGATION - ESE-M2D364-A LONG LIFE GASKET SILICONE RUBBER, HIGH ELONGATION - ESE-M2D364-A2 POST CURED, LOW VOLATILE - LONG LIFE GASKET SILICONE RUBBER, HIGH ELONGATION - ESE-M2D364-A3 LOW VOLATILE - LONG LIFE GASKET NOT TO BE USED FOR NEW DESIGN 1. SCOPE The mat

3、erial defined by these specifications is a low modulus, high elongation silicone rubber with excellent tear resistance and compression set, suitable for long-term, high temperature service conditions. 2. APPLICATION ESE-M2D364-A This specification was released originally for silicone material used a

4、s the best in class gasket for rocker arm cover and oil pan. ESE-M2D364-A2 This specification was released originally for post cured, low volatile silicone material used as the best in class gasket for rocker arm cover and oil pan. The post cured, low volatile silicone material must be used if conta

5、mination of emission components with silicone or silica is of concern. ESE-M2D364-A3 This specification was released originally for low volatile silicone material used as the best in class gasket for rocker arm cover and oil pan. Low volatile silicone material must be used if contamination of emissi

6、on components with silicone or silica is of concern. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.3 CONSTRUCTION The gasket shall consist of sil

7、icone rubber with metal compression limiters molded in place as designated by the part print. 3.4 METAL COMPRESSION LIMITERS Sintered Copper Steel per MPIF FC0208-50 except delete Yield Strength Req. 3.4.1 Density 6.6 - 6.8 g/cm3ENGINEERING MATERIAL SPECIFICATIONESE-M2D364-A/A2/A3Printed copies are

8、uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 2 of 3 3.5 MATERIAL TESTING 3.5.1 Preparation of Test Specimens Test specimens can be taken from either slabs or molded parts. To insure a proper cutting of specimens, backup all slabs/parts with cardboard or a rubber slab. The ASTM sla

9、bs must be cured for 10 minutes at 177 C. Part specimens must be cut as follows: . Tensile Strength per ASTM D 412, die C, full thickness. If the length between the compression limiters is not long enough to accommodate a die C, use a die exactly one-half the dimensions of the die C. . Tear Strength

10、 per ASTM D 624, full thickness. . Volume Change -25 mm long x part width x part thickness. . Compression Set -25 mm long x part width x single thickness minus any skirt. Do not buff any sample including those with a bead, except for compression set. 3.5.2 Original Properties Hardness, Durometer A 4

11、0 - 50 (ASTM D 2240, instantaneous, plied-up specimens) Tensile Strength, min 6.5 MPa (ASTM D 412, Die C) Elongation, min (ASTM D 412, Die C) ESE-M2D364-A & A2 750% ESE-M2D364-A3 650% Modulus at 100% Elongation 700 - 1290 kPa (ASTM D 412, Die C) Tear Strength, min 27 kN/m (ASTM D 624, Die B) Compres

12、sion Set, max 35% (ASTM D 395, Method B, 22 h, 175 +/- 2 C) ENGINEERING MATERIAL SPECIFICATIONESE-M2D364-A/A2/A3Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 3 of 3 3.5.3 Heat Aged (ASTM D 573, 168 h at 175 +/- 2 C) Hardness Change, max +15 (62 Durometer A, max)

13、Tensile Strength Change, max -30% Elongation Change, max -32% 3.5.4 Immersion in No. 1 Oil (ASTM D 471, 168 h, at 150 +/- 2 C) Volume Change 0 to +10% 3.5.5 Immersion in No. 2 Oil (ASTM D 471, 168 h at 150 +/- 2 C) Hardness Change, max -12 Tensile Strength Change, max -40% Elongation Change, max -38

14、% Volume Change, max 0 to +15% 3.5.6 Low Temperature Resistance No cracks After heat aging (para 3.5.3), place specimens in the cold box at -40 +/- 2 C for 24 h. Bend 180 over 13 mm diameter mandrel conditioned in the cold box. 3.5.7 Silicone Volatile, max 0.65% FLTM AV 102-01, as received, (ESE-M2D364-A2 and A3 only)

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