GMKOREA EDS-M-8585-2011 Sealant-Pan Oil.pdf
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1、 ENGINEERING STANDARDS Material Specification LIMITED USE EDS-M-8585 Sealant-Pan, Oil Do Not Use on New Program; No Replacement. 7X8D 6d) Note: 8 E:48t G8 =97 FF7 957%L+ , FG P-P Program 72P# 957%L: 6#$ . Copyright 2011 General Motors Company All Rights Reserved June 2011 Originating Department: GM
2、Korea Engineering Standards Page 1 of 7 Version : 6 1 Scope 1.1 Material Description. Room temperature vulcanizing 1k-polysiloxane based sealer that produce oxime at curing. 1.1.1 94545194 (M-8585-A). High viscosity type for production line. 1.1.2 94545195 (M-8585-B). Low viscosity type for post-sal
3、e service. 1.2 Typical Applications. This specification specifies general requirements of oil pan sealer used for gasketing or sealing to oil pan of automobile. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. Non
4、e 2.2 GM Standards/Specifications. EDS-M-0102 EDS-T-7406 EDS-T-7408 EDS-T-7418 EDS-T-7795 EDS-T-7796 EDS-T-7902 GMW3059 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents 3 Requirements 3.1 General Properties. 1 P7 1.1 8: 8-L C2e . Polysiloxane8x :02e.8p) F# A7Y4 GI , 86
5、GI -C 1772P 38X -G%L# -4.=9P 8 . 1.1.1 94545194 (M-8585-A). 9D$ Type, 21 Line7 . 1.1.2 94545195 (M-8585-B). 949D$ Type, After Sales Service7 . 1.2 957 -88 . ., E:48t 8% = 7X8D8 Gasketing -C Sealing 7 957%L# Sealer-Oil, Pan8 8-L958 ,p2e 7 ?7 $4F7 9IF$ . 2 4) E:4 / :0 : C-H +d%P 9I8 6# F 48 07 38%P E:
6、48x 957F$ . 2.1 17 E:4 / . None 2.2 GM E:4 / . EDS-M-0102 EDS-T-7406 EDS-T-7408 EDS-T-7418 EDS-T-7795 EDS-T-7796 EDS-T-7902 GMW3059 2.3 dA E:4 / . TMC003 Material Safety Data Sheet guidance documents 3 7 1F 3.1 d., ,p2e . Table 1: General Properties / E 1: d., ,p2e Designations / 4G F+ Test Methods
7、/ 4G - Specifications / 94545194 (M-8585-A) 94545195 (M-8585-B) 3.1.1 Specific Gravity (g/ml). / /x:E (g/ml). EDS-T-7406 1.30 1.37 8 GM KOREA ENGINEERING STANDARDS EDS-M-8585 Copyright 2011 General Motors Company All Rights Reserved June 2011 Page 2 of 7 Version : 6 Designations / 4G F+ Test Methods
8、 / 4G - Specifications / 94545194 (M-8585-A) 94545195 (M-8585-B) 3.1.2 Extrusion Rate (g/sec). / B8 (g/sec). EDS-T-7796. 100 mm of taper nozzle, 3.5 mm of orifice, 621 KPa of pressure. / 100 mm B8D “: , 3.5 mm, Orifice, 621 KPa 6)Y . 20 50 300 min. / 300 81 . 3.1.3 Solids Content (wt%). / GI. (wt%).
9、 See clause 3.2.1. / 3.2.1F =l9 . 96 min. / 96 81 . 8 3.1.4 Tack Free Time (min). / := 9 48 (min). EDS-T-7795 2 30 60 min. / 60 81 . 3.1.5 Shear Strength (N/mm2). / 98$ I$ (N/mm2). EDS-T-7902-4, See clause 3.2.2. / 3.2.2F =l9 . 1.20 min. / 1.20 81 . 8 3.1.6 Tensile Strength (N/mm2). / 88 I$ (N/mm2).
10、 EDS-T-7408, See clause 3.2.3. / 3.2.3F =l9 . 1.50 min. / 1.50 81 . 8 3.1.7 Elongation at Break (%). / 48 (%). EDS-T-7408, See clause 3.2.3. / 3.2.3F =l9 . 400 min. / 400 81 . 8 3.1.8 Heat Resistance. / !7(2e . Change in tensile strength (%). / 88 I$ -G (%). EDS-T-7408, See clause 3.2.4. / 3.2.4F =l
11、9 . (-10) +30 8 Change in Elongation at Break ( ). / 48 -G ( ). 60 max. / 60 8F . - 3.1.9 Resistance to Engine Oil. / !7:7X82e . Change in tensile strength (%). / 88 I$ -G (%). EDS-T-7408, 7418, See clause 3.2.5. / 3.2.5F =l9 . 40 max. / 40 8F . - Change in Elongation at Break ( ). / 48 -G ( ). 40 m
12、ax. / 40 8F . - Change in volume (%). / .Fp -G (%). See clause 3.2.6. / 3.2.6F =l9 . 35 max. / 35 8F . - 3.1.10 Oil Resistance. / !8T2e . Change in tensile strength (%). / 88 I$ -G (%). EDS-T-7408, 7418, See clause 3.2.7. / 3.2.7F =l9 . 40 max. / 40 8F . - Change in Elongation at Break ( ). / 48 -G
13、( ). 40 max. / 40 8F . - Change in volume (%). / .Fp -G (%). See clause 3.2.6. / 3.2.6F =l9 . 35 max. / 35 8F . - 3.1.11 Durable Airtightness (ml/min). / ! d-42e (ml/min). See clause 3.2.8. / 3.2.8F =l9 . 11 max. / 11 8F . - GM KOREA ENGINEERING STANDARDS EDS-M-8585 Copyright 2011 General Motors Com
14、pany All Rights Reserved June 2011 Page 3 of 7 Version : 6 3.2 Test Methods. 3.2.1 Solid Content. 3.2.1.1 Use isopropyl alcohol to clean three aluminum cups used for measuring samples, and dry them. 3.2.1.2 Apply sealant of 3 ) 5 g to the three cups each. 3.2.1.3 Measure the weight of the sample inc
15、luding the cups, rounding off it to two decimal places. 3.2.1.4 Place the sample at 23 E 5 K, 60% RH, and cure it for two weeks. 3.2.1.5 Measure the weight. 3.2.1.6 Calculate the solid content according to EDS-T-7902-20. 3.2.2 Shear Strength. 3.2.2.1 Pretreatment, size and test method for the sample
16、 shall conform to EDS-T-7902-4. 3.2.2.2 Apply adhesive 25 cm 12.7 cm in area, 1 mm in thickness and cure it per clause 3.2.1.4. 3.2.2.3 During the test, tensile speed shall be 50 mm/min. 3.2.3 Tensile Strength / Elongation. 3.2.3.1 Immerse a release paper in water for 10 minutes and wipe the surface
17、. 3.2.3.2 Place the paper on the sheet and apply adhesive, without foaming. 3.2.3.3 Cover it with foil paper, place sheet over it, and use UTM to press it to 3 ) 3.5 mm of thickness. 3.2.3.4 Cure it for a week at 23 E 5 K, 60% of RH, remove the foil paper, and Cure it again for a week. When curing a
18、 big sample, cut it to a proper size. 3.2.3.5 Make the sample into a dumbbell-shaped one per EDS-T-7408-S1. 3.2.3.6 With 50 mm/min of tensile speed, measure tensile strength/elongation. 3.2.4 Heat Resistance. Place the sample in clause 3.2.3 at 175 E for 168 hrs, measure tensile strength and elongat
19、ion per clause 3.2.3, and calculate the change ratio. 3.2 4G - . 3.2.1 GI. ?U9I - . 3.2.1.1 4* ?U9IF 6*-,# 9E4 2lP* 82F8)Fx 67) !8 2l=F .H 94A$ . 3.2.1.2 2lP8 6*-,# 9E47 55 Sealant* 6 3 5 g9I$ $E F$ . 3.2.1.3 6*-,# 9E48 ,h* E FF 4*8 ,h* ?U9IF7 23L9D %;, 8*: d)F$ . 3.2.1.4 23 E 5K u 60%R.H 8 972P 4*
20、2:08 -?F7 G4A$ . 3.2.1.5 4* !6 ,h* ?U9IF$ . 3.2.1.6 EDS-T-7902-208 47 8F7 GI.8x 1F$ . 3.2.2 98$I$ 4G - . 3.2.2.1 4D8 98=* , A d7t 4G -8t EDS-T-7902-47 :4F$ . 3.2.2.2 9E=9P8 $E +958x 25 cm 12.7 cm) F , $E % * 1 mm) F7 3.2.1.4 8 98p) G4A$ . 3.2.2.3 4G 4 88 2$# 50 mm/min8p) F$ . 3.2.3 88I$ / 48 4G - .
21、3.2.3.1 8GI:* ,p27 10 . % 6| ?954A G E+8 ,pd* +% $6x!$ . 3.2.3.2 $8 IDD 887 8GI:* , dE 4 2d: 6$) 94 F7 9E=9P* $E F$ . 3.2.3.3 , 887 $4 8GI:* $ , 887 $8 IDD8x 68t G 33.5 mm % * 8T:F$) UTM8x 87F7 6=4A$ . 3.2.3.4 23 E 5K 60%R.H 972P 1:088x G4A % 8GI:* &6! $4 1 :088x G4A$ . 8& 4D8 +958 A 7 95$-F A d) 8(
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