FORD WSS-M96D33-A7-2006 HOSE NON-REINFORCED RUBBER FUEL ALCOHOL RESISTANT LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐燃料 乙醇的非增强型橡胶软管 与标准FORD WSS-M99P1111-A一起使用 .pdf
《FORD WSS-M96D33-A7-2006 HOSE NON-REINFORCED RUBBER FUEL ALCOHOL RESISTANT LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐燃料 乙醇的非增强型橡胶软管 与标准FORD WSS-M99P1111-A一起使用 .pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M96D33-A7-2006 HOSE NON-REINFORCED RUBBER FUEL ALCOHOL RESISTANT LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐燃料 乙醇的非增强型橡胶软管 与标准FORD WSS-M99P1111-A一起使用 .pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions 2006 09 13 Revised Inserted 3.0; Deleted 3.1, 3.2, 3.3, 3.29, 4; Corrected numbering 3 2000 07 20 Editorial No Technical Change APC 1996 12 02 Activated J. Spencer Printed copies are uncontrolled Copyright 2006, Ford Global Technologies, LLC
2、Page 1 of 6 HOSE, NON-REINFORCED RUBBER, FUEL/ALCOHOL WSS-M96D33-A7 RESISTANT, LOW PERMEATING 1. SCOPE This specification defines a non-reinforced synthetic rubber hose for use as fuel vapor and fuel tank fill hose. The construction has a low permeation rate. 2. APPLICATION This specification was re
3、leased originally for hoses used in the vapor management system. 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). 3.4 HOSE CONSTRUCTION The hose shall
4、 consist of a smooth bore ETFE (ethylene tetrafluoro-ethylene) inner veneer, acting as a fuel barrier and an outer cover of ethylene/acrylic rubber. 3.5 PHYSICAL PROPERTIES The following tests where possible, shall be performed on finished hoses and/or test specimens cut from them in accordance with
5、 ASTM D 3183 (cutting knife procedure preferred). Greater variation in test values can be anticipated when evaluating materials that are thinner than recommended by an applicable Industry Standard/Test Method. 3.6 ORIGINAL PROPERTIES Veneer Cover 3.6.1 Hardness, International N/R 65 - 75 (ASTM D 141
6、5, micro) 3.6.2 Hardness, Durometer D 70 - 80 N/A (ASTM D 2240) 3.6.3 Hardness, Durometer A N/R 60 - 70 (ASTM D 2240) 3.6.4 Tensile Strength, MPa, min 30.0 10.0 (ASTM D 412, Die C) 3.6.5 Elongation at Break, %, min 250 200 (ASTM D 412, Die C) ENGINEERING MATERIAL SPECIFICATION WSS-M96D33-A7 Printed
7、copies are uncontrolled Copyright 2006, Ford Global Technologies, LLC Page 2 of 6 3.6.6 Modulus at 100% Elongation, 20.0 3.0 MPa, min (ASTM D 412, Die C) 3.7 HEAT AGED (ISO 188/ASTM D 573, 150 +/- 50 air changes/h, 168 h at 125 +/- 2 C) Hardness Change, max N/R +15 Tensile Strength Change, %, max N/
8、R +5 Elongation Change, %, max N/R -30 3.8 HEAT AGED (ISO 188/ASTM D 573, 150 +/- 50 air changes/h, 1000 h at 100 +/- 2 C) Hardness Change, max N/R +15 Tensile Strength Change, %, max N/R +15 Elongation Change, %, max N/R -40 3.9 IMMERSION IN ASTM FUEL C, Veneer Only (ISO 1817/ASTM D 471, 504 h at 4
9、0 +/- 2 C) Hardness Change, max N/R Tensile Strength Change, max -10 Elongation Change, %, max -10 Volume Change, %, max +5 3.9.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.7) Hardness Change, max N/R Volume Change, max +1 3.10 IMMERSION IN ASTM FUEL C, Cover Only (ISO 1817/ASTM D 471,
10、24 h at 40 +/- 2 C) Hardness Change, max -21 Tensile Strength Change, max -80 Elongation Change, %, max -78 Volume Change, %, max +132 3.10.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.7) ENGINEERING MATERIAL SPECIFICATION WSS-M96D33-A7 Printed copies are uncontrolled Copyright 2006, Fo
11、rd Global Technologies, LLC Page 3 of 6 Hardness Change, max +1 Volume Change, max -5 3.11 IMMERSION IN 75% FUEL C + 25% METHANOL, Veneer Only (ISO 1817/ASTM D 471, 360 h at 40 +/- 2 C) Hardness Change, max N/R Tensile Strength Change, max -10 Elongation Change, %, max -10 Volume Change, %, max +2 3
12、.11.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.12.4) Hardness Change, max N/R Volume Change, max +1 3.12 IMMERSION IN 75% FUEL C + 25% METHANOL, Cover Only (ISO 1817/ASTM D 471, 24 h at 40 +/- 2 C) Hardness Change, max -20 Tensile Strength Change, max -86 Elongation Change, %, max -85
13、 Volume Change, %, max +175 3.12.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.12.4) Hardness Change, max -1 Volume Change, max -6 3.13 RESISTANCE TO OXIDIZED FUEL (SOUR GAS), Veneer Only (Fuel according to FLTM AZ 105-01, PN 180) Immersion Time, at 23 +/- 2 C 168 h 500 h 1000 h Tensile
14、Strength Change, max -10 -10 -10 Elongation Change, %, max -10 -10 -10 ENGINEERING MATERIAL SPECIFICATION WSS-M96D33-A7 Printed copies are uncontrolled Copyright 2006, Ford Global Technologies, LLC Page 4 of 6 3.14 BURST PRESSURE, min (ASTM D 380) Hose Size, mm Burst Pressure (Approximate I.D.) MPA
15、Below 9.53 1.02 9.53 - 15.87 0.68 15.87 and Larger 0.34 3.15 VACUUM COLLAPSE, max 20% Test Method: The hose shall be subjected to a vacuum of 68 kPa while bent over a mandrel having a diameter of 10 times the nominal O.D. of the hose for a duration of 214 h at 100 +/- 2 C. The outside diameter shall
16、 not be less then 80% of the original. This requirement shall not apply to sizes larger than 15.87 nominal I.D. 3.16 COLD FLEXIBILITY, Hose No cracks or breaks Test Method: A 450 mm length of hose filled with ASTM Fuel C shall be aged for 70 h at 23 C. After aging, the hose shall be drained. Then, h
17、ose together with a mandrel having a diameter 10 times the nominal OD will be conditioned for 70 h at 40 C. The conditioned hose shall show no signs of cracking or disintegration when bent 180 over the mandrel. This flexing shall be accomplished within 4 s. For straight hose over 17.28 mm I.D. and a
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