FORD WSS-M96D33-A8-2006 HOSE REINFORCED RUBBER REFORMULATED FUEL RESISTANT CONDUCTIVE LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐新配方燃料的增强型橡胶软管 与标准FORD WSS-M99P.pdf
《FORD WSS-M96D33-A8-2006 HOSE REINFORCED RUBBER REFORMULATED FUEL RESISTANT CONDUCTIVE LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐新配方燃料的增强型橡胶软管 与标准FORD WSS-M99P.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M96D33-A8-2006 HOSE REINFORCED RUBBER REFORMULATED FUEL RESISTANT CONDUCTIVE LOW PERMEATING TO BE USED WITH FORD WSS-M99P1111-A 《低渗透性、导电、耐新配方燃料的增强型橡胶软管 与标准FORD WSS-M99P.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, 3.26 Fixed numbering in 3.12 1998 04 03 Revised Revised 3.8 3.12 and 3.20 J. Spencer 1997 08 18 Activated J. Spencer Printed copies are uncontrolled Copyright 2006, Ford Global Technolog
2、ies, LLC Page 1 of 6 HOSE, REINFORCED RUBBER, REFORMULATED FUEL WSS-M96D33-A8 RESISTANT CONDUCTIVE, LOW PERMEATING 1. SCOPE This specification defines a reinforced barrier layer hose with good resistance to reformulated fuel blends and low permeation. 2. APPLICATION This specification was released o
3、riginally for fuel tank filler and vent hoses. The hose continuous use temperature should not exceed 82 C. 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-M99P111
4、1-A). 3.4 HOSE CONSTRUCTION The hose shall consist of an inner tube of nitrile rubber (NBR), a middle layer of tetrafluoroethylene hexafluoropropylene vinylidene fluoride (THV), acting as a fuel barrier, a second layer of NBR, one ply of braided, knit, or spiral woven fabric, and a nitrile/ polyviny
5、l chloride (NBR/PVC) cover. 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 ASTM D 3183 (cutting knife procedure preferred). Greater variation in test values can be anticipated when evaluating mat
6、erials that are thinner than recommended by an applicable Industry Standard/Test Method. 3.6 ORIGINAL PROPERTIES Tube Barrier Cover 3.6.1 Hardness, International 63 75 85 95 60 - 70 (ISO 48/ASTM D 1415, micro) 3.6.2 Hardness, Durometer D N/A 51 61 N/A (ISO 868/ASTM D 2240) 3.6.3 Hardness, Durometer
7、A 63 75 N/A 60 - 70 (ISO 868/ASTM D 2240) 3.6.4 Tensile Strength, MPa, min 6.9 12.0 5.5 (ISO 37/ASTM D 412, Die C) 3.6.5 Elongation at Break, %, min 200 300 200 (ISO 37/ASTM D 412, Die C) ENGINEERING MATERIAL SPECIFICATION WSS-M96D33-A8 Printed copies are uncontrolled Copyright 2006, Ford Global Tec
8、hnologies, LLC Page 2 of 6 Tube Barrier Cover 3.6.6 Compression Set 90 N/A 45 (ISO 815/ASTM D 395, Method B, except 25% compression, plied- up specimens, 22 h at 82 +/- 2 C) 3.7 HEAT AGED (ISO 188/ASTM D 573, 150 +/- 50 air changes/h, 1000 h at 82 +/- 2 C) 3.7.1 Tensile Strength Change, %, -50 N/R -
9、50 max 3.7.2 Elongation Change, %, max -50 N/R -50 3.8 IMMERSION IN ASTM FUEL C, Cover Only (ISO 1817/ASTM D 471, 24 h at 40 +/- 2 C) 3.8.1 Hardness Change, max -30 3.8.2 Tensile Strength Change, max -45 3.8.3 Elongation Change, %, max -50 3.8.4 Volume Change, %, max 75 3.8.4.1 Dry Out (24 h at 70 +
10、/- 2 C) (Use specimens from para 3.8) Hardness Change, max 30 Volume Change, max -30 3.9 IMMERSION IN ASTM FUEL C, Tube Only (ISO 1817/ASTM D 471, 360 h at 40 +/- 2 C) 3.9.1 Hardness Change, max -25 3.9.2 Tensile Strength Change, max -30 3.9.3 Elongation Change, %, max -30 3.9.4 Volume Change, %, ma
11、x 40 3.9.4.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.9) Hardness Change, max 20 Volume Change, max -20 3.10 IMMERSION IN 85% FUEL C +15% METHANOL, Cover Only (ISO 1817/ASTM D 471, 24 h at 40 +/- 2 C) 3.10.1 Hardness Change, max -30 3.10.2 Tensile Strength Change, max -55 ENGINEERING
12、MATERIAL SPECIFICATION WSS-M96D33-A8 Printed copies are uncontrolled Copyright 2006, Ford Global Technologies, LLC Page 3 of 6 3.10.3 Elongation Change, %, max -45 3.10.4 Volume Change, %, max 85 3.10.4.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.10) Hardness Change, max 30 Volume Chan
13、ge, max -35 3.11 IMMERSION IN 85% FUEL C +15% METHANOL, Tube Only (ISO 1817/ASTM D 471, 360 h at 40 +/- 2 C) 3.11.1 Hardness Change, max 40 3.11.2 Tensile Strength Change, max -40 3.11.3 Elongation Change, %, max -35 3.11.4 Volume Change, %, max 75 3.11.4.1 Dry Out (24 h at 70 +/- 2 C) (Use specimen
14、s from para 3.11) Hardness Change, max 20 Volume Change, max -20 3.12 IMMERSION IN 85 % FUEL C +15% MTBE, Tube Only (ISO 1817/ASTM D 471, 360 h at 40 +/- 2 C) 3.12.1 Hardness Change, max 10 3.12.2 Tensile Strength Change, max -30 3.12.3 Elongation Change, %, max -30 3.12.4 Volume Change, %, max 55 3
15、.12.4.1 Dry Out (24 h at 70 +/- 2 C) (Use specimens from para 3.12) Hardness Change, max 20 Volume Change, max -20 3.13 OZONE RESISTANCE, Cover Rating 0 (ASTM D 1149, 50 pphm ozone, 168 h, 38 +/- 2 C) 3.14 BURST PRESSURE, min (ASTM D 380) Hose Size, mm Burst Pressure (Approximate ID) MPa ENGINEERING
16、 MATERIAL SPECIFICATION WSS-M96D33-A8 Printed copies are uncontrolled Copyright 2006, Ford Global Technologies, LLC Page 4 of 6 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 mandr
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