FORD WSD-M96D32-A-2010 HOSE NITRILE (NBR) OR PVC NITRILE (PVC NBR) RUBBER EXTERNALLY REINFORCED OXYGENATED FUEL RESISTANT TO BE USED WITH FORD WSS-M99P1111-A 《耐含氧燃料的外部增强型聚氯乙烯(PVC.pdf
《FORD WSD-M96D32-A-2010 HOSE NITRILE (NBR) OR PVC NITRILE (PVC NBR) RUBBER EXTERNALLY REINFORCED OXYGENATED FUEL RESISTANT TO BE USED WITH FORD WSS-M99P1111-A 《耐含氧燃料的外部增强型聚氯乙烯(PVC.pdf》由会员分享,可在线阅读,更多相关《FORD WSD-M96D32-A-2010 HOSE NITRILE (NBR) OR PVC NITRILE (PVC NBR) RUBBER EXTERNALLY REINFORCED OXYGENATED FUEL RESISTANT TO BE USED WITH FORD WSS-M99P1111-A 《耐含氧燃料的外部增强型聚氯乙烯(PVC.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2010 06 24 N-STATUS No replacement named C. Mracna, NA 2006 08 30 Revised Inserted 3.0; Deleted 3.1, 3.2, 3.3, 4.10 & 5 1997 12 01 Activated B. Hennessey Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 1 of 7
2、 HOSE, NITRILE (NBR) OR PVC/NITRILE (PVC/NBR) WSD-M96D32-A RUBBER, EXTERNALLY REINFORCED OXYGENATED FUEL RESISTANT NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by this specification is an externally fabric braid reinforced nitrile or PVC/nitrile rubber hose. 2. APPLICATION This specif
3、ication was released originally for material used as hose for fuel lines with clipped or unclipped connections, particularly in territories where methanol containing fuels may be encountered. The resistance to oxidized (“Sour Fuels“) is poor compared with fluoro-elastomer-veneered hoses but is suita
4、ble for use where exposure to oxidized fuels will not be significant. The hose is also suitable for use where it will be exposed to fuel vapor only. However, the hose is not as resistant to fuel permeability as a hose veneered internally with fluoro-elastomer. If a non-copper staining grade is requi
5、red, para 3.13 should be specified on the engineering drawing. However, it should be noted that this property is at the expense of poor compression set. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requ
6、irements For Production Materials (WSS-M99P1111-A). 3.4 CONSTRUCTION The hose consists of a smooth bore tube of nitrile (NBR) or PVC/ nitrile (PVC/NBR) rubber material, reinforced externally with one or more plies of a suitable braided textile fabric. The reinforcement contains colored tracer thread
7、s for identification of the supplier as agreed between Ford Motor Company and the supplier. The cut ends of the hose shall be bonded or otherwise treated to reduce fraying of the reinforcement. 3.5 MATERIAL TESTING 3.5.1 Preparation of Test Specimens Whenever possible, all test specimens shall be di
8、e-cut from the finished parts and buffed or slit to the appropriate thickness. When not feasible, specimens cut from molded test sheets manufactured from the same material and with equivalent state of cure to molded parts are recommended. The test sheets shall have the following dimensions: 150 x 15
9、0 mm, min x 2.0 +/- 0.2 mm ENGINEERING MATERIAL SPECIFICATIONWSD-M96D32-A Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 2 of 7 3.6 ORIGINAL PROPERTIES 3.6.1 Hardness, International 60 - 75 IRHD (ASTM D145) 3.6.2 Tensile Strength, min 9 MPa (ISO 37/ASTM D 412, Die
10、 C) 3.6.3 Elongation at Break, min 400% (Test method according to para 3.6.3) 3.6.4 Modulus at 100% Elongation 2.5 - 4.0 MPa (Test method according to para 3.6.3) 3.6.5 Ozone Resistance, max Rating 0 (FLTM BP 101-01, Procedure A) 3.6.6 Compression Set, max 45% (ISO 815/ASTM D 395, Method B, except 2
11、5% compression, plied-up specimens, 60% (If para 24 h at 100 +/- 2 C) 3.13 specified) 3.7 HEAT AGED (ISO 188/ASTM D 573, 150 +/- 50 air changes/h, 168 h at 100 +/- 2 C) 3.7.1 Hardness Change, max +20 (90 IRHD max) 3.7.2 Tensile Strength Change, max -40% 3.7.3 Elongation at Break Change, max -60% 3.7
12、.4 Visual Evaluation No surface tackiness or cracks when folded flat against itself. 3.8 HEAT AGED (ISO 188/ASTM D 573, 150 +/- 50 air changes/h, 1000 h at 80 +/- 2 C) 3.8.1 Hardness Change, max +15 3.8.2 Tensile Strength Change, max -30% 3.8.3 Elongation at Break Change, max -50% 3.8.4 Visual Evalu
13、ation No surface tackiness or cracks when folded flat against itself. ENGINEERING MATERIAL SPECIFICATIONWSD-M96D32-A Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 3 of 7 3.9 IMMERSION IN OIL IRM 903 (ISO 1817/ASTM D 471, 70 h at 100 +/- 2 C) 3.9.1 Hardness Change
14、, max -20 3.9.2 Tensile Strength Change, max -30% 3.9.3 Elongation at Break Change, max -35% 3.9.4 Volume Change, max +10% 3.9.5 Visual Evaluation No surface tackiness or cracks when folded flat against itself. 3.10 IMMERSION IN FUEL C (ISO 1817/ASTM D 471, 70 h at 23 +/- 2 C) 3.10.1 Hardness Change
15、, max -25 3.10.2 Tensile Strength Change, max -50% 3.10.3 Elongation at Break Change, max -40% 3.10.4 Volume Change, max +40% 3.10.5 Visual Evaluation No surface tackiness or cracks when folded flat against itself) 3.11 IMMERSION IN 85% FUEL C +15% METHANOL (ISO 1817/ASTM D 471, 70 h at 23 +/- 2 C)
16、3.11.1 Hardness Change, max -30 3.11.2 Tensile Strength Change, max -60% 3.11.3 Elongation at Break Change, max -50% 3.11.4 Volume Change, max +50% 3.11.5 Visual Evaluation No surface tackiness or cracks when folded flat against itself) 3.12 IMMERSION IN 85% METHANOL +15% FUEL C (ISO 1817/ASTM D 471
17、, 70 h at 23 +/- 2 C) 3.12.1 Hardness Change, max -25 3.12.2 Tensile Strength Change, max -50% 3.12.3 Elongation at Break Change, max -30% ENGINEERING MATERIAL SPECIFICATIONWSD-M96D32-A Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 4 of 7 3.12.4 Volume Change, ma
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