FORD WSS-M96D33-A10-2017 HOSE REINFORCED RUBBER FUEL RESISTANT CONDUCTIVE LOW PERMEATING NBR OR HNBR TUBE THV NBR REINFORCEMENT CSM COVER TO BE USED WITH FORD WSS-M99P1111-A .pdf
《FORD WSS-M96D33-A10-2017 HOSE REINFORCED RUBBER FUEL RESISTANT CONDUCTIVE LOW PERMEATING NBR OR HNBR TUBE THV NBR REINFORCEMENT CSM COVER TO BE USED WITH FORD WSS-M99P1111-A .pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M96D33-A10-2017 HOSE REINFORCED RUBBER FUEL RESISTANT CONDUCTIVE LOW PERMEATING NBR OR HNBR TUBE THV NBR REINFORCEMENT CSM COVER TO BE USED WITH FORD WSS-M99P1111-A .pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 01 2017 02 27 Revised See summary of revisions A. Reaume/G. Kowalski, NA 1999 06 25 Activated C. Thomas, NA Controlled document at www.MATS Copyright 2017, Ford ; Global Technologies, LLC Page 1 of 5 HOSE, REINFORCED RUBBER, FUEL RESISTA
2、NT, WSS-M96D33-A10 CONDUCTIVE, LOW PERMEATING, NBR OR HNBR TUBE/THV/NBR/REINFORCEMENT/CSM COVER 1. SCOPE This specification defines a conductive, non-reinforce multi-layer composite hose with enhanced low permeation and good resistance to fuel blends containing methanol. The hose shall consist of an
3、 NBR or HNBR tube, a THV barrier, an NBR layer, reinforcement layer, and a CSM cover. Reinforcement contains one or more plies of braided, knit, or spiral woven para-aramid fabric. 2. APPLICATION This specification was released originally for liquid carrying fuel line hoses. Vapor management applica
4、tions may be non-conductive but fill and fill vent applications must be conductive. 3. REQUIREMENTS 3.1 APPROVED SOURCES This specification requires the use of approved sources. Only the sources identified on the Ford Approved Source List (ASL) can be used when this specification is listed on the dr
5、awing, CAD file, or other documents. The list of approved sources is located within Ford at or available externally through a Ford Materials Engineer. 3.2 CONDITIONING AND TEST CONDITIONS All test values are based on material conditioned for not less than 24 h prior to testing in a controlled envir
6、onment of 23 +/- 2 C and 50 +/- 5% relative humidity. Testing of the material should occur in the conditioning environment or soon after removal. 3.3 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS IR spectra and thermograms from initial material approval shall constitute the reference standard a
7、nd shall be kept on file at the designated material laboratory. The material supplier shall ensure that all future material supplied to the specification shall produce IR spectra and thermograms that correspond to the reference standard when tested under the same conditions. 3.4 INITIAL QUALIFICATIO
8、N Suppliers seeking approval to this specification must meet the initial qualification processes that include evaluating materials and constructions according to the applicable Fuel System Design Specification (SDS) and individual Design Verification Methods (DVM). 3.5 LIMITATIONS Vapor lines can be
9、 either conductive or non-conductive. Liquid caring lines must be conductive. This material does not contain UV stabilizers, long term exposure to direct sunlight will cause cracking. All components exposed to direct sunlight must contain UV stabilizers. ENGINEERING MATERIAL SPECIFICATION WSS-M96D33
10、-A10 Copyright 2017, Ford Global Technologies, LLC Page 2 of 5 3.6 HOSE CONSTRUCTION The hose shall consist of a smooth bore, electrically conductive inner layer of NBR or HNBR tube, a THV barrier layer, an NBR layer, reinforce with a bonded single ply of braided, knit, or spiral woven para-aramid a
11、nd a CSM cover. 3.7 ADDITIONAL REQUIREMENTS Requirements beyond those explicitly stated in this document and the material specification may be specified on the Engineering drawing, Engineering specification (ES), performance specification, System Design Specification (SDS) and/or Attribute Requireme
12、nt List (ARL). 3.8 PERFORMANCE CRITERIA Materials approved to this specification must also be approved to the fuel system polymeric materials performance standard: WSS-M98P14-A2 Complete Construction 3.8.1 Burst Pressure (ASTM D380) Hose Size, (Approximate I.D.) Below 9.53 mm 1.0 MPa min 9.53 15.87
13、mm 0.68 MPa min 15.87 mm and larger 0.34 MPa min 3.8.2 Compression Set 75 %, max (FLTM BP 108-6, 70 h at 100 C, 25% compression) 3.8.3 Electrical Resistance Surface resistivity (SAE J2260) less than or equal to 1 x 106 Ohms 3.8.4 Vacuum Collapse (SAE J30R11) Test Method: For straight hose, a 1 m len
14、gth of hose or the assembly shall be held in a straight line. On preformed parts, the vacuum collapse test shall be performed on the finished part. No diameter shall decrease by more than 20 % during the application of vacuum for a minimum of 15 seconds and not more than 60 seconds. Hose sizes as li
15、sted below shall be subjected to the corresponding vacuum pressure: ENGINEERING MATERIAL SPECIFICATION WSS-M96D33-A10 Copyright 2017, Ford Global Technologies, LLC Page 3 of 5 Complete Construction Nominal hose ID 19.0 mm 10 kPa 20 % max 3.8.5 Ovality 75 % min (Not applicable to hoses with I.D. grea
16、ter than 16.28 mm, unless otherwise specified on engineering drawing) Ovality = I.D. minimum x 100 I.D. maximum 3.8.6 Resistance to Kinking Ball must pass freely (SAE J30, para 6.20) 3.8.7 Flammability Resistance, Cover Stock Only Self- extinguishing (ISO 3795) within 60 seconds 3.8.8 Hose Identific
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