FORD WSH-M96D25-A2-2000 HOSE AIR CONDITIONING REFRIGERANT (NYLON BARRIER) RESISTANT MEDIUM PRESSURE《中等压力的耐空调制冷剂(尼龙栅栏)的软管[替代 FORD ESA-M2D18-A FORD WSH-M96D25-A]》.pdf
《FORD WSH-M96D25-A2-2000 HOSE AIR CONDITIONING REFRIGERANT (NYLON BARRIER) RESISTANT MEDIUM PRESSURE《中等压力的耐空调制冷剂(尼龙栅栏)的软管[替代 FORD ESA-M2D18-A FORD WSH-M96D25-A]》.pdf》由会员分享,可在线阅读,更多相关《FORD WSH-M96D25-A2-2000 HOSE AIR CONDITIONING REFRIGERANT (NYLON BARRIER) RESISTANT MEDIUM PRESSURE《中等压力的耐空调制冷剂(尼龙栅栏)的软管[替代 FORD ESA-M2D18-A FORD WSH-M96D25-A]》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 ENG INEERING MATERIAL SP ECIFICATION Material Name Specification Number Date Action Revisions 2000 04 25 Revised Revised para 3.5.4 L. Rumao 1998 04 23 Revised Revised para 2 N. Kurtycz 1991 07 02 CE00E10109215009 Released C. C. Gray Page 1 of 10 HOSE, AIR CONDITIONING REFRIGERANT WSH - M96D25 - A2
2、 (NYLON BARRIER) RESISTANT, MEDIUM PRESSURE 1. SCOPE The materials defined by this specification is a polychloroprene (Neoprene) rubber/nylon/elastomeric layer (nitrile, neoprene), high tensile polyest er reinforcement, butyl covered medium pressure refrigerant hose. 2. APPLICATION This specificatio
3、n was originally released for hoses designed for use with refrigerant R -134a and refrigerant oils that must be serviceable over an ambient temperature range of - 40 C to 125 C, and that must exhibit good long term transport/minimal fluid change properties at an operating temperature of - 40 C to 12
4、5 C and a maximum operating pressure of 3.4 MPa. 3. REQUIREMENTS 3.1 QUALITY SYSTEM REQUIREMENTS Materia l suppliers and part producers must conform to Quality System Requirements, QS - 9000. Material specification requirements are to be used for initial qualification of materials. A Control Plan fo
5、r ongoing production verification is required. This plan must be reviewed and approved by the relevant Ford Materials activity and/or Ford Supplier Technical Assistance (STA) prior to production parts submission. Appropriate statistical tools must be used to analyze process/product data and assure c
6、onsistent proce ssing of the materials. Part producers using this material in their products, must use Ford approved materials and must conform to a process control plan which has been approved by STA and/or the relevant Materials Activity. ENGINEERING MATERIAL SPECIFICATION WSH - M 96D25 - A2 Page
7、2 of 10 3.2 INFRARED SPECTROPHOTOMETRY AND/OR THERMAL ANALYSIS Ford Motor Company, at its option, may conduct infrared and/or thermal analysis of material/parts supplied to this specification. The IR spectra and thermograms established for initial approval shall constitute the reference st andard an
8、d shall be kept on file at the designated material laboratory. All samples shall produce IR spectra and thermograms that correspond to the reference standard when tested under the same conditions. 3.3 CONDITIONING AND TEST CONDITIONS All test values indicated herein are based on material conditioned
9、 in a controlled atmosphere of 23 +/ - 2 C and 50 +/ - 5 % relative humidity for not less than 24 h prior to testing and tested under the same conditions unless otherwise specified. 3.4 CONSTRUCTION The hose shall consist of a seamless smooth bore inner tube of a layered polychloroprene rubber/nylon
10、/elastomeric layer (nitrile, neoprene), reinforced with a high tensile ply or plies of polyester fabric bonded to the inner tube, and a butyl rubber weather resistant outer cover. The outer cover shall be perforated (pin pricked). 3.5 MOLDED TEST SPECIMEN/TEST SLABS 3.5.1 Preparation of Test Specime
11、ns - Nylon Core Unless otherwise specified all tests shall be carried out on extrusion molded specimens. The specimens shall be prepared according to ASTM D 1879. The test specimens have the following dimensions: 150 x 12.7 mm x 3.2 +/0 0.2 mm (tensile bar) and 120 x 12.7 x 3.2 +/ - 0.2 mm (flex bar
12、). No annealing allowed. 3.5.2 Preparation of Test Specimens - Butyl and Nitrile Rubber Whenever possible, all test specimens shall be die - cut from the finished parts. When not feasible, specimens cut from molded test slabs manufactured from the same material and with equivalent cure to molde d pa
13、rts are recommended. The test slabs shall have the following dimensions: 150 x 150 mm, min x 2.0 +/ - 0.2 mm. ENGINEERING MATERIAL SPECIFICATION WSH - M 96D25 - A2 Page 3 of 10 Nylon Core Polychloroprene Butyl Barrier Inner Core Cover 3.5.3 Density, g/cm 3 1.09 - 1.19 1.40 - 1.55 1.05 - 1.30 (ISO 11
14、83, Method A/ ASTM D 297) 3.5.4 Hardness, 80 - 90 60 - 70 Durometer A (ISO 868/ASTM D 2240, Instantaneous plied - up specimen. Hand held durometers shall not be used) 3.5.5 Tensile Strength, 17.2 9.0 6.2 MPa, min (ISO 37/ASTM D 412, Die C) Nylon Core Polychloroprene Butyl Barrier Inner Core Cover 3.
15、5.6 Elongation, % 200 150 125 (ISO 37/ASTM D 412, Die C) 3.5.7 Melt Temperature, 200 N/A N/A C, min (ASTM D 789) 3.5.8 Flexural Modulus, 517 N/A N/A MPa, max (ASTM D 790, Method I, Procedure A) 3.5.9 Moisture Content, 0.3 N/A N/A %, max 3.5.10 Ozone Resistance, - - Rating 0 max (ASTM D 1171, Method
16、A, 70 h at 50 pphm) 3.6 DIMENSIONS The hose shall conform to the dimensions and tolerances specified in Table 1. Measurement shall be made in accordance with ASTM D 380. ENGINEERING MATERIAL SPECIFICATION WSH - M 96D25 - A2 Page 4 of 10 TABLE 1 BARRIER HOSE MATERIAL _ Hose Inside Outside Concentrici
17、ty Burst Operating Bend Size Diameter Diameter Tir min Pressure, Radius, min mm mm mm mm MPa max, MPa mm min max min max _ _ 8.0 7.84 8.61 14.22 15.24 .76 17.2 3.4 38 10.0 10.16 11.17 16.76 17.78 .76 17.2 3.4 50.8 13.0 12.44 13.46 18.92 19.94 .76 17.2 3.4 63.5 16.0 15.62 16.63 23.11 24.13 .76 17.2 3
18、.4 90 19.0 18.92 19.93 26.92 27.94 .76 12.1 2.4 152.4 _ Acceptable hose must meet the following min performance requirements. Tests shall be conducted in accordance with ASTM D 1680 unless otherwise specified. 3.7 AEROSTATIC LEAK TEST There shall be no evidence of leakage (bubbles) through the hose
19、or at the couplings after a 30 minute hold period. Test Method: Pressurize the hose assembly at the test pressure with dry air for 30 minutes to permit purging of any entrapped gasses. The hose assembly may be submerged during this time. Disperse any bubbles that remain on the sur face of the hose,
20、couplings, or tubing. 3.7.1 Hose I.D. Test Pressure For 8 mm, 10 mm, 13 mm 3.4 MPa For 16 mm, 19 mm 2.4 MPa 3.8 CLEANLINESS (ASTM D 1680/SAE J51, Method 4.14.1) The hose shall meet the following requirements. The test fluid shall be collected in a clean beaker and poured through a 60 mesh screen and
21、 into the filter holder assembly. a) There shall be no evidence of water in the test fluid. b) There shall be no foreign material collected on a 60 mesh screen. c) The total weight of all contaminants shall not exceed 194 mg/m 2 of internal surface. d) No particle size shall be greater than .25 mm l
22、ineal dimension of any non - friable material. ENGINEERING MATERIAL SPECIFICATION WSH - M 96D25 - A2 Page 5 of 10 3.9 EXTRACTABLES, max 500 mg/cm 2 (SAE J51, Procedure 4.10) The extractables from the inside of the hose surface, and all extractables shall be oily or soft and greasy in nature and not
23、harmful to the refrigerant system. 3.10 HEAT AGING RESISTANCE After heat aging for 240 h at 125 +/ - 2 C the hose shall not show any evidence of charring, cracking, leaking or disintegration. Capped hose assemblies may be charged with ESA - M17B2 - A or WSH -M17B19 - B refrigerant, or nitrogen, befo
24、re being subjected to heat age. Aerostatic leak test per para 3.7 and check inner tube visually for fracture after leak test. 3.11 WEIGHT LOSS, max 0.5 % (After 8 h at 70 +/ - 2 C) 3.12 R - 12 OR R - 134a PERMEATION Coupled hose assemblies must be tested with both R - 12 and R - 134a refrigerants an
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