ASD-STAN PREN 2347-1996 Aerospace Series Flexible Hose Assemblies in Polytetrafluoroethylene (PTFE) - Type 4 - Technical Specification (Edition P 1 Corrigendum 2 07 02 1998)《航空航天系列.pdf
《ASD-STAN PREN 2347-1996 Aerospace Series Flexible Hose Assemblies in Polytetrafluoroethylene (PTFE) - Type 4 - Technical Specification (Edition P 1 Corrigendum 2 07 02 1998)《航空航天系列.pdf》由会员分享,可在线阅读,更多相关《ASD-STAN PREN 2347-1996 Aerospace Series Flexible Hose Assemblies in Polytetrafluoroethylene (PTFE) - Type 4 - Technical Specification (Edition P 1 Corrigendum 2 07 02 1998)《航空航天系列.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、 . .I . -. Vent Innai I I I -+ I (if any) nibs in pdytetrafluoroethylsns Non-metallic container Lower electrode (mercury) ? (PTFE) Figure 1 : Diagram for the electrical conductivity test of the inner tube STD-AECMA PREN 23Li7-ENGL L77b LO12311 0011829 801 DN 6 10 12 16 Minimum inside diameter of 3,3
2、 63 8,6 10,9 the hose assembly (on the end fitting) Page 7 prEN 2347 : 1996 20 25 32 13,9 19,3 23,5 6.3.3 Tensile strength The inner tube of the hose assemblies shall be subjected to the tensile strength test. The rate of application is 50 mm/min. The longitudinal tensile strength shall be 15 MPa at
3、 (25 i 2) OC for all DN. The transverse tensile strength shall be 12 MPa at (25 I 2) “C. Inner tubes with DN 16 shall not be submitted to a transverse tensile strength test. Until a special EN or IS0 Standard for this method has been published, a procedure shall be applied which has been agreed by t
4、he purchaser and approved by the relevant authorities. 6.3.4 Elongation At a temperature of (25 f 2) OC, the elongation shall be 1 200 %. 6.3.5 Specific gravity 6.3.5.1 The apparent specific gravity shall be between 2,125 g/cm3 and 2,155 g/cm3. Apparent specific gravity (to IS0 7258 method BI 6.3.5.
5、2 The relative specific gravity shall not exceed 2,210. Relative specific gravity (to IS0 7258 method Cl 6.4 6.4.1 6.4.1 .I Examination of product Each hose assembly shall be carefully examined to check whether it has been manufactured correctly and is free from defects. Tests on the hose assembly w
6、ith fittings Check on all hose assemblies 6.4.1.2 Dimensions, mass Weigh each hose assembly and carry out the measurements to check that they comply with the relevant standards or, in their absence, with the design document. The inside diameter shall exceed the minimum value given in table 4. 6.4.1.
7、3 Proof pressure The hose assemblies shall show no leak, burst or any other evidence of malfunction when subjected to proof pressure PE which is 2 times P, for a period of 30 s to 5 min. Page 8 prEN 2347 : 1996 DN Volume increase in cm3 for flexible hose assemblies with P, = 21 MPa hose assemblies w
8、ith PN = 28 MPa Volume increase in cm3 for flexible 6.4.2 Tests on samples 6.4.2.1 See annex A. The hose assemblies with two gauge marks at a distance of 250 mm are connected to the test machine with one end free. When the nominal pressure has been applied to them for 5 min: Variation in length and
9、volume - the variation in length between the gauge marks shall not exceed - the increase in volume, under nominal pressure, shall not exceed the values given in table 5 for a length of 250 mm. 2 %; 6 10 12 15 20 25 32 0,65 0,85 1,325 2,175 2,95 7,375 9,85 0,8 1,175 1,675 2,7 3,7 9,25 - Table 5 : Vol
10、ume increase under nominal pressure 6.4.2.2 Effusion test The hose assemblies are subjected to nominal pressure at room temperature for 1 h. During the second half hour, the leakage from the hose assembly is collected and measured. This quantity shall not exceed 26 cm3/m. Air or nitrogen gas r sourc
11、e 7 Inverted graduated Hark Funnel to cover hose plus one-half of each socket / I Water bath-/ without wetting agent Hose assembly under rest Figure 2 : Assembly for effusion test 6.4.2.3 Oil ageing The hose assemblies are immersed for 168 h at (200 f 5) OC in fluid no. 1 or no. 2 in accordance with
12、 table 7 and are then subjected to proof pressure PE which is 2 times PN. 6.4.2.4 Air ageing The hose assemblies are subjected to ageing in air at a temperature of (200 I 5) OC for 168 h and are then subjected to proof pressure PE which is 2 times Phi. STD-AECMA PREN 2397-ENGL 177b LOL23LL UULL82b b
13、B9 6.4.2.5 Pneumatic surge test The hose assembly is installed in a gas system (air or nitrogen) shown in figure 3. The test, conducted at room temperature, consists of 16 times the - nominal pressure is held in the hose assembly for 25 min; Page 9 prEN 2347 : 1996 fitted with rapid action valves as
14、 following cycle: - it is then rapidly reduced to atmospheric pressure and held there for 5 min. After this test, the hose assembly shall withstand proof pressure PE which is 2 times P, and shall be visually examined internally and externally. Any obvious degradation shall form a reason for rejeetio
15、n. Air or nitrogen gas source Hose assembly under test Figure 3 : Pneumatic surge test arrangement 6.4.2.6 Thermal shock test The thermal shock test shall be performed as follows : a) a hose assembly aged in air as described in 6.5.2.4 and a hose assembly not aged in air are subjected for 5 min to p
16、roof pressure PE which is 2 times PN; b) the drained hose assemblies are then assembled in the test assembly for 2 h at a temperature of (- 55 k 2) OC. Test fluid No. 4 in accordance with table 7, at a temperature of 200 OC, at a pressure of 0,35 MPa is then introduced into the hose assemblies. The
17、hose assemblies are then subjected to the proof pressure PE which is 2 times P, within 15 s and for 5 min; c) the pressure is reduced to (033 f 0,171 MPa and the test fluid pressure held for not less than 1 h on the hose assemblies. They are then subjected for 5 min to the proof pressure PE which is
18、 2 times P, ; d) the hose assemblies shall show no sign of leak, blow-off of end fittings from the hose or other defects, at pressure values 3 times PN. 6.4.2.7 Degradation test a) The hose assemblies, filled with fluid no. 4 in accordance with table 7, are placed in a heating chamber at a temperatu
19、re of 200 “C. Care shall be taken that they do not make contact with parts of the heating chamber which are at a higher temperature. The nominal pressure is maintained in the hose assemblies for at least 20 h, then gradually returned to zero. b) The hose assemblies are withdrawn from the heating cha
20、mber and cooled in air to room temperature. c) They are then filled with fluid no. 3 in accordance with table 7 and maintained for at least 2 h at nominal pressure and at room temperature. - STD-AECMA PfCEN 2347-ENGL L97b 3032313 0033827 530 Page 10 prEN 2347 : 1996 d) The above operations al, b) an
21、d c) shall be repeated 3 times. e) The hose assemblies are then drained and rinsed with fluid no. 9 in accordance with table 7 and placed for 1 h in a chamber at (70 k 5) OC. f) Within the next 8 h, the hose assemblies are mounted on equipment similar to that shown in figure 2 for 15 min at nominal
22、pressure. This pressure is maintained for a further period of 5 min and the air escaping from the hose assembly is collected and measured. This quantity shall not exceed 80 cm3/m of hose length per minute. 6.4.2.8 Bending test The hose assemblies are mounted in the assembly in accordance with figure
23、 4, filled with fluid no. 4 in accordance with table 7 and are bent at a frequency of (70 i 10) cycles per min. The temperature of the fluid and the room temperature shall be as shown below. a) The fluid shall act for no less than 1 h at a temperature of (- 55 f 2) OC without pressure on or bending
24、the hose assemblies. b) At the same temperature, the hose assemblies are then subjected for no less than 5 min to the proof pressure PE which is 2 times P,. c) When the pressure is reduced to nominal pressure, bending is applied at a constant temperature of (- 55 * 2) OC for the first 4 O00 cycles.
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