BS PL 9-2005 Fibrous polyamide material for use as an explosion suppressant and as a baffle material in aircraft fuel tanks Test methods《飞行器燃料舱中用作爆炸抑制剂和挡板材料的纤维聚酰胺材料 试验方法》.pdf
《BS PL 9-2005 Fibrous polyamide material for use as an explosion suppressant and as a baffle material in aircraft fuel tanks Test methods《飞行器燃料舱中用作爆炸抑制剂和挡板材料的纤维聚酰胺材料 试验方法》.pdf》由会员分享,可在线阅读,更多相关《BS PL 9-2005 Fibrous polyamide material for use as an explosion suppressant and as a baffle material in aircraft fuel tanks Test methods《飞行器燃料舱中用作爆炸抑制剂和挡板材料的纤维聚酰胺材料 试验方法》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD AEROSPACE SERIES BS PL 9:2005 Fibrous polyamide material for use as an explosion suppressant and as a baffle material in aircraft fuel tanks Test methods ICS 49.025.40; 83.120 BS PL 9:2005 This British Standard was published under the authority of the Standards Policy and Strategy C
2、ommittee on 10 June 2005 BSI 10 June 2005 The following BSI references relate to the work on this standard: Committee reference ACE/65 Draft for comment 04/30115936 DC ISBN 0 580 45904 7 Committees responsible for this British Standard The preparation of this British Standard was entrusted to Techni
3、cal Committee ACE/65, Inspection and testing requirements for non-metallic materials, upon which the following bodies were represented: British Hydromechanics Research Group British Plastics Federation Society of British Aerospace Companies Ltd. Co-opted members The following bodies were also repres
4、ented in the drafting of this standard, through panel ACE/65/-/64, Structural reinforced plastic: Defence Science and Technology Laboratory Co-opted members Amendments issued since publication Amd. No. Date Text affectedBS PL 9:2005 BSI 10 June 2005 i Contents Page Committees responsible Inside fron
5、t cover Foreword ii 1S c o p e 1 2 Normative references 1 3T e s t v a r i a t i o n s 1 4 Extraction of test specimens 1 5 Physical tests on fibres 1 6 Mechanical tests on fibres 3 7 Test report 4 Annex A (normative) Extraction of test specimens 5 Figure A.1 Standard cutting plan for test specimen
6、5BS PL 9:2005 ii BSI 10 June 2005 Foreword This British Standard has been prepared under the direction of ACE/65/-/64. With BS PL 8, this document supersedes DTD 5627, April 1982, which was declared obsolescent by the Ministry of Defence from 1st April 1999. This British Standard calls for the use o
7、f substances and/or procedures that may be injurious to health if adequate precautions are not taken. It refers only to technical suitability and does not absolve the user from legal obligations relating to health and safety at any stage. A British Standard does not purport to include all the necess
8、ary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i to ii, pages 1
9、to 5 and a back cover. The BSI copyright notice displayed in this document indicates when the document was last issued.BS PL 9:2005 BSI 10 June 2005 1 1 Scope This British Standard describes the methods for testing fibrous polyamide material, to show conformance with the requirements of BS PL 8. 2 N
10、ormative references The following referenced documents are indispensable for the application of this document. For dated references, only the reference cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. BS 4735, Laboratory method
11、of test for assessment of the horizontal burning characteristics of specimens no larger than 150 mm 50 mm 13 mm (nominal) of cellular plastics and cellular rubber materials when subjected to a small flame. BS ISO 5893, Rubber and plastics test equipment Tensile, flexural and compression types (const
12、ant rate of traverse) Specification. BS PL 8, Fibrous polyamide material for use as an explosion suppressant and as a baffle material in aircraft fuel tanks Specification. 3 Test variations With agreement of the purchaser, other equivalent test methods may be used. However, in case of dispute, the t
13、est methods described in this standard shall be used. 4 Extraction of test specimens Test specimens shall be extracted from sheet(s) submitted for test in accordance with Annex A. Each specimen extracted shall be identified with the section letter and test specimen number as shown in Figure A.1. 5 P
14、hysical tests on fibres 5.1 Determination of density and density gradient Select specimens A, B, C and D as shown in Figure A.1 of approximate size 240 480 60 mm. Measure the mass of each specimen to the nearest 0.1 g and record: specimen A as m 1 ; specimen B as m 2 ; specimen C as m 3 ; and specim
15、en D as m 4 . Determine the density of the specimen as d specimen(in g/l): Determine the density gradient as d gradient : 5.2 Determination of sheet density Measure the weight of the sheet to the nearest 0.1 g and record as m 1 . Determine density of the sheet as d sheet(in g/l): d specimen m 1 m 2
16、m 3 m 4 + 27.7 - = d gradient m 2 m 4 + m 1 m 3 + - = d sheet m 1 27.7 - =BS PL 9:2005 2 BSI 10 June 2005 5.3 Determination of fibre diameter Select specimen 10 as shown in Figure A.1 of approximate size 100 40 60 mm. Extract three sections (100 12 60 mm) from the central region of the specimen and
17、mount them on microscope slides using a suitable mounting material. Using a microscope fitted with a suitable measuring device, measure the diameter of the fibre at the comparatively straight region between bonds to an accuracy of 0.5 m. Make twenty measurements and state the average as the fibre di
18、ameter. 5.4 Determination of extractable contaminants Select specimen 16 as shown in Figure A.1 of approximate size 25 25 60 mm. Reduce the thickness of the specimen to 50 mm and condition the specimen by drying it for a minimum period of four hours at 70 C. Weigh the specimen to the nearest 0.1 mg
19、and record as m 1 . Extract contaminants from the sample using a 60 ml Soxhlet thimble and appropriate apparatus. Use test liquid consisting of a 70:30 (by volume) mixture of iso-octane and toluene. Extract for a minimum period of three hours under continuous reflux. After extraction, dry the specim
20、en for a minimum of four hours at 70 C and allow it to cool in a desiccator. Reweigh the specimen to the nearest 0.1 mg and record as m 2 . Determine the mass of extractable contaminants as m extractand express it as a percentage of the original mass: 5.5 Determination of fuel retention From a sheet
21、 of material, cut four specimens 150 150 120 mm symmetrically from the centre of the sheet, with the edges of the specimens parallel to the sides of the sheet. Carry out the test on pairs of specimens, with diagonal pairing (i.e. A with D, and B with C). Measure the size and mass (m 1 ) of the speci
22、men to the nearest 0.5 mm and 0.1 g respectively. Place two specimens one on top of the other centrally in a fuel tank of approximate dimensions 180 180 350 mm, ensuring the specimens do not touch the sides of the fuel tank. Add aviation fuel, appropriate for which the product has been designed, to
23、the fuel tank, immersing the specimens. When air bubbles have stopped emerging from the specimens, drain the fuel from the tank at a rate of (500 50) ml/min. When the flow rate fall to less than five drops per minute, remove the top specimen and reweigh as m 2 . Reverse the specimens by placing the
24、bottom specimen on the top and repeat the procedure. Test all the other pairs of specimens. Calculate the percent fuel retention f rof the specimens from: whereV is the volume of specimen P is the density of fuel D is the density of specimen. Report the mean of the four specimens as the percent fuel
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