EN 24003-1993 en Permeable Sintered Metal Materials - Determination of Bubble Test Pore Size《可渗性烧结金属材料 气泡试验孔径的测定(ISO 4003-1977)》.pdf
《EN 24003-1993 en Permeable Sintered Metal Materials - Determination of Bubble Test Pore Size《可渗性烧结金属材料 气泡试验孔径的测定(ISO 4003-1977)》.pdf》由会员分享,可在线阅读,更多相关《EN 24003-1993 en Permeable Sintered Metal Materials - Determination of Bubble Test Pore Size《可渗性烧结金属材料 气泡试验孔径的测定(ISO 4003-1977)》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、CEN EN124003 93 3404587 00470i12 561 H EUROPEAN STANDARD EN 24003 NORME EUROPENNE EUROPISCHE NORM April 1993 UDC 6621.762.5 : 669-492.2 : 620.1 : 539.217 Descriptors: Powder metallurgy, sintered products, porous metal, porosity, physical tests, bubble tests, pores, dimensional measurements English v
2、ersion Permeable sintered metal materials - Determination of bubble test pore size (IS0 4003 : 1977) Matriaux en mtal fritt permable - Dtermination de la dimension des pores - Mthode bulloscopique (IS0 4003 : 1977) Durchlssige Sintermetalle - Ermittlung der Porengre mittels Gasblasentest (IS0 4003 :
3、 1977) This European Standard was approved by CEN on 1993-04-02. CEN members are bound to comply with the CENCENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical re
4、ferences concerning such national standards may be obtained on application to the Central Secretariat or to any CEN member. This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CEN member
5、 into its own language and notified to the Central Secretariat has the same status as the official versions. CEN members are the national standards bodies of Austria, Belgium, Denmark, Finland, France, Germany, Greece, Iceland, Ireland, Italy, Luxembourg, Netherlands, Norway, Portugal, Spain, Sweden
6、, Switzerland and United Kingdom. CEN European Committee for Standardization Comit Europen de Normalisation Europisches Komitee fr Normung Central Secretariat: rue de Stassart 36, B-1050 Brussels O 1993 Copyright reserved to CEN members Ref. No. EN 24003 : 1993 E CEN ENr24003 93 m 3404589 0047043 4T
7、8 m Page 2 EN 24003 : 1993 Foreword In 1992, IS0 4003 : 1977 Permeable sintered metal materEals - Determination of bubble test pore size was submitted to the CEN Primary Questionnaire procedure. Following the positive result of the CENCS Proposal IS0 4003 : 1977 was submitted to the Formal Vote. The
8、 result of the Formal Vote was positive. This European Standard shall be given the status of a national standard, either by publication of an identical text or by endorsement, at the latest by October 1993, and conflicting national standards shall be withdrawn at the latest by October 1993. Accordin
9、g to the CENXENELEC Internal Regulations, the following countries are bound to implement this European Standard: Austria, Belgium, Denmark, Finland, France, Germany, Greece, Iceland, Ireland, Italy, Luxembourg, Netherlands, Norway, Portugal, Spain, Sweden, Switzerland, United Kingdom. NOTE. The Euro
10、pean references to international publications are given in annex ZA (normative). CEN EN+ZOO 93 = 34045 0047044 334 m Page 3 EN 24003 : 1993 1 SCOPE AND FIELD OF APPLICATION This International Standard specifies a method, known as the bubble test method, for the determination of the pore size of perm
11、eable sintered powder metallurgical materials, .e. filters, porous bearings, porous electrodes and other parts with interconnected porosity. NOTE - The bubble test shall be considered as a quality control test and not as a test for defining filter grades or determining exact pore size and pore size
12、distribution. 2 REFERENCE IS0 2738, Permeable sintered metal materials - Determi- nation of density and open porosity. 3 PRINCIPLE Impregnation of a test piece with a test liquid. Immersion of the test piece in the test liquid and introduction of a gas (usually air) into the test piece at gradually
13、increasing press- ure. Determination of the pressure at which bubbles are emitted from the surface of the test piece. Evaluation of the equivalent bubble test pore size by means of a math- ematical formula. 4 DEFINITION bubble test pore size : The maximum equivalent capillary diameter in the test pi
14、ece which is calculated from the measured minimum pressure required to force the first bubble of gas through the test piece (under standardized conditions) impregnated with a liquid. The first bubble of gas will form at the pore having the greatest throat, the throat being the narrowest section of t
15、his pore. For calculation purposes, it is assumed that this bubble forms at the end of a capillary tube of circular cross-section which is initially filled with the same liquid of known surface tension. For a circular capillary, the diameter is related to the bubble pressure by the equation : . d=-
16、47 ap where d is the capillary diameter corresponding to the bubble test pore size, in metres; y is the surface tension of the test liquid, in newtons per metre; pl being the pressure in the liquid at the level of bubble formation, in pascals : . . . (3) pi =9,81 xp, xh where pi is the density of th
17、e test liquid, in kilograms per cubic metre; h is the height of the surface of the test liquid, in metres, above the highest throat in the test piece. CEN EN+24003 93 D 3404589 O047045 270 Page 4 EN 24003 : 1993 Liquid pressure p1 Test piece l Gas pressure p, L Test liquid FIGURE - Bubble test assem
18、bly NOTES 1 The bubble test pore size corresponds to the minimum differen- tial pressure at which constant bubbling first occurs. For this reason, this pressure is sometimes termed “minimum bubble pressure“ or “first bubble point“. The corresponding capillary diameter is some- times termed “maximum
19、pore size“ or “maximum pore diameter“, or “largest pore size“. However, the maximum pore size determined with this method may be the result of a single local defect, and therefore not representative of the pore population. 2 As the gas pressure increases beyond the minimum bubble press- ure (first b
20、ubble point), different aspects of bubbling occur on the test piece. The pressure for a given aspect can lead to the definition of a conventional pore size. For example, the pressure for which a generalized bubbling occurs is frequently specified (foaming over the whole surface). These particular de
21、finitions should be agreed between the sugplier and the user. Moreover, the uniformity of distribution of pores approaching the maximum pore size may be observed by gradually increasing the gas pressure. Cracks and clogged areas are easily discerned by this operation. 3 The bubble test does not cons
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