AECMA PREN 6042-1995 Aerospace Series Organic Compounds Test Method Analysis by Infrared Spectroscopy Edition P1《航空航天系列.有机化合物试验方法分析红外光谱学.P1版》.pdf
《AECMA PREN 6042-1995 Aerospace Series Organic Compounds Test Method Analysis by Infrared Spectroscopy Edition P1《航空航天系列.有机化合物试验方法分析红外光谱学.P1版》.pdf》由会员分享,可在线阅读,更多相关《AECMA PREN 6042-1995 Aerospace Series Organic Compounds Test Method Analysis by Infrared Spectroscopy Edition P1《航空航天系列.有机化合物试验方法分析红外光谱学.P1版》.pdf(20页珍藏版)》请在麦多课文档分享上搜索。
1、 AECMA PRENxb042 95 1012311 0010035 442 Edition approved for publication 1995-1 1-30 AECMA STANDARD prEN 6042 NORME AECMA Edition P1 AECMA NORM November 1995 PUBLISHED BY THE EUROPEAN ASSOCIATION OF AEROSPACE INDUSTRIES (AECMA) Gulledelle 94 - B-1200 BRUXELLES - Tel. (32) 2 775 81 10 - Fax. 132) 2 7
2、75 81 11 Comments should be sent within six months after the date of publication to AECMA Gulledelle 94 B-1200 BRUXELLES ICs : Descriptors : ENGLISH VERSION Aerospace series Organic compounds Test method Analysis by infrared spectroscopy Srie arospatiale Composs organiques Mthode dessai Analyse par
3、spectroscopie infra-rouge Luft- und Raumfahrt Organische Verbindungen Prfverfahren Analyse durch Infrarot-Spektroskopie This “Aerospace Series“ Prestandard has been drawn up under the responsibility of AECMA (The European Association of Aerospace Industries). It is published on green paper for the n
4、eeds of AECMA-Members. It has been technically approved by the experts of the concerned Technical Committee following comment by the Member countries. Subsequent to the publication of this Prestandard, the technical content shall not be changed to an extent that interchangeability is affected, physi
5、cally or functionally, without re-identification of the standard. After examination and signature of the AECMA Standard Checking Centre (NPSI and formal agreement of the Official Services of the Member countries it will be submitted as a draft European Standard to CEN (European Committee for Standar
6、dization) for formal vote. Nota - Extra copies can be supplied by B.N.A.E. - Technopolis 54 - 199, rue Jean-Jacques Rousseau - 921 38 ISSY-LES-MOULINEAUX CEDEX AIBITFG Chairman Mr K. Schneider aecma 199! Copyright Association Europeene des Constructeurs de Materiel Aerospatial Provided by IHS under
7、license with AECMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,- AECIA PRENxb042 95 W LOI12311 001003b 389 W Page 2 prEN 6042 : 1995 Contents list 1 Scope 2 Normative references 3 Definitions 4 Principle of the method 5 Designation of the method 6 Apparatus 7 Te
8、st specimen 8 Procedure 9 Presentation of the results 10 Test report Annex A Pellititation Annex B Annex C Annex D Annex E Total dissolution (Distot) Annex F Liquid cell Annex G Gas cell Deposit on a plate Deposit between two plates Dissolution and pellititation (Dispas) Copyright Association Europe
9、ene des Constructeurs de Materiel Aerospatial Provided by IHS under license with AECMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-AECMA PRENxb042 95 10123Ll 0010037 215 Page 3 prEN 6042 : 1995 1 Scope This test method describes the principles applicable to inf
10、rared transmission spectrophotometric analysis of organic compounds (elastomers, basic resins, resin mixes or resin systems) used as the matrix in reinforced polymers, adhesives, bonding primers and, in general terms, all organic compounds. The method could also be applied to some inorganic products
11、. It shall be used jointly with special test conditions specified in the materials specification invoking the test. This standard does not give any directions necessary to meet the health and safety requirements. It is the responsibility of the user of this standard to adopt appropriate health and s
12、afety precautions. 2 Normative references This European Standard incorporates by dated or undated reference, provisions from other publications. These normative references are cited at the appropriate places in the text and the publications are listed hereafter. For dated references, subsequent amen
13、dments to or revisions of any of these publications apply to this European Standard only when incorporated in it by amendment or revision. For undated references the latest edition of the publication referred to applies. EN 2743 Aerospace series Reinforced plastics Standard procedures for conditioni
14、ng prior to testing 3 Definitions 3.1 Base resin The main component of a resin system. 3.2 Resin mix, resin system, neat resin, resin The base resin + fillers + additive + catalytic systems + hardener + accelerator + thinner. 3.3 Prepreg resin The resin obtained from the prepreg. 4 Principle of the
15、method 4.1 General Organic molecules consist of atoms bonded together. Many bonds vibrate at a characteristic frequency in the infrared (IR) range. If a monochromatic IR beam impinges on the molecule and its frequency corresponds to a natural vibration frequency between functional groups, energy fro
16、m the beam is absorbed. Varying the wavelength of the beam therefore generates a series of absorption lines corresponding to the various molecular bonds. This set of lines forms a spectrum. The sample is subjected to a beam at all frequencies of interest and a computer determines which wavelengths h
17、ave been absorbed. The preferred method is Fourier Transform Infrared (FTIR). Copyright Association Europeene des Constructeurs de Materiel Aerospatial Provided by IHS under license with AECMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-AECMA PRENlilb042 95 m 1
18、012311 0010038 151 m Page 4 prEN 6042 : 1995 The IR absorption spectrum is reproducible and not greatly affected by the apparatus. It can be used to: - identify the main organic functional groups of the molecule (carbonyl, ether, amine, epoxy etc.), - identify a material by comparison with reference
19、 spectra. 4.2 The Beer-Lambert law (Method of tangents) For any absorption line in the IR spectrum (see figure 11, a line can be drawn tangential to the transmission maxima on either side of the band. The absorption Beers law is then written: where: A is the absorbance I Io E C is the concentration
20、L is the transmittance at the maximum absorption within the band (see figure 1) is the transmittance read from the tangent at the maximum absorption wavelength (see figure li is the factor of absorption (characteristic of the bond generating the absorption) is the length of the optical path in the s
21、ample For a given absorption band, E and L are constant and absorbance A is therefore directly proportional to concentration C. 5 Designation of the method The designation of the method used shall be drawn up according to the following example : Description block Identity block Analysis of organic c
22、ompounds by Infrared Spectroscopy (IR) Method used (see Annex A-G) Number of this standard 6 Apparatus 6.1 Spectrophotometer Two types of spectrophotometer are used covering the range 400 cm- to 4000 cm- (2,5 ,um to 25 ,um). These instruments give the same type of spectrum. 6.1.1 Wavelength dispersi
23、on spectrophotometer An infrared polychromatic source generates a beam which is partially absorbed in the sample and then enters a monochromator. The output from the monochromator is a monochromatic beam with wavelength A. A detector measures the intensity of this beam and transmits the result to a
24、recorder. The monochromator scans the wavelength and the recorder thus produces the sample IR absorption spectrum. The spectral resolution at 3000 cm- shall be better than 5 cm- and at 1 O00 cm- better than 3 cm- . Copyright Association Europeene des Constructeurs de Materiel Aerospatial Provided by
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