BS 6783-5-1986 Sampling and analysis of nickel ferronickel and nickel alloys - Method for determination of carbon in nickel ferronickel and nickel alloys by infra-red absorption af.pdf
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1、BRITISH STANDARD BS 6783-5: 1986 ISO 7524:1985 Sampling and analysis of nickel, ferronickel and nickel alloys Part 5: Method for determination of carbon in nickel, ferronickel and nickel alloys by infra-red absorption after induction furnace combustion ISO title: Nickel, ferronickel and nickel alloy
2、s Determination of carbon content Infra-red absorption method after induction furnace combustion UDC 669.24 + 669.1524-198:546.26:543.422.4.062BS6783-5:1986 This British Standard, having been prepared under the directionof the Non-ferrous Metals Standards Committee, waspublished under the authorityo
3、f the Board of BSI andcomes into effect on 31December 1986 BSI 10-1999 The following BSI references relate to the work on this standard: Committee reference NFM/10 Draft for comment 84/39887 DC ISBN 0 580 15524 2 Committees responsible for this British Standard The preparation of this British Standa
4、rd was entrusted by the Non-ferrous Metals Standards Committee (NFM/-) to Technical Committee NFM/10, upon which the following bodies were represented: British Non-ferrous Metals Federation British Steel Industry Engineering Equipment and Materials Users Association Ministry of Defence Process Plant
5、 Association Stainless Steel Fabricators Association of Great Britain Coopted members Amendments issued since publication Amd. No. Date of issue CommentsBS6783-5:1986 BSI 10-1999 i Contents Page Committees responsible Inside front cover National foreword ii 1 Scope and field of application 1 2 Refer
6、ence 1 3 Principle 1 4 Reagents and materials 1 5 Apparatus 1 6 Sampling and samples 1 7 Procedure 1 8 Expression of results 2 9 Notes on procedure and equipment 2 10 Test report 4 Annex A Examples of compositions of nickel, ferronickel and nickel alloys 5 Annex B Features of commercial high frequen
7、cy induction furnaces and infra-red carbon analysers 6 Annex C Alternative non-aqueous titrimetric finish for determination of carbon 6 Table 1 Results of statistical analysis 3 Table 2 Examples of composition of nickel (%) 5 Table 3 Examples of composition of ferronickel (%) 5 Table 4 Examples of c
8、omposition of nickel alloys (%) 5 Table 5 Results from titrimetric finish 7 Publication referred to Inside back coverBS6783-5:1986 ii BSI 10-1999 National foreword This Part of BS 6783 has been prepared under the direction of the Non-ferrous Metals Standards Committee. It is identical with ISO 7524:
9、1985 “Nickel, ferronickel and nickel alloys Determination of carbon content Infra-red absorption method after induction furnace combustion” published by the International Organization for Standardization (ISO). At present this British Standard consists of nine Parts all concerned with analysis of ni
10、ckel, ferronickel and nickel alloys. Further International Standards are in preparation on sampling and analysis of nickel, ferronickel and nickel alloys and, when available, these will be published as further Parts of this British Standard. Terminology and conventions. The text of the International
11、 Standard has been approved as suitable for publication as a British Standard without deviation. Some terminology and certain conventions are not identical with those used in British Standards; attention is drawn especially to the following. The comma has been used as a decimal marker. In British St
12、andards it is current practice to use a full point on the baseline as the decimal marker. Wherever the words “International Standard” appear, referring to this standard, they should be read as “Part of BS 6783”. In British Standards it is current practice to use the symbol “L” for litre (and in its
13、submultiples) rather than “l”. A British Standard does not purport to include all the necessary 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. Cross-refe
14、rence International Standard Corresponding British Standard ISO 5725:1981 BS 5497 Precision of test methods Part 1:1979 Guide for the determination of repeatability and reproducibility for a standard test method (Technically equivalent) Summary of pages This document comprises a front cover, an insi
15、de front cover, pagesi andii, pages1 to8, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.BS6783-5:1986 BSI 10-1999 1 1 Scope and field of appl
16、ication This International Standard specifies an infra-red absorption method after combustion for the determination of the carbon content of nickel and ferronickel in the range 0,001 to 2,0% (m/m), and of nickel alloys in the range 0,001 to 0,5% (m/m). Examples of compositions are given in Annex A.
17、2 Reference ISO 5725, Precision of test methods Determination of repeatability and reproducibility by inter-laboratory tests. 3 Principle Combustion of a test portion in a flow of oxygen at a high temperature in a high frequency induction furnace in the presence of fluxes and accelerators. Measureme
18、nt of the carbon dioxide formed using an infra-red analyser and an integration procedure. 4 Reagents and materials 4.1 Oxygen (O 2 ), 99,5% (m/m) minimum. 4.2 Ascarite or soda lime, 0,7 to1,2mm(14to22mesh). 4.3 Magnesium perchlorate Mg(ClO 4 ) 2 0,7 to1,2mm(14to22mesh). 4.4 Glass-wool 4.5 Crucibles
19、and lids 4.5.1 Ceramic crucibles shall be of precise dimensions so that the sample is positioned correctly in the induction coil of the furnace (see9.1). 4.5.2 For carbon levels of less than 0,01% (m/m) pre-ignite the crucibles in air or oxygen in a furnace for not less than 1 h at 1 100 C and store
20、 in a desiccator or closed container. A resistance furnace with a combustion tube through which a flow of oxygen passes may be used. Crucible lids, used to help retain the solid oxidation products in the hot zone, are pre-ignited in a similar manner. 4.6 Fluxes: low carbon tin, copper plus tin or co
21、pper (see 9.2). 4.7 Accelerators: low carbon copper, iron, tungsten or nickel (see 9.2). 4.8 Standard reference steels, containing 0,01 to2,5% (m/m) carbon. 5 Apparatus The apparatus required for combustion in a high frequency induction furnace and the subsequent infra-red absorption measurement of
22、the evolved carbon dioxide may be obtained commercially from a number of manufacturers. Follow the manufacturers instructions for the operation of the equipment. A pressure regulator is required to control the oxygen pressure to the furnace according to the manufacturers specification (usually 28 kN
23、/m 2 ). Features of commercial equipment are given in Annex B. 6 Sampling and samples 6.1 Sampling and preparation of the laboratory sample shall be carried out by normal agreed procedures or, in case of dispute, by the relevant International Standard. 6.2 The laboratory sample normally is in the fo
24、rm of a powder, granules, millings or drillings and no further preparation of the sample is necessary. 6.3 If it is suspected that the laboratory sample is contaminated with oil or grease from the milling or drilling process, it shall be cleaned by washing with high purity acetone and drying in air.
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