BS 1728-16-1968 Methods for the analysis of aluminium and aluminium alloys - Determination of chromium (photometric method)《铝与铝合金的分析方法 第16部分 铬的测定(光度测量法)》.pdf
《BS 1728-16-1968 Methods for the analysis of aluminium and aluminium alloys - Determination of chromium (photometric method)《铝与铝合金的分析方法 第16部分 铬的测定(光度测量法)》.pdf》由会员分享,可在线阅读,更多相关《BS 1728-16-1968 Methods for the analysis of aluminium and aluminium alloys - Determination of chromium (photometric method)《铝与铝合金的分析方法 第16部分 铬的测定(光度测量法)》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS1728-16: 1968 Method for The determination of chromium in aluminium and aluminium alloys (Photometric method) Methods for the analysis of aluminium and aluminium alloysBS1728-16:1968 This BritishStandard, having been approved by the Non-ferrous Metals Industry Standards Committee,
2、 was published under the authority ofthe Executive Board on 31December1968 BSI12-1999 The following BSI references relate to the work on this standard: Committee reference NFE/-/3 Draft for comment67/13648 ISBN 0 580 00408 2 Co-operating organizations The Non-ferrous Metals Industry Standards Commit
3、tee, under whose supervision this BritishStandard was prepared, consists of representatives from the following Government departments and scientific and industrial organizations: Aluminium Federation* Association of Bronze and Brass Founders Association of Consulting Engineers Board of Trade British
4、 Bronze and Brass Ingot Manufacturers Association British Electrical and Allied Manufacturers Association British Lead Manufacturers Association British Non-ferrous Metals Federation British Non-ferrous Metals Federation High Conductivity Copper Group British Non-ferrous Metals Research Association*
5、 Copper Development Association Crown Agents for Oversea Governments and Administrations Electric Cable Makers Confederation Institute of British Foundrymen Institute of Metals Institution of Mechanical Engineers (Automobile Division) Institution of Mining and Metallurgy Institution of Production En
6、gineers Institution of Structural Engineers Lead Development Association Light Metal Founders Association* London Metal Exchange Magnesium Industry Council Ministry of Defence, Army Department* Ministry of Defence, Navy Department* National Brassfoundry Association Non-ferrous Metal Stockists Post O
7、ffice Royal Institute of British Architects Society of Motor Manufacturers and Traders Ltd. Tin Research Institute Zinc Development Association Individual manufacturers The Government departments and scientific and industrial organizations marked with an asterisk in the above list, together with the
8、 following, were directly represented on the sub-committee entrusted with the preparation of this BritishStandard: Association of Light Alloy Refiners and Smelters Ltd. Ministry of TechnologyLaboratory of the Government Chemist Individual analysts Amendments issued since publication Amd. No. Date Co
9、mmentsBS1728-16:1968 BSI 12-1999 i Contents Page Co-operating organizations Inside front cover Foreword ii 1 Introduction 1 2 Apparatus 1 3 Solutions required 1 4 Sampling 1 5 Procedure 1 6 Calibration 2 7 Calculation 2 8 Notes 2BS1728-16:1968 ii BSI 12-1999 Foreword This standard makes reference to
10、 the following British Standard: BS1499, Sampling non-ferrous metals. BS3978, Water for laboratory use. This method for the determination of chromium is the sixteenth of a series which will form a complete BritishStandard under the collective title “Methods for the analysis of aluminium and aluminiu
11、m alloys”, each being published as a separate part. Other methods in the series are as follows: Part1: Copper; Part2: Magnesium; Part3: Zinc (mercuric potassium thiocyanate method); Part4: Zinc (polarographic method); Part5: Copper (absorptiometric method); Part6: Iron (volumetric: titanous chloride
12、 method); Part7: Zinc (zinc oxide method); Part8: Iron (absorptiometric1:10-phenanthroline method); Part9: Manganese (volumetric: arsenite/nitrite method); Part10: Manganese (absorptiometric method); Part11: Silicon (perchloric acid method); Part12: Silicon (absorptiometric molybdenum blue method);
13、Part13: Titanium (absorptiometric chromotropic acid method); Part14: Nickel (gravimetric method); Part15: Nickel (photometric method); Part17: Chromium (volumetric method). The preparation of this series of methods has been authorized by the Non-ferrous Metals Industry Standards Committee as part of
14、 a general programme for the standardization of methods for the sampling and analysis of non-ferrous metals. The methods have been found to give reliable and reproducible results and, while in some instances they may appear to be lengthy, it should be appreciated that they are primarily intended as
15、“referee” methods to be used in cases of dispute. 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 obli
16、gations. Summary of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1 and 2 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.B
17、S1728-16:1968 BSI 12-1999 1 1 Introduction 1.1 Principle. The alloy is dissolved in sodium hydroxide solution, the solution is acidified, oxidized with potassium permanganate, and diphenylcarbazide solution is added to develop the colour. The optical density of the solution is then measured at about
18、540nm. 1.2 Range. The method is recommended for chromium contents between0.01 and0.1%. 1.3 Reproducibility. Experiments have been carried out independently by a number of analysts using this method. The degree of reproducibility that can be expected is shown by the following results obtained: 2 Appa
19、ratus 2.1 Class A volumetric glassware complying with the relevant BritishStandards shall be used throughout. 2.2 Any instrument suitable for measuring the optical density of the solution at a wavelength of540nm may be used together with2 or1cm cells. Alternatively, when a filter photometer with two
20、 balanced photo-cells is used, the following conditions have been found suitable: Mercury vapour lamp; Ilford605or equivalent filter; 2 or1cm cells. 3 Solutions required All reagents shall be of the highest purity obtainable and either distilled or demineralized water complying with BS3978 1)shall b
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