BS 3907-11-1970 Methods for the analysis of magnesium and magnesium alloys - Determination of silicon in magnesium and magnesium alloys (photometric method)《镁和镁合金分析方法 第11部分 硅含量测定(光.pdf
《BS 3907-11-1970 Methods for the analysis of magnesium and magnesium alloys - Determination of silicon in magnesium and magnesium alloys (photometric method)《镁和镁合金分析方法 第11部分 硅含量测定(光.pdf》由会员分享,可在线阅读,更多相关《BS 3907-11-1970 Methods for the analysis of magnesium and magnesium alloys - Determination of silicon in magnesium and magnesium alloys (photometric method)《镁和镁合金分析方法 第11部分 硅含量测定(光.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS3907-11: 1970 Method for The determination of silicon in magnesium and magnesium alloys (photometric method)BS3907-11:1970 This British Standard, having been approved by the Non-ferrous Metals Industry Standards Committee, waspublished under theauthorityofthe ExecutiveBoardon 20Ma
2、rch1970 BSI11-1999 The following BSI references relate to the work on this standard: Committee references NFE/23 and NFE/23/4 Draft for comment68/29128 ISBN 580 05658 9 Co-operating organizations The Non-ferrous Metals Industry Standards Committee, under whose supervision this British Standard was p
3、repared, consists of representatives from the following Government departments and scientific and industrial organisations: Aluminium Federation Institution of Mechanical Engineers Association of Bronze and Brass Founders (Automobile Division) Association of Consulting Engineers Institution of Minin
4、g and Metallurgy Board of Trade Institution of Production Engineers British Bronze and Brass Ingot Institution of Structural Engineers Manufacturers Association Lead Development Association British Electrical Allied Manufacturers Light Metal Founders Association Association London Metal Exchange Bri
5、tish Lead Manufacturers Association Magnesium Industry Council* British Non-ferrous Metals Federation Ministry of Defence (Army)* British Non-ferrous Metals Federation Ministry of Defence (Navy) High Conductivity Copper Group National Brassfoundry Association British Non-ferrous Metals Research Non-
6、ferrous Metal Stockists* Association* Post Office Copper Development Association Royal Institute of British Architects Crown Agents for Oversea Governments and Society of Motor Manufacturers and Traders Administrations Ltd.* Electric Cable Makers Confederation Tin Research Institute Institute of Bri
7、tish Foundrymen Zinc Development Association Institute of Metals Individual manufacturers The Government department and scientific and industrial organisations marked with an asterisk in the above list, together with the following, were directly represented on the committee entrusted with the prepar
8、ation of this British Standard: Institute of Sheet Metal Engineering Individual analysts Ministry of Technology Ministry of Technology Laboratory of the Government Chemist Amendments issued since publication Amd. No. Date CommentsBS3907-11:1970 BSI 11-1999 i Contents Page Co-operating organizations
9、Inside front cover Foreword ii 1 Introduction 1 2 Apparatus 1 3 Solutions required 1 4 Sampling 2 5 Procedure 2 6 Calibration 2 7 Calculation 2 8 Notes 3BS3907-11:1970 ii BSI 11-1999 Foreword This standard makes reference to the following British Standards: BS1499, Sampling non-ferrous metals. BS397
10、8, Water for laboratory use. This method for the determination of silicon in magnesium and magnesium alloys is the eleventh of a series which will form a complete British Standard under the collective title “Methods for the analysis of magnesium and magnesium alloys”, each being published as a separ
11、ate part. Other methods in the series are as follows: Part1: Aluminium (gravimetric method); Part2: Iron (photometric 1:10 phenanthroline method); Part3: Copper (photometric method); Part4: Manganese (photometric periodate method); Part5: Manganese (photometric periodate method) (low contents); Part
12、6: Zirconium (photometric method); Part7: Nickel (photometric method); Part8: Rare earths (gravimetric method) 1) ; Part9: Zinc (ion-exchange volumetric EDTA method); Part10: Manganese in magnesium alloys containing zirconium, rare earths or thorium (photometric method). The preparation of this seri
13、es of methods has been authorised by Non-ferrous Metals Industry Standards Committee as part of 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 instance
14、s they may appear to be lengthy, it should be appreciated that they are primarily intended as “referee” methods to be used in cases of dispute. This method is substantially the same as the corresponding method approved by ISO/TC79, which will be published as ISO/R 1) . A British Standard does not pu
15、rport 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. Summary of pages This document comprises a front cover, an inside front
16、 cover, pagesi andii, pages1 to3 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. 1) In course of preparation.BS3907-11:1970 BSI 11-1999 1 1 Introduction 1.1 Princi
17、ple. The sample is dissolved with sulphuric acid in the presence of bromine water and any remaining insoluble silicon compounds are decomposed and brought into solution with potassium fluoride. The excess fluoride is complexed with boric acid and the yellow oxidized silico-molybdate complex is forme
18、d at a pH between1.35 and1.50, then selectively reduced in a sulphuric acid medium of high acidity and in the presence of tartaric acid. The determination is completed photometrically. 1.2 Range. The method is recommended for silicon contents between0.01 and0.6%. 1.3 Reproducibility. Experiments hav
19、e 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 analysis of the results obtained. 1.4 Application. This method is not suitable for magnesium alloys containing rare earths or thorium. 2 Apparatus
20、2.1 Class A volumetric glassware complying with the appropriate British Standards shall be used throughout. All glassware should be carefully washed with hot chromic-sulphuric acid and rinsed thoroughly with water. Platinum vessels should be cleaned with fused sodium carbonate, then washed with boil
21、ing hydrochloric acid and thoroughly washed with water. 2.2 pH meter fitted with a glass electrode. 2.3 Any instrument suitable for measuring the optical density of the solution at a wavelength of810nm may be used with a1cm cell. Alternatively, when a filter photometer of the balanced two-cell type
22、is used, the following conditions have been found suitable: mercury vapour lamp, Ilford606 or equivalent filter, 4cm cell. 3 Solutions required All reagents shall be of the highest purity obtainable, and either distilled or demineralized water complying with BS3978 2)shall be used throughout. Soluti
23、ons shall be freshly prepared and where necessary filtered, and should be stored in plastic containers. Standard magnesium. (1mlN 0.01g of magnesium.) Weigh and transfer10g of high purity magnesium to a600ml tall-form beaker, add about200ml of water, then add in small portions140ml of sulphuric acid
24、(28%). When the reaction is complete, boil for5min, cool, transfer to a1litre volumetric flask, dilute to the mark andmix. Standard silicon. (1mlN 0.1mg of silicon.) Weigh0.2140g of finely ground pure silica (previously ignited to constant weight at1000 C) and fuse in a covered platinum crucible wit
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