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Practical Metal Materials Analysis Method Second Edition

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Practical metal materials analysis method Second editionPublished time: 2015 edition Brief introduction "Practical metal materials analysis method (Second Edition)" systematically introduces the analysis methods of ferrous metals such as ordinary steel, alloy steel, stainless steel, high-speed steel, and ferrous alloys, as well as non-ferrous metals Analytical methods for copper, aluminum, magnesium, zinc, titanium, nickel, tin, lead and their alloys, detailing the basic principles of each analytical method, reagent preparation, operation steps, and calibration line drawing. The annotation method lists the possible phenomena and their causes during the operation steps and analysis process, so that the analyst can easily use the analysis methods provided by the Practical Metal Materials Analysis Method (2nd Edition). Most of the analytical methods used in "Analytical Methods for Metal Materials (2nd Edition)" are absorbance analysis methods. After long-term practical tests, this analytical method is reliable, accurate and sensitive, and the operation process is convenient and convenient. Simple and universal. "Practical Methods for Analyzing Metal Materials (2nd Edition)" can be used as a work manual for personnel engaged in metal material analysis, as well as a training material for analysis positions and a teaching reference book for teachers and students of analysis majors in technical secondary schools and colleges.
Contents 2nd Edition Preface Preface Part I General Provisions on Chemical Analysis Methods for Steel Chapter Chapter 1 Basic Knowledge of Steel
1.1 Classification of steel and representation of steel number
1.2 Classification of cast iron and representation of cast iron grades
1.3 Existing forms of alloying elements in steel and their influence Chapter 2 Analytical methods of ordinary steel
2.1 Determination of carbon
2.2 Determination of sulfur
2.3 Non-aqueous titrated legal carbon and potassium iodate legal sulfur
2.4 Determination of carbon and sulfur by conductivity method
2.5 Determination of silicon (silicon molybdenum blue photometric method)
2.6 Determination of phosphorus
2.7 Determination of manganese
2.8 Determination of chromium (diphenylhydrazine photometric method)
2.9 Determination of nickel (butadione oxime spectrophotometry)
2.10 Rapid analysis of pig iron systems
2.11 Direct determination of total rare earth and magnesium in nodular cast iron
2.12 Analysis of Alloy Cast Iron
2.13 Chemical composition table of ordinary steel Chapter 3 Analysis method of alloy steel
3.1 Determination of phosphorus
3.2 Determination of silicon
3.3 Determination of manganese
3.4 Determination of chromium
3.5 Determination of vanadium
3.6 Determination of nickel
3.7 Determination of Molybdenum
3.8 Determination of tungsten
3.9 Determination of titanium
3.10 Determination of aluminum
3.11 Determination of boron
3.12 Determination of niobium (xylenol orange photometric method)
3.13 Chemical composition table of alloy structural steel, alloy tool steel, etc.
4.1 Determination of phosphorus (phosphomolybdenum blue photometric method)
4.2 Determination of silicon (silicon molybdenum blue photometric method)
4.3 Determination of chromium
4.4 Determination of nickel (butadione oxime spectrophotometry)
4.5 Determination of Manganese
4.6 Determination of peptides
4.7 Determination of molybdenum (thiocyanate photometric method)
4.8 Determination of vanadium (potassium permanganate oxidation ferrous capacity method)
4.9 Determination of aluminum
4.10 Determination of copper (BCO spectrophotometry)
4.11 Determination of cobalt
4.12 Determination of niobium
4.13 Determination of compound nitrogen
4.14 Chemical composition table of stainless steel Chapter 5 Analytical method of high speed steel
5.1 Determination of tungsten
5.2 Determination of chromium (volume method of silver salt of ammonium persulfate)
5.3 Determination of vanadium
5.4 Determination of molybdenum (thiocyanate direct spectrophotometry)
5.5 Determination of Manganese
5.6 Determination of silicon (silicon molybdenum blue photometric method)
5.7 Determination of phosphorus (phosphomolybdenum blue photometric method)
5.8 Determination of cobalt (nitroso-R salt photometric method)
5.9 Determination of nickel (butadione oxime spectrophotometry)
5.10 Determination of copper (BCO photometric method)
5.1 1 Determination of aluminum (EDTA volumetric method)
5.1 2 Chemical composition table of high speed tool steel Chapter 6 Analytical method of ferroalloy
6.1 Analysis of ferromanganese
6.2 Analysis of ferrosilicon
6.3 Analysis of ferrochrome
6.4 Analysis of Ferro Molybdenum
6.5 Analysis of Fe-Ti
6.6 Analysis of Ferrovanadium
6.7 Analysis of Ferro Tungsten
6.8 Analysis of ferrosilicon rare earth magnesium alloy
6.9 Chemical Composition of Ferroalloys Part 2 Analysis Methods for Nonferrous Metals and Alloys

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