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GB/T 33948.2-2017 PDF English


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GB/T 33948.2-2017English90 Add to Cart 0-9 seconds. Auto-delivery. Method for chemical analysis of copper-steel composite metal -- Part 2: Determination of zinc content -- Na2EDTA titration method Valid
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GB/T 33948.2-2017: PDF in English (GBT 33948.2-2017)

GB/T 33948.2-2017 GB NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 77.120.30 H 13 Method for chemical analysis of copper-steel composite metal - Part 2. Determination of zinc content - Na2EDTA titration method ISSUED ON. JULY 12, 2017 IMPLEMENTED ON. FEBRUARY 1, 2018 Issued by. General Administration of Quality Supervision, Inspection and Quarantine; Standardization Administration Committee. Table of Contents Foreword ... 3  1 Scope ... 4  2 Method summary ... 4  3 Reagents ... 4  4 Specimen ... 6  5 Analysis steps ... 6  6 Calculation of analysis results ... 7  7 Precision... 8  8 Test report ... 8  Method for chemical analysis of copper-steel composite metal - Part 2. Determination of zinc content - Na2EDTA titration method 1 Scope This Part of GB/T 33948 specifies the determination method of zinc content of copper-steel composite metal. This Part applies to the determination of zinc content of copper-steel composite metal. The determination range is >0.50% ~ 6.50%. 2 Method summary The test material is dissolved in hydrochloric acid. Zinc and thiocyanate form a complex anion in dilute hydrochloric acid medium. After extracting and removing most of the interference elements with 4-methyl-2-pentanone extraction, in hexamethyltetramine buffer solution with a pH of 5.5-6.0, add concealer to xylenol orange as indicator, titrate with Na2EDTA standard titration solution until the solution turns from red to yellow. Calculate the amount of zinc based on the volume of Na2EDTA standard solution consumed. 3 Reagents Unless otherwise stated, only analytically pure reagents and distilled or deionized water or equivalent water are used in the analysis. 3.1 4-methyl-2-pentanone. 3.2 Hydrogen peroxide (ρ=1.11 g/mL). 3.3 Hydrochloric acid (1+1). 3.4 Nitric acid (1+1). 3.5 Ammonium fluoride solution (200 g/L), stored in plastic bottle. 3.6 Thiourea Solution (100 g/L). 3.7 Ammonium thiocyanate solution (500 g/L). V0 - the volume of Na2EDTA titration solution consumed when titrating a blank solution, in milliliters (mL); 63.55 - mole mass of zinc, in grams per mole (g/mol). 3.12.3 Parallel calibration Perform 3 copies of parallel calibration. The standard volume of Na2EDTA standard titration solution used for calibration is not more than 0.10 mL. Take its average value, otherwise, recalibrate. 4 Specimen 4.1 Wipe clean the surface of the copper-steel composite metal specimen with acetone of thickness less than or equal to 0.7 mm, without oxidation, oil stain. Then make the sample into pieces with a width of no more than 1mm. And ensure that the coating metal is consistent when preparing double-sided (or single-sided) composite specimen. 4.2 Copper-steel composite metal sample with a thickness greater than 0.7 mm is first made into thin strips with a width of 1 mm. And wipe it clean with acetone, without oxidation, oil stain. Then make it to pieces less than 1 mm in width. And ensure that the coating metal is consistent when preparing double- sided (or single-sided) composite specimen. 5 Analysis steps 5.1 Test material Weigh 0.200 g of specimen (Clause 4), to the nearest of 0.0001 g. 5.2 Number of determinations Perform two determinations independently. Take the average value. 5.3 Blank test Perform the blank test with test materials. 5.4 Determination 5.4.1 Place the test material (5.1) in a 500-mL conical beaker. Add 10 mL of hydrochloric acid (3.3). Drop hydrogen peroxide 4 times (3.2), 2 mL for each (shake for a moment for each adding). Dissolve at low temperature until the sample dissolves completely (solution is transparent without impurities). Cover the watch glass, boil, remove excessive hydrogen peroxide, cool. If the ......
 
Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.