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GB/T 7731.10-2021 English PDF

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GB/T 7731.10-2021: Ferrotungsten - Determination of carbon content - Infrared absorption method
Status: Valid

GB/T 7731.10: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 7731.10-2021199 Add to Cart 3 days Ferrotungsten - Determination of carbon content - Infrared absorption method Valid
GB/T 7731.10-1988199 Add to Cart 2 days Methods for chemical analysis of ferrotungsten. The infrared absorption method for the determination of carbon content Obsolete

Similar standards

GB/T 5686.5   GB/T 5686.7   GB/T 5686.4   GB/T 7731.17   GB/T 7731.4   GB/T 7731.5   

Basic data

Standard ID: GB/T 7731.10-2021 (GB/T7731.10-2021)
Description (Translated English): Ferrotungsten - Determination of carbon content - Infrared absorption method
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: H11
Word Count Estimation: 10,111
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 7731.10-2021: Ferrotungsten - Determination of carbon content - Infrared absorption method

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Ferrotungsten - Determination of carbon content - Infrared absorption method ICS 77.100 CCSH11 National Standards of People's Republic of China Replace GB/T 7731.10-1988 Determination of tungsten iron carbon content infrared absorption method Released on 2021-08-20 2022-03-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules of Standardization Documents" Drafting. This document is part 10 of GB/T 7731.GB/T 7731 currently publishes the following parts. ---Determination of tungsten iron tungsten content Cinchonine gravimetric method and ammonium nitrate gravimetric method; ---Determination of tungsten, ferromanganese, periodate spectrophotometry and flame atomic absorption spectrometry; ---Determination of tungsten iron copper content dicyclohexanone oxalyl dihydrazone photometry and flame atomic absorption spectrometry; ---Determination of ferrotungsten and phosphorus content Phosphomolybdenum blue spectrophotometric method; ---Determination of tungsten iron silicon content silicon molybdenum blue spectrophotometric method; ---Determination of tungsten, iron, arsenic content, molybdenum blue photometry and inductively coupled plasma atomic emission spectrometry; ---Determination of tungsten iron tin content phenylfluorone photometric method and inductively coupled plasma atomic emission spectrometry; ---Determination of iron tungsten and antimony content Rhodamine B photometric method and inductively coupled plasma atomic emission spectrometry; ---Determination of bismuth tungsten iron bismuth iodide photometric method and inductively coupled plasma atomic emission spectrometry; ---Determination of tungsten iron carbon content infrared absorption method; ---Determination of ferro-tungsten and sulfur content infrared absorption method and combustion neutralization titration method; ---Determination of tungsten, iron and lead content by polarography and inductively coupled plasma atomic emission spectrometry. This document replaces GB/T 7731.10-1988 "Methods for Chemical Analysis of Ferrotungsten by Infrared Absorption Method for the Determination of Carbon Content", and is compatible with GB/T 7731.10- Compared with 1988, in addition to structural adjustments and editorial changes, the main technical changes are as follows. a) Modified the measurement range from "0.025%~0.400%" to "0.010%~1.00%" (see Chapter 1, Chapter 1 of the 1988 edition); b) Modified the carbon content requirement of tungsten flux, from "carbon content less than 0.002%" to "carbon content less than 0.0008%" (see 5.5, 2.5 of the 1988 edition); c) Modified the carbon content requirement of tin flux, from "carbon content less than 0.002%" to "carbon content less than 0.0008%" (see 5.6, 2.6 of the 1988 edition); d) Argon gas has been added (see 5.8, 2.8 in the 1988 edition); e) The number of determinations has been increased (see 8.1); f) Modified the sample weight of the sample, changed to "weigh 0.80g sample, accurate to 0.001g" (see 8.2, 5.1 in the 1988 edition); g) Modified the allowable difference section and the corresponding allowable difference (see Chapter 9, Chapter 6 of the 1988 edition); h) The allowable error in the laboratory has been added (see Chapter 9, Chapter 6 of the 1988 edition); i) Added "Test Results Acceptance Flow Chart" (see Appendix A). Please note that some of the contents of this document may involve patents. The issuing agency of this document is not responsible for identifying patents. This document was proposed by the China Iron and Steel Association. This document is under the jurisdiction of the National Pig Iron and Ferroalloy Standardization Technical Committee (SAC/TC318). Drafting organizations of this document. Jifei Ferroalloy Co., Ltd., Ganzhou Jiangtungsten Tungsten Alloy Co., Ltd., Qingdao Yuancheng Chuangzhi Technology Co., Ltd. Division, Jiangxi Province Tungsten and Rare Earth Product Quality Supervision and Inspection Center, Hebei Jinxi International Trade Co., Ltd., Shanghai Lirun Mechanical and Electrical Equipment Co., Ltd., Metallurgical Industry Information Standards Institute. The main drafters of this document. Zheng Haidong, Zhang Yunpeng, Liu Bing, Feng Hua, Wang Shuliang, Zhong Yinglan, Xiao Shimei, Li Jinglin, Liu Chenggui, Yang Xianggeng, Li Zhidong, Guo Xiuting, Wang Jing. This document was first published in 1988, and this is the first revision.

Introduction

As there are many elements involved in the detection process of ferrotungsten, the applicable scope and applicable methods of the elements are different. In order to guarantee tungsten The iron detection standards are convenient and accurate. We have established a national standard for the analysis of different elements of ferrotungsten. Tie. The GB/T 7731 ferro-tungsten series analysis method is the basic standard for the detection of ferro-tungsten in my country, and it is planned to be composed of the following fourteen parts. But some The points have been abolished, and you need to pay attention to it during use. ---GB/T 7731.1 Determination of tungsten iron tungsten content Cinchonine gravimetric method and ammonium nitrate gravimetric method. The purpose is to measure the tungsten iron For the tungsten content, the cinchonine gravimetric method and the ammonium nitrate gravimetric method are used. ---GB/T 7731.2 Determination of Tungsten Ferromanganese Content Periodate Spectrophotometry and Flame Atomic Absorption Spectrometry. Aim at To measure the manganese content in ferrotungsten, periodate spectrophotometry and flame atomic absorption spectrometry were used. ---GB/T 7731.3 Determination of tungsten-iron-copper content. Dicyclohexanone oxalyl dihydrazone spectrophotometry and flame atomic absorption spectrometry. Item The method is to measure the copper content in ferro tungsten, using dicyclohexanone oxalyl dihydrazone spectrophotometry and flame atomic absorption spectrometry. ---GB/T 7731.4 Determination of Tungsten Ferrophosphorus Content Phosphomolybdenum Blue Spectrophotometric Method. The purpose is to measure the phosphorus content in ferro tungsten, Using phosphomolybdenum blue spectrophotometry. ---GB/T 7731.5 Determination of tungsten ferrosilicon content Silicon molybdenum blue spectrophotometric method. The purpose is to measure the silicon content in ferro tungsten, Using silicon molybdenum blue spectrophotometry. ---GB/T 7731.6 Determination of tungsten, iron, arsenic content, molybdenum blue photometry and inductively coupled plasma atomic emission spectrometry. Item The purpose is to measure the arsenic content in ferro-tungsten, using molybdenum blue photometry and inductively coupled plasma atomic emission spectrometry. ---GB/T 7731.7 Determination of tungsten-iron-tin content-Phenylfluorone photometric method and inductively coupled plasma atomic emission spectrometry Law. The purpose is to measure the tin content in ferro tungsten, using phenylfluorone photometry and inductively coupled plasma atomic emission light Spectrum method. ---GB/T 7731.8 Determination of tungsten iron antimony content Rhodamine B photometric method and inductively coupled plasma atomic emission spectrometry Law. The purpose is to measure the antimony content in ferro tungsten, using rhodamine B photometry and inductively coupled plasma atomic emission light Spectrum method. ---GB/T 7731.9 Determination of bismuth tungsten iron bismuth iodide photometric method and inductively coupled plasma atomic emission spectrometry. The purpose is to measure the bismuth content in ferro-tungsten, using bismuth iodide photometry and inductively coupled plasma atomic emission spectrometry. ---GB/T 7731.10 Determination of tungsten iron carbon content infrared absorption method. The purpose is to measure the carbon content in ferro tungsten, using Infrared absorption method. ---GB/T 7731.11 Ferrotungsten Chemical Analysis Method Coulometric Method for the Determination of Carbon Content. The purpose is to measure the carbon content in ferro tungsten, using Coulomb method. This part has been abolished. ---GB/T 7731.12 Determination of tungsten iron and sulfur content infrared absorption method and combustion neutralization titration method. The purpose is to measure tungsten The sulfur content in iron uses infrared absorption method and combustion neutralization titration method. ---GB/T 7731.13 Methods for chemical analysis of ferrotungsten. Combustion neutralization titration method for the determination of sulfur content. The purpose is to measure the sulfur in ferro tungsten For the content, use the combustion neutralization titration method. This part has been abolished. ---GB/T 7731.14 Determination of tungsten, iron and lead content by polarography and inductively coupled plasma atomic emission spectrometry. Purpose To measure the lead content in ferro-tungsten, polarography and inductively coupled plasma atomic emission spectrometry are used. Determination of tungsten iron carbon content infrared absorption method Warning---Personnel using this document should have formal laboratory work experience. This document does not indicate all possible safety issues question. The user is responsible for taking appropriate safety and health measures and ensuring compliance with the conditions stipulated by relevant national laws and regulations.

1 Scope

This document specifies the infrared absorption method to determine the carbon content in ferro-tungsten. This document is applicable to the determination of carbon content in ferro-tungsten. Measuring range (mass fraction). 0.010%~1.00%.

2 Normative references

The contents of the following documents constitute the indispensable clauses of this document through normative references in the text. Among them, dated quotations Only the version corresponding to that date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to This document. GB/T 4010 Collection and preparation of samples for chemical analysis of ferroalloys GB/T 8170 Numerical rounding rules and the expression and determination of limit values

3 Terms and definitions

There are no terms and definitions that need to be defined in this document.

4 Principle

The sample is heated and burned in the oxygen stream of the high-frequency induction furnace to generate carbon dioxide, which is carried by the oxygen to the measuring chamber of the infrared analyzer. Carbon absorbs infrared energy at a specific wavelength, and its absorption energy is proportional to its concentration. The quality of carbon can be measured according to the change in the energy received by the detector. Fraction.

5 Reagents and materials

Unless otherwise specified, only use analytical reagents. 5.1 Acetone, the carbon content of the residue after evaporation is less than 0.0005%. 5.2 Alkali asbestos, granular. 5.3 Magnesium perchlorate, anhydrous, granular. 5.4 Glass wool. 5.5 Tungsten flux, carbon content is less than 0.0008%, particle size is 0.8mm~1.4mm. 5.6 Tin flux, carbon content is less than 0.0008%, particle size 0.4mm~0.8mm. If necessary, use acetone (5.1) to clean the surface, and Dry at room temperature. 5.7 Oxygen, the purity is greater than 99.95%, if other purity oxygen can obtain a low and consistent blank, it can also be used. 5.8 Power gas source, nitrogen, argon or compressed air, its impurity (water and oil) content is less than 0.5%. 5.9 Ceramic crucible, diameter × height. 23mm × 23mm or 25mm × 25mm, and in a high temperature heating furnace not less than 1200 ℃
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