US$329.00 · In stock Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. JJG 395-2016: Carbon-sulfur Analyzers Status: Valid JJG 395: Evolution and historical versions
Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Standard Title (Description) | Status | PDF |
JJG 395-2016 | English | 329 |
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3 days [Need to translate]
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Carbon-sulfur Analyzers
| Valid |
JJG 395-2016
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JJG 395-1997 | English | 439 |
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Verification regulation for carbon-sulfur analyzer
| Obsolete |
JJG 395-1997
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PDF similar to JJG 395-2016
Standard similar to JJG 395-2016 JJG 631 JJG 291 JJG 551 JJG 680 JJG 499
Basic data Standard ID | JJG 395-2016 (JJG395-2016) | Description (Translated English) | Carbon-sulfur Analyzers | Sector / Industry | Metrology & Measurement Industry Standard | Classification of Chinese Standard | A61 | Word Count Estimation | 14,130 | Date of Issue | 2016-11-25 | Date of Implementation | 2017-05-25 | Older Standard (superseded by this standard) | JJG 395-1997 | Regulation (derived from) | State Administration of Quality Supervision, Inspection and Quarantine Notice No.116 of 2016 | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine |
JJG 395-2016: Carbon-sulfur Analyzers---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.
Carbon-sulfur Analyzers
National Metrological Verification Regulation of the People's Republic of China
Fixed carbon deposition sulfur analyzer
2016-11-25 release
2017-05-25 implementation
State Administration of Quality Supervision, Inspection and Quarantine issued
Test procedure for determination of carbon fixation sulfur analyzer
Analy
zers
Replacing JJG 395-1997
Responsible unit. National Environmental Chemical Metrology Technical Committee
The main drafting unit. Shanghai Institute of Metrology and Testing Technology
Participated in the drafting unit. Jiangsu Province Institute of Metrology
This procedure entrusts the National Environmental Chemistry Metrology Technical Committee to explain
The main drafters of this procedure.
Huang Wei (Shanghai Institute of Metrology and Testing Technology)
Ren Shuzhen (Shanghai Institute of Metrology and Testing Technology)
Ding Min (Shanghai Institute of Metrology and Testing Technology)
Participate in the drafters.
Cai Yeqiang (Jiangsu Institute of Metrology)
table of Contents
Introduction (II)
1 Scope (1)
2 Overview (1)
3 Measurement performance requirements (1)
4 General technical requirements (2)
4.1 appearance and functional inspection (2)
4.2 Insulation resistance (2)
4.3 Insulation strength (2)
5 Measuring instruments (2)
5.1 Test conditions (2)
5.2 Verification Project (3)
5.3 Verification method (3)
5.4 Test result processing and verification cycle (4)
Appendix A Carbon sequestration sulfur analyzer Verification of the original record (5)
Appendix B Verification Certificate/Verification Result Notice Page Format (7)
Introduction
This procedure is based on JJF1002 "National Metrological Verification Rules", JJF1001 "General measurement terms and
Definition "to write.
Compared with JJG 395-1997 "carbon fixation sulfur analyzer", in addition to editorial changes, the main technical changes
As follows.
--- increase the automatic high-speed carbon and sulfur analyzer;
Adjust the measurement range and maximum allowable error of the infrared carbon and sulfur analyzer. JJG 395-1997, carbon
Measuring range of 0.0010% ~ 3.00%, sulfur measurement range of 0.0010% to 0.300%, ultra-low carbon and low sulfur
The maximum allowable error is ± 0.0005%. In this procedure, the measurement range of carbon is 0.005% ~ 4.00%
The range of 0.003% ~ 0.200%, ultra-low carbon and low sulfur maximum allowable error of ± 0.002% and
± 0.001%;
--- Adjust the repeatability of the infrared carbon and sulfur analyzer. In JJG 395-1997, the repeatability of carbon and sulfur means
Standard were 1.0% and 4.0%, the rules, the indicators were 0.8% and 3.0%;
--- to cancel the weighing stability requirements;
--- increase the insulation resistance and dielectric strength of the two conventional safety performance indicators.
The previous release of this procedure.
--- JJG 395-1997.
Test procedure for determination of carbon fixation sulfur analyzer
1 Scope
This procedure applies to the infrared carbon and sulfur analyzer and automatic high-speed carbon and sulfur analyzer for the first time, the subsequent verification and
Check in.
2 Overview
Carbon stabilized sulfur analyzer (hereinafter referred to as instrument) is mainly used for steel, metallurgy, machinery manufacturing processing, casting colored
Quantitative Analysis of Carbon and Sulfur in Steel, Iron and Other Materials in Metals and Other Industries. Determination of metal, ore, ceramics and other objects
The content of carbon and sulfur contained in the quality, mainly infrared carbon and sulfur analyzer and automatic high-speed carbon and sulfur analyzer two categories
instrument.
Infrared carbon and sulfur analyzer is the principle of a certain quality of the sample after flux in the high-frequency furnace in the high-temperature heating combustion,
So that the sample of carbon, sulfur and oxygen reaction to produce carbon dioxide and sulfur dioxide gas, driven by the carrier gas through the gas
The treatment system enters the detection chamber of carbon dioxide and sulfur dioxide, using carbon dioxide and sulfur dioxide at 4260 nm
And 7400nm, with a strong characteristic absorption of this feature, by measuring the gas absorption of light intensity analysis of carbon dioxide
And sulfur dioxide content, resulting in the sample carbon and sulfur content of the percentage.
Automatic high-speed carbon and sulfur analyzer, including gas capacity of carbon and sulfur analyzer and conductivity of carbon and sulfur analyzer. Gas volume method
Carbon and sulfur analyzer (volumetric method) is the principle of carbon measurement for the gas volume method, the sample in the high temperature furnace into the oxygen combustion, carbon
Is oxidized to carbon dioxide, absorbed with potassium hydroxide to absorb the difference between before and after the volume, calculated by determining the carbon content;
Sulfur for the iodine method, sulfur generated by combustion of sulfur dioxide, starch absorption to produce sulfurous acid, and then iodine (or iodic acid
Potassium) solution titrated to light blue for the end, from the consumption of iodine volume obtained sulfur content. Conductivity method Carbon and sulfur analyzer (Conductivity
Method) is the principle of the sample after the high temperature combustion generated by the mixed gas, after the absorption of the conductivity cell, the solution conductivity
Rate changes, so as to determine the carbon and sulfur content.
3 Measurement performance requirements
Infrared carbon and sulfur analyzer and automatic high-speed carbon and sulfur analyzer metering performance requirements are shown in Table 1 and Table 2, respectively.
Table 1 Infrared carbon and sulfur analyzer metering performance requirements
Item Name Carbon content Maximum allowable error Maximum permissible error of sulfur content
Indication error
% (Mass fraction)
0.005 to 0.010 ± 0.002 0.003 to 0.010 ± 0.001
0.010 to 0.100 ± 0.005 > 0.010 to 0.100 ± 0.005
> 0.100 to 1.000 ± 0.010 > 0.100 to 0.200 ± 0.010
> 1.00 ~ 4.00 ± 0.030
Repeatability /% carbon. ≤ 0.8, sulfur. ≤ 3.0
Analysis time < 1min
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