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Database: 365,228(8 Aug 2026)
carbon steel low-alloy steel ― determination spark discharge spectrometric method routine method combed polyester-cotton type vi scopethis standard petrochemical products logistics service specifications scopethis standard
GB/T 4336-2016 in English

GB/T 4336-2016 in English

SUPERSEDED

Carbon and low-alloy steel―Determination of multi-element contents―Spark discharge atomic emission spectrometric method (routine method)

  • Issued on:2016-02-24
  • Implemented on:2016-11-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $150.00
$146.00
Standard No: GB/T 4336-2016
Document status: SUPERSEDED
Superseded by: GB/T 4336-2016/XG1-2017 Carbon and low-alloy steel―Determination of multi-element contents―Spark discharge atomic emission spectrometric method (routine method), includes Amendment 1
Superseded on: 2017-09-29
Title in English: Carbon and low-alloy steel―Determination of multi-element contents―Spark discharge atomic emission spectrometric method (routine method)
Title in Chinese: 碳素钢和中低合金钢 多元素含量的测定 火花放电原子发射光谱法(常规法)
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2016-02-24
Implemented on: 2016-11-01
Superseding: GB/T 4336-2002 Standard Test Method for Spark Discharge Atomic Emission Spectrometric Analysis of Carbon and Low-Alloy Steel (Routine Method)
ICS Classification: 77.080.20-Steels
Chinese Classification: H11-Steel and iron alloy analysis method
Professional Classification: GB-National Standard
Related Keywords: carbon steel
low-alloy steel ― determination
spark discharge
spectrometric method
routine method
Related Topics: atomic emission spectrometry
Element content
Element content
Chromatographic element content
Element content in steel and alloy
Element content spectrum
Element Spectrum Lithium
Spark source atomic emission spectrometry analysis method
Except for constant elements
The spectrum of sulfur
Emission spectrum of iron element
Elemental content in the alloy
Analysis of element content in alloy
spark discharge atomic emission spectrometry
as element
as element
light and elements
Elemental Flame Spectrum
lgm
Electron spectrum of gold element
The content of elemental analysis
Which elements are determined by atomic spectroscopy
Carbon element test
spark discharge
atomic detection element
Cesium emission spectrum
Element content spectrometer
Lanthanum atom
Atomic Lithium
Spectra of aluminum and bromine
gb/t4336-2002
atomic test element
atomic weight element
Gold Spectrum
be element
diatomic element
be element
Determination of Calcium Content Atoms
gb/t4336
Elemental Content of Collagen
Elemental content analysis
Multi-element multi-element analyzer
GB/T 4336
gold spectrum
gb/t+4336
Atomic Ratio in Elemental Analysis
"Atomic Emission Spectroscopy"
GB 4336
gb4336
Method for Determination of Alloying Element Content
Determination method of alloying element content
gold spectrum
Analyzing the content of elements
Elemental electron energy
Element and Atomic Weight
Determination of element content by atomic spectroscopy
Alloy steel element content
GB/T 4336-2016
Spectrometer element content
The mass of an atom is very
test constant element
"Spark Discharge"
carbon atom method
Atomic weight of the element cobalt
Atomic weight of zirconium element
Atomic element detection
Atomic fluorescence element content
low alloy steel multi-element
spark discharge atomic emission
GBT4336
GBT4336 AMD
GB/T 4336-2002
GB/T 4336-2016
GB/T 4336-2016 AMD
Carbon steel and low and medium alloy steel
Decay Law of Radioactive Elements
How many types of radioactive elements are there?
Reason for low aluminum element measured by Icpoes
Commonly used qualitative methods for atomic emission include
Five harmful elements in steel
Determination methods of common organic elements
Spark Source Atomic Emission Spectroscopy Analysis
Common methods for determination of metal elements
Commonly used detection methods for proanthocyanidins
gb/t4336-2016
gb/t 4336-2002
gb4336-2016

《GB/T 4336-2016碳素钢和中低合金钢 多元素含量的测定 火花放电原子发射光谱法(常规法)》由TC183(全国钢标准化技术委员会)归口,TC183SC5(全国钢标准化技术委员会钢铁及合金化学成份测定分会)执行,主管部门为中国钢铁工业协会。


Scope

This standard specifies the determination of carbon, silicon, manganese, phosphorus, sulfur, chromium, nickel, tungsten, molybdenum, vanadium, aluminum, titanium, copper in carbon steel and medium and low alloy steel by spark discharge atomic emission spectrometry (conventional method). , niobium, cobalt, boron, zirconium, arsenic and tin content. This standard applies to the analysis of as-cast or forged carbon steel and medium and low alloy steel samples in electric furnaces, induction furnaces, electroslag furnaces, converters, etc. The determination range of each element is shown in Table 1.

Foreword I
1 Scope
2 Normative References
3 Principle
4 Instruments
5 Sampling and Sample Preparation
6 Standard Sample, Standardization Sample and Control Sample
7 Instrument Preparation
8 Calibration
9 Analysis Conditions and Analysis Procedures
10 Calculation of Analysis Result
11 Precision
12 Acceptability of Measuring Result and Determination of Final Report Result
13 Accuracy Judgment for Measuring Result in Laboratory
14 Test Report
Appendix A (Informative) Additional Information on Precision Experiment
Appendix B (Informative) Precision Data

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