The SPAS-05 emission spectrometer is designed to measure the content of various elements that make up metals and alloys in accordance with standardized and certified measurement methods.
We provide a metal analysis service by breaking the control sample.
Destructive testing is a selective testing of samples in which the product is destroyed. Based on the results of such tests, a conclusion is made about the quality of the entire batch.
Order an analysis
Spectral analysis of chemical composition
The SPAS-05 emission spectrometer is designed to measure the content of various elements that make up metals and alloys in accordance with standardized and certified measurement methods.
We provide a metal analysis service by breaking the control sample.
Destructive testing is a selective testing of samples in which the product is destroyed. Based on the results of such tests, a conclusion is made about the quality of the entire batch.
Order an analysis
High measurement accuracy
Low detection limits
Built-in database of alloy characteristics
Chemical analysis of low-, medium-, and high-alloyed steels using the SPAS-05 emission spectrometer
Determination of the steel grade (issuance of a certificate confirming that the sample corresponds to the declared grade) using the SPAS-05 emission spectrometer
Determination of the chemical composition of an alloy using the SPAS-05 emission spectrometer (issuance of a conclusion on the chemical composition of alloys based on low-, medium- and high-alloyed steels
Input control of low-, medium- and high-alloyed metals using the SPAS-05 emission spectrometer
This method allows for the high-precision determination of elements such as C, Ni, Cr, P, S, Mn, and other elements (up to 28 elements).
Metal analysis is performed in a specialized laboratory by qualified personnel. Before the measurement, the sample must be cleaned to ensure that the sample is uniform, as the analysis is a destructive method that involves breaking the sample into several microns in the burning area. After the sample preparation and analysis process, the chemical composition (percentage of chemical elements) is obtained, which is used to identify the material type.
methods used
GOST R 54153-2010
Method of analysis of high-alloy chromium-nickel steels
01
It uses the atomic emission spectral method with photoelectric spectrum registration to determine the mass fraction of elements in steel.
Methodology for analyzing low- and medium-alloyed steels
02
It establishes an atomic emission spectral method with photoelectric spectrum registration for determining the mass fraction of elements in steel
methods used
GOST R 54153-2010
01
Method of analysis of high-alloy chromium-nickel steels
It uses the atomic emission spectral method with photoelectric spectrum registration to determine the mass fraction of elements in steel.
02
Methodology for analyzing low- and medium-alloyed steels
It establishes an atomic emission spectral method with photoelectric spectrum registration for determining the mass fraction of elements in steel
Metals for which the analysis is performed
All types of steel + titanium
Copper, brass, bronze
Aluminum and duralumin
Ceramics
Granite and artificial stone
Marble
Rubber and polyurethane
All types of plastic
Equipment for analysis
Optical-emission Spectrometer SPAS-05
It is designed for the analysis of the chemical composition of metals and alloys using the spark emission method, which is characterized by high measurement accuracy and a wide range of elements that can be determined.
Equipment for analysis
Optical-emission Spectrometer SPAS-05
It is designed for the analysis of the chemical composition of metals and alloys using the spark emission method, which is characterized by high measurement accuracy and a wide range of elements that can be determined.
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