Alloy analyzer is an on-site determination tool based on X-ray theory, which is widely used in military industry, aerospace, steel, petrochemical, power, pharmaceutical and other industries to quickly identify the elements in metal materials. Traditional methods for metal analysis usually adopt chemical analysis, which calculates the content of each element through chemical reactions and weighing of the sediment. However, this method is time-consuming and costly. The emergence of alloy analyzers has greatly improved the efficiency of analysis and reduced costs.
Portable alloy analyzer is an instrument that can accurately analyze the element content in metal samples, for handheld XRF spectrometer for Element Analysis. Alloys are usually composed of two or more metals synthesized according to a specific formula, resulting in materials with metal properties. The function of the portable alloy analyzer is to analyze the metal sample and determine the content of various elements for quality control and material research.
Technical principles of Portable alloy analyzer:
The Portable alloy analyzer works through the technology of XRF spectroscopic analysis. XRF technology can determine specific metal elements in materials and conduct quantitative analysis. The instrument determines the specific metal elements by measuring the wavelength (λ) and energy dispersion (E) of X-rays, and determines the content of the metal element by accurately measuring the relative intensity of the corresponding rays. Therefore, portable alloy analyzer can detect the metal element composition in materials.
There is a stable number of electrons on the electron orbit of each atom, which are negatively charged particles that revolve around the nucleus. In each atom, the number of electrons is equal to the number of protons, which can be known from the number of atoms in the periodic table. Each atom corresponds to a stable metal element name. For example, the chemical symbol for iron is Fe, and the number of atoms is 26. In the energy dispersive X-ray fluorescence and the wavelength dispersive X-ray fluorescence spectrometer technology, the movement state of the innermost 3 electron orbits, namely, K, L, M orbits are particularly studied and applied. Among them, the K orbit is closest to the nucleus, and each electron orbit corresponds to an energy consumption layer of a specific metal element.
In the XRF analysis method of portable alloy analyzer, high-energy primary radiation photons emitted by X-ray tubes collide with metal elements in the sample. The primary photons have enough energy to knock out inner electrons, causing the atomic structure to become unstable and form ions. In order to restore balance, electrons on the surface of the atoms will fill the vacancies in the inner layer. In this process, electrons emit energy and produce phenomena called secondary X-ray photons.
Applications of portable alloy analyzer:
The application range of portable alloy analyzer is very wide. Firstly, it can be used for metal identification, which determines the type of metal by analyzing the chemical composition of metal samples. This is very important for industries such as metal production, processing, and recycling, because different types of metals have different properties and uses, and correct identification of metal types can effectively avoid confusion and improper use of metal materials.
Secondly, portable alloy analyzer can be used for the analysis of ore minerals. Ores are naturally occurring minerals that are mined from underground and often contain multiple metal elements. By analyzing the chemical composition of ore samples, the metal content and varieties can be determined, providing accurate data support for ore evaluation, ore processing, and beneficiation.
In addition, portable alloy analyzer can also be used for the analysis of ternary catalyst materials. Ternary catalyst materials are widely used in fields such as automobile exhaust treatment and chemical production. By analyzing the chemical composition of ternary catalyst materials, the active element content and alloy grade can be determined to ensure that they meet the requirements for use, improve catalytic efficiency and product quality.
The rapid and accurate characteristics of portable alloy analyzer enable users to get instant testing results. Its integrated design makes the testing process simple and does not require complicated sample preparation or experimental operations. Users only need to place the sample in the instrument, press the start button, and the instrument will quickly conduct chemical analysis and generate corresponding data reports. This greatly improves work efficiency and saves time and labor costs.
In summary, portable alloy analyzer is an important technical tool applicable to the chemical analysis and identification of metals, ores, and ternary catalysts. Its wide range of applications and rapid and accurate performance make it an indispensable equipment in many industries. Through portable alloy analyzer, users can quickly and accurately obtain the chemical composition and alloy grade of samples, providing important basis for material selection and application, and improving production efficiency and product quality.
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