Multi- element analyzer applied to the detection of steel chemical composition

Multi-element analysis is applied to the detection of carbon structural steel chemical composition analysis of the material, carbon steel chemical composition (i.e. carbon content) can be divided into low-carbon steel, medium carbon steel and high carbon steel, the steel is to C Common elements such as S, Mn, P, Si, Cr, Ni, Mo, Re, Mg, Fe, Cu, Al, V, W, Ti, and the like. Carbon-sulfur analysis uses infrared photometric analysis to significantly improve the analytical accuracy. The first elemental analyzer in China uses a diffraction grating digital motor wavelength-adjustable optical system. The use of computers to achieve program control and data processing. It can quickly and accurately measure the carbon steel, the content of the component detecting low carbon steel, carbon steel and high carbon steel, high degree of automation, do not call like functionality, accurate, reliable and user-friendly operation.

Multi- element analyzer applied to the detection of steel chemical composition

Carbon Structural Steel Chemical Composition Testing Material Analysis :

Carbon steel can be divided into low carbon steel, medium carbon steel and high carbon steel according to chemical composition (ie, carbon content).

(1) Low-carbon steel, also known as mild steel, containing 0.1% to 0.30% of carbon. Mild steel is easy to accept various processes such as forging, welding and cutting. It is commonly used in the manufacture of chains, rivets, bolts, and shafts.

(2) Medium carbon steel Carbon steel with 0.25% to 0.60% carbon content. There are many products such as calm steel, semi-static steel, boiling steel and so on. In addition to carbon, it can also contain a small amount of manganese (0.70% to 1.20%). According to the product quality, it is divided into ordinary carbon structural steel and high-quality carbon structural steel. Thermal processing and cutting performance is good, welding performance is poor. Strength and hardness are higher than that of low carbon steel, while plasticity and toughness are lower than low carbon steel. Hot-rolled materials and cold-drawn materials can be used without heat treatment, and can also be used after heat treatment. The medium carbon steel after quenching and tempering has good comprehensive mechanical properties. The highest hardness that can be achieved is approximately HRC55 (HB538) and σb is 600 to 1100 MPa. As a result, medium-carbon steels are most widely used in various applications of medium-intensity level, and are used in large quantities for manufacturing various mechanical parts in addition to construction materials.

(3) High-carbon steel, often referred to as tool steel, can contain carbon from 0.60% to 1.70% and can be hardened and tempered. Hammers, crowbars, etc. are made of steel with a carbon content of 0.75%; cutting tools such as drills, taps, reamers, etc. are made of steel with a carbon content of 0.90% to 1.00%.


Nanjing Kirin Scientific Instrument Group Co., Ltd.

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