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What is the material of metal bauer ring

There are a variety of metal bauer ring materials, stainless steel 304,304L,410,316,316L and carbon steel, which can be selected. What is the difference between metal bauer rings according to the material? Introduce you to some commonly used metal bauer ring materials.

1. 304 stainless steel, as one kind of austenitic stainless steel, has a wide range of applications and uses. It is used for the production of deep-drawn parts, acid pipes, containers, connectors, various instrument bodies, etc.

2. 304L stainless steel. In order to solve the problem that 304 stainless steel has serious intergranular corrosion tendency due to the precipitation of cr23c6, the sensitized intergranular corrosion performance of 304 stainless steel is better than that of 304 stainless steel. Except for slightly lower strength, other properties are similar to 321 stainless steel. It is mainly used for corrosion resistant equipment and parts that cannot be treated with solid solution after welding.

3. 316 stainless steel. Taking 10Cr18Ni12 steel as the base material and adding molybdenum, good reduction medium and pitting resistance can be obtained. The corrosion resistance of seawater and other media is better than 304 stainless steel, which is mainly used for pitting corrosion resistance materials.

4. 316L stainless steel ultra-thin carbon steel, with good resistance to intergranular corrosion, is suitable for manufacturing welding joints and equipment with thick section size, such as corrosion resistant materials for petrochemical equipment.

5. Carbon steel, with good plasticity and low strength, refers to carbon steel with carbon content less than 2%, which is made of stainless steel sheet after stamping and shaping. It is one of the metal bauer rings.

No matter where the packing is in the tower body, Bauer ring packing will spray liquid onto the tower body. Some of the liquid will flow into the tower body through the outer wall, some through the small window, and some through the blade into the center of the tower body. This method increases the degree of liquid dispersion and improves the utilization of the inner surface of the packing. The blade maintains the original wall surface and adds a new blade surface, so the specific surface area is larger than that before opening the window.

The curved blades of the metal Bauer ring increase the degree of gas disturbance, stagger the windows, and reduce the stagnation dead zone between adjacent fillers. The results show that the gas-liquid distribution is uniform, which improves the contact surface of the two phases, thus improving the mass transfer efficiency. The constant mass transfer efficiency is maintained in a large gas velocity range.

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