Dongguan Xinlei Magnetoelectric Co., LTD

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Neodymium-iron-boron magnet manufacturers Following the technological innovation of the automotive industry and the human needs for energy conservation and environmental protection, electric or hybrid vehicles with low energy consumption, low noise, and less exhaust gas have become the goals that everyone seeks. Bonded NdFeB magnets have the advantages of high magnetic performance, small size and high efficiency. The efficiency of motors using NdFeB magnets is 8-50% higher than that of ordinary motors, the power consumption is reduced by more than 10%, and the volume and weight can be increased by 30%. above. Complete the development of automobiles in the direction of miniaturization, light weight, high performance, energy saving and environmental protection.

The use of NdFeB magnets has always been very common. With the change of time, the era of science and technology continues to advance, and the use of NdFeB magnets has become more and more obvious. NdFeB magnets not only have small size, light weight and strong magnetic properties, but also are the most reasonable and best magnets in this society. The most important raw materials of NdFeB magnets are neodymium metal, pure iron, iron boron alloy and other additives, so NdFeB magnets have such good performance. Although magnets bring us a lot of convenience, they also have certain harms. For example, magnetic electronic products such as keyboards and bank cards will be magnetized by magnets.

NdFeB magnets are used in the field of descaling and anti-scaling. After the water is treated by high-strength NdFeB magnetization, the water molecular bonds are deformed at the same time in the ignition angle and length, and the hydrogen bond angle is reduced from 105 degrees to below 103 degrees. The physical and chemical properties of water are changed in series, and the activity and ablation degree of water are greatly improved. Calcium carbonate in the water is flatly decomposed into lower solid calcium bicarbonate during the cooking process, which is not easy to accumulate on the wall and is easily carried by water. Walk. The degree of polymerization of other water increases, and the dissolved solid materials become finer particles. After the particles are refined, the distance between the two ions is small, and it is not easy to agglomerate on the wall, and then achieve the effect of descaling.

In the rare earth functional material industry, high-performance NdFeB permanent magnet materials are mainly used, and high-performance NdFeB permanent magnet materials are mainly used in high-end application markets such as new energy and energy saving and environmental protection, such as EPS, new energy car etc.

Application of NdFeB magnets in various fields

NdFeB magnets, as the third-generation rare earth permanent magnet materials, have high performance and are widely used. However, it should be noted that in order to prevent corrosion damage, the surface of NdFeB magnets needs to be protected during application. For example, use gold, zinc, etc. to stop electroplating, and spray epoxy resin on the surface.

What are the success points of NdFeB magnets? You must know that in today's society, after thousands of years of development, today's magnets have become an indispensable functional material in our lives. Through the advanced powder metallurgy process, alloys of different materials can be formed, which can achieve and exceed the effect of magnets, and can also maximize the magnetic force.

Man-made magnets appeared in the 18th century, but the process of making higher magnetic materials was very slow until AlNiCo (AlNiCo) was made in the 1920s. Then, in 1948, ferrite ( Ferrite (, produced rare earth magnets in the 1970s [Rare Earth magnet] Samarium Cobalt (SmCo (, 1986 NdFeB (NdFeB) was born, which is by far the strongest magnet in the world.

So far, the physical magnetic technology has been further developed, and the strong magnetic materials have also made the components more miniaturized. In 1999, Zibo Shengjin Magnet broke through the industry precedent with its independent combination of 13000GS rare earth strong magnets, and soon implemented the development in the industry. Come, my country's rare earth magnetic industry has ushered in a new world.

The temperature resistance of strong magnets is below 80 degrees. We only need to bake the strong magnet on the fire for a few minutes. After cooling, you put it around the iron block and find that it has lost its magnetism and can no longer attract not get up.

The factor is that the strong magnet is magnetic because the iron atoms in the strong magnet are arranged in a regular manner. After it is heated, the original arrangement of the iron atoms is disordered, and thus the original magnetism is lost. In the same way, we can also demagnetize strong magnets in other ways.

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