Self Adhesive Disk Neo Magnet, Sintered Neodymium Iron Boron Disk Magnets, Self Adhesive 3M Disc Magnet, Disc Rare Earth Permanent Magnet, NdFeB Round with Self-adhesive, Neodymium Disc Magnet Self Adhesive
Product Name:Self Adhesive Disk Neo Magnet
Magnet ID:Adhesive-Disc-Ø10×2-N38
+ Highest Energy of All Permanent Magnets
+ Moderate Temperature Stability
+ High Coercive Strength
+ Moderate Mechanical Strength
Our Superiority: Customized is Available!
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Hangseng Magnetech Inc. (SUPERMAG, neoi) is your best source for the highest quality magnets, neodymium magnets, magnetic devices and expert application assistance for OEM, point-of-purchase, industrial and retail markets.
Neodymium Iron Boron magnets have some advantages over Samarium Cobalt magnets. Neodymium Iron Boron magnets are less expensive, since the main elements Nd and Fe are abundant, and are mechanically stronger. High energy products can be achieved (HSMAG offers materials as high as 55 MGOe, see N5563). Small production runs have successfully yielded 58 MGOe nominal energy products; however, these are only achievable in the R&D state. Neodymium Iron Boron magnets are about 13% lighter than SmCo magnets. However, before deciding which material is better for you, review the comparisons between Neodymium Iron Boron and Samarium Cobalt.Disk Neo Magnet
Over the last 10 years, Neodymium Iron Boron magnets have become extremely popular in almost all high technology applications that require high performance magnets. Motors, sensors, computers, and microwave components are a few areas where Neodymium Iron Boron magnets are successfully used . The recent “miniaturization” of electronic and mechanical components is due to the high-energy products that are achieved using Neodymium Iron Boron magnets. Large capacity hard drives, miniature hand held tape recorders, feather weight head sets, and anti-lock braking systems have made tremendous leaps due to the Neodymium magnets. Disk Neo Magnet
The selection of Neodymium Iron Boron magnets in your applications will depend on your working environment. If you use the magnets at elevated temperatures, select the alloys that have a high intrinsic coercivity (Hci). If you use the alloy at lower temperatures (such as room temperature), you may select higher Br materials. Remember that if the magnet is being used in adverse conditions, such as repelling positions in motors where repelling magnetic fields are being used to drive the rotor and similar applications, selecting materials with moderate or high coercivity is recommended. Applications where fields are being used to trigger sensors, switches, and similar applications may use lower coercivity magnets.
Using the Neodymium Iron Boron magnet in cryogenic temperatures (below 200°C) is not recommended from our standard alloys; however, HSMAG does offer custom alloys for these applications. These custom alloys are available in limited quantities since they are extremely specialized and only produced in the lab. These advanced alloys can reach energy products in excess of 53 MGOe at cryogenic temperatures. For further information, please call the factory or contact your regional sales manager.