Neodymium Disc Magnet - 38.1mm x 6.35mm | N52

Product code: D-D38.1H6.35-N52

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Neodymium Disc Magnet - 38.1mm x 6.35mm | N52

Product Code D-D38.1H6.35-N52
Pull Force* 19.09 kg
Weight 15 gm
Style Neodymium DISC
Gauss 2340
Grade N52
Coating Nickel
Direction of Magnetisation Axially through height
Dimensions Height:6.35mm, Diameter:38.1 mm
*Measured against up to 10mm mild steel.
Neodymium Disc Magnet - 38.1mm x 6.35mm | N52

Magnetic Product Description:

This neodymium magnetic disc has a diameter of 38.1mm and a height of 6.35mm. It has a magnetic flux reading of 2340 Gauss and a pull force of 19.09 kilos. It is identified by the AMF magnet part number D-D38.1H6.35-N52.


Uses for our Rare Earth Disc Magnets:

This AMF product is another example of a magnet made with high-grade N52 Neodymium and also with corresponding Imperial measurements of 1.5 x 0.25 inches. Neodymium discs are extremely strong for their size and their nickel coating helps protect the magnetic material inside from corrosion, so their working life is maximised. Permanent disc magnets made with Neodymium can attach strongly to steel surfaces. They have exaggerated power for their size and this means heavier weights can be supported by magnets with smaller dimensions. Attaching artwork, educational material or important public information to any magnetic surface can be done easily with the superior power of rare earth magnets. Even when ferrous materials are absent, two magnets can be used in conjunction to create the bond. Flat, circular magnets can be slotted below the surface of protective coverings or sewn into clothing to form a type of magnetic button. Scarfs, shawls, headwear, corsages and other decorative or fashion items can be practically enhanced with the addition of simple and discreet magnetic attachment.

Neodymium Disc Magnet - 38.1mm x 6.35mm | N52 (D-D38.1H6.35-N52)

Grade
N52 N/A
Max Operating Temperature °C
<=80 N/A
Remanence Br(T)
1.43-1.8 N/A
Remanence Br(kGs)
14.3-14.8 N/A
Coercivity bHc(kA/m)
>=876 N/A
Coercivity bHc(Oe)
>=11 N/A
Intrinsic Coercivity iHc(kA/m)
>=960 N/A
Intrinsic Coercivity iHc(Oe)
>=12 N/A
Max Energy Product(BH)max(KJ/m)
390-422 N/A
Max Energy Product(BH)max(MGOe)
49-53 N/A
Grade N52 N/A
Max Operating Temperature °C <=80 N/A
Remanence Br(T) 1.43-1.8 N/A
Remanence Br(kGs) 14.3-14.8 N/A
Coercivity bHc(kA/m) >=876 N/A
Coercivity bHc(Oe) >=11 N/A
Intrinsic Coercivity iHc(kA/m) >=960 N/A
Intrinsic Coercivity iHc(Oe) >=12 N/A
Max Energy Product(BH)max(KJ/m) 390-422 N/A
Max Energy Product(BH)max(MGOe) 49-53 N/A
Neodymium Disc Magnet - 38.1mm x 6.35mm | N52

Magnetic Product Description:

This neodymium magnetic disc has a diameter of 38.1mm and a height of 6.35mm. It has a magnetic flux reading of 2340 Gauss and a pull force of 19.09 kilos. It is identified by the AMF magnet part number D-D38.1H6.35-N52.


Uses for our Rare Earth Disc Magnets:

This AMF product is another example of a magnet made with high-grade N52 Neodymium and also with corresponding Imperial measurements of 1.5 x 0.25 inches. Neodymium discs are extremely strong for their size and their nickel coating helps protect the magnetic material inside from corrosion, so their working life is maximised. Permanent disc magnets made with Neodymium can attach strongly to steel surfaces. They have exaggerated power for their size and this means heavier weights can be supported by magnets with smaller dimensions. Attaching artwork, educational material or important public information to any magnetic surface can be done easily with the superior power of rare earth magnets. Even when ferrous materials are absent, two magnets can be used in conjunction to create the bond. Flat, circular magnets can be slotted below the surface of protective coverings or sewn into clothing to form a type of magnetic button. Scarfs, shawls, headwear, corsages and other decorative or fashion items can be practically enhanced with the addition of simple and discreet magnetic attachment.

Neodymium Disc Magnet - 38.1mm x 6.35mm | N52 (D-D38.1H6.35-N52)

Grade
N52 N/A
Max Operating Temperature °C
<=80 N/A
Remanence Br(T)
1.43-1.8 N/A
Remanence Br(kGs)
14.3-14.8 N/A
Coercivity bHc(kA/m)
>=876 N/A
Coercivity bHc(Oe)
>=11 N/A
Intrinsic Coercivity iHc(kA/m)
>=960 N/A
Intrinsic Coercivity iHc(Oe)
>=12 N/A
Max Energy Product(BH)max(KJ/m)
390-422 N/A
Max Energy Product(BH)max(MGOe)
49-53 N/A
Grade N52 N/A
Max Operating Temperature °C <=80 N/A
Remanence Br(T) 1.43-1.8 N/A
Remanence Br(kGs) 14.3-14.8 N/A
Coercivity bHc(kA/m) >=876 N/A
Coercivity bHc(Oe) >=11 N/A
Intrinsic Coercivity iHc(kA/m) >=960 N/A
Intrinsic Coercivity iHc(Oe) >=12 N/A
Max Energy Product(BH)max(KJ/m) 390-422 N/A
Max Energy Product(BH)max(MGOe) 49-53 N/A