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Ferrite Insert Molded Magnets, Injection Mold Bonded Ferrite Magnets, Insert Molded Magnets, Anisotropic Ceramic MIM Permanent Magnets, Anisotropic and Isotropic Bonded Plastic Ferrite Magnet, Injection Bonding Ferrite Magnetic Assemblies China Supplier and Factory
Ferrite Insert Molded Magnets Technical
Material: Plastic Binders and Ferrite Powder
Method: Injection Mold
Part No.: MPBD-IM07H121
Application:sensor motor for mower
Flux Force:distance 0.8mm per pole ≥350GS
Tolerance: ±0.1 mm
Maximum Operation Temperature: 180 °C
Delivery Time: 15-30 days
Made in China
Bonded Ferrite is either injection or compression molded, and typically uses Nylon 6 or Nylon 12 when injection molded. Compression molded (which is very rare) is made by using epoxy mixed into the
ferrite. Typically most bonded ferrite uses strontium ferrite. It costs slightly more than sintered ferrite because ferrite must be powderized and mixed with the appropriate material for carrying of the ferrite.
The ferrite can be aligned in the mold which saves a secondary step. Note: bonded ferrite can also be calendared in sheets, rolls, & strips. Calendared material either uses CPEinfo-icon or Butyl Nitride. injection molded ferrite magnets
Typical applications: sensors and encoders.
Insert Molded Magnets
We manufacture an exclusive range of Insert Molded Magnets that is in line with the standards of the industry.
Following are some of the alluring features of insert molded magnets and over molded magnets:
Injection Bonded Magnet Manufacturing Process has a unique advantage of in-site molding of steel shafts, brass bushes etc while molding of the magnets
Monobloc Molding with metal and other objects make a wide range of applications possible
Monobloc Molding also reduces the number of operations required to manufacture the magnet assembly
Moreover, it leads to reduction in costs and at the same time enhances the bond between the metal insert and the magnet
Insert Molding / Over Molding is preferred wherever possible so as to improve the mechanical strength of the assembly of magnets