Super strong rare earth 16000 gauss neodymium magnet bar ndfeb magnetic stirring rod

Short Description:

This super strong rare earth magnet bar is made of neodymium and has a magnetic strength of 16000 gauss. It is widely used in magnetic stirring rods, which are essential in various industrial processes. The stirring rod can effectively mix the liquid or solid without mechanical rotation, simplifying the process and reducing energy consumption.


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Super strong rare earth 16000 gauss neodymium magnet bar ndfeb magnetic stirring rod

This super strong rare earth magnet bar is made of neodymium and has a magnetic strength of 16000 gauss. It is widely used in magnetic stirring rods, which are essential in various industrial processes. The stirring rod can effectively mix the liquid or solid without mechanical rotation, simplifying the process and reducing energy consumption.

Custom Rotor Project Examples

High-Precision Rotor Assemblies -Built for servo motors used in military and aerospace motion-control systems, requiring very tight tolerances for dimensions, concentricities and run-outs.​

Complete Rotor & Stator Systems -Built for high-speed systems such as turbo molecular pumps and micro turbine gas generators.

High-Reliability Rotors -Built for motors used in artificial hearts, blood pumps and other critical components for medical equipment.

-Built for servo motors used in military and aerospace motion-control systems, requiring very tight tolerances for dimensions, concentricities and run-outs.​
Complete Rotor & Stator Systems -Built for high-speed systems such as turbo molecular pumps and micro turbine gas generators.
High-Reliability Rotors -Built for motors used in artificial hearts, blood pumps and other critical components for medical equipment.

In order to achieve performance goals, designers of high-performance electric machines must balance several challenges including:
1. Thermal Management
2. Increased Power Density
3. Higher Speeds (100K+ RPM)
4. Reduced System Weight
5. Cost / Value Trade-off

STRENGTHS

High reliability

High power factor

Absence of commutator-brushes system and its necessary maintenance

Higher speed and acceleration

Lower inertia, lighter weight, smaller size

Cooling systems simplification

Less inductance


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