12x3mm bulge disc magnet
2 year agoProduct description
Strong ferrite permanent magnets
A anisotropic ferrite magnet is made by powdering iron oxide, molding, and sintering. An anisotropy ferrite magnet has high magnetism in a specific direction. This type of magnet is inexpensive, so it is the most popular magnet and suitable for a variety of applications.
The Benefits of Ceramic ferrite Magnet
Since their development, there have been increasing uses discovered for ceramic magnets. They are permanent magnets and are the most durable and strong magnets in existence. The magnet permeability of ceramic magnets is the main reason for their strength.About 75% of all magnets used in the world are ceramic magnets(also called ferrite permanent magnets). There are several reasons for their wide use, the first of which is their low cost.
Ceramic Magnet Benefits
Low CostThe first benefit that is mentioned every time ceramic magnets are discussed is their cost, which is significantly lower than other forms of magnets. The process of producing ceramic magnets and the magnetic field they produce is more powerful than magnets that are found in nature. The main reason ceramic magnets are less expensive is because they are formed from nonmetallic materials.
Magnetism
The viability of a magnet’s usefulness is determined by how it retains its magnetism when placed in stressful or harsh conditions. In the case of some magnets, they demagnetize when faced with vibrations or high temperatures. Though all magnets will demagnetize at increased temperatures, ceramic magnets are more durable than most and are capable of withstanding extreme temperatures and still be magnetized.
Ceramic magnets have excellent magnetic permanence when placed in the harshest of conditions. Their ability to withstand electrical exposure is the reason they are used in DC motors.
Corrosion Resistance
The mixture of iron oxide and strontium carbonate is naturally corrosion resistant. The properties of the two materials and their strengths are passed on to ceramic magnets, making them naturally corrosion resistant. This particular property is a necessity in industrial and manufacturing environments.
Magnetization
Once a ceramic magnet is magnetized, it is nearly impossible to demagnetize. This is essential in applications that depend on the resilience of magnets.
Multiple Poles
In addition to the ease with which ceramic magnets can be magnetized, they can also be magnetized in multiple directions, which makes them adaptable to a variety of applications.
Shapes
Since ceramic magnets are made from compacted powdered material, they can be produced in any shape, size, or configuration that is required. The wide assortment of sizes makes it possible for ceramic magnets to be placed in small toys as well as large MRI scanners.
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