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The structure of the magnetizer is relatively simple. In fact, it is an electromagnet with extremely strong magnetic force, equipped with iron blocks of various shapes as additional magnetic poles to form a closed magnetic circuit with the magnet to be charged.
Magnetizing: Turn the selector switch to the magnetizing side, plug in the 220V power supply, insert the material to be charged into the depth of the seat hole, press the button for about one second to release, and the magnetizing is complete.
Demagnetization: Turn the selector switch to the demagnetization side, plug in the 220V power supply, insert the demagnetization material into the depth of the seat hole, press the button, and at the same time slowly and uniformly move the material away from the magnetizer 30 cm away, then release the button ; Repeat this on the other end, and the demagnetization is complete.
The structure of the magnetizer is relatively simple. In fact, it is an electromagnet with extremely strong magnetic force, equipped with iron blocks of various shapes as additional magnetic poles to form a closed magnetic circuit with the magnet to be charged.
Magnetizing: Turn the selector switch to the magnetizing side, plug in the 220V power supply, insert the material to be charged into the depth of the seat hole, press the button for about one second to release, and the magnetizing is complete.
Demagnetization: Turn the selector switch to the demagnetization side, plug in the 220V power supply, insert the demagnetization material into the depth of the seat hole, press the button, and at the same time slowly and uniformly move the material away from the magnetizer 30 cm away, then release the button ; Repeat this on the other end, and the demagnetization is complete.
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QUICK SCREWDRIVER MAGNETIZER: The screwdriver magnetizer is very simple to use, only need to put the screwdriver in the magnetizer & demagnetizer back and forth 1-5 times to achieve magnetization and demagnetization
PRACTICAL MAGNETIZATION TOOL: The bit magnetizer is very suitable for equipment maintenance, because there are many screws need to be screwed down or installed. A good helper for you
HIGH PERFORMANCE MAGNETIZER: After magnetizing, the screwdriver will be very convenient in handling the screw. No batteries or electricity required, minimize loss of screws. A good helper for you
【Operation Method】: The product is very simple to use, only need to put the screwdriver in the magnetizer/demagnetizer back and forth 1-5 times to achieve magnetization or demagnetization.
【Magnetizing】: After magnetizing, the screwdriver will be very convenient in handling the screw.
【Compact Size】: The product is compact and will not occupy space on the workbench.
USAGE: The product is very suitable for equipment maintenance, because there are many screws need to be screwed down or installed.Minimize loss of screws.
SIMPLE OPERATION: The product is very simple to use, only need to put the screwdriver in the magnetizer/demagnetizer back and forth 1-5 times to achieve magnetization or demagnetization.
SAVE SPACE: The product is compact and will not occupy space on the workbench. The add magnetic device and demagnetizer tool is basic equipment is used for workbench.
* Use a bar magnet to move in one direction on the model. At this time, the small magnetic needles are regularly arranged. After the bar magnet is removed, the arrangement will not change. In this way, one end of the model becomes the S pole and the other end becomes the N pole, simulating the magnetization process.
* Product Structure: cuboid in shape, fully transparent plastic box, 24 steel needles are placed on the bottom, arranged in four rows, six in each row, twenty-four small magnetic needles are placed on the steel needles, and each small magnetic needle can be wound around the steel needle rotation.
* Magnetic Molecular Model: Simulate the magnetic molecular structure of a magnet, illustrating phenomena such as magnetization and demagnetization.
* Use a hoof-shaped magnet to move randomly above the flat glass (or properly vibrate the box) to make the small magnetic needles chaotically arranged. At this time, the magnetic forces of the small magnetic needles cancel each other out, and the model does not display as a whole, simulating the demagnetization process.
* Product Structure: cuboid in shape, fully transparent plastic box, 24 steel needles are placed on the bottom, arranged in four rows, six in each row, twenty-four small magnetic needles are placed on the steel needles, and each small magnetic needle can be wound around the steel needle rotation.
* Magnetic Molecular Model: Simulate the magnetic molecular structure of a magnet, illustrating phenomena such as magnetization and demagnetization.
* Use a bar magnet to move in one direction on the model. At this time, the small magnetic needles are regularly arranged. After the bar magnet is removed, the arrangement will not change. In this way, one end of the model becomes the S pole and the other end becomes the N pole, simulating the magnetization process.
* Product Structure: cuboid in shape, fully transparent plastic box, 24 steel needles are placed on the bottom, arranged in four rows, six in each row, twenty-four small magnetic needles are placed on the steel needles, and each small magnetic needle can be wound around the steel needle rotation.
* Magnetic Molecular Model: Simulate the magnetic molecular structure of a magnet, illustrating phenomena such as magnetization and demagnetization.
* Use a hoof-shaped magnet to move randomly above the flat glass (or properly vibrate the box) to make the small magnetic needles chaotically arranged. At this time, the magnetic forces of the small magnetic needles cancel each other out, and the model does not display as a whole, simulating the demagnetization process.
* Product Structure: cuboid in shape, fully transparent plastic box, 24 steel needles are placed on the bottom, arranged in four rows, six in each row, twenty-four small magnetic needles are placed on the steel needles, and each small magnetic needle can be wound around the steel needle rotation.
* Magnetic Molecular Model: Simulate the magnetic molecular structure of a magnet, illustrating phenomena such as magnetization and demagnetization.
Use a bar magnet to move in one direction on the model. At this time, the small magnetic s are arranged regularly, and this arrangement will not change after the strip magnet is removed.
Usage: Simulate the magnetic molecular structure of magnets, explain the phenomena of magnetization and demagnetization.
Structure: Cuboid shape, fully transparent plastic box. Twenty-four steel s are placed at the bottom, arranged in four rows, six in each row. Twenty-four small magnetic plates are placed on the steel s, and each small magnetic can be wound.
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