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The saturated magnetic induction strength of amorphous nanocrystalline materials plays a key role in practical applications in many fields such as electricity, electronics, medical care, and communication. The following is a specific introduction:
Ⅰ. Power field
1. Transformer:
Non-saturated magnetic induction strength Crystal nanocrystalline materials allow transformers to carry larger magnetic flux under the same volume and number of turns, improve the power transmission capability of the transformer, reduce core loss, improve energy utilization efficiency, and achieve miniaturization and lightweight.
2. Reactor:
Using the high saturation magnetic induction strength of amorphous nanocrystalline materials, the reactor can better limit short-circuit current in the power system and maintain the stability of the power system, while reducing the volume and weight of the reactor, reducing the cost.
Ⅱ. Electronic field
1. Magnetic head:
In the magnetic heads of hard disks and other storage devices, the high saturation magnetic induction strength of amorphous nanocrystalline materials helps to improve the read and write sensitivity and resolution of the magnetic head, and can more accurately convert electrical signals into The magnetic signal is recorded on the storage medium, and the magnetic signal is read from the storage medium and converted into an electrical signal, improving the storage density and data transmission speed.
2. Inductor components:
Amorphous nanocrystalline materials with high saturation magnetic induction strength can enable the inductor to store more magnetic energy in a smaller volume, improve the energy storage capacity and filtering effect of the inductor, and make the power management module of electronic devices more efficient. It helps to miniaturize and high performance of electronic devices.
Ⅲ. Medical field
1. Magnetic resonance imaging (MRI):
Amorphous nanocrystalline materials can be used to manufacture small magnets or magnetic shielding components in MRI equipment. Higher saturated magnetic induction intensity helps to generate stronger magnetic fields, improve imaging resolution and clarity, and helps doctors detect lesion tissue more accurately.
2. Medical sensors:
In some biomedical sensors, the high saturation magnetic induction intensity of amorphous nanocrystalline materials can improve the sensor's detection sensitivity to biomagnetic fields or biomolecules, and realize accurate measurement of weak signals in the organism, and be used for disease diagnosis. and physiological parameter monitoring.
Ⅳ. Communication field
1. Signal transmission and filtering:
In the filters, transformers and other components of communication equipment, amorphous nanocrystalline materials with high saturation magnetic induction intensity can better filter and process the signals and suppress interference signals. Improve the transmission quality and stability of signals and ensure the accuracy and reliability of communication.
2. Electromagnetic shielding:
Amorphous nanocrystalline materials can be used to make electromagnetic shielding materials with their high saturation magnetic induction strength and good soft magnetic properties, effectively block and attenuate electromagnetic interference, protect communication equipment from external electromagnetic noise, and prevent The electromagnetic radiation generated by the device itself causes interference to other devices.
Ⅴ. Other fields
1. Automotive Electronics:
In the components of automobile ignition systems, sensors and electronic control units, the high saturation magnetic induction strength of amorphous nanocrystalline materials helps to improve the electromagnetic compatibility and reliability of these components and ensure the automobile. The electronic system works normally in complex electromagnetic environments.
2. Aerospace:
Because amorphous nanocrystalline materials are also light in weight under high saturation magnetic induction strength, they can be used to manufacture miniaturized and high-performance electromagnetic components in the aerospace field, such as magnetic sensors and power systems in navigation systems. The transformers and reactors in the industry help reduce the weight of the aircraft, improve fuel efficiency and flight performance.
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