30.14
와전류는 도체에서만 발생하므로 자석은 금속을 다른 물질과 분리할 수 있습니다. 예를 들어, 재활용 센터에서는 쓰레기가 경사로 아래로 일괄적으로 버려지며, 경사로 아래에는 강력한 자석이 있습니다. 쓰레기 속의 도체는 와전류에 의해 속도가 느려지는 반면, 쓰레기 속의 비금…
와전류는 자기장의 변화로 인해 도체 내에서 유도되는 전류 루프입니다.
와전류에서 전자는 자기장에 수직인 원형 고리로 소용
돌이칩니다.AC 소스와 연결된 솔레노이드를 고려하십시오. 가변 전류의 결과로 솔레노이드에 의해 생성되는 자기장도 변합니다.
그런 다음 금속판이 솔레노이드 가까이에 유지되어 플레이트에 와전류가 생성됩니다.
이러한 전류는 불필요한 열을 생성하므로 에너지 손실을 유발합니다.
예를 들어, 전기 에너지는 와전류의 형성으로 인해 변압기 코어에서 열로 낭비됩니다.
이러한 바람직하지 않은 효과는 여러 응용 분야에서 활용될 수 있습니다.
금속 코일로 구성된 인덕션 스토브가 켜지면 코일에 AC 전류가 흐르기 시작합니다.
이것은 다양한 자기장을 생성합니다. 변화하는 자속의 결과로 금속 용기의 바닥에서 와전류가 발생하여 스토브의 비전도성 상판을 가열하지 않고 가열합니다.
View the full transcript and gain access to JoVE Core videos
Q1: What are eddy currents and how do they form in a conductor?
Eddy currents are loops of electric current induced within a conductor due to a changing magnetic field. Electrons swirl in circular loops perpendicular to the magnetic field direction. When a varying magnetic field passes through a conductor, such as a metallic plate near a solenoid with AC current, the changing magnetic flux induces these circular currents throughout the material.
Q2: Why do eddy currents cause energy loss in transformers?
Eddy currents generate unnecessary heat as they flow through the transformer core, wasting electrical energy. This occurs because the variable magnetic field from the AC current induces circular currents in the conductive core material. The resistance of these currents converts electrical energy into thermal energy, reducing transformer efficiency.
Q3: How do induction cooktops use eddy currents to heat food?
Induction cooktops contain electromagnets beneath the surface that generate rapidly varying magnetic fields. These changing fields produce eddy currents in the pot's conductive base, such as iron or steel. The eddy currents generate heat that warms the pot and its contents without heating the non-conducting top plate, providing high efficiency and fast response times.
Q4: How do metal detectors use eddy currents to identify metals?
Metal detectors consist of a primary coil carrying alternating current and a secondary coil where current is induced. When metal approaches the detector, an eddy current forms in the metal, causing a change in the induced current within the secondary coil. This change triggers a signal, such as a shrill noise, alerting the user to the presence of metal.
Q5: Why are eddy currents effective for braking in roller coasters?
Roller coasters use powerful rare-earth magnets, such as neodymium magnets, with metal fins containing copper that pass through the magnetic field. Eddy currents induced in the fins slow the vehicle smoothly without mechanical contact. This braking method is safer because weather conditions like rain do not affect performance, though another braking form is needed for complete stops.
Q6: How do recycling centers use eddy currents to separate metals from trash?
Recycling centers use powerful magnets beneath ramps where trash is dumped. Eddy currents induced in conductors slow them down, while nonmetals pass through unaffected. This separation works for all metals, not just ferromagnetic ones, allowing efficient sorting of metallic materials from other waste materials.
Q7: What is the relationship between eddy currents and induced electric fields?
Eddy currents result from induced electric fields created by changing magnetic flux through a conductor. According to induced electric fields applications, these electric fields drive electrons in circular paths, forming the characteristic eddy current loops. The strength and direction of eddy currents depend on the rate of magnetic field change and the conductor's properties.