一个模拟模型,用于电磁悬浮融的电感器及其验证
Błażej Nycz1, Roman Przyłucki1, Łukasz Maliński1
1Department of Industrial Informatics, Silesian University of Technology, ul. Akademicka 2A, 44-100 Gliwice, Poland.
Materials (Basel, Switzerland)
|July 14, 2023
概括
这项研究开发了一种经过验证的电磁升起化的数值模型,提高了工艺效率. 该模型准确地预测了融金属的行为,这对于优化无接触融技术至关重要.
科学领域:
- 材料科学 材料科学 材料科学
- 电磁主义 电磁主义
- 计算物理 计算物理
背景情况:
- 悬浮融为反应性和高点金属提供无接触加工.
- 一个关键的挑战是改善传统悬浮化系统的低效率.
研究的目的:
- 开发和实验验证电磁悬浮化的数值模型.
- 用模拟工具优化悬浮化系统,以提高效率.
主要方法:
- 电磁场和对流热传输的数值建模.
- 使用合金进行实验验证,测量电气参数,位置,化时间和温度.
- 电磁场和热传递动态的计算分析.
主要成果:
- 数字模型表现出高准确度,批量位置预测在2mm (6.25%) 和化时间在5秒 (5.49%) 之内.
- 实验验证证证实了该模型对悬浮融过程的代表性.
- 该模型成功地将电磁场分析与创新的对流热传输建模相结合.
结论:
- 开发的数值模型是优化电磁悬浮化系统的可靠工具.
- 经过验证的模型可以指导设计更高效的无接触融工艺.
- 这项研究有助于提高悬浮融技术的效率和适用性.
相关概念视频
Calculation of Self-inductance
401
The self-inductance of a circuit, often simply called the inductance, is a purely geometric factor that depends only on the circuit component's structure. More specifically, it depends on the shape and size of the component that lets the flux pass through it, thus inducing an electric field that opposes any current passing through it.
Since the effect of the induced electric field and the back EMF generated depends on the rate of change of current and the self-inductance, the inductance...
Since the effect of the induced electric field and the back EMF generated depends on the rate of change of current and the self-inductance, the inductance...
401
Inductance: Solid Cylindrical Conductor
300
To calculate the inductance of a solid cylindrical conductor, consider a 1-meter section of a non-magnetic, current-carrying conductor with radius r. Disregarding end effects and assuming uniform current density, Ampere's law helps determine the magnetic field inside the conductor. This law states that the magnetic field intensity H is concentric and constant within the conductor.
Given the uniform current distribution, the magnetic field Hx and flux density Bx inside the conductor are...
Given the uniform current distribution, the magnetic field Hx and flux density Bx inside the conductor are...
300
Energy In A Magnetic Field
2.3K
If a magnetic field is sustained, there must be a current in a closed circuit or loop, implying some energy has been spent in creating the field. If this energy is not dissipated via the circuit's resistance, it is stored in the field.
Take an ideal inductor with zero resistance. Although it's practically impossible, assume that the coil's resistance is so small that it is practically negligible. The loss of the field's energy to dissipate thermal energy (or heat) is thus...
Take an ideal inductor with zero resistance. Although it's practically impossible, assume that the coil's resistance is so small that it is practically negligible. The loss of the field's energy to dissipate thermal energy (or heat) is thus...
2.3K
Magnetic Damping
500
Eddy currents can produce significant drag on motion, called magnetic damping. For instance, when a metallic pendulum bob swings between the poles of a strong magnet, significant drag acts on the bob as it enters and leaves the field, quickly damping the motion.
If, however, the bob is a slotted metal plate, the magnet produces a much smaller effect. When a slotted metal plate enters the field, an emf is induced by the change in flux; however, it is less effective because the slots limit the...
If, however, the bob is a slotted metal plate, the magnet produces a much smaller effect. When a slotted metal plate enters the field, an emf is induced by the change in flux; however, it is less effective because the slots limit the...
500
Mutual Inductance
2.4K
Inductance is the property of a device that tells us how effectively it induces an emf in another device. In other words, it is a physical quantity that expresses the effectiveness of a given device.
When two circuits carrying time-varying currents are close to one another, the magnetic flux through each circuit varies because of the changing current in the other circuit. Consequently, an emf is induced in each circuit by the changing current in the other. Therefore, this type of emf is called...
When two circuits carrying time-varying currents are close to one another, the magnetic flux through each circuit varies because of the changing current in the other circuit. Consequently, an emf is induced in each circuit by the changing current in the other. Therefore, this type of emf is called...
2.4K
Equivalent Circuits for Practical Transformers
470
The practical equivalent circuits of single-phase two-winding transformers exhibit significant deviations from their idealized versions due to the inherent properties of winding resistance and finite core permeability. These properties result in real and reactive power losses, affecting the transformer's performance. Understanding these deviations is crucial for designing more efficient transformers.
In a practical transformer, each winding exhibits resistance and leakage reactance. The...
In a practical transformer, each winding exhibits resistance and leakage reactance. The...
470


