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Improved Thermal Behavior of an Electromagnetic Linear Actuator with Different Winding Types and the Influence on the Complex Impedance

机译:改进了具有不同绕组类型的电磁线性致动器的热行为,以及对复杂阻抗的影响

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Using the example of an existing linear actuator, the advantages and disadvantages of a winding body made of aluminum with aluminum oxide as insulation in comparison to a winding body made of coated copper wire are investigated. The increase in the maximum current load (increased force effect) is achieved by an improved thermal heat dissipation of the resistive losses. If the force effect is to be maintained, the increase of the current can reduce the number of windings and thus also the material and installation space. Although the coil made of aluminum is subject to higher losses due to the lower electrical conductivity of aluminum compared to copper, these losses can be better dissipated from the actuator due to the thermal conductivity of the oxide layer. The thermal conductivity of the oxide layer is about 140 times higher compared to epoxy insulation that a significant reduction in the hot spot temperature is achieved. At the same time, the winding body can be subjected to significantly higher temperatures, which enables a further reduction in installation space. In addition, the low layer thickness of aluminum oxide allows a higher filling factor (more compact design). Together with the 3 times higher permittivity of aluminum oxide compared to epoxy, this has significant effect on the effective capacities as well as the resistance and thus on electric behavior. This is the second focus of the work. The influence of the different coil concepts on the complex impedance is analyzed. Therefore analytical calculations are combined with detailed axial symmetrical FEM simulations.
机译:研究了现有线性致动器的示例,研究了由氧化铝制成的铝制成与由涂覆的铜线制成的卷绕体相比的氧化铝制成的卷绕体的优点和缺点。通过改善电阻损耗的热散热来实现最大电流负荷(增加力效应)的增加。如果要保持力效果,则电流的增加可以减少绕组的数量,因此也可以减少材料和安装空间。尽管由铝的铝的导电率较低而由铝制成的线圈可能受到更高的损耗,但由于氧化物层的导热率,这些损耗可以从致动器散发出来。与环氧绝缘相比,氧化物层的导热率为约140倍,使得达到热点温度的显着降低。同时,绕组体可以经受显着提高的温度,这使得能够进一步减少安装空间。另外,氧化铝的低层厚度允许更高的灌装系数(更紧凑的设计)。与环氧树脂相比,与环氧树脂相比,铝氧化铝介电常数的3倍,这对有效能力以及电阻具有显着影响,从而对电动行为进行了显着影响。这是工作的第二次重点。分析了不同线圈概念对复杂阻抗的影响。因此,分析计算与详细的轴对称有限元模拟相结合。

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