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Numerical Computation Technique to Examine Glass Fiber Mat and Cloth Reinforcement of Glass-Fiber-Reinforced Plastic

机译:检查玻璃纤维毡和玻璃纤维增​​强塑料的布加固的数值计算技术

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TDK is developing a wireless power transfer technology for electric vehicles (EV) that is based on two coils: one built into roads, parking spaces, or garages and the other fitted to the underbody of the car. One of these coils is the power transmission coil, and the other is the receiving coil. The receiving coil receives the magnetic field generated by the power transmission coil. Furthermore, the rectifier rectifies the alternating current to direct current. A coil case with magnetic and conductive properties produces an eddy current and decreases the power efficiency. Therefore, non-magnetic and non-conductive materials must be adopted in the design of the coil case. Furthermore, the coil case must protect the coil, ferrite cores, and the electronic component array. According to the Underwriters Laboratories Inc. (UL) standard, a vehicle overdrive test must be performed on the power transmission coil such that even if a vehicle rides on the power transmission coil case, it should not be damaged. In addition, a prototype of the power transmission coil case made of glassfiber-reinforced plastic was created. During the glass-fiber-reinforced plastic molding process, the glass fiber bundle slipped and air gaps were formed. We decided to consider the scale of three patterns: micro, macro, and mesoscale. After considering the three scales, the experimental results and calculated results matched with high accuracy.
机译:TDK正在开发一种基于两个线圈的电动汽车(EV)无线功率传输技术:一个线圈内置在道路,停车位或车库中,另一个线圈安装在汽车底部。这些线圈中的一个是输电线圈,另一个是接收线圈。接收线圈接收由输电线圈产生的磁场。此外,整流器将交流电整流为直流电。具有磁性和导电特性的线圈盒会产生涡流并降低功率效率。因此,在线圈壳体的设计中必须采用非磁性且非导电的材料。此外,线圈盒必须保护线圈,铁氧体磁芯和电子组件阵列。根据Underwriters Laboratories Inc.(UL)标准,必须对输电线圈进行车辆超速测试,以便即使车辆行驶在输电线圈盒上也不应损坏它。此外,还制作了由玻璃纤维增​​强塑料制成的输电线圈箱的原型。在玻璃纤维增​​强塑料成型过程中,玻璃纤维束打滑并形成气隙。我们决定考虑三种模式的规模:微观,宏观和中尺度。在考虑这三个尺度之后,实验结果和计算结果具有很高的准确性。

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