Design of a two-pole electromagnet and its analysis under different load conditions

Sena Çevlikli, Selim Öncü, A. Dalcalı
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Abstract

Electromagnets can be used in devices, such as motors, generators, and transformers, and in tasks, such as lifting and transporting object. This study aimed to lift and transport iron blocks in iron and steel factories and rolling mills. The design and analysis of a two-pole electromagnet with a carrying capacity of up to 1.5 tons were performed. It was aimed to design an electromagnet in such a way that it would provide transport with minimum copper loss without reaching the saturation at an appropriate ampere-turn value according to the type and size of the load to be carried. By performing analytical calculations, a suitable model for the requirement was designed and Finite Element Analysis (FEA) was conducted. In the analysis, magnetic flux density, winding current ratios, and force values were examined. Analyses were investigated for different load quantities and numbers.
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两极电磁铁的设计及其在不同负载条件下的分析
电磁铁可用于电机、发电机和变压器等设备,也可用于起重和运输物体等任务。本研究旨在提升和运输钢铁厂和轧钢厂的铁块。对承载能力高达 1.5 吨的两极电磁铁进行了设计和分析。设计电磁铁的目的是使其在运输过程中铜损耗最小,同时根据所承载负载的类型和大小,在适当的安匝值下不会达到饱和状态。通过分析计算,设计出了符合要求的合适模型,并进行了有限元分析(FEA)。在分析过程中,对磁通密度、绕组电流比和力值进行了检查。针对不同的负载量和负载数进行了分析研究。
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