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Hysteresis analysis of Thornton (IP6, IP12E and TH5V) magnetic materials through the use of Arduino microcontroller

机译:通过使用Arduino微控制器对Thornton(IP6,IP12E和TH5V)磁性材料进行磁滞分析

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Electromagnetic devices have become increasingly important within the manufacturing industries and their applications ranges from memory devices, semiconductors to medical and bio-mechatronics (i.e. in the testing of medicines and observation of human internal organs). However, due to high cost and availability, the equipment capable of measuring the magnetic field of humane treatment and observations are difficult to acquire. This work is carried out to develop resources that can be widely adopted for the purpose of presenting science based medical results involved in bio-mechatronics analysis and present science based instrumentation strategy. Effect sensors were incorporated with an Arduino UNO microcontroller to serve as the interface between the sensors and the material. The basic parameters of an electric, magnetic and electromagnetic field were established for Histeresimetro development. This would reduce the problem of measuring magnetic fields and sort different materials according to their behavior when subjected to electromagnetic fields. The proposed strategy could also be adopted to measure the degree of hysteresis of materials at a lower cost.
机译:电磁设备在制造业中变得越来越重要,其应用范围从存储设备,半导体到医疗和生物机电一体化(即在药物测试和人体内部器官的观察中)。然而,由于高成本和高可用性,难以获得能够测量人道治疗和观察的磁场的设备。开展这项工作是为了开发可被广泛采用的资源,以展示生物机电一体化分析中涉及的基于科学的医学结果以及提出基于科学的仪器策略。效果传感器与Arduino UNO微控制器结合在一起,用作传感器和材料之间的接口。建立了电场,磁场和电磁场的基本参数以用于Histeresimetro开发。这将减少测量磁场的问题,并在受到电磁场影响时根据其行为对不同的材料进行分类。建议的策略也可以采用以较低的成本来测量材料的磁滞程度。

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