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Study on the Mechanism of Magneto-optical Modulation Temperature

机译:磁光调制温度机理研究

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In recent years,magneto-optical modulation has a wide range of applications and good performance in the fields of azimuth transfer,magnetic field measurement,metal surface damage detection,etc.The core technology is to achieve accurate measurement of the angle by applying the polarization characteristics of light.The magneto-optical modulation system based on this principle belongs to a kind of electrical components.When working,it needs to load a certain current excitation,which causes the temperature of the system to rise,which in turn has a certain influence on the electrical characteristics of the device,and even causes the working state of the system to occur.Change,so in practical applications,temperature factors must be considered.On the basis of fully understanding the structure and working principle of the components,the paper makes a reasonable simplification of the overall structure of the equipment,and obtains the research physical model and numerical heat transfer model.The results show that one of the main heat sources of the system when the solenoid coil and the stainless steel bracket are used,the system temperature is getting higher with the increase of working time.
机译:近年来,磁光调制具有广泛的应用和方位传输领域的良好性能,磁场测量,金属表面损坏检测等。核心技术是通过应用极化来实现对角度的精确测量光特性。基于该原理的磁光调制系统属于一种电气元件。在工作时,需要加载一定的电流激励,这导致系统的温度上升,这反过来又具有一定的对设备的电气特性的影响,甚至导致系统的工作状态。在实际应用中,必须考虑温度因子。在完全理解组件结构和工作原理的基础上,纸张做出了合理的简化了设备的整体结构,并获得了研究物理模型和数值传热模型.Th结果表明,使用螺线管线圈和不锈钢支架的系统的主要热源之一,随着工作时间的增加,系统温度越来越高。

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