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Study on thermal control behavior by using BaTiO_3-based PTC materials with room temperature Curie point

机译:基于室温居里点的BaTiO_3基PTC材料的热控制行为研究

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Thermal management has become an important issue to be solved in the miniaturization and weight reduction of electronic equipment, especially in the aerospace field. The doped BaTiO_3, as a self-regulating heating material, exhibits an attractive application perspective on the thermal control of electrical devices, resulting from its positive temperature coefficient (PTC) property. However, the Curie temperature of most of the doped BaTiO_3 material at present is much higher than the operating temperature of the electrical equipment. On this basis, this paper focuses on the controlling of the Curie temperature and thermal control performance of the BaTiO_3-based heating component. The polycrystalline Ba_(1-x)Sr_xTiO_3 was synthesized by solid solution reaction. The Curie temperature is tuned by the content of the strontium element, simultaneously the elements Y and Mn are doped to reduce the room temperature resistivity and improve the PTC effect. The X-ray diffraction demonstrates that the bulk phase of the Ba_(1-x)Sr_xTiO_3 generates in the pre-sintering process, while the crystallization of composition has completed during the sintering. Importantly, the Curie temperature of doped Ba_(1-x)Sr_xTiO_3 for x=0.3 with average particle size of 4.86 μm has shifted to around 38℃, beyond that exhibiting a 2.8-orders magnitude of PTCR jump. Results of the thermal control experiment show that, in contrast to the ordinary resistor heater, the heating element based on the BaTiO_3 PTC material can achieve lower equilibrium temperature without any auxiliary control methods. Compared to the traditional thermal control system composed by the ordinary resistor, sensor and controller, the novel thermal control system based on PTC heating unit possesses simple structure, lightweight and excellent reliability.
机译:在电子设备的小型化和轻量化方面,尤其是在航空航天领域,热管理已成为要解决的重要问题。掺杂的BaTiO_3作为一种自调节加热材料,由于其正温度系数(PTC)特性,在电气设备的热控制方面具有诱人的应用前景。但是,目前大多数掺杂的BaTiO_3材料的居里温度远高于电气设备的工作温度。在此基础上,本文重点研究了BaTiO_3基加热元件的居里温度和热控制性能。通过固溶反应合成了多晶Ba_(1-x)Sr_xTiO_3。居里温度通过锶元素的含量来调节,同时掺杂元素Y和Mn以降低室温电阻率并改善PTC效果。 X射线衍射表明,Ba_(1-x)Sr_xTiO_3的本体相在预烧结过程中产生,而组成的结晶在烧结过程中完成。重要的是,掺杂Ba_(1-x)Sr_xTiO_3的居里温度(x = 0.3,平均粒径为4.86μm)已移至38℃左右,超过了PTCR跃迁的2.8个数量级。热控制实验的结果表明,与普通的电阻加热器相比,基于BaTiO_3 PTC材料的加热元件无需任何辅助控制方法即可达到较低的平衡温度。与由普通电阻,传感器和控制器组成的传统热控制系统相比,基于PTC加热单元的新型热控制系统结构简单,重量轻,可靠性高。

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