首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al2O3
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Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al2O3

机译:AlN和BCN薄膜多层设计对Ni / Ni-20Cr薄膜热电偶在热喷涂Al2O3上反应时间的影响

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摘要

Thin film thermocouples are widely used for local temperature determinations of surfaces. However, depending on the environment in which they are used, thin film thermocouples need to be covered by a wear or oxidation resistant top layer. With regard to the utilization in wide-slit nozzles for plastic extrusion, Ni/Ni-20Cr thin film thermocouples were manufactured using direct-current (DC) magnetron sputtering combined with Aluminiumnitride (AlN) and Boron-Carbonitride (BCN) thin films. On the one hand, the deposition parameters of the nitride layers were varied to affect the chemical composition and morphology of the AlN and BCN thin films. On the other hand, the position of the nitride layers (below the thermocouple, above the thermocouple, around the thermocouple) was changed. Both factors were investigated concerning the influence on the Seebeck coefficient and the reaction behaviour of the thermocouples. Therefore, the impact of the nitride thin films on the morphology, physical structure, crystallite size, electrical resistance and hardness of the Ni and Ni-20Cr thin films is analysed. The investigations reveal that the Seebeck coefficient is not affected by the different architectures of the thermocouples. Nevertheless, the reaction time of the thermocouples can be significantly improved by adding a thermal conductive top coat over the thin films, whereas the top coat should have a coarse structure and low nitrogen content.
机译:薄膜热电偶广泛用于确定表面的局部温度。但是,根据使用环境的不同,薄膜热电偶需要覆盖一层耐磨或抗氧化的顶层。关于用于塑料挤压的宽缝喷嘴,利用直流(DC)磁控溅射结合氮化铝(AlN)和碳氮化硼(BCN)薄膜来制造Ni / Ni-20Cr薄膜热电偶。一方面,改变氮化物层的沉积参数以影响AlN和BCN薄膜的化学组成和形态。另一方面,氮化物层的位置(热电偶下方,热电偶上方,热电偶周围)发生了变化。研究了这两个因素,涉及对塞贝克系数的影响以及热电偶的反应行为。因此,分析了氮化物薄膜对Ni和Ni-20Cr薄膜的形态,物理结构,微晶尺寸,电阻和硬度的影响。研究表明,塞贝克系数不受热电偶不同结构的影响。然而,通过在薄膜上增加导热面涂层可以大大改善热电偶的反应时间,而面涂层应具有粗糙的结构和低的氮含量。

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