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Fabrication Characterization and Implementation of Thermo Resistive TiCu(NO) Thin Films in a Polymer Injection Mold

机译:聚合物注塑模具中耐热TiCu(NO)薄膜的制备表征和实现

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摘要

This paper presents the development of metallic thermoresistive thin film, providing an innovative solution to dynamically control the temperature during the injection molding process of polymeric parts. The general idea was to tailor the signal response of the nitrogen- and oxygen-doped titanium-copper thin film (TiCu(N,O))-based transducers, in order to optimize their use in temperature sensor devices. The results reveal that the nitrogen or oxygen doping level has an evident effect on the thermoresistive response of TiCu(N,O) films. The temperature coefficient of resistance values reached 2.29 × 10 °C , which was almost six times higher than the traditional platinum-based sensors. In order to demonstrate the sensing capabilities of thin films, a proof-of-concept experiment was carried out, integrating the developed TiCu(N,O) films with the best response in an injection steel mold, connected to a data acquisition system. These novel sensor inserts proved to be sensitive to the temperature evolution during the injection process, directly in contact with the polymer melt in the mold, demonstrating their possible use in real operation devices where temperature profiles are a major parameter, such as the injection molding process of polymeric parts.
机译:本文介绍了金属热阻薄膜的发展,提供了一种创新的解决方案来动态控制聚合物零件的注射成型过程中的温度。总体思路是定制氮和氧掺杂的钛铜薄膜(TiCu(N,O))传感器的信号响应,以优化其在温度传感器设备中的使用。结果表明,氮或氧的掺杂水平对TiCu(N,O)薄膜的热阻响应具有明显的影响。电阻值的温度系数达到2.29×10°C,几乎是传统铂基传感器的六倍。为了证明薄膜的感测能力,进行了概念验证实验,将开发出的具有最佳响应的TiCu(N,O)薄膜集成到与数据采集系统相连的注塑模具中。这些新颖的传感器插件被证明对注塑过程中的温度变化敏感,直接与模具中的聚合物熔体接触,证明了它们可用于以温度曲线为主要参数的实际操作设备中,例如注塑工艺聚合物零件。

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