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Resistance Temperature Detectors Fabricated via Dual Fused Deposition Modeling of Polylactic Acid and Polylactic Acid/Carbon Black Composites

机译:通过双熔化沉积建模制造的电阻温度探测器的聚乳酸和聚乳酸/炭黑复合材料

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摘要

Planar-type resistance temperature detectors (P-RTDs) were fabricated via fused deposition modeling by dual nozzle extrusion. The temperature-sensing element of the fabricated sensor was printed with electrically conductive polylactic acid/carbon black (PLA/CB) composite, while the structural support was printed with a PLA insulator. The temperature-dependent resistivity change of PLA/CB was evaluated for different stacking sequences of PLA/CB layers printed with [0°/0°], [−45°/45°], and [0°/90°] plies. Compared to a PLA/CB filament used as 3D printing source material, the laminated structures exhibited a response over 3 times higher, showing a resistivity change from −10 to 40 Ω∙cm between −15 and 50 °C. Then, using the [0°/90°] plies stacking sequence, a P-RTD thermometer was fabricated in conjunction with a Wheatstone bridge circuit for temperature readouts. The P-RTD yielded a temperature coefficient of resistance of 6.62 %/°C with high stability over repeated cycles. Fabrication scalability was demonstrated by realizing a 3 × 3 array of P-RTDs, allowing the temperature profile detection of the surface in contact with heat sources.
机译:通过双喷嘴挤出通过熔融沉积建模制造平面型电阻温度探测器(P-RTDS)。用导电聚乳酸/炭黑(PLA / CB)复合物印刷制造传感器的温度传感元件,而结构支撑用PLA绝缘子印刷。评价PLA / Cb的温度依赖性电阻率变化,用于PLA / CB层的不同堆叠序列,所述PLA / CB层印有[0°/ 0°],[-45°/ 45°]和[0°/ 90°]。与用作3D印刷源材料的PLA / CB长丝相比,层叠结构呈现出超过3倍的响应,显示电阻率从-10至40Ω∙厘米-15和50℃。然后,使用堆叠序列的[0°/ 90°]堆叠序列,与温度读出的惠斯通桥电路一起制造P-RTD温度计。 P-RTD在重复循环上产生6.62%/℃的温度耐温系数6.62%/℃。通过实现3×3阵列的P-RTD来证明制造可扩展性,允许与热源接触的表面的温度分布检测。

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