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Formulation of composite resistive pastes for fabrication of micro-heaters

机译:用于制造微型加热器的复合电阻浆料的配方

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We investigate in this work the formulation of composite resistive pastes based on epoxy resins and graphite for micro-heater manufacturing via thick-film technology. These resistive pastes are designed for screen-printing onto a printed circuit board (PCB) substrate; further coating with expandable polydimethylsiloxane (PDMS), a composite based on an elastomeric matrix and expandable microspheres, results in one-shot thermal actuators allowing pumping and sealing in disposable micro-fluidic lab-on-a-chip devices. The resistive paste must therefore have controlled rheology and resistivity, and exhibit good temperature stability in order to allow high heating power densities. This paper details the formulation and characterisation of suitable epoxy-graphite resistive composites, and the control of their properties through solvents.
机译:我们在这项工作中研究了通过厚膜技术制造用于微型加热器的基于环氧树脂和石墨的复合电阻浆料的配方。这些电阻胶专为丝网印刷到印刷电路板(PCB)基板上而设计;进一步使用可膨胀的聚二甲基硅氧烷(PDMS)涂层,这是一种基于弹性体基质和可膨胀的微球的复合材料,可产生一次性热致动器,从而可在一次性微流体芯片实验室装置中进行泵送和密封。因此,电阻膏必须具有可控的流变性和电阻率,并表现出良好的温度稳定性,以允许较高的加热功率密度。本文详细介绍了合适的环氧-石墨电阻复合材料的配方和特性,以及通过溶剂控制其性能的方法。

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