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Metallic glasses: viable tool materials for the production of surface microstructures in amorphous polymers by micro-hot-embossing

机译:金属玻璃:可行的工具材料,可通过微热压印在无定形聚合物中生产表面微观结构

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Metallic glasses possess unique mechanical properties which make them attractive materials for fabricating components for a variety of applications. For example, the commercial Zr-based metallic glasses possess high tensile strengths (≈2.0 GPa), good fracture toughnesses (≈10-50 MPam~(1/2)) and good wear and corrosion resistances. A particularly important characteristic of metallic glasses is their intrinsic homogeneity to the nanoscale because of the absence of grain boundaries. This characteristic, coupled with their unique mechanical properties, makes them ideal materials for fabricating micron-scale components, or high-aspect-ratio micro-patterned surfaces, which may in turn be used as dies for the hot-embossing of polymeric microfluidic devices. In this paper we consider a commercially available Zr-based metallic glass which has a glass transition temperature of T_g ≈ 350℃ and describe the thermoplastic forming of a tool made from this material, which has the (negative) microchannel pattern for a simple microfluidic device. This tool was successfully used to produce the microchannel pattern by micro-hot-embossing of the amorphous polymers poly(methyl methacrylate) (T_g ≈ 115℃) and Zeonex-690R (T_g ≈ 136℃) above their glass transition temperatures. The metallic glass tool was found to be very robust, and it was used to produce hundreds of high-fidelity micron-scale embossed patterns without degradation or failure.
机译:金属玻璃具有独特的机械性能,使其成为制造各种应用组件的有吸引力的材料。例如,市售的基于Zr的金属玻璃具有高拉伸强度(≈2.0GPa),良好的断裂韧性(≈10-50MPam〜(1/2))和良好的耐磨性和耐腐蚀性。金属玻璃的一个特别重要的特征是由于不存在晶界,它们与纳米尺度的内在均匀性。这种特性加上其独特的机械性能,使其成为制造微米级组件或高纵横比微图案化表面的理想材料,这些材料又可以用作聚合物微流体装置的热压花模具。在本文中,我们考虑了市售的基于Zr的金属玻璃,其玻璃化转变温度为T_g≈350℃,并描述了用这种材料制成的工具的热塑性成型,该工具具有用于简单微流体装置的(负)微通道图案。 。该工具通过在玻璃化转变温度之上对非晶态聚合物聚甲基丙烯酸甲酯(T_g≈115℃)和Zeonex-690R(T_g≈136℃)进行微热压花,成功地用于制作微通道图案。发现金属玻璃工具非常坚固,可用于生产数百个高保真度的微米级压花图案,而不会退化或失效。

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