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Gravitational Field-Flow Fractionation Devices Fabricated via a Hot Embossing/Thermal Bonding Method

机译:通过热压花/热粘合方法制造的重力流分离装置

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A novel hot embossing/low temperature ethanol solvent bonding method for the fabrication of polymethylmethacrylate (PMMA) field flow fractionation devices has been developed. The separation channel on a PMMA substrate was generated by a hot embossing process without vacuum. Special temperature-pressure profiles were used to analyze the influence of the hot embossing parameters. After the hot embossing process, ethanol solvent bonding was used to seal the separation channel on the PMMA substrate. The experimental results show that the bonding strength with ethanol solvent bonding at 35 °C (aspect ratio (depth/width): 0.043) is 3.05 MPa, and the deformation percentage is very low (0.54%). A burst pressure test indicated that the as-prepared PMMA gravitational field flow fractionation device has a very high burst pressure. Furthermore, the higher resolution of the as-prepared PMMA gravitational field flow fractionation device in the separation of wheat and starch particles shows that the hot embossing/low temperature ethanol solvent bonding technique will have potential commercial value.
机译:开发了一种新颖的热压纹/低温乙醇溶剂键合方法,用于制造聚甲基丙烯酸甲酯(PMMA)场流分馏装置。 PMMA基板上的分离通道是通过无真空的热压花工艺生成的。使用特殊的温度-压力曲线来分析热压花参数的影响。在热压花工艺之后,使用乙醇溶剂键合来密封PMMA基板上的分离通道。实验结果表明,在35°C(纵横比(深度/宽度):0.043)下,乙醇溶剂结合的结合强度为3.05 MPa,变形百分率非常低(0.54%)。爆破压力测试表明,所制备的PMMA重力场流分馏装置具有非常高的爆破压力。此外,所制备的PMMA重力流分离装置在分离小麦和淀粉颗粒方面具有​​更高的分辨率,这表明热压花/低温乙醇溶剂键合技术将具有潜在的商业价值。

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