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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Fabrication of Small Pore-Size Nickel Foams Using Electroless Plating of Solid-State Foamed Immiscible Polymer Blends
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Fabrication of Small Pore-Size Nickel Foams Using Electroless Plating of Solid-State Foamed Immiscible Polymer Blends

机译:使用固态发泡不混溶聚合物共混物的化学镀法制造小孔径的镍泡沫

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摘要

A novel fabrication process of small pore-size nickel foams has been developed using electroless plating of solid-state foamed immiscible polymer blends. Ethylene acrylic acid (EAA) and polystyrene (PS) were melt-blended with extrusion to obtain a dual phase cocontinuous morphology. Gas saturation and foaming studies were performed to deter mine appropriate process conditions for foaming of the two-phase material. Open-celled polymer templates were obtained by extracting the PS phase with dichloromethane (DCM). The templates were subsequently used for nickel foam plating in ethanol-based electroless plating solutions. Nickel foams with pore sizes on the level of tens of micro meters and porosity above 90% were fabricated. It was found that gas concentration and foaming temperature were major process variables significantly affecting the foam poros ity. Foaming allowed faster PS extraction and higher porosity of the nickel plating tem plates. Because of the small pore size, ethanol-based solutions need to be used to ensure the infiltration of plating solutions. The developed process is a bulk method and can be used for large-scale fabrication of small pore-size nickel foams with high porosity.
机译:使用固态泡沫不混溶的聚合物共混物的化学镀,已经开发了一种小孔径镍泡沫的新颖制造工艺。将乙烯丙烯酸(EAA)和聚苯乙烯(PS)进行熔融共混挤出,以获得双相共连续形态。进行了气体饱和和起泡研究,以确定用于两相材料起泡的适当工艺条件。通过用二氯甲烷(DCM)萃取PS相获得开孔聚合物模板。模板随后用于基于乙醇的化学镀液中的泡沫镍电镀。制备了镍泡沫,其孔径为几十微米,孔隙率超过90%。发现气体浓度和发泡温度是显着影响泡沫孔隙率的主要工艺变量。发泡可以更快地提取PS,并提高镀镍模板的孔隙率。由于孔径小,需要使用乙醇溶液来确保镀液的渗透。所开发的方法是一种本体方法,可用于大规模制造具有高孔隙率的小孔径镍泡沫。

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