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通过对切碎的聚氨酯泡沫进行镀镍来制备电解复合粉末。

Production of Electrolytic Composite Powder by Nickel Plating of Shredded Polyurethane Foam.

作者信息

Niedbała Jolanta, Popczyk Magdalena, Hawełek Łukasz, Orda Szymon, Okła Hubert, Gabor Jadwiga, Stach Sebastian, Swinarew Andrzej S

机构信息

Łukasiewicz Research Network, Institute of Non-Ferrous Metals, Sowińskiego 5, 44-100 Gliwice, Poland.

Faculty of Science and Technology, University of Silesia, 75 Pułku Piechoty 1A, 41-500 Chorzów, Poland.

出版信息

Materials (Basel). 2022 May 30;15(11):3895. doi: 10.3390/ma15113895.

Abstract

Ni-poly(DPU) composite powder was produced under galvanostatic conditions from a nickel bath with the addition of pulverized polymer obtained during the shredding of polyurethane foam (poly(DPU)). The Ni-poly(DPU) composite powder was characterized by the presence of polymer particles covered with an electrolytical amorphous-nanocrystalline nickel coating. The phase structure, chemical composition, morphology, and the distribution of elements was investigated. The chemical analysis showed that the powder contains 41.7% Ni, 16.4% C, 15.7% O, 8.2% P and 0.10% S. The other components were not determined (nitrogen and hydrogen). The phase analysis showed the presence of NiC phase. Composite powder particles are created as a result of the adsorption of Me ions on the fragmented polymer. The current flowing through the galvanic bath forces the flow of the particles. The foam particles with adsorbed nickel ions are transported to the cathode surface, where the Ni is discharged. The presence of compound phosphorus in galvanic solution generates the formation of amorphous-nanocrystalline nickel, which covers the polymer particles. The formed nickel-polymer composite powder falls to the bottom of the cell.

摘要

在恒电流条件下,从添加了在聚氨酯泡沫(聚(DPU))粉碎过程中获得的粉碎聚合物的镍镀液中制备了镍-聚(DPU)复合粉末。镍-聚(DPU)复合粉末的特征是存在覆盖有电解非晶-纳米晶镍涂层的聚合物颗粒。研究了其相结构、化学成分、形态和元素分布。化学分析表明,该粉末含有41.7%的镍、16.4%的碳、15.7%的氧、8.2%的磷和0.10%的硫。未测定其他成分(氮和氢)。相分析表明存在NiC相。复合粉末颗粒是由于Me离子吸附在破碎的聚合物上而形成的。流过电镀槽的电流促使颗粒流动。吸附有镍离子 的泡沫颗粒被输送到阴极表面,在那里镍被放电。电镀溶液中复合磷的存在促使形成覆盖聚合物颗粒的非晶-纳米晶镍。形成的镍-聚合物复合粉末落到电解槽底部。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f41/9181888/f7ca398bd3ff/materials-15-03895-g001.jpg

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