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首页> 外文期刊>Hemijska industrija >Optimization of the process of steel strip perforation and nickel platting for the purpose of elimination of trichloroethylene from the cleaning process of perforated steel strip
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Optimization of the process of steel strip perforation and nickel platting for the purpose of elimination of trichloroethylene from the cleaning process of perforated steel strip

机译:优化钢带穿孔和镀镍工艺,以消除钢带穿孔清洗过程中的三氯乙烯

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In the production of pocket type electrodes for Ni-Cd batteries perforation of proper steel strips and then nickel platting of perforated steel strips were made. In the nickel platting process, the organic solvent, trichloroethylene, has previously been used for cleaning. Due to the carcinogenic nature of trichloroethylene and the many operations previously required during cleaning, it was considered to do cleaning of perforated steel strips without use of the mentioned organic solvent. In the purpose of elimination of trichloroethylene from the cleaning process of perforated steel strips, the tests of perforation of steel strips with use of oils of different viscosity were made. It was shown that there was no dysfunction during the work of the perforation plants, meaning there was no additional heating of the strips, deterring of the steel filings, nor excessive wearing of the perforation apparatus. The perforation percent was the same irrelevant of the viscosity of the used oil. Before being perforated using the oils with different viscosity, the nickel platting steel strips were cleaned in different degreasers (based on NaOH as well as on KOH). It was shown that efficient cleaning without the use of trichloroethylene is possible with the use of oil with smaller viscosity in the perforated steel strips process and the degreaser based on KOH in the cleaning process, before nickel platting. It also appeared that the alkali degreaser based on KOH was more efficient, bath corrections were made less often and the working period of the baths was longer, which all in summary means less quantity of chemicals needed for degreasing of perforated steel strips.
机译:在用于镍镉电池的袖珍型电极的生产中,先对合适的钢带穿孔,然后对穿孔的钢带镀镍。在镀镍过程中,先前已使用有机溶剂三氯乙烯进行清洁。由于三氯乙烯的致癌性质以及清洁期间以前需要进行的许多操作,因此认为不使用上述有机溶剂即可清洁带孔钢带。为了从带孔钢带的清洁过程中消除三氯乙烯,进行了使用不同粘度的油对带钢进行穿孔的测试。结果表明,在穿孔设备的工作过程中没有功能失调,这意味着没有额外的条带加热,钢锉的威慑,也没有穿孔设备的过度磨损。穿孔百分数与废油的粘度无关。在使用具有不同粘度的油打孔之前,请使用不同的脱脂剂(基于NaOH和KOH)清洁镀镍钢带。结果表明,在带孔钢带工艺中使用粘度较小的油,以及在镀镍之前,在清洁工艺中使用基于KOH的脱脂剂,可以在不使用三氯乙烯的情况下进行有效清洁。还显示出基于KOH的碱液脱脂剂效率更高,熔池校正次数更少,熔池的工作时间更长,总的来说,这意味着穿孔钢带脱脂所需的化学药品数量更少。

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