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Innovative use of biologically produced ferric sulfate for machining of copper metal and study of specific metal removal rate and surface roughness during the process

机译:生物生产硫酸铁在铜金属加工中的创新应用以及在加工过程中特定金属去除率和表面粗糙度的研究

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The biologically produced ferric sulfate (in the form of bacterial culture supernatant) was used for machining of copper metal workpiece. A 27.04 mg/h cm~2 average specific metal removal rate was achieved during oxidation of copper workpiece. The leaching performance of culture supernatant was comparable to that of microbial cells indicating that an indirect non-contact leaching mechanism is predominant for metal solubilization. The surface of copper workpiece was analyzed by scanning electron microscopy before and after oxidation. The changes in surface appearance were found during oxidation of copper. Also the change in surface roughness was observed during machining process. The quality of the surface produced is a very important aspect of the performance of the manufacturing process. Therefore the present study characterizes an effect of various physicochemical parameters on specific metal removal rate and surface roughness. An increasing concentration of FeSO_4, shaking speed and volume of culture supernatant showed pronounced effect on metal removal and surface roughness. At the same time an application of varying temperatures showed little effect.
机译:生物生产的硫酸铁(以细菌培养上清液的形式)用于加工铜金属工件。在铜工件的氧化过程中,平均比金属去除率达到27.04 mg / h cm〜2。培养物上清液的浸出性能与微生物细胞的浸出性能相当,这表明间接的非接触浸出机理是金属增溶的主要途径。在氧化之前和之后,通过扫描电子显微镜分析铜工件的表面。在铜的氧化过程中发现了表面外观的变化。在加工过程中还观察到了表面粗糙度的变化。所生产表面的质量是制造过程性能的一个非常重要的方面。因此,本研究表征了各种物理化学参数对特定金属去除率和表面粗糙度的影响。 FeSO_4浓度增加,振荡速度和培养上清液体积显示出对金属去除和表面粗糙度的显着影响。同时,施加温度变化几乎没有效果。

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