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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The optimum condition selection of electrochemical polishing and surface analysis of the stainless steel 316L by the Taguchi method
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The optimum condition selection of electrochemical polishing and surface analysis of the stainless steel 316L by the Taguchi method

机译:Taguchi法对316L不锈钢进行电化学抛光和表面分析的最佳条件选择

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摘要

A development of smart materials has become a prominent issue on present industries. A smart material, included in functions, is needed for microfabrication. Complex design is able to become simply and reduce weight of parts as functionalized materials. In the traditional mechanical polishing method, even though surface roughness is good after polishing, there still remains very slight polish mark and deformed layer. Therefore, such method is not applicable to the product which requires ultra-clean surface quality. Thus, it has introduced electrochemical polishing method that electrochemical elution is applied, excluding the traditional processing method that contact between tool and workpiece always happens. In the study, Taguchi design method was introduced. By applying Taguchi design, one can significantly reduce the time required for experimental investigation, as it is effective in investigating the effects of multiple factors on performance as well as to study the influence of individual factors to determine which factor has more influence, which less. Experimental results, increases the processing time in the case of electrochemical polishing Stainless steel 316L plates were able to confirm that the improved surface quality. Start cutting after 120 s elapsed when rapidly improved surface quality showed that of the 120 s that exceeded in one area, the surface quality of the degree of improvement is slowing.
机译:智能材料的发展已经成为当前工业上的突出问题。微加工需要功能中包含的智能材料。复杂的设计能够变得简单,并减轻作为功能材料的零件的重量。在传统的机械抛光方法中,即使抛光后表面粗糙度良好,仍会留下非常轻微的抛光痕迹和变形层。因此,这种方法不适用于需要超净表面质量的产品。因此,引入了应用电化学洗脱的电化学抛光方法,以排除工具和工件之间总是发生接触的传统加工方法。在研究中,介绍了田口设计方法。通过使用Taguchi设计,可以显着减少实验研究所需的时间,因为它可以有效地研究多个因素对性能的影响,并且可以通过研究各个因素的影响来确定哪个因素影响更大,哪个影响较小。实验结果表明,在电化学抛光的情况下增加了处理时间不锈钢316L钢板能够确认表面质量得到了改善。当快速改善的表面质量显示在一个区域超过120秒时,经过120 s后开始切割,改善程度的表面质量正在减慢。

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