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Reverse engineering study of diamond coated router bit using SEM method

机译:用SEM方法对金刚石涂层coated刨刀头进行逆向工程研究

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Router bit is the most critical material during printed circuit board (PCB) depanelization process. According to industrial record, replacing ordinary router bit with diamond coated router bit can save 80% of depenalization cost. Hence, quality and reliability of router bit become a critical issue during material qualifying process. Material qualifying process involve small scale test at industry to check on tool performance. However, there is no initial study by end user for these specific coating on router bit which is the major contributor for the long life performance. Without that critical information, quality and reliability of diamond coated router bit cannot be compared in future. Therefore a study on diamond coated structure and layer of coating of commercial diamond coated router bit is carried out to obtain information on thickness of coating, layer structure and type of the diamond coating. Sample prepared by etching using murakami solution and an acid solution of hydrogen peroxide. The sample is analize under 5000 times magnification of scanning electron microscopy (SEM) to provide detail on coating thickness, layer structure and type of coating.
机译:printed刨刀头是印刷电路板(PCB)脱面板过程中最关键的材料。根据工业记录,用金刚石涂层的router刨头代替普通的router刨头可以节省80%的脱胶成本。因此,铣刨刀头的质量和可靠性成为材料鉴定过程中的关键问题。材料合格过程涉及在工业上进行的小规模测试,以检查工具的性能。但是,最终用户尚未对router刨刀钻头上的这些特殊涂层进行初步研究,而这是长寿命性能的主要原因。没有这些关键信息,将来就无法比较金刚石涂层铣刀钻头的质量和可靠性。因此,对商用金刚石涂层router刨刀的金刚石涂层结构和涂层进行了研究,以获得有关涂层厚度,层结构和金刚石涂层类型的信息。通过使用murakami溶液和过氧化氢的酸性溶液进行蚀刻制备的样品。将样品在扫描电子显微镜(SEM)的5000倍放大下进行分析,以提供有关涂层厚度,层结构和涂层类型的详细信息。

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