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首页> 外文期刊>Production Engineering: Research and Development >Optimization of guide pads for the BTA deep hole drilling of high alloyed steels by microfinishing
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Optimization of guide pads for the BTA deep hole drilling of high alloyed steels by microfinishing

机译:通过微精加工优化高合金钢BTA深孔钻孔的导向板

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The boring and trepanning association deep hole drilling of materials with a high tendency to adhesion, such as high alloyed-steels, is characterized by a poor surface quality of the bore hole. Material particles adhere to the guide pads that are positioned on the circumference of the drill head and that are normally responsible for the outstanding workpiece quality. In order to prevent this mechanism the guide pads were coated with an innovative amorphous and tetrahedral bonded (ta-C)-coating. This coating has a reduced friction coefficient of 0.1 against steel and a hardness coefficient of about 7,000 HV. To use the benefits of this ta-C-coating the pre- and the after-treatment of the uncoated carbide substrate and ta-C-coated guide pads are essential. For these process steps a micro-finishing process was carried out as an alternative to the conventional treatment by polishing and brushing. The microfinishing of the uncoated guide pads effects a smooth surface that is necessary for an optimum bonding strength of the ta-C-coating at the carbide substrate. Furthermore the chamfer edge in the lead-in-area is rounded which reduces the mechanical load at this specific area during the process. The finishing process of the coated guide pads reduces the coating defects and improves the friction coefficient. Thus, the wear behavior of the guide pads is improved because of the better friction conditions during the drilling process of high alloyed steels.
机译:具有高附着力的材料(例如高合金钢)的镗孔和铣削组合深孔钻削具有钻孔表面质量差的特点。材料颗粒会附着在导向垫上,导向垫位于钻头的圆周上,通常会导致出色的工件质量。为了防止这种机理,在导向垫上涂覆了创新的无定形和四面体粘结(ta-C)涂层。该涂层与钢的摩擦系数降低了0.1,硬度系数约为7,000 HV。为了利用这种ta-C涂层的优势,必须对未涂层的硬质合金基材和ta-C涂层的导板进行预处理。对于这些工艺步骤,通过抛光和刷涂进行了微精加工工艺来替代常规处理。未涂覆的导向垫的微加工会产生光滑的表面,这对于在碳化物基材上实现ta-C涂层的最佳粘结强度是必需的。此外,导入区域中的倒角边缘是圆角的,这减少了此过程中该特定区域的机械负荷。涂覆的导向垫的精加工过程减少了涂覆缺陷并提高了摩擦系数。因此,由于在高合金钢的钻孔过程中具有更好的摩擦条件,因此改善了导向块的磨损性能。

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