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Chip Deformation Mechanism during Drilling of Nickel-based Superalloy FGH97

机译:基于镍的超合金FGH97钻井过程中的芯片变形机制

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Nickel-based superalloy is widely used in aviation,aerospace,shipping and petrochemical industry.An experimental investigation was conducted to analyze the effects of cutting parameters on chip deformation during drilling process of nickel-based superalloy FGH97.Drilling experiments have been carried by means of a machining center YCM-V116B and TiN/TiAIN coated carbide drill bit SECO made SD203-8.0-27-8R1.The chip root is obtained by means of ourselves-made device.The chip deformation decreases with the increasing of cutting speed during drilling process of Ni-based superalloy.The larger the feed rate,the less the chip deformation is.When cutting speed is from 6 m/min to 12 m/min,the shear angle of drilling changes from 14.8 degrees to 19.9 degrees.When feed rate speed is from 0.03mm per tooth to 0.06mm per tooth,the shear angle of drilling changes from 13.7 degrees to 17.4 degrees.
机译:基于镍的超合金广泛应用于航空,航空航天,航运和石化工业。进行实验研究,分析了切削参数在钻镍的超合金FGH97钻井过程中芯片变形的影响。答案实验已经通过加工中心YCM-V116B和TIN / TIAIN涂层硬质合金钻头SECO制造了SD203-8.0-27-8R1。通过我们自己制造的装置获得芯片根。芯片变形随着钻井过程中的切削速度的增加而降低基于Ni的超合金。进料速率越大,芯片变形越少。当切割速度为6米/分钟至12米/分钟时,钻孔的剪切角度从14.8度变为19.9度。进给速率速度为每齿0.03mm,每齿0.06mm,钻孔的剪切角度从13.7度变为17.4度。

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