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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation on ultrasonic elliptical vibration boring of deep holes with large depth-diameter ratio for high-strength steel 18Cr2Ni4WA
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Investigation on ultrasonic elliptical vibration boring of deep holes with large depth-diameter ratio for high-strength steel 18Cr2Ni4WA

机译:高强度钢大直径比超声椭圆振动镗孔的研究18CR2NI4WA

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摘要

An ultrasonic elliptical vibration boring device for deep hole parts was designed, and the modal analysis, harmonic analysis, and transient analysis of this device were analyzed using finite element method. The results of harmonic analysis proved the feasibility of the design scheme, and transient analysis results indicated that the design scheme could realize elliptical vibration of the tool tip. The structure parameters of this device were optimized based on finite element analysis. Impedance measurement results of the device indicated that the ultrasonic elliptical vibration boring device was reliable. Ultrasonic elliptical vibration boring experiments of deep hole parts for high-strength steel 18Cr2Ni4WA were performed on a high-precision machine tool. The experimental results indicated that increasing the excitation voltage could effectively reduce the cutting force and surface roughness, and improve the stability of the boring process. Decreasing the rotation speed, feed speed, and cutting depth could effectively reduce the cutting force and surface roughness, and improve the stability of the boring process. Compared with traditional boring, ultrasonic elliptical vibration boring can significantly reduce the boring force, surface roughness, cutting chip length, and vibration of the boring bar. This work is of great significance for achieving high-efficiency and precision machining of deep hole parts.
机译:设计了用于深孔部件的超声波椭圆振动镗孔装置,并使用有限元方法分析了该装置的模态分析,谐波分析和瞬态分析。谐波分析结果证明了设计方案的可行性,瞬态分析结果表明,设计方案可以实现工具尖端的椭圆振动。基于有限元分析优化了该装置的结构参数。该装置的阻抗测量结果表明,超声波椭圆振动钻孔装置可靠。在高精度机床上进行高强度钢18Cr2Ni4WA深孔件的超声波椭圆振动钻孔实验。实验结果表明,增加激励电压可以有效地降低切割力和表面粗糙度,并提高钻孔工艺的稳定性。降低旋转速度,进给速度和切削深度可以有效地降低切割力和表面粗糙度,并提高钻孔工艺的稳定性。与传统镗孔相比,超声波椭圆振动镗孔可以显着降低镗孔,表面粗糙度,切割芯片长度和镗杆的振动。这项工作对于实现深孔部件的高效率和精密加工具有重要意义。

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