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Longitudinal Modal Analysis of Drilling Rod Device of New Screw Pile Hammers Based on APDL Parametric Modeling

机译:基于APDL参数化建模的新型螺旋桩锤钻杆装置纵向模态分析

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The vibration of drilling rod device often leads to fatigue failure and sticky buckle failure phenomenon in construction, causes huge economic losses to the construction unit, so the dynamic analysis is of great engineering significance for drilling rod device. This article makes the longitudinal modal analysis of drilling rod device of the new screw pile hammers with ANSYS software based on APDL parametric modeling. The first eight natural frequencies, vibration modes and the critical speeds of drilling rod device are solved by ANSYS. The critical speed is solved through the relationship between critical speed and natural frequency of drilling rod device indirectly which can provide theoretical guidance to avoid the occurrence of resonance phenomena. The influence of geometry sizes (wall thickness, length of spline rod and length of threaded rod) to natural frequency and vibration mode of drilling rod device is analyzed, which can provide a theoretical guidance to design and optimization for the drilling rod device. Compared with the traditional methods, APDL parametric modeling has better compatibility, versatility and efficiency in the period of product design and development.
机译:钻杆装置的振动在施工中经常导致疲劳破坏和粘扣破坏现象,给施工单位造成巨大的经济损失,因此动力分析对钻杆装置具有重要的工程意义。本文利用基于APDL参数化建模的ANSYS软件对新型螺旋桩锤的钻杆装置进行了纵向模态分析。 ANSYS解决了钻杆装置的前八个固有频率,振动模式和临界速度。通过临界速度与钻杆装置固有频率之间的关系间接求解临界速度,可以为避免共振现象的发生提供理论指导。分析了几何尺寸(壁厚,花键杆长度和螺杆长度)对钻杆装置固有频率和振动模式的影响,可为钻杆装置的设计和优化提供理论指导。与传统方法相比,APDL参数建模在产品设计和开发期间具有更好的兼容性,多功能性和效率。

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