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首页> 外文期刊>Journal of Mechanical Science and Technology >Vibration response and parameter influence of TBM cutterhead system under extreme conditions
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Vibration response and parameter influence of TBM cutterhead system under extreme conditions

机译:TBM Cutterhead系统在极端条件下的振动响应和参数影响

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摘要

A cutterhead endures complex random loads when the TBM tunnels, which leads to structure excessive vibration, due to the extreme working conditions. So anti-vibration design is key in the cutterhead system design. In this study we established a virtual prototype of TBM mainframe system, comprehensively considering the spatial multi-point random excitations, split cutterhead structure and multidirectional support stiffness of the main bearing, etc., based on multi-body system dynamics and virtual prototype technology. For verifying the virtual prototype model, a TBM cutterhead vibration field detection system was constructed, to test the cutterhead accelerations and compare the simulation and measured results. The results show that the acceleration change rule by the two approaches is similar, and the maximum relative error is 55 %, keeping on the same order of magnitude, which illustrates the established model has certain reliability. Accordingly, an orthogonal test scheme for cutterhead radial vibration analysis was designed, to analyze the influence of different parameters on cutterhead vibration, based on the virtual prototype model. As indicated in the analysis, the parameter of cutter force had the greatest influence on cutterhead vibration, and then the pinion support stiffness and cutterhead rotating speed. Last, the cutterhead vibration optimal schemes in different directions were confirmed. The research results and methods can provide reference for TBM system parameters matching.
机译:当TBM隧道时,切割器头部恢复复杂的随机载荷,这导致结构过度振动,由于极端的工作条件。因此,防振设计是Cutterhead系统设计的关键。在这项研究中,我们建立了TBM大型机系统的虚拟原型,全面考虑了基于多体系动态和虚拟原型技术的空间多点随机激励,分割切割机结构和主轴承的多向支撑刚度等。为了验证虚拟原型模型,构建了TBM Cutterhead振动场检测系统,以测试Cutterhead加速度并比较模拟和测量结果。结果表明,两种方法的加速度变化规则是相似的,并且最大相对误差为55%,保持相同的数量级,其示出了已建立的模型具有一定的可靠性。因此,设计了一种用于切割辐射振动分析的正交试验方案,基于虚拟原型模型分析不同参数对切割振动的影响。如分析所示,切割力的参数对切割振动的影响最大,然后小齿轮支撑刚度和切割口旋转速度。最后,确认了不同方向上的切割振动最佳方案。研究结果和方法可以为TBM系统参数提供匹配。

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