Evaluation of TBM Cutterhead’s Comprehensive Performance Under Complicated Conditions

Ye Zhu, Xu-liang Wang, Xiangyu Chen
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引用次数: 1

Abstract

A comprehensive performance evaluation method for the tunnel boring machine(TBM) cutterhead is proposed in this paper. The evaluation system is established on strength and vibration. Based on fracture mechanics theory, fatigue strength evaluation indices are determined under critical crack length. The concept of crack regions division is proposed to evaluate fatigue strength more accurately and specifically. In addition, the velocities in three directions of critical locations are obtained with dynamics equations. Then, the root-mean-square values of velocities are taken as the vibration severity indices. Taking the cutterhead of Jilin diversion engineering as an example, the evaluations of each index are completed; then, the vibration of the TBM cutterhead is measured and compared with the theoretical calculation results. There are similar change laws between the theoretical calculation results and the testing results of the cutterhead acceleration, which proves that the method of calculation of the vibration index is effective, the reliability of the cutter saddle welding should be paid attention to when the TBM is working, and the condition of vibration severity of the TBM cutterhead meets the requirements but needs to be improved.
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复杂条件下TBM刀盘综合性能评价
提出了一种隧道掘进机刀盘综合性能评价方法。建立了强度和振动的评价体系。基于断裂力学理论,确定了临界裂纹长度下的疲劳强度评价指标。为了更准确、更具体地评价疲劳强度,提出了裂纹区划分的概念。此外,用动力学方程获得了临界位置三个方向上的速度。然后,将速度的均方根值作为振动严重性指标。以吉林引水工程刀盘为例,完成了各项指标的评价;然后,对TBM刀盘的振动进行了测量,并与理论计算结果进行了比较。刀盘加速度的理论计算结果与试验结果之间存在相似的变化规律,证明了振动指标的计算方法是有效的,TBM工作时应注意刀鞍焊接的可靠性,TBM刀盘振动严重程度满足要求,但仍需改进。
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1.10
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2437
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