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A discussion on hard rock TBM cutter wear and cutterhead intervention interval length evaluation

机译:硬岩TBM刀具磨损及刀盘干预间隔长度评估的探讨

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Cutter wear is an important issue for hard rock TBMs as it is directly related to the time and cost of tunneling. It may even become more important for a closed faced TBM tunneling when the planning for a costly intervention becomes very crucial. The major goal of this study is to provide more accurate empirical methods for the cutter wear and optimum intervention interval evaluation. This needs abrasivity index or wear index measurement from various tunnels in different rock types as well as the actual cutter consumption information. To achieve this goal, two methods are adopted. The first method entails compiling TBM performance data and cerchar abrasivity index (CAI) information from various past case histories and data analysis to propose a new empirical formula for the specific cutter weight loss. The second method involves abrasivity measurement using a new proposed laboratory test for a set of available samples from some recently completed tunnels and data analysis to provide an alternative empirical method for specific cutter weight loss prediction. The new abrasion test (NAT), proposed in this paper, is aimed to improve the process of abrasivity measurement using a constant cross section small disc to partially mimic the real disc cutter interaction with the tunnel face. The results show that both of the achieved new empirical formulas provide a better prediction as compared to the well-known Gehring model. They also provide information to predict optimum cutterhead intervention interval length and the number of worn-out cutters. A full-scale test is also conducted to check the validity of the new formulas. In the final section of this paper, the method to evaluate the optimum intervention interval length and the number of worn-out cutters is described and its prediction is evaluated for a tunnel project in Singapore. The evaluation of the new methods proposed in this paper shows a very good agreement with the actual cutter consumption and intervention interval length. The outcomes of this paper can be very useful in both planning and construction stages of a TBM tunneling project where the intervention interval length and cutter wear become critical decision making factors for scheduling and cost evaluation and for reducing the risks of unwanted severe damage on the cutters.
机译:刀具磨损是硬岩TBM的重要问题,因为它直接关系到开挖的时间和成本。当昂贵的干预计划变得非常关键时,对于封闭式TBM隧道掘进可能甚至变得更加重要。这项研究的主要目的是为刀具磨损和最佳干预间隔评估提供更准确的经验方法。这需要测量来自不同岩石类型的各种隧道的耐磨性指数或磨损指数,以及实际的刀具消耗信息。为了实现这个目标,采用了两种方法。第一种方法需要根据各种过去的历史和数据分析来汇编TBM性能数据和cer木耐磨性指数(CAI)信息,从而为特定刀具的重量损失提出新的经验公式。第二种方法涉及使用新提议的实验室测试对一些最近完成的隧道中的一组可用样品进行磨耗度测量,并进行数据分析,从而为特定刀具的失重预测提供替代的经验方法。本文提出的新的磨损测试(NAT)旨在改善使用恒定横截面小圆盘来部分模拟真实的圆盘切刀与隧道工作面相互作用的磨损率测量过程。结果表明,与众所周知的格林模型相比,这两种已获得的新的经验公式都提供了更好的预测。它们还提供信息,以预测最佳的刀盘干预间隔长度和磨损的刀盘数量。还进行了全面测试,以检查新公式的有效性。在本文的最后一部分中,介绍了评估最佳干预间隔长度和磨损刀具数量的方法,并对新加坡的隧道项目进行了评估。本文提出的新方法的评估结果与实际刀具消耗量和干预间隔长度非常吻合。本文的结果在TBM隧道项目的规划和施工阶段都非常有用,在该阶段,干预间隔的长度和刀具的磨损成为调度和成本评估以及降低刀具不必要的严重损坏风险的关键决策因素。 。

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