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Experimental studies using a new portable linear rock cutting machine and verification for disc cutters

机译:试验研究采用新型便携式线性岩石切割机和椎间盘刀具的验证

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摘要

This study aims at verifying the experimental results of a newly developed portable linear rock cutting machine (PLCM) and its usability for proper selection, design and predicting performance of TBMs instead of full-scale rock cutting machine. PLCM minimizes some of the disadvantages of full-scale linear rock cutting machine (FLCM) such as requiring experienced manpower to run the tests, large blocks of rock samples, which are usually difficult to obtain and expensive, and time consuming procedures. Relieved and unrelieved cutting tests at different depths of cut are performed in this study on different rock samples with the PLCM by using a mini-scale constant cross-section (CCS) disc cutter having a diameter of 145 mm and a tip width of 4.7 mm and the FLCM by using a real-life CCS disc cutter having a diameter of 432 mm and a tip width of 12 mm. Line spacing is 20 mm for mini scale disc cutter and 60-80 mm for real-life disc cutter in cutting tests in relieved mode. The results from both of the experimental devices are correlated for using prediction of cutting performance parameters of FLCM, which is commonly preferred and well-proven testing device for predicting the performance of any type of mechanical miner excavating hard rock. Then, another set of rock sample is obtained from Uskudar-Umraniye-Cekmekoy (UUC) metro tunnel construction site using EPB TBMs, of which their field performance (penetration and/or cutting rate, specific energy) and operational parameters (TBM thrust, cutterhead torque, power and rotational speed) are recorded. Based on the PLCM tests performed on the samples obtained from the field, the performance of the TBM is estimated theoretically (deterministically) and compared with the realized field performance to verify the results of the PLCM tests. The results indicate that the experimental cutting performances of the PLCM and the FLCM are well correlated and the PLCM can be used for predicting performance, design and selection of TBMs excavating hard rocks. Additional studies are required for developing more reliable models for predicting excavation performance.
机译:本研究旨在验证新开发的便携式线性岩石切割机(PLCM)的实验结果及其可用性,可用于适当的选择,设计和预测TBMS而不是全尺寸凿岩机的性能。 PLCM最大限度地减少了满量程线性岩石切割机(FLCM)的一些缺点,例如需要经验丰富的人力来运行测试,大块岩石样品块,这通常难以获得和昂贵,耗时的程序。在本研究中,在本研究中进行了缓解和未升温的切割测试,在本研究中进行了通过使用直径为145mm的迷你稳态恒定横截面(CCS)盘切割器,尖端宽度为4.7mm通过使用直径为432mm的现实寿命和12mm的尖端宽度,通过使用现实寿命CCS圆盘切割器。线间距为20毫米,对于迷你秤刀片切割器和60-80毫米,用于释放模式的切割测试中的现实寿命碟形切割器。两个实验装置的结果都是相关的,用于使用FLCM的切割性能参数预测,这是通常优选的和经过精心证明的测试装置,用于预测任何类型的机械挖掘硬岩的性能。然后,使用EPB TBMS从USKUDAR-UMRANIYE-CEKMEKOY(UUC)地铁隧道施工现场获得另一组岩石样品,其中它们的现场性能(渗透和/或切割速率,特定能量)和操作参数(TBM推力,切割刀头记录扭矩,动力和转速)。基于对从该领域获得的样本执行的PLCM测试,理论上估计TBM的性能(确定性地),与实现PLCM测试的结果相比,并与实现的现场性能进行比较。结果表明,PLCM和FLCM的实验切割性能很好地相关,PLCM可用于预测挖掘硬岩的TBMS的性能,设计和选择。开发更可靠的模型需要进行额外的研究,以预测挖掘性能。

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