Microwave-assisted TBM cutter for efficient hard rock fracturing in high stress environments

IF 4.7 2区 工程技术 Q1 MECHANICS
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Abstract

Elucidating the effects and fundamental mechanisms of microwave-assisted mechanical excavation under high initial stress conditions is of paramount importance for enhancing the efficiency of deep resource extraction. In this study, indentation experiments were conducted on microwave-damaged rock under initial stress conditions using a tunnel boring machine (TBM) for the first time. By integrating acoustic emission, digital image correlation, and the discrete element method, we conducted a comprehensive analysis of the multifaceted effects of microwave irradiation and initial stress on rock fracturing. The rock-breaking efficiency was evaluated based on the volume of broken rock and the energy consumption. The indentation failure of the sample can be divided into three stages: microfracture closure, elastic deformation, and unstable crack propagation. The microwave irradiation reduced the peak load during the indentation process and simultaneously reduced the brittleness of the specimen. The experimental and simulation results jointly demonstrated the existence of an initial stress threshold in the rock fracturing process. When the initial stress is below the threshold, it suppresses the extension of rock fractures, which is unfavorable for rock fragmentation. When the initial stress exceeds the threshold, stress-induced rock failure occurs, which promotes rock fragmentation. A notable observation is that microwave irradiation alters the initial stress threshold of the rock, where a higher microwave power correlates with a lower initial stress threshold. This indicates that the optimal parameters for microwave equipment must be reconsidered when the initial stress changes. Methods for optimizing rock breakage at initial stress were suggested and examined.

微波辅助隧道掘进机铣刀,用于在高应力环境下高效压裂硬岩
阐明高初始应力条件下微波辅助机械挖掘的效果和基本机制对于提高深层资源开采效率至关重要。本研究首次使用隧道掘进机(TBM)对初始应力条件下的微波损伤岩石进行了压痕实验。我们综合运用声发射、数字图像相关和离散元方法,全面分析了微波辐照和初始应力对岩石破裂的多方面影响。根据破碎岩石的体积和能量消耗评估了岩石破碎效率。样品的压痕破坏可分为三个阶段:微裂缝闭合、弹性变形和不稳定裂缝扩展。微波辐照降低了压痕过程中的峰值载荷,同时降低了试样的脆性。实验和模拟结果共同证明了岩石压裂过程中存在一个初始应力阈值。当初始应力低于阈值时,会抑制岩石裂缝的扩展,不利于岩石破碎。当初始应力超过阈值时,应力引起的岩石破坏就会发生,从而促进岩石破碎。值得注意的是,微波辐照改变了岩石的初始应力阈值,微波功率越大,初始应力阈值越低。这表明,当初始应力发生变化时,必须重新考虑微波设备的最佳参数。建议并研究了优化初始应力下岩石破碎的方法。
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来源期刊
CiteScore
8.70
自引率
13.00%
发文量
606
审稿时长
74 days
期刊介绍: EFM covers a broad range of topics in fracture mechanics to be of interest and use to both researchers and practitioners. Contributions are welcome which address the fracture behavior of conventional engineering material systems as well as newly emerging material systems. Contributions on developments in the areas of mechanics and materials science strongly related to fracture mechanics are also welcome. Papers on fatigue are welcome if they treat the fatigue process using the methods of fracture mechanics.
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