首页> 外文会议>10th American Waterjet Conference Vol.2, Aug 14-17, 1999, Houston, Texas >ROCK DISINTEGRATION USING WATERJET-ASSISTED DIAMOND TOOLS
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ROCK DISINTEGRATION USING WATERJET-ASSISTED DIAMOND TOOLS

机译:使用水射流辅助金刚石工具进行岩石分解

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Mechanical excavation of hard rocks using conventional tools is not yet viable from both the technical and economic point of view due to the poor performance of the equipment in terms of excavation rate and specific energy as well as to the high wear rate of the mechanical instrument if the rock is also abrasive. A new opportunity is opened by the development of tools with special design coated with a layer of polycrystalline diamond. However they are very delicate to handle because of the fragility to impact of the active tip which is also sensitive to the high-temperature heat generated by the contact with the rock. The assistance of a water jet in front of the tool is the only way for efficient cooling as well as for supporting the mechanical action in the initiation and propagation of fractures. Linear grooving experiments have been carried out at the Waterjet Laboratory of the University of Cagliari in the frame of a bilateral programme involving the National Research Council of Italy and the Academy of Science of Czech Republic. Data of forces and displacement as a function of time have been recorded and processed by means of a computer in order to monitor the tool performance in real time. Tests have been carried out on two rock samples with different toughness by varying the vertical load (pushing force) and the features of the water jet (pressure and flowrate). Performance has been evaluated in terms of specific energy (mechanical and hydraulic) and wear has been assessed with high-resolution optical fibre microscopy. The paper describes the laboratory set-up used for the tests and illustrates the results obtained outlining the prospects of the technology.
机译:从技术和经济的角度来看,使用常规工具对硬岩进行机械开挖尚不可行,原因是设备在开挖速度和比能量方面的性能很差,并且如果使用机械工具则磨损率很高。岩石也是磨料。通过开发具有特殊设计并涂有一层多晶金刚石的特殊工具,开辟了一个新的机遇。然而,由于活动尖端的冲击的易碎性,它们也非常脆弱,这对与岩石接触所产生的高温热量也很敏感。在工具前面的水刀辅助是有效冷却以及支持裂缝产生和传播中的机械作用的唯一方法。卡利亚里大学的水刀实验室已经在涉及意大利国家研究委员会和捷克共和国科学院的双边计划的框架内进行了线性开槽实验。力和位移随时间变化的数据已通过计算机记录和处理,以便实时监控工具性能。通过改变垂直载荷(推力)和水射流的特性(压力和流量),对具有不同韧性的两个岩石样品进行了测试。已根据比能(机械和液压)评估了性能,并使用高分辨率光纤显微镜评估了磨损。本文介绍了用于测试的实验室设置,并说明了概述该技术前景的结果。

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