会议论文详细信息
World Multidisciplinary Earth Sciences Symposium 2017
Development of Test Rig for Robotization of Mining Technological Processes _ Oversized Rock Breaking Process Case
Pawel, Stefaniak^1 ; Jacek, Wodecki^1 ; Jakubiak, Janusz^2 ; Zimroz, Radoslaw^1
KGHM CUPRUM Ltd CBR, Sikorskiego 2-8, Wroclaw
53-659, Poland^1
Wroclaw University of Science and Technology, Department of Cybernetics and Robotics, Wybrzeze Wyspianskiego 27, Wroclaw
50-370, Poland^2
关键词: Automatic algorithms;    Industrial revolutions;    Literature analysis;    Operational efficiencies;    Preliminary analysis;    Production optimization;    Technological process;    Underground mining;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/95/4/042028/pdf
DOI  :  10.1088/1755-1315/95/4/042028
来源: IOP
PDF
【 摘 要 】

Production chain (PCh) in underground copper ore mine consists of several subprocesses. From our perspective implementation of so called ZEPA approach (Zero Entry Production Area) might be very interesting [16]. In practice, it leads to automation/robotization of subprocesses in production area. In this paper was investigated a specific part of PCh i.e. a place when cyclic transport by LHDs is replaced with continuous transport by conveying system. Such place is called dumping point. The objective of dumping points with screen is primary classification of the material (into coarse and fine material) and breaking oversized rocks with hydraulic hammer. Current challenges for the underground mining include e.g. safety improvement as well as production optimization related to bottlenecks, stoppages and operational efficiency of the machines. As a first step, remote control of the hydraulic hammer has been introduced, which not only transferred the operator to safe workplace, but also allowed for more comfortable work environment and control over multiple technical objects by a single person. Today literature analysis shows that current mining industry around the world is oriented to automation and robotization of mining processes and reveals technological readiness for 4th industrial revolution. The paper is focused on preliminary analysis of possibilities for the use of the robotic system to rock-breaking process. Prototype test rig has been proposed and experimental works have been carried out. Automatic algorithms for detection of oversized rocks, crushing them as well as sweeping and loosening of material have been formulated. Obviously many simplifications have been assumed. Some near future works have been proposed.

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