Substantiation and development of innovative container technology for rock mass lifting from deep open pits

IF 2.8 Q2 MINING & MINERAL PROCESSING
Bolatkhan Khussan, A. Abdiev, M. Bitimbayev, S. Kuzmin, Sayat Issagulov, Azamat Matayev
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引用次数: 5

Abstract

Purpose. The research purpose is to substantiate the rational parameters of innovative container technology for transporting mine rocks in open pits with account of technological advantages. Methods. The winding machine normal operation was determined by calculation performed. The container metal structure was designed in the environment of the Compass-3D software complex. The structural elements were tested for normal operation using computer modeling methods in the APM WinMachine 9.7 program, which gives the possibility to obtain the strength calculation values. Findings. The results of modeling the stresses on the wall of the container and the frame, as well as the yield strength are presented. The test calculation confirms the technical feasibility for operating the dragline-based mine winding machines. The influence of the container capacity on the performance of the winding machine has been determined and the dependence of the economic efficiency of the container technology introduction at the open pit depth has been revealed. Originality. For the first time, on the basis of computer modeling, the parameters of stress distribution on the container wall have been substantiated when performing a strength calculation. It has been determined that the maximum stress in the container wall is 117.52 N/mm2; the principal stress value is 83.85 N/mm2. The safety factor for yield strength is 1.8. The maximum load acting on the structure is 957.5 kgf, which does not exceed the calculated value. Practical implications. The practical importance is to improve mining efficiency, reduce the cost of transporting rocks and ensure automatic container unloading. The use of replaceable containers in open pits can significantly change the formation principles of shovels and transport complexes, increase their performance and the efficiency of shovels in the main processes.
深基坑岩体提升容器创新技术的实践与发展
意图研究目的是利用技术优势,证实露天矿岩石运输集装箱创新技术的合理参数。方法。绕线机的正常运行是通过计算确定的。容器金属结构是在Compass-3D软件复合体的环境中设计的。在APM WinMachine 9.7程序中,使用计算机建模方法对结构元件的正常运行进行了测试,这为获得强度计算值提供了可能性。调查结果。给出了容器壁和框架上的应力以及屈服强度的建模结果。通过试验计算,验证了牵引式矿井提升机运行的技术可行性。确定了集装箱容量对卷绕机性能的影响,揭示了露天矿深度集装箱技术引进经济效益的相关性。独创性首次在计算机建模的基础上,在进行强度计算时,证实了容器壁上的应力分布参数。已经确定,容器壁中的最大应力为117.52N/mm2;主应力值为83.85N/mm2。屈服强度的安全系数为1.8。作用在结构上的最大载荷为957.5 kgf,不超过计算值。实际意义。实际意义在于提高采矿效率,降低岩石运输成本,确保集装箱自动卸货。在露天矿中使用可更换容器可以显著改变电铲和运输综合体的形成原理,提高其性能和电铲在主要工艺中的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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