Optimized control over modes of hydraulic percussion cutting heads of mining machines

Author:

Smirnov Yu. M.1,Kenzhin B. M.2,Smakova N. S.1,Zhurunova M. A.1

Affiliation:

1. Karaganda State Technical University

2. Karaganda Machine-Building Consortium

Abstract

The main cause of the disagreement between the actual and calculated output data of hydraulic percussion mining machines is the erroneous feed of manipulation signals by the control units. For the maximal fitting of the calculated and actual figures, the continuous method of control action using the third time derivative of the law of motion of the main function element is accepted, namely, the accuracy. The mathematical models of control using displacement, velocity and acceleration are developed. The service factors of mining machines are found. Based on the theory of control and the mathematical logic theory, the logical circuits of formation of manipulation signals in each phase of the working cycle are developed. The main elements are converters, integrators and accumulators ensuring decomposition of elements of the logical circuits and further generation of appropriate control action. It is found that the simplest way is to generate the control action for acceleration of the key function element. For the developed circuits, it is recommended to use general charts of the control action change, implementable for a certain design of hydraulic percussion cutting heads in certain operating conditions.

Publisher

LLC Gornaya Kniga

Subject

Industrial and Manufacturing Engineering,Geochemistry and Petrology,Geology,Geotechnical Engineering and Engineering Geology,Ecology

Reference13 articles.

1. Smirnov Yu. M., Kenzhin B. M., Smakova N. S. Model of interaction vibration-seismic array module with carbon and the results of its research / International Conference: Science and Education in XXI century. December 1, 2014, Bozeman, Montana, USA, pp. 186-189.

2. Smirnov Yu. M., Kenzhin B. M. Special features of processing and interpreting mining seismic acoustic information / Modern Technologies of mineral resources development. Collection of articles. Lambert Academic Publishing, 2012, pp. 1124-128.

3. Smirnov Yu. M., Kenzhin B. M., Zhurunova M.A. The results of «vibration-seismic-module-solid massif-disturbance» system simulation modeling // Eurasian Physical Technical Journal, 2011, Vol. 8, No 1 (15). Рp. 42-48.

4. Городилов Л. В., Вагин Д. В., Пашина О. А. Разработка методики выбора параметров гидроударных систем объемного типа // Физико-технические проблемы разработки полезных ископаемых. - 2014. - № 1. - С. 87-94.

5. Lu X.-Y. The fatigue behavior study of intelligent tower crane by finite element theory // International Journal of Control and Automation. 2015. Vol. 8. Issue 10, pp. 125-134.

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