Modeling of a V-type mining support in an advanced engineering environment

A. Gwiazda, W. Banaś, K. Foit, S. Topolska, Z. Monica, A. S^kala
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引用次数: 1

Abstract

Designing technical means using advanced computer systems requires the change in approaches to specific tasks carried out in this process. The solution of this problem is an integrative approach, which allows linking different operating ranges, various tools and complicated sets of requirements into a single operating design system. The elements of this integrative approach is the concept of splitting a technical mean system into three sub-system components. The first is structural sub-system containing solutions and their attributes regarding the structural concept of a designed system. The second is drive sub-system containing solutions of drive systems along with the parameters of their operation. Finally the last sub-system contains information relating to the control system and its settings. Systems attributes include such design features as the geometrical characteristics, material characteristics and assembly characteristics. The subject of the integrated design process is a mechanized mining support. As a part of the project the construction system of a mechanized mining support was divided on the three sub-systems. The structural subsystem includes a canopy, a burst shield and foot parts. Whereas the drive sub-system comprises includes the system of hydraulic props and hydraulic cylinders responsible for the functioning of the support. In the example, presented in the paper, is shown the system of hydraulic props where they are arranged in a V-system. These indicated two sub-systems form the structure of the support. It is complemented by the control sub-system basing on the use of control valves and separator valves and an operator control panel.
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先进工程环境下v型采矿支架的建模
使用先进的计算机系统设计技术手段需要改变在这一过程中执行的具体任务的方法。解决这一问题的方法是采用一种综合方法,将不同的操作范围、各种工具和复杂的要求组合到一个单一的操作设计系统中。这种集成方法的要素是将技术平均系统划分为三个子系统组件的概念。首先是结构子系统,包含解决方案及其属性,涉及设计系统的结构概念。二是驱动子系统,包含驱动系统的解及其运行参数。最后一个子系统包含与控制系统及其设置相关的信息。系统属性包括几何特征、材料特征和装配特征等设计特征。本次综合设计过程的主题是某机械化采矿支架。作为工程的一部分,将机械化支护施工体系划分为三个子系统。结构子系统包括一个顶篷,一个防爆罩和脚部分。而驱动子系统包括液压支柱系统和负责支架工作的液压缸系统。文中给出了液压支柱呈v型布置的系统实例。这表明两个子系统构成了支撑结构。它由基于控制阀和分离器阀以及操作员控制面板的控制子系统来补充。
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