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Assessment of the mutual influence of deformation-strength characteristics of the fastening system elements

机译:评估紧固系统元件的变形强度特性的相互影响

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The degree of influence has been determined of diversified deformation-strength characteristics of load-bearing elements in the fastening system of the preparatory mine workings, while maintaining them in a laminal massif of soft rocks. The analysis has been performed of multivariate computational experiments of the stress-strain state of the load-bearing elements of the fastening system in the preparatory mine workings from the position of the mutual influence of their deformation-strength characteristics and the support loading as a whole. An analysis is represented of the mutual influence of the operation modes of the mine working support elements between themselves and the fastening system as a whole; it has been studied the stress-strain state of the mine working fastening system with a central hydraulic prop stay, as well as a significant increase in reliability of the support performance has been analysed and determined. The tendency has been substantiated of minimizing the load on the mine working fastening system – increasing the coherence of the diversified operation modes of fastening elements by enhancing preferentially the yielding property of the rigid element. The application has been substantiated of the central yielding prop stays of the strengthening support of a frame in case of intensive rock pressure manifestation in the zone of the stope works active influence.
机译:已经确定了预备矿井作业的紧固系统中承载元件的多样化变形-强度特性,同时将它们保持在软岩层状地块中的影响程度。从变形强度特性与整体支撑载荷相互影响的位置,对预备矿山作业中扣件系统承重元件的应力-应变状态进行了多元计算实验分析。 。分析了矿山工作支撑元件的操作模式在它们自身与整个紧固系统之间的相互影响;已经研究并确定了具有中央液压支柱的矿山作业紧固系统的应力-应变状态,以及支撑性能的可靠性显着提高。这种趋势已得到证实,它可以最大程度地减少矿山作业紧固系统上的负荷-通过优先提高刚性元件的屈服特性来提高紧固元件的多种操作模式的一致性。该应用已证实了在采场工作区域内强烈的岩石压力表现情况下,框架加强支撑的中央屈服支柱的作用。

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