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Suspension Designs Required in the Logical Framework

机译:逻辑框架所需的悬架设计

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The logical framework recognises that a coal mine roof can be intrinsically stable or may collapse in one of four ways. Suspension of the immediate roof is one of fundamental ground control strategies available to a coal mine engineer and is recommended for three of the four collapse modes. Correctly implemented suspension offers the greatest improvement in roof stability and greatest reduction in longwall risk. For the control of maingates ahead of retreating longwall faces the ideal suspension support (if required) consists of angled, partially debonded, medium-length tendons installed as far behind the development face as practical. For situations where the roof may be subjected to tensile horizontal stress, immediate support by equally spaced short vertical tendons is required. The step away from fully-grouted tendons improves their survivability during the onset of compressive failure in the roof, minimises the risk of isolated loading, and allows a more robust TARP for roof movement. All suspension systems require a strap, sling or truss between the suspension elements.
机译:逻辑框架认识到,煤矿顶板可本质上是稳定或以四种方式之一可能崩溃。直接顶悬挂是提供给煤矿工程师根本地面控制策略之一,并推荐三四个崩溃模式。正确实施暂停报价在屋顶稳定的最大改进和最大的减少工作面风险。对于maingates的控制超前后退的长壁面向理想悬架支撑(如果需要的话)由成角度的,部分脱粘,安装为远远落后于发展面作为实用中等长度的筋。对于其中屋顶可经受拉伸水平应力的情况下,需要通过等间隔的短的垂直筋直接支持。压缩破坏的屋顶发病期间充分灌浆筋远一步提高自己的生存能力,最大限度地减少隔离负载的风险,并允许顶板运动更强大的TARP。所有悬架系统所需要的悬挂元件之间的带,吊带或桁架。

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