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Fundamental principles of an effective reinforcing roof bolting strategy in horizontally layered roof strata and areas of potential improvement

机译:水平分层顶板地层中有效加固顶板锚固策略的基本原理以及潜在的改进领域

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摘要

It is arguable that the development of reinforcing roof bolting systems has largely stagnated in recent times,primarily due to the prevailing industry view that few,if any,further improvements can be made to what currently exists.However,this paper contends that reinforcing roof bolting systems can be further refined by considering both the specific manner by which horizontally bedded roof strata loses its natural self-supporting ability and the specific means by which reinforcing roof bolts act to promote or retain this natural self-supporting ability.The Australian coal industry has insisted on minimising bolt-hole diameter to maximise load transfer and on targeting full-encapsulation by any means necessary for many years.This has led to a significant,albeit unintended,consequence in terms of overall roof bolting effectiveness,namely increased resin pressures during bolt installation and the associated potential for opening bedding planes that may have,otherwise,remained closed during the bolt installation process.Given that the natural self-supporting ability of roof strata is strongly linked to whether bedding planes are open or closed,logically,minimising resin pressures should be a significant benefit.This paper focuses primarily on three key issues that relate directly to the function of the roof bolting system itself:(1) the importance of proper resin mixing in the context of maximising load transfer strength and stiffness,(2) the importance of minimising resin pressures developed during bolt installation,and (3) the importance of maximising the effectiveness of the available bolt pre-tension.All mine operators should be invested in improving the individual effectiveness of each installed roof bolt,even by relatively small incremental amounts,so this is an important topic for discussion within the mining community.
机译:可以争论的是,近来增强屋顶锚杆系统的发展停滞不前,主要是因为业界普遍认为,对现有的锚杆系统几乎无法进行进一步的改进。通过考虑水平层状屋顶地层失去其自然自支撑能力的特定方式以及加强屋顶螺栓起到促进或保持这种自然自支撑能力的特定方式,可以进一步完善系统。坚持最小化螺栓孔直径以最大程度地传递载荷,并且多年来一直以任何必要的方式实现全包封。这导致了整体屋顶锚固效果显着的,尽管无意间的后果,即在锚固期间增加了树脂压力安装以及打开床上用品的相关潜力,否则床上用品可能会保持关闭鉴于锚固层的自然自支撑能力与层理面是打开还是关闭密切相关,因此从逻辑上讲,最小化树脂压力应是一项重大收益。本文主要关注与以下三个关键问题相关的问题直接关系到屋顶锚固系统本身的功能:(1)在最大程度地提高荷载传递强度和刚度的情况下进行适当的树脂混合的重要性;(2)最小化螺栓安装过程中产生的树脂压力的重要性;以及(3)最大程度地发挥锚杆预紧力的有效性的重要性。所有矿山经营者都应该投资于提高每个安装的顶板锚杆的个体有效性,即使增量相对较小,这也是采矿界内部讨论的重要课题。

著录项

  • 来源
    《矿业科学技术(英文版)》 |2018年第1期|67-77|共11页
  • 作者单位

    Mine Advice Pry Ltd, New South Wales 2282, Australia;

    Mine Advice Pry Ltd, New South Wales 2282, Australia;

    Mine Advice Pry Ltd, New South Wales 2282, Australia;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:02:33
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