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Structural failures on mobile materials handling equipment.

机译:移动物料搬运设备的结构故障。

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摘要

Bulk materials handling systems are extensively used within the mining and minerals industry. Due to the nature of the mining environment, the support structures for these systems are often exposed to special and/or accidental loading conditions. This unfortunately leads to a fairly high incidence of structural damage or failure being experienced within the mining industry, notwithstanding design compliance with appropriate standards. Over the past few decades reputable mining companies have acknowledged the necessity for more conservative structural designs and this has led to the development of design rules for permanent structures which are used in conjunction with national and international design standards. The design of mobile continuous bulk handling equipment is governed internationally by the ISO 5049-1 (1994) Standard, except in Australia where AS 4324-1 (1995) is generally utilised.;The study investigates a number of catastrophic failures of mobile bulk materials handling (BMH) equipment to identify the typical root causes and their complex interaction in these disastrous events. A retrospective view is taken of the processes followed during the investigation of the main case study to develop a methodology for future failure investigations.;Brief case studies are made to demonstrate the shortcomings of the ISO 5049-1 (1994) Standard, which currently provides no rules or guidelines for machine protection systems. The aim of the study is ultimately to improve structural safety on future mobile BMH equipment designs, which does not necessarily imply a more conservative design approach, but rather that design loads and conditions be correctly assessed. The revision of ISO 5049-1 (1994) is subsequently proposed to provide specific rules and guidelines pertaining to machine protection systems. Other focus areas for consideration are also covered. It is furthermore recommended that the structural design engineer should play a more prominent role during the final acceptance of mobile BMH equipment and handover to the owner. A systems design approach integrating the respective engineering disciplines and based on a comprehensive risk assessment, is required.
机译:散装物料处理系统广泛用于采矿和矿物行业。由于采矿环境的性质,这些系统的支撑结构经常暴露于特殊和/或意外的负载条件下。不幸的是,尽管设计符合适当的标准,但这仍导致采矿行业内发生结构损坏或破坏的可能性很高。在过去的几十年中,著名的矿业公司已经认识到必须进行更保守的结构设计,这导致了永久结构设计规则的制定,该规则与国家和国际设计标准结合使用。移动连续散装物料搬运设备的设计受ISO 5049-1(1994)标准的国际管理,澳大利亚除外,该地区通常使用AS 4324-1(1995);该研究调查了许多移动散装物料的灾难性故障处理(BMH)设备,以识别这些灾难性事件中的典型根本原因及其复杂的相互作用。回顾性地考察了主要案例研究过程中遵循的过程,以开发用于将来的故障调查的方法;简述了案例研究以证明ISO 5049-1(1994)标准的缺陷,该标准目前提供了没有机器保护系统的规则或准则。该研究的目的最终是为了提高未来移动BMH设备设计的结构安全性,这不一定意味着采用更保守的设计方法,而是要正确评估设计载荷和条件。随后提议修订ISO 5049-1(1994),以提供有关机器保护系统的特定规则和准则。还涵盖了其他需要考虑的重点领域。此外,建议结构设计工程师在最终接受移动BMH设备并将其移交给所有者的过程中扮演更重要的角色。需要一种系统设计方法,该方法应综合各个工程学科并基于全面的风险评估。

著录项

  • 作者单位

    University of Pretoria (South Africa).;

  • 授予单位 University of Pretoria (South Africa).;
  • 学科 Civil engineering.;Mining engineering.
  • 学位 M.S.
  • 年度 2014
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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