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MA Shouye. Safety Requirements of Roll-over-protective Structure for Mine Vehicle Cab and Computer Simulation[J]. Safety in Coal Mines, 2017, 48(2): 120-123.
Citation: MA Shouye. Safety Requirements of Roll-over-protective Structure for Mine Vehicle Cab and Computer Simulation[J]. Safety in Coal Mines, 2017, 48(2): 120-123.

Safety Requirements of Roll-over-protective Structure for Mine Vehicle Cab and Computer Simulation

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  • Published Date: February 19, 2017
  • The role of trackless mine vehicle in the mine during transport is bigger and bigger, but, due to the protective structure of cab directly endanger the life and property safety of the drivers; in view of the safety performance requirements of mine vehicle cab protective structure, taking UQ - 12 underground dump as a case study, computer simulation was carried out for the cab according to the standard requirements, and its safety performance was verified.
  • [1]
    王继新,李国忠,王国强.工程机械驾驶室设计与安全技术[M].北京:化学工业出版社,2010.
    [2]
    臧猛.工程机械驾驶室安全保护装置性能研究[D].青岛:山东科技大学,2012.
    [3]
    冯素丽.工程车辆落物和翻车保护结构性能计算机仿真及试验研究[D].长春:吉林大学,2007.
    [4]
    张俊训.工程车驾驶室FOPS/ROPS装置安全性能研究与结构优化[D].扬州:扬州大学,2014.
    [5]
    蒋惠锦.翻车保护结构侧向加载的仿真分析与设计方法[J].工程机械,2011,42(1):30-34.
    [6]
    张政.挖掘机驾驶室安全性能分析及振动噪声研究[D].武汉:武汉理工大学,2011.
    [7]
    王继新.工程车辆翻车保护结构设计方法与试验研究[D].长春:吉林大学,2006.
    [8]
    冯素丽,孟广伟,司俊德,等.工程车辆翻车保护结构动态设计方法[J].吉林大学学报(工),2012,42(4):828-833.
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