首页> 外文会议>International Conference on Ground Control in Mining >Determination of the Strength of Powered Roof Supports According for Fatigue Life
【24h】

Determination of the Strength of Powered Roof Supports According for Fatigue Life

机译:根据疲劳寿命确定动力屋顶支架的强度

获取原文

摘要

This paper presents an approach for estimating the fatigue life for the base of powered roof supports (shield) manufactured by the FAZOS roof support company. FAZOS's powered roof supports are designed to operate on an inclined coal seam in full caving with a medium, strong roof strength. This shield support is utilized in conjunction with a shearer and face conveyor for a complete longwall mining system. To design shield support, it is essential for contractor to know the physical (hardness, toughness, etc.) and mechanical properties of material (tensile strength, Young's modulus, etc.) used for the shield support as well as the geotechnical properties of the mine site. The fatigue strength of the shield support material depends on the mean stress, alternating stress, cycle frequency, transport dimensions, mine environment and other factors. In order to estimate the fatigue life for a powered roof support system, it is assumed in this paper that the support must keep the roof stable in the mine under variable load cycles. The approach selected in this study contains Goodman's model (Goodman, 1899) for all blocks in the design housing which is subjected to sinusoidal load. On this basis, the degree of fatigue damage was calculated and compared to the results of experimental tests. It will be shown that there is a significant detrimental effect on the fatigue life of the base of the powered roof supports due to geometrical notches. The Ramberg-Osgood model and damage accumulation rule (Palmgren-Miner) (Miner M., 1945) were used and numerical analyses were conducted, utilizing ANSYS finite element software. These analyses play a very important role in longwall casing design. The proposed method allows assessment of the yield state and forecast of the structure cracking, taking plastic strains occurrence into account. The presented method is universal and can be applied for fatigue life estimation of other subassemblies of powered roof supports. The final portion of the paper presents results of variable amplitude loading simulations on the S355N and S690Q steel used to make powered roof supports. The results of the physical tests were compared with the results from finite element methods. The proposed approach to calculate fatigue life gives the best correlation between the experimental results and calculated values of fatigue life for the powered roof support base. Finally, the design process uses a simple approach to predict fatigue life in a short time, reducing design costs and providing longer service life for roof supports.
机译:本文介绍了一种估计由Fazos Road支持公司制造的动力屋顶支架(屏蔽)基部疲劳寿命的方法。 Fazos的动力屋顶支撑型设计用于在倾斜的煤层上以介质,较强的屋顶强度运行。该屏蔽支撑件与用于完整的长壁采矿系统的采煤机和面部输送机一起使用。为了设计盾牌支持,承包商必须了解用于屏蔽支撑的物理(硬度,韧性等)和机械性能(抗拉强度,幼年模量等)以及用于屏蔽支持的岩土性质矿山网站。屏蔽支撑材料的疲劳强度取决于平均应力,交替应力,循环频率,运输尺寸,矿井环境等因素。为了估计动力屋顶支撑系统的疲劳寿命,在本文中假设支撑件必须在可变载荷周期下保持屋顶稳定。本研究中选择的方法包含设计外壳中的所有块的古德曼的模型(Goodman,1899),这些块受到正弦载荷。在此基础上,计算疲劳损坏程度并与实验测试结果进行比较。将表明,由于几何凹口,对动力屋顶支撑件底部的疲劳寿命存在显着的不利影响。使用Ramberg-Osgood模型和损伤​​累积规则(PalmGren-Miner)(PalmGren-Miner)(Miner M.,1945),并进行数值分析,利用ANSYS有限元软件。这些分析在Longwall套管设计中起着非常重要的作用。所提出的方法允许评估结构裂缝的产量状态和预测,考虑塑料菌株。该方法是通用的,可以应用于动力屋顶支撑件的其他子组件的疲劳寿命估计。纸张的最终部分呈现了用于使动力屋顶支撑的S355N和S690Q钢的可变幅度加载模拟的结果。将物理测试的结果与来自有限元方法的结果进行比较。所提出的计算疲劳寿命的方法在动力屋顶支撑基座的实验结果与疲劳寿命的计算值之间具有最佳相关性。最后,设计过程使用简单的方法在短时间内预测疲劳寿命,降低设计成本并为屋顶支撑提供更长的使用寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号