首页> 外文期刊>Shock and vibration >Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
【24h】

Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support

机译:大型采矿高度液压支架面罩保护性能分析

获取原文
获取外文期刊封面目录资料

摘要

With the increase of mining height, the problem of coal wall spalling in the working face gradually worsens. Hydraulic support and its face guard structure are the key pieces of equipment to restrain the coal wall spalling. However, at present, the hydraulic jack is mostly considered as rigid in the analysis of protection mechanism. This simplification cannot effectively reflect the true bearing state of the face guard. In order to improve the accuracy of analysis, this study considers the face guard jack as a flexible spring and establishes a rigid-flexible coupling analysis model of the face guard mechanism. First, based upon the multibody dynamics software ADAMS?, the multibody numerical model of the face guard of the hydraulic support was established. The influence of the two kinds of structures on the coal wall disturbance was analyzed and compared. Then, the rigid model was meshed. The hydraulic jacks were equivalent to the spring system, and the rigid-flexible coupling model was established. Based upon the application load on different positions of the rigid-flexible model, the load-bearing characteristics and hinge point force transfer characteristics of the two face guards were analyzed. The results show that the support efficiency of the integral type was higher than that of the split type. In the vertical support attitude, the dynamic disturbance of the coal wall, produced by the two kinds of face guards, was small. The four-bar linkage effectively improved the ultimate bearing capacity of the integral face guard. The results provide theoretical support for the design and optimization of the face guard.
机译:随着采矿高度的增加,工作面上煤壁剥落的问题逐渐恶化。液压支撑及其面部护罩结构是抑制煤壁剥落的钥匙设备。然而,目前,在保护机制的分析中,液压千斤顶主要被认为是刚性的。这种简化无法有效地反映面罩的真实轴承状态。为了提高分析的准确性,本研究将面罩插孔视为柔性弹簧,并建立面部护罩机构的刚性柔性耦合分析模型。首先,基于多体动力学软件ADAMS?,建立了液压支撑件的面罩的多体数值模型。分析了两种结构对煤墙干扰的影响并进行了比较。然后,刚性模型被啮合。液压千斤顶等同于弹簧系统,建立刚性柔性耦合模型。基于刚性柔性模型的不同位置上的应用负荷,分析了两个面罩的承载特性和铰链点力传递特性。结果表明,整体型的支撑效率高于分裂型。在垂直支撑姿态,煤墙的动态障碍,由两种面部护卫生产,小。四杆连杆有效地提高了整体面罩的最终承载力。结果为面罩的设计和优化提供了理论支持。

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