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Rock mass anti-inclination supporting mechanism
The invention provides a rock mass anti-inclination supporting mechanism, and relates to the technical field of geological disaster control. The supporting assembly rod comprises a supporting transverse rod, a supporting inclined rod and a supporting longitudinal rod, the rear end of the supporting transverse rod is vertically connected with an anchoring rod, the supporting inclined rod is fixedly connected with the supporting transverse rod through an installation inclined connecting piece, the supporting longitudinal rod is fixedly connected with the supporting inclined rod through an installation right-angle connecting piece, and the supporting transverse rod is fixedly connected with the supporting longitudinal rod through an installation right-angle connecting piece. By arranging the supporting assembly rods, anchoring rods penetrate through inserting holes and then are nailed and chiseled into a rock mass, supporting longitudinal rods are deeply inserted into the ground after the positions are determined, round rods penetrate through the interiors of circular rings to be clamped into inserting grooves, and connecting plates and clamping plates are fixedly connected through rectangular plates and connecting nails, so that fixed connection between the anchoring rods and the supporting longitudinal rods is completed; and the supporting stability is improved by deeply inserting the supporting longitudinal rods into the ground, and the problem that supporting is unstable due to the fact that a rock mass supporting structure is prone to inclining is solved.
本发明提供了一种岩体防倾斜支护机构,涉及地质灾害治理技术领域,包括支撑组杆;所述支撑组杆包括有支撑横杆、支撑斜杆和支撑纵杆,支撑横杆的后端垂直连接有锚固杆,支撑斜杆与支撑横杆之间、支撑纵杆与支撑斜杆之间分别通过安装斜向连接件固定连接,支撑横杆与支撑纵杆之间通过安装直角连接件固定连接,通过设置支撑组杆,通过将锚固杆穿过插孔后钉凿入岩体中,支撑纵杆确定好位置深插入地下,圆杆穿过圆环内部卡接到插槽内部,通过矩形板和连接钉将连接板与卡板紧固连接,从而完成锚固杆与支撑纵杆之间的固定连接,实现对岩体的支护效果,利用支撑纵杆深插入地下提高支护的稳定性,解决岩体支护结构存在容易倾斜导致支护不稳定的问题。
Rock mass anti-inclination supporting mechanism
The invention provides a rock mass anti-inclination supporting mechanism, and relates to the technical field of geological disaster control. The supporting assembly rod comprises a supporting transverse rod, a supporting inclined rod and a supporting longitudinal rod, the rear end of the supporting transverse rod is vertically connected with an anchoring rod, the supporting inclined rod is fixedly connected with the supporting transverse rod through an installation inclined connecting piece, the supporting longitudinal rod is fixedly connected with the supporting inclined rod through an installation right-angle connecting piece, and the supporting transverse rod is fixedly connected with the supporting longitudinal rod through an installation right-angle connecting piece. By arranging the supporting assembly rods, anchoring rods penetrate through inserting holes and then are nailed and chiseled into a rock mass, supporting longitudinal rods are deeply inserted into the ground after the positions are determined, round rods penetrate through the interiors of circular rings to be clamped into inserting grooves, and connecting plates and clamping plates are fixedly connected through rectangular plates and connecting nails, so that fixed connection between the anchoring rods and the supporting longitudinal rods is completed; and the supporting stability is improved by deeply inserting the supporting longitudinal rods into the ground, and the problem that supporting is unstable due to the fact that a rock mass supporting structure is prone to inclining is solved.
本发明提供了一种岩体防倾斜支护机构,涉及地质灾害治理技术领域,包括支撑组杆;所述支撑组杆包括有支撑横杆、支撑斜杆和支撑纵杆,支撑横杆的后端垂直连接有锚固杆,支撑斜杆与支撑横杆之间、支撑纵杆与支撑斜杆之间分别通过安装斜向连接件固定连接,支撑横杆与支撑纵杆之间通过安装直角连接件固定连接,通过设置支撑组杆,通过将锚固杆穿过插孔后钉凿入岩体中,支撑纵杆确定好位置深插入地下,圆杆穿过圆环内部卡接到插槽内部,通过矩形板和连接钉将连接板与卡板紧固连接,从而完成锚固杆与支撑纵杆之间的固定连接,实现对岩体的支护效果,利用支撑纵杆深插入地下提高支护的稳定性,解决岩体支护结构存在容易倾斜导致支护不稳定的问题。
Rock mass anti-inclination supporting mechanism
一种岩体防倾斜支护机构
YANG YING (author) / HUANG ZHENGJIANG (author) / PENG JIE (author) / TAN LIUQING (author) / QU QIANQIAN (author) / LI XIAOFANG (author) / LYU ZHIQIANG (author) / YU ZHEQING (author) / GU XIAOMEI (author) / XU YANJIONG (author)
2024-04-12
Patent
Electronic Resource
Chinese
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