首页|留巷充填体锚栓破断机理及控制对策

留巷充填体锚栓破断机理及控制对策

扫码查看
针对留巷充填体锚栓破断的问题,以左则沟矿2202工作面为工程背景,采用现场调研、实验室试验、力学建模和理论分析等方法分析了锚栓的破断特征和机理.研究表明,锚栓破断主要集中在尾部螺纹段,以脆性断裂为主,破坏过程分为裂纹扩展、快速扩展和瞬断3个阶段.尾部受集中载荷,为杆体强度的5~7倍,是发生破断的主要原因.引入断裂力学强度因子K,建立力学模型,计算表明尾部断裂裂纹的临界尺寸深度受预紧力以及锚杆安装角度的共同影响,分别呈正比例和反比例关系.预紧力越大,安装角度越小,临界断裂尺寸越大,杆体越不容易断裂.综合以上研究,从动压影响、锚栓材质等多个方面详细分析了破断原因,并提出了改进措施,避免了锚栓的破断,保证了留巷的成功.
Breaking mechanism and control countermeasures of anchor bolt in roadway retaining filling body
Aiming at the breaking problem of anchor bolt in roadway retaining filling body,No.C0202 Face of Chiyu Mine was taken as the engineering background,the breaking characteristics and mechanism of anchor bolt were analyzed by field investigation,laboratory test,mechanical modeling and theoretical analysis.The research showed that the bolt fracture mainly concentrates on the thread section,which was mainly brittle fracture.The failure process was divided into three stages:crack propagation,rapid propagation and instantaneous fracture.The concentrated load on the tail thread section was 5~7 times the load on the rod body,which was the main reason for the breakage.The strength factor K of fracture mechanics was introduced to establish the mechanical model.The analysis showed that the critical size depth was jointly affected by the pretightening force and the construction angle of the bolt,which were proportional and inversely proportional.The larger the pre-tightening force,the smaller the installation angle,the larger the critical fracture size,the less easily the rod was broken.Based on the above research,the breaking reasons were analyzed in detail from the aspects of dynamic pressure influence and anchor bolt material,and the corresponding improvement measures were put forward to effectively avoid the breaking of anchor bolt and ensure the success of roadway retaining.

gob-side entry retainingsuper high water materialbrittle fracturestrength factor

杨洪增

展开 >

国家能源充填采煤技术重点实验室,河北邢台 054000

河北煤炭科学研究院有限公司,河北邢台 054000

河北充填采矿技术有限公司,河北邢台 054000

河北省充填采煤技术创新中心,河北邢台 054000

展开 >

沿空留巷 超高水材料 脆性断裂 强度因子

2024

煤炭与化工
河北省化学工业研究院

煤炭与化工

影响因子:0.246
ISSN:2095-5979
年,卷(期):2024.47(12)