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Bidirectional static and dynamic loading roof key block caving test device and method

A key block and roof technology, applied in the field of mine disaster early warning, to achieve the effect of precise and controllable two-way dynamic disturbance conditions

Inactive Publication Date: 2018-11-16
NORTHEASTERN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

At present, the research work on mine caving hazards is mostly focused on the upper limit analysis of caving arches, the law of roof periodic pressure and reasonable support methods, while the two-way static-dynamic combined test and related devices for the stability research of key blocks of the roof Haven't seen relevant reports yet

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  • Bidirectional static and dynamic loading roof key block caving test device and method
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  • Bidirectional static and dynamic loading roof key block caving test device and method

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Embodiment Construction

[0052] With reference to the accompanying drawings, a bidirectional static and dynamic loading roof key block drop test device and method of the present invention will be described in detail.

[0053] Such as figure 1 As shown, a double-way static and dynamic loading roof key block fall test device of the present invention includes: an overall frame, a lateral pressure loading system, a vertical pressure loading system, a lateral pendulum impact disturbance system, and a vertical drop weight impact disturbance system, incident wave monitoring system, response measurement monitoring system and hydraulic power system33.

[0054] The overall frame is used to carry other systems, provide reaction force and load model samples, including: frame main body 14, two centering adjustment push rods 17, horizontal sliding track 13, two moving pads 12, two vertical sliding tracks 8 and two buffer devices 15. The frame main body 14 is welded by an upper frame, a lower frame and two side fr...

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Abstract

The invention discloses a bidirectional static and dynamic loading roof key block caving test device and method, and the device comprises an overall frame, a lateral pressure loading system, a vertical pressure loading system, a lateral pendulum bob impact disturbance system, a vertical drop-hammer impact disturbance system, an incident wave monitoring system and a response measurement system. Thetesting method comprises the steps: a first work condition: carrying out the bidirectional static and dynamic loading disturbance testing of a tunnel overall model sample to explore the initial stress state of the surrounding rocks of a tunnel and the initial stress condition of a key block rock, and observing an overall phenomena of the propagation law of cracks, a forming process of a key blockand the instability of the key block in the disturbance process; a second work condition: carrying out the bidirectional static and dynamic loading disturbance instability testing of a key block model sample, taking the result under the first work condition as the basis, abstracting the key block and the surrounding rocks at two sides to more precisely explore the law that a stress wave causes the propagation of cracks, a critical condition that the key block slides in an instable manner, and an action mechanism that the disturbance effect causes the instability.

Description

technical field [0001] The invention belongs to the technical field of early warning of mine disasters, and relates to a test device and method for a key block of a top plate with bidirectional static and dynamic loading. Background technique [0002] Roof caving is a common mine disaster. The roof caving in the stope is generally caused by the excessively large exposed area of ​​the goaf or the broken roof strata, and most of them are large-scale overall caving. For roadways with poor support conditions, accidents of individual rock blocks falling often occur, which belong to partial caving. Whether it is a large-scale overall caving or a small-scale local caving, the instability of the roof rock is often caused by the instability of key blocks. Due to the fall of the key block, the static equilibrium state of the entire rock formation is broken, and other rock blocks will undergo a similar domino-style chain fall reaction, resulting in accidents that injure / kill personne...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M7/08
CPCG01M7/08
Inventor 朱万成代风徐曾和李帅牛雷雷程关文刘溪鸽张鹏海于庆磊
Owner NORTHEASTERN UNIV
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