Visualized experiment device for studying rock fissure-induced grouting parameters and method

A technology of rock fissures and experimental equipment, applied in the application of stable tension/pressure testing material strength, fluid dynamics testing, testing of machine/structural components, etc., can solve the problem of inconsistent opening of rock fissures, inability to discharge, mechanical properties It can achieve the effect of improving grouting efficiency, preventing water inrush accidents, and convenient and effective anti-seepage and plugging.

Inactive Publication Date: 2019-09-03
CHINA THREE GORGES UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although under the existing construction technology conditions, bolt reinforcement, grouting reinforcement and other means can be used for a certain degree of protection, but due to the obvious difference in the development degree of different types of rock fissures, and different positions, shapes, directions, Structures with different scales and other geometric characteristics have great differences in the impact on the mechanical properties and seepage process of the rock mass. Coupled with the influence of uneven distribution of external ground stress, the grouting effect of rock cracks is not outstanding under complex construction conditions.
[0003] For example, in engineering construction, it is often encountered that rock cracks have inconsistent openings, especially some cracks are too narrow, or rocks are deeply sealed, so that mortar seepage often fails to enter narrow cracks or partial cracks during grouting reinforcement. The air in the inner space cannot be exhausted, and the mortar cannot be poured in. Obviously, the traditional grouting technology still has great limitations.

Method used

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  • Visualized experiment device for studying rock fissure-induced grouting parameters and method
  • Visualized experiment device for studying rock fissure-induced grouting parameters and method
  • Visualized experiment device for studying rock fissure-induced grouting parameters and method

Examples

Experimental program
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Embodiment 1

[0053] see Figure 1-6 , a visual experimental device for researching rock fissure-induced grouting parameters, which includes a reaction force frame 1, the reaction force frame 1 includes a bottom plate 22, the top four corners of the bottom plate 22 are supported by a support rod 20 and a top plate is installed 21, the middle part of the support rod 20 is supported by a uniform force plate 3, and the uniform force plate 3 is used to support and place a standard rock sample 4 for experiments; the top of the standard rock sample 4 is supported by a tempered glass 2, The tempered glass 2 is fixed on the bottom end face of the top plate 21; a special connection groove 11 is installed on the symmetrical side walls of the standard rock sample 4, and a plurality of pipe joints are fixed on the special connection groove 11 on one side, so The pipe joint is connected with the mortar grouting machine 8 through the grouting pipe 9, and the induction pipe 10 is connected with the specia...

Embodiment 2

[0063] Any one of the experimental methods for the research of rock fissure induced grouting parameters by the visual experimental equipment is characterized in that it comprises the following steps:

[0064] Step1: Material preparation: Prepare a variety of high-strength steel plates of different thicknesses, steel bars of different calibers, screws with partial threads at both ends, tempered glass, rock samples, transparent plastic films, 3D printing machines, transparent soil, sealants, Mortar grouting machine, PVC transparent hose, suction machine, joints, hydraulic jack, angle sensor, living hinge, electric lifting rod, pressure sensor and electronic monitoring equipment;

[0065] Step2: The manufacture of the bottom plate 22: the steel plate with thickness e is processed into a rectangle with c and width d, and a circular internal threaded hole with a diameter of b is drilled at a position close to the four corners;

[0066] Step3: Fabrication of the top plate 21: proces...

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Abstract

The invention provides a visualized experiment device for studying rock fissure-induced grouting parameters and method. The device comprises a reaction force frame; a force balancing plate is used forsupporting and placing a standard rock sample for an experiment; tempered glass is supported on the top of the standard rock sample; the tempered glass is fixed on the bottom end surface of a top plate; two symmetrical side walls of the standard rock sample are provided with special connecting grooves; the special connecting groove at one side is fixed with multiple pipe joints; the pipe joint isconnected with a mortar grouting machine through a grouting pipe; the special connecting groove at the other side is connected with an inducing pipe through the pipe joint; and the inducing pipe is connected with a suction device. Through adjusting the experiment conditions such as the loading force of a hydraulic jack, the positions of a grouting point and a suction point, the power of the grouting device and the suction device and the heights of four electric lifting rods, a series of experiments on studying rock fissure-induced grouting parameters can be completed.

Description

technical field [0001] The invention relates to the field of rock crack research experimental devices, in particular to a visual experimental device for researching rock crack induced grouting parameters. Background technique [0002] For a long time, the reinforcement and protection of rock fissures has always been one of the difficult problems in engineering construction. At present, in tunnel excavation, slope reinforcement, foundation pit support and other projects, rock fissures have an important impact on the stability of the project, especially rock fissure seepage is the cause of groundwater disasters, water seepage inside tunnels, and rock slope instability. important reason. Although under the existing construction technology conditions, bolt reinforcement, grouting reinforcement and other means can be used for a certain degree of protection, but due to the obvious difference in the development degree of different types of rock fissures, and different positions, s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N13/04G01N3/12G01M10/00
CPCG01M10/00G01N13/04G01N15/08G01N2015/0813
Inventor 刘杰高素芳杨艳王章星黎照唐洪宇孙涛谢晓康李洪亚杨琨赵其贤
Owner CHINA THREE GORGES UNIV
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