Self-advancing slide rail pendulous ground fissure deformation monitoring device

A deformation monitoring and ground fissure technology, applied in measurement devices, mechanical measurement devices, mechanical solid deformation measurement, etc., can solve problems such as difficulty in adapting to rapid field monitoring, and achieve the effect of simple structure and convenient disassembly

Inactive Publication Date: 2010-11-10
TONGJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In order to solve the problem that existing engineering geological fracture monitoring instruments are difficult to adapt to rapid field monitoring or need to use special measuring instruments, the present invention provides a self-propelled slide rail suspension hammer type ground fissure deformation monitoring device

Method used

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  • Self-advancing slide rail pendulous ground fissure deformation monitoring device
  • Self-advancing slide rail pendulous ground fissure deformation monitoring device

Examples

Experimental program
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Embodiment 1

[0016] Example 1: In figure 1 Among them, the self-propelled soil anchor 1 is used as a fixed base, the self-propelled soil anchor 1 is screwed into the stratum on both sides of the ground fissure, the angle plate 3 is installed on the top of the second bracket 10, and the second bracket 10 is installed on the self-propelled ground fissure. into the soil anchor 1. The first pulley 5 is installed on the top of the first support 2 , the second pulley 10 is fixed on the second support 10 by the pulley fixing rod 6 , and the second support 10 is fixed on the self-propelled soil anchor 1 . One end of the sliding rail type pendant 7 is connected to the measuring rope 4 and placed into the sliding rail box 8 with scale. The slide rail box 8 with scale is fixed on the first bracket 2 by the fixing clip 9 . The measuring rope 4 is fixed to the top of the second bracket 9 through the second pulley 11 and the first pulley 5 . Record the initial reading indicated by the 8 scale of the ...

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Abstract

The invention belongs to the field of geologic hazard and prevention and control, and in particular relates to a self-advancing slide rail pendulous ground fissure deformation monitoring device. The device comprises self-advancing soil anchors, a bracket, an angle scale, a measuring line, a pulley, a pulley fixing rod, a slide rail type pendulum, a graduated slide rail box and a fixing clamp, wherein the bracket is fixed in stratums on the two sides of the ground fissure with the self-advancing soil anchors; a vertical relative movement angle of the ground fissure is measured through the angle scale; horizontal and vertical composite displacement can be measured through the slide rail type pendulum and the measuring line; and the measuring line can be replaced according to the requirements of different measuring ranges. By utilizing the self-advancing soil anchors, quick self-advancing installation and recovery of the monitoring device can be realized, and the slide rail pendulum is utilized to tension the measuring line and reduce the influence of environment on a tension device. The measuring line can meet the requirements of different measuring ranges and the length can be adjusted conveniently according to the requirements. The horizontal displacement and the vertical displacement of the ground fissure are measured by using a system consisting of the measuring line, the angle scale and the graduated slide rail box. The device has the advantages of simple structure and convenient assembling and disassembling.

Description

technical field [0001] The invention belongs to the field of geological disasters and prevention, and in particular relates to a suspension hammer type ground fissure deformation monitoring device of a white-entry slide rail. Background technique [0002] At present, the known crack monitoring devices are mainly aimed at concrete, tunnel lining, and engineering geological cracks. Due to the small crack width of tunnel lining and concrete cracks, the size and range of the corresponding monitoring devices are small, and the width of ground cracks can reach dozens of centimeters, so these devices cannot meet the requirements for monitoring the deformation of ground fissures. The existing engineering geological fracture monitoring devices are the "3-dimensional deformation measuring instrument of engineering geological fractures" (CN101008565A) and the "portable engineering geological fracture measuring device" (CN1546808A) of the Institute of Geology and Geophysics, Chinese Aca...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01B5/30G01B5/02
Inventor 王建秀冯波张兴胜唐益群杨坪
Owner TONGJI UNIV
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