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Inverted-arch interlocked girder and construction method thereof

A technology of interlocking and anti-bottom arching, which is applied in earthwork drilling, wellbore lining, tunnel lining, etc., can solve problems such as bulging floor rock blocks, bottom arch failure, and small contact surface, so as to increase the uniformity of force, The effect of increasing the contact area and ensuring stability

Inactive Publication Date: 2013-08-14
HUNAN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] However, since the contact area between the floor and the bottom arch is only within the range of the longitudinal section of the bottom arch, the contact surface is small and the stress is concentrated. For roadways that pass through the loose rock mass in the caving zone of the goaf, the pressure on the floor is large and the force is not strong. Even, it is easy to cause damage and failure of the bottom arch, and even the rock blocks of the bottom slab bulge out between the support rows, seriously affecting the normal operation of the roadway

Method used

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  • Inverted-arch interlocked girder and construction method thereof
  • Inverted-arch interlocked girder and construction method thereof
  • Inverted-arch interlocked girder and construction method thereof

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Embodiment Construction

[0021] The present invention will be further elaborated below in conjunction with the accompanying drawings.

[0022] like figure 1 As shown, the bottom arch chain beam of the present invention includes a plurality of chain beams 2 and a plurality of reverse bottom arches 1, and a plurality of chain beams 2 are arranged in parallel, and a plurality of reverse bottom arches 1 are vertically overlapped with the chain beams 2, and the overlapping points Fixed by the anchor rod 3 and the nut 4, the anti-bottom arch 1 is located above the chain beam 2. The vertical overlap between the chain beam 2 and the anti-bottom arch 1 is fastened by the anchor rod 3 and the nut 4, which not only ensures the stability of the bracket, but also effectively increases the contact area between the anti-bottom arch 1 and the bottom plate, and changes the line contact. It is a mesh contact, which increases the uniformity of the force and effectively prevents the broken rock mass of the bottom plate ...

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Abstract

The invention provides an inverted-arch interlocked girder and a construction method thereof. The inverted-arch interlocked girder comprises a plurality of interlocked girder bodies and a plurality of inverted arch bodies. The plurality of the interlocked girder bodies are arranged in parallel, the plurality of the interlocked girder bodies and the plurality of the inverted arch bodies are in perpendicular lap connection and fixed through anchor rods and nuts, and the inverted arch bodies are disposed above the interlocked girder bodies. According to the inverted-arch interlocked girder and the construction method thereof, the interlocked girder bodies and the inverted arch bodies are in perpendicular lap connection and fastened through the anchor rods and the nuts, so that the support stability is guaranteed, the effective contact area between the inverted arch bodies and a base plate can be increased, the line contact is changed into net contact, the stress uniformity is increased, and base plate fractured rock is effectively prevented from projecting among support rows.

Description

technical field [0001] The invention relates to a U-shaped steel annular bracket supporting component and a construction method thereof for broken rock mass roadways, in particular to a bottom arch interlocking beam and a construction method thereof. Background technique [0002] With the mining trend of mine shifting from shallow to deep, the phenomenon of shaft passing through the goaf and the problems exposed have attracted people's attention day by day. When the roadway passes through the goaf, especially the caving zone, the surrounding rock is loose and broken, and under the action of high ground stress, the deformation of the surrounding rock, especially the floor heave, increases significantly. Usually, U-shaped steel ring brackets are used for full-section support. The U-shaped steel ring bracket has the advantages of full section closure, large bearing capacity, high stability under high confining pressure, and small deformation and damage of the bracket; especial...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21D11/18
Inventor 王卫军余伟健王东洋彭文庆陈旭
Owner HUNAN UNIV OF SCI & TECH
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