CN210684729U - Frame beam unit for slope reinforcement and assembled frame beam - Google Patents

Frame beam unit for slope reinforcement and assembled frame beam Download PDF

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Publication number
CN210684729U
CN210684729U CN201920707577.4U CN201920707577U CN210684729U CN 210684729 U CN210684729 U CN 210684729U CN 201920707577 U CN201920707577 U CN 201920707577U CN 210684729 U CN210684729 U CN 210684729U
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CN
China
Prior art keywords
frame beam
central plate
beam unit
grid structure
support beams
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Expired - Fee Related
Application number
CN201920707577.4U
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Chinese (zh)
Inventor
曹献良
汪志祥
来国杰
李鹏程
陈德
苏谦
郭惠芹
陈铖
肖芳炎
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Southwest Jiaotong University
Second Engineering Co Ltd of China Railway 17th Bureau Group Co Ltd
Original Assignee
Southwest Jiaotong University
Second Engineering Co Ltd of China Railway 17th Bureau Group Co Ltd
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Application filed by Southwest Jiaotong University, Second Engineering Co Ltd of China Railway 17th Bureau Group Co Ltd filed Critical Southwest Jiaotong University
Priority to CN201920707577.4U priority Critical patent/CN210684729U/en
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Publication of CN210684729U publication Critical patent/CN210684729U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The patent of the utility model relates to a slope is administered, concretely relates to a frame beam unit and pin-connected panel frame roof beam for slope reinforcement for frame beam unit of slope reinforcement, include: the surface of the central plate is provided with an anchor hole; at least three support beams distributed on the periphery of the central plate and fixedly connected with the central plate, wherein the support beams are used for being connected with support beams of other frame beam units to form a grid structure between the frame beam units; wherein, be provided with on the corbel and be used for connecting the connecting portion that is used for setting up the protection network in grid structure cavity groove department. A plurality of frame beam units are assembled to form a frame beam with a strong protection effect for slope reinforcement, and the frame beam is simple in structure and convenient to install. The assembled frame beam comprises a plurality of grid structures which are distributed on a reinforced mounting surface, and a protective net connected with the grid structures at the edge is arranged in a hollow groove of each grid structure; the grid structure is assembled from at least three of the above-described frame beam elements for distribution on a reinforced mounting surface.

Description

Frame beam unit for slope reinforcement and assembled frame beam
Technical Field
The patent of the utility model relates to a slope is administered, concretely relates to a frame beam unit and pin-connected panel frame roof beam for slope reinforcement.
Background
Slope reinforcement refers to a measure for improving the stability of a strip mine slope, and the stability of the slope is improved by arranging slope angle retaining walls under slope angles of a slope crushing zone, arranging anti-slide piles on a local crushing zone or the slope and grouting rock strata with open joints and cracks. The conventional frame beam for slope reinforcement has the problems of inconvenience in installation, long construction period, poor protection effect and the like.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a better frame roof beam unit and pin-connected panel frame roof beam that is used for the slope to expect to solve above-mentioned problem.
In order to achieve the above object, an aspect of the present invention provides a frame beam unit for slope reinforcement, including:
the surface of the central plate is provided with an anchor hole;
at least three support beams distributed on the periphery of the central plate and fixedly connected with the central plate, wherein the support beams are used for being connected with support beams of other frame beam units to form a grid structure between the frame beam units; wherein, be provided with on the corbel and be used for connecting the connecting portion that is used for setting up the protection network in grid structure cavity groove department.
Through the fixed protection network of connecting portion, the protection network can play the supporting effect to the dead slot between the frame beam unit, assembles a plurality of this frame beam unit and can form the stronger frame roof beam of protective effect that is used for the side slope reinforcement, simple structure, simple to operate.
Furthermore, the number of the supporting beams is four, and the four supporting beams and the central plate form a cross structure, so that a plurality of frame beam units are conveniently connected with each other, empty grooves for connecting the quadrangles of the protective net can be formed, and the stability is good.
Furthermore, the four support beams are respectively two cross beams symmetrically arranged and two vertical beams symmetrically arranged, a water guide block is arranged on the upper side of each cross beam, and the thickness of each water guide block is gradually reduced along the direction far away from the cross beam so as to form a slope.
The purpose of setting up like this is with the inclined shape of formation of water guide block surface, and the ponding of being convenient for flows out, prevents that rainwater etc. from accumulating in the guard tank, causes the corruption of component.
Furthermore, the number of the support beams is three, and the support beams are centrosymmetric relative to the central plate, so that a frame beam structure with good stability is formed.
Further, the corbel end of the frame beam unit is provided with a connecting plate for connecting with other frame beam units, and the connecting plate is provided with:
the first through hole is used for corresponding to a through hole on the connecting plate of one other frame beam unit;
and the second through hole is used for corresponding to the through hole on the connecting plate of the other frame beam unit.
The through holes on the other connecting plates corresponding to the first through hole and the first through hole are penetrated through bolts or pin keys, and the through holes on the other connecting plates corresponding to the second through hole and the second through hole, so that a stable triangular structure with three mutually-locked connecting plates is formed, and the assembled frame beam formed by the frame beam unit has a stable structure.
Furthermore, the end of the support beam of the frame beam unit is provided with a connecting plate for connecting with other frame beam units, and at least one surface of the connecting plate is a concave-convex surface. When using, when connecting two connecting plates, can also with concave convex surface towards another connecting plate, when adopting the concrete to pour the reinforcement to these two connecting plates, be favorable to the concrete infiltration, strengthened the reinforcement effect.
Furthermore, the connecting parts are hooks arranged along the edge of the corbel, and the connecting parts are distributed on two sides close to the edge of the corbel.
As another aspect of the present application, the present application further provides an assembled frame beam, including a plurality of grid structures for being distributed on a reinforcing installation surface, and a protective net connected with the grid structures at an edge is arranged in a hollow groove of the grid structures; the grid structure is assembled from at least three of the frame beam units for distribution on a reinforced mounting surface.
Through setting up foretell pin-connected panel frame roof beam messenger slope reinforcement more firm, the protective effect is better.
Further, the frame beam unit includes:
the surface of the central plate is provided with an anchor hole;
the four supporting beams are distributed on the periphery of the central plate in a centrosymmetric manner and are fixedly connected with the central plate;
the central plate and the support beam form a cross structure;
the four frame beam units are surrounded to form a grid structure with a quadrilateral hollow groove in the middle.
Further, the frame beam unit includes:
the surface of the central plate is provided with an anchor hole;
the three support beams are distributed on the periphery of the central plate in a centrosymmetric manner and are fixedly connected with the central plate;
the three frame beam units surround a grid structure with hexagonal middle empty grooves.
Further, in the above-described grid structure, the frame beam units are connected to one another by a connecting structure that connects the outriggers of two adjacent frame beam units, the connecting structure including:
the connecting plates on the two connected support beams are connected to form a connecting plate group;
and after the connecting plate group is formed, pouring the formed concrete layer into the connecting plate group.
The present invention will be further described with reference to the accompanying drawings and the detailed description. Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description. Or may be learned by practice of the invention.
Drawings
The accompanying drawings, which form a part of the disclosure, are included to assist in understanding the disclosure, and the description provided herein and the accompanying drawings, which are related thereto, are intended to explain the disclosure, but do not constitute an undue limitation on the disclosure.
In the drawings:
fig. 1 is a schematic view for explaining a frame beam unit of a first example in an embodiment;
fig. 2 is a schematic cross-sectional view for explaining the corbel and the water guide block of the frame beam unit;
fig. 3 is a schematic view for explaining a built-up frame beam of the first embodiment;
fig. 4 is a schematic view for explaining a frame beam unit of example two in the embodiment;
fig. 5 is a schematic view for explaining a built-up frame beam of example two in the embodiment;
labeled as: 1-frame beam unit, 110-center plate, 120-corbel, 121-connecting part, 130-connecting plate, 2-protective screen, 3-water guide block, 4-anchor hole and 5-concrete layer.
Detailed Description
The present invention will be described more fully with reference to the accompanying drawings. Those of ordinary skill in the art will be able to implement the invention based on these descriptions. Before the present invention is described with reference to fig. 1 to 5, it should be noted that:
the technical solutions and features provided in the present invention in each part including the following description may be combined with each other without conflict.
Moreover, the embodiments of the invention described in the following description are generally only examples of a subset of the invention, and not all examples. Therefore, all other embodiments obtained by a person of ordinary skill in the art without creative efforts based on the embodiments of the present invention shall fall within the protection scope of the present invention.
With respect to the terms and units of the present invention. The term "comprises" and any variations thereof in the description and claims of this invention and the related art are intended to cover non-exclusive inclusions.
Referring to fig. 1-3, the first embodiment: frame beam unit 1 for slope reinforcement, comprising:
the surface of the central plate 110 is provided with an anchor hole 4;
four support beams 120 distributed on the periphery of the central plate 110 and fixedly connected with the central plate 110, wherein the four support beams 120 and the central plate 110 form a cross structure;
the support beams 120 of the frame beam unit 1 are used for connecting with the support beams 120 of other frame beam units 1, so that a grid structure can be formed between the frame beam units 1;
the support beam 120 is provided with a connecting portion 121 for connecting the protective net 2, and the protective net 2 can support the protective groove between the frame beam units 1. The protection net 2 here may be a flexible structure or a rigid structure.
The connecting portion 121 may be hooks arranged along the edge of the corbel 120, and the connecting portion 121 is distributed on two sides near the edge of the corbel 120. The protection net 2 may be correspondingly provided with a hanging rope, and the protection net 2 is connected through the hanging rope. The connection portion 121 may have a handle-like structure and be connected to the protection net 2 by a knot. Through the fixed protection network 2 of connecting portion 121, the protection network 2 can play the supporting role to the dead slot between frame roof beam unit 1, assembles a plurality of this frame roof beam units 1 and can form the stronger frame roof beam of protective effect that is used for the slope to consolidate, simple structure, simple to operate. Therefore, the frame beam units 1 are convenient to be connected with each other, quadrilateral empty grooves for connecting the protective nets 2 can be formed, and the stability is good.
The four support beams 120 are respectively two symmetrically arranged beams and two symmetrically arranged vertical beams, the upper side of each beam is provided with a water guide block 3, and the thickness of the water guide block 3 is gradually reduced along the direction away from the beams to form a slope. The purpose of setting up like this is with leading water piece 3 surface formation slope shape, and the ponding of being convenient for flows out, prevents that rainwater etc. from accumulating in the guard groove, causing the corruption of component. The cross-sections of the cross beams and the vertical beams are preferably rectangular.
The end of the support beam 120 of the frame beam unit 1 is provided with a connecting plate 130 for connecting with other frame beam units, the connecting plates 130 at the two ends of the support beam 120 are connected inside the support beam 120, and the connecting plates 130 can be fixed on the support beam 120 through bolts; one surface of the connecting plate 130 is a concave-convex surface. When using, when connecting two connecting plates 130, can also be with another connecting plate 130 of concave-convex face orientation, when adopting the concrete to pour the reinforcement to these two connecting plates 130, be favorable to the concrete infiltration, strengthened the reinforcement effect. The concave-convex surface may be regular protrusions arranged or may be randomly non-planar, so long as concrete can smoothly penetrate between the two connecting plates 130 when the concrete is poured and reinforced. The protrusion may be a raised notch or a protrusion integrated with the connecting plate 130.
A plurality of frame beam units 1 are assembled to form an assembled frame beam, the assembled frame beam comprises a plurality of grid structures which are distributed on a reinforced installation surface, and a protective net 2 connected with the grid structures at the edge is arranged in a hollow groove of each grid structure. The spliced frame beam can be used for reinforcing a slope more firmly and has a better protection effect, and the frame beam unit 1 is used for forming a grid structure, so that the spliced frame beam is convenient and fast to build and high in efficiency, the frame beam unit 1 is prepared as a prefabricated member in advance, and the building time is greatly shortened.
In the above-described grid structure, the outriggers 120 of two adjacent frame beam units 1 are connected between the frame beam units 1 by a connection structure including:
the connecting plates 130 on the two connected supporting beams 120 are connected to form a connecting plate group;
and after the connecting plate group is formed, pouring the formed concrete layer 5 into the connecting plate group.
The connection structure formed by the concrete and the connection plate 130 has higher strength, so that the grid structure is firmer.
Referring to fig. 4 and 5, embodiment two: unlike the first embodiment, the number of the support beams 120 is three and is symmetrical with respect to the center plate 110.
The above-described frame beam unit 1 includes:
the surface of the central plate 110 is provided with an anchor hole 4;
three support beams 120, which are distributed around the central plate 110 in a central symmetry manner and are fixedly connected with the central plate 110;
the three frame beam units 1 are enclosed to form a grid structure with hexagonal middle empty grooves.
By adopting the structure, the structure is simple, and the construction is convenient.
In this embodiment, the nodes connected by the support beams 120 are connected by three support beams 120, the connecting plates 130 may be stacked in sequence from top to bottom, and both surfaces of the connecting plate 130 located in the middle may preferably be both concave and convex surfaces. The three connecting plates 130 respectively located on the three frame beam units 1 are connected to each other by bolts, and a very stable triangular structure is formed at the node. The outer concrete layer of this node is at the upside not catchment, and this concrete layer is when pouring the shaping, and the preferred slope that also sets up as of fashioned structure upside.
In this embodiment, a water guide block may be provided, and the water guide block is provided on the upper sides of the two support beams.
The contents of the present invention have been explained above. Those of ordinary skill in the art will be able to implement the invention based on these descriptions. Based on the above-mentioned contents of the present invention, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the protection scope of the present invention.

Claims (10)

1. A frame beam unit for slope reinforcement, its characterized in that: the method comprises the following steps:
the surface of the central plate is provided with an anchor hole;
the support beams are distributed on the periphery of the central plate and fixedly connected with the central plate, and are used for being connected with the support beams of other frame beam units to form a grid structure between the frame beam units; wherein, be provided with the connecting portion that is used for connecting the protection network that sets up in grid structure cavity groove department on the strutbeam.
2. A frame beam unit for slope reinforcement according to claim 1, wherein the number of said corbels is four, and the four corbels and the central plate form a cross structure.
3. The frame beam unit for slope reinforcement according to claim 2, wherein the four support beams are respectively two symmetrically arranged cross beams and two symmetrically arranged vertical beams, the upper side of the cross beam is provided with a water guide block, and the thickness of the water guide block is gradually reduced along the direction away from the cross beam so as to form a slope.
4. A frame beam unit for slope reinforcement according to claim 1, wherein the number of said corbels is three and is centrosymmetric with respect to the central plate.
5. A frame beam unit for slope reinforcement according to claim 4, characterized in that the outrigger ends of the frame beam unit are provided with connection plates for connection with other frame beam units, said connection plates being provided with:
the first through hole is used for corresponding to a through hole on the connecting plate of one other frame beam unit;
and the second through hole is used for corresponding to the through hole on the connecting plate of the other frame beam unit.
6. The frame beam unit for slope reinforcement as claimed in claim 1, wherein the corbel ends of the frame beam unit are provided with a connecting plate for connecting with other frame beam units, and at least one surface of the connecting plate is a concave-convex surface.
7. The spliced frame beam is characterized by comprising a plurality of grid structures which are distributed on a reinforced mounting surface, and a protective net connected with the grid structures at the edge is arranged in a hollow groove of each grid structure; the grid structure is assembled from at least three frame beam elements as claimed in any one of claims 1 to 6 for distribution on a reinforced installation surface.
8. The fabricated frame beam of claim 7, wherein the frame beam unit comprises:
the surface of the central plate is provided with an anchor hole;
the four supporting beams are distributed on the periphery of the central plate in a centrosymmetric manner and are fixedly connected with the central plate;
the central plate and the support beams form a cross structure;
the four frame beam units are enclosed to form a grid structure with a quadrilateral hollow groove in the middle.
9. The fabricated frame beam of claim 7, wherein the frame beam unit comprises:
the surface of the central plate is provided with an anchor hole;
the three support beams are distributed on the periphery of the central plate in a centrosymmetric manner and are fixedly connected with the central plate;
the three frame beam units surround a grid structure with hexagonal middle empty grooves.
10. The assembled frame beam defined in any one of claims 8 or 9 wherein, in the grid structure, the frame beam elements are connected between the joists of two adjacent frame beam elements by a connecting structure comprising:
the connecting plates on the two connected support beams are connected to form a connecting plate group;
and after the connecting plate group is formed, pouring the formed concrete layer into the connecting plate group.
CN201920707577.4U 2019-05-17 2019-05-17 Frame beam unit for slope reinforcement and assembled frame beam Expired - Fee Related CN210684729U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920707577.4U CN210684729U (en) 2019-05-17 2019-05-17 Frame beam unit for slope reinforcement and assembled frame beam

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920707577.4U CN210684729U (en) 2019-05-17 2019-05-17 Frame beam unit for slope reinforcement and assembled frame beam

Publications (1)

Publication Number Publication Date
CN210684729U true CN210684729U (en) 2020-06-05

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110565655A (en) * 2019-05-17 2019-12-13 中铁十七局集团第二工程有限公司 frame beam unit for slope reinforcement and assembled frame beam

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110565655A (en) * 2019-05-17 2019-12-13 中铁十七局集团第二工程有限公司 frame beam unit for slope reinforcement and assembled frame beam

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Granted publication date: 20200605

Termination date: 20210517