CN220060795U - Bridge structure of circular building structure - Google Patents

Bridge structure of circular building structure Download PDF

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Publication number
CN220060795U
CN220060795U CN202321451961.5U CN202321451961U CN220060795U CN 220060795 U CN220060795 U CN 220060795U CN 202321451961 U CN202321451961 U CN 202321451961U CN 220060795 U CN220060795 U CN 220060795U
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China
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arc
shaped
bottom plate
riser
plate
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CN202321451961.5U
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Chinese (zh)
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张大伟
李朋
曹健
于文刚
王虹
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Beijing Urban Construction North Equipment Installation Co ltd
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Beijing Urban Construction North Equipment Installation Co ltd
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Abstract

The utility model provides a bridge structure of a circular building structure, which relates to the technical field of building engineering, wherein one side of a first arc-shaped bottom plate is fixedly connected with a plugboard, the other end of the plugboard is telescopically inserted into a second arc-shaped bottom plate, and the front side and the rear side of the first arc-shaped bottom plate and the second arc-shaped bottom plate are respectively provided with a first arc-shaped telescopic vertical plate and a second arc-shaped telescopic vertical plate in a sliding manner. The arc-shaped arrangement of the whole device solves the technical problems of more bending and unattractive installation of the horizontal bridge frame installed in the circular structure, has high construction efficiency, saves materials and also realizes qualified engineering of high quality standard. Through the setting of picture peg, can adjust the angle of first arc bottom plate and second arc bottom plate, can carry out real-time adjustment according to the specification of operation structure, improve the suitability of whole device.

Description

Bridge structure of circular building structure
Technical Field
The utility model relates to the field of constructional engineering, in particular to a bridge structure of a circular building structure.
Background
When having circular pavement and circular post structure to bulky building office building, the installation of ordinary level crane span structure is laid along with the structure and is unable to accomplish the requirement of circular installation, is usually the manual work and cuts when installing horizontal straight line crane span structure and buckle, but such bending effect is not good, and the incision is more and uneven, and is unsightly, the construction degree of difficulty is big.
Disclosure of Invention
In order to overcome the defects of the prior art, the embodiment of the utility model provides a bridge structure of a circular building structure, which can solve the problems that the conventional method for installing a horizontal straight bridge is usually performed manually, but the bending effect is poor, the incisions are more and uneven, the appearance is not attractive, and the construction difficulty is high.
The technical scheme adopted by the embodiment of the utility model for solving the technical problems is as follows: a bridge structure of a circular building structure.
The novel telescopic floor comprises a first arc-shaped bottom plate and a second arc-shaped bottom plate, wherein a plugboard is fixedly connected to one side of the first arc-shaped bottom plate, the other end of the plugboard is telescopically inserted into the second arc-shaped bottom plate, and a first arc-shaped telescopic riser and a second arc-shaped telescopic riser are respectively and slidably arranged on the front side and the rear side of the first arc-shaped bottom plate and the front side and the rear side of the second arc-shaped bottom plate.
In a specific embodiment, the first arc-shaped telescopic vertical plate comprises a first arc-shaped front vertical plate, a second arc-shaped front vertical plate and a first telescopic plate, the first arc-shaped front vertical plate and the second arc-shaped front vertical plate are respectively and slidably connected with the front side of the first arc-shaped bottom plate and the front side of the second arc-shaped bottom plate, and two sides of the first telescopic plate are respectively and fixedly connected with the opposite surfaces of the first arc-shaped front vertical plate and the second arc-shaped front vertical plate.
In a specific embodiment, the second arc-shaped telescopic vertical plate comprises a first arc-shaped rear vertical plate, a second arc-shaped rear vertical plate and a second telescopic plate, wherein the first arc-shaped rear vertical plate and the second arc-shaped rear vertical plate are respectively and laterally connected with the first arc-shaped bottom plate and the second arc-shaped bottom plate in a rear sliding manner, and two sides of the second telescopic plate are respectively and fixedly connected with the opposite surfaces of the first arc-shaped rear vertical plate and the second arc-shaped rear vertical plate.
In a specific embodiment, the first arc-shaped front vertical plate and the second arc-shaped front vertical plate are fixedly connected with a first arc-shaped sliding block at the bottom of the rear side of the second arc-shaped front vertical plate, and a first arc-shaped sliding groove matched with the first arc-shaped sliding block is respectively formed in the first arc-shaped bottom plate and the second arc-shaped bottom plate.
In a specific embodiment, two fixing plates are fixedly connected to the tops of two ends of the first arc-shaped sliding block, each fixing plate is provided with a tightening bolt in a threaded connection mode, and each tightening bolt is respectively tightened against the upper surfaces of the first arc-shaped bottom plate and the second arc-shaped bottom plate.
In a specific embodiment, the first arc back vertical plate and the second arc back vertical plate are both fixedly connected with a second arc sliding block at the back side, and the first arc bottom plate and the second arc bottom plate are provided with a second arc sliding groove matched with the second arc sliding block.
In a specific embodiment, the side surface of the second arc-shaped bottom plate is provided with a slot matched with the plugboard.
In a specific embodiment, a limiting block is fixed in the insertion plate located inside the insertion groove.
The embodiment of the utility model has the advantages that:
1. the arc-shaped arrangement of the whole device solves the technical problems of more bending and unattractive installation of the horizontal bridge frame installed in the circular structure, has high construction efficiency, saves materials and also realizes qualified engineering of high quality standard.
2. Through the setting of picture peg, can adjust the angle of first arc bottom plate and second arc bottom plate, can carry out real-time adjustment according to the specification of operation structure, improve the suitability of whole device.
3. Through the slip setting of the flexible riser spare of first arc and the flexible riser spare of second arc first arc bottom plate and second arc bottom plate front side and rear side respectively, can be further improve the area of laying to circular structure, improve the effect of laying.
Drawings
Fig. 1 is a top view of a bridge structure of a circular building structure according to an embodiment of the present utility model;
fig. 2 is a schematic diagram of a bridge structure of a circular building structure according to an embodiment of the present utility model;
fig. 3 is a schematic structural diagram of a connection relationship between a socket and a board according to an embodiment of the present utility model;
FIG. 4 is an enlarged view of FIG. 2A according to an embodiment of the present utility model;
fig. 5 is an enlarged view of fig. 2B according to an embodiment of the present utility model.
In the figure: 110-a first arcuate base; 120-a second arcuate base; 121-a slot; 130-plugboard; 140-a first arcuate telescoping riser piece; 141-a first arc-shaped front vertical plate; 142-a second arched front riser; 143-a first expansion plate; 150-a second arc-shaped telescopic riser; 151-a first arcuate rear riser; 152-a second arcuate rear riser; 153-second expansion plate; 160-a first arc-shaped slide block; 170-a fixed plate; 180-tightening the bolt; 190-a second arc-shaped slide block.
Detailed Description
The technical scheme in the embodiment of the utility model aims to solve the problems that when the horizontal linear bridge is installed, cutting and bending are usually performed manually, but the bending effect is not good, the incision is more and uneven, the appearance is not attractive, and the construction difficulty is high, and the overall thought is as follows:
referring to fig. 1-5, a bridge structure for a circular building structure is disclosed.
Referring to fig. 1, 2, 3, 4 and 5, a plugboard 130 is fixedly connected to one side of the first arc-shaped bottom plate 110, the other end of the plugboard 130 is telescopically inserted into the second arc-shaped bottom plate 120, and a first arc-shaped telescopic standing plate 140 and a second arc-shaped telescopic standing plate 150 are slidably disposed on the front side and the rear side of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120 respectively. Wherein, during the installation, establish first arc bottom plate 110 and second arc bottom plate 120 card respectively in the circular post outside, then draw first arc bottom plate 110 through the specification size of circular post for picture peg 130 slides in second arc bottom plate 120 is inside, makes first arc bottom plate 110 and second arc bottom plate 120 just in time can block to locate the circular post outside, and when first arc bottom plate 110 and second arc bottom plate 120 are flexible, first arc flexible riser 140 and the flexible riser 150 of second arc also can stretch out and draw back thereupon, realize laying whole device in circular post or circular pavement outside. The arc-shaped arrangement of the whole device solves the technical problems of more bending and unattractive installation of the horizontal bridge frame installed in the circular structure, has high construction efficiency, saves materials and also realizes qualified engineering of high quality standard. Through the setting of picture peg 130, can adjust the angle of first arc bottom plate 110 and second arc bottom plate 120, can carry out real-time adjustment according to the specification of operation structure, improve the suitability of whole device. Through the sliding arrangement of the front side and the rear side of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120 respectively of the first arc-shaped telescopic vertical plate 140 and the second arc-shaped telescopic vertical plate 150, the laying area of the circular structure can be further improved, and the laying effect is improved.
The first arc-shaped telescopic riser 140 comprises a first arc-shaped front riser 141, a second arc-shaped front riser 142 and a first telescopic plate 143, and specifically, a plurality of mounting holes are formed in the first arc-shaped front riser 141 and the second arc-shaped front riser 142 and are fixedly mounted with a circular structure through the mounting holes, so that stability of the whole device is achieved. The first arc-shaped front vertical plate 141 and the second arc-shaped front vertical plate 142 are respectively and slidably connected with the front sides of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120, and two sides of the first telescopic plate 143 are respectively and fixedly connected with opposite surfaces of the first arc-shaped front vertical plate 141 and the second arc-shaped front vertical plate 142. The bottoms of the rear sides of the first arc-shaped front vertical plate 141 and the second arc-shaped front vertical plate 142 are fixedly connected with a first arc-shaped sliding block 160, and first arc-shaped sliding grooves matched with the first arc-shaped sliding block 160 are respectively formed in the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120. The top of two ends of the two first arc-shaped sliding blocks 160 are fixedly connected with fixing plates 170, each fixing plate 170 is provided with a tightening bolt 180 in a screwed connection mode, and each tightening bolt 180 is respectively tightened against the upper surfaces of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120. When the first arc bottom plate 110 and the second arc bottom plate 120 are telescopic, under the telescopic action of the first telescopic plate 143 and the second telescopic plate 153, the first arc telescopic vertical plate 140 and the second arc telescopic vertical plate 150 are telescopic along with the telescopic action of the first arc bottom plate 110 and the second arc bottom plate 120, and when the first arc front vertical plate 141 and the second arc front vertical plate 142 need to slide, the first arc front vertical plate 141 and the second arc front vertical plate 142 are respectively pushed, so that the first arc sliding block 160 slides in the first arc sliding groove, and after sliding to a proper position, the tight bolt 180 is rotated, so that the tight bolt 180 tightly abuts against the first arc bottom plate 110 and the second arc bottom plate 120, and the first arc front vertical plate 141 and the second arc front vertical plate 142 are fixed.
The second arc-shaped telescopic vertical plate 150 comprises a first arc-shaped rear vertical plate 151, a second arc-shaped rear vertical plate 152 and a second telescopic plate 153, wherein the first arc-shaped rear vertical plate 151 and the second arc-shaped rear vertical plate 152 are respectively and laterally connected with the rear sides of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120, and two sides of the second telescopic plate 153 are respectively and fixedly connected with opposite surfaces of the first arc-shaped rear vertical plate 151 and the second arc-shaped rear vertical plate 152. The second arc-shaped sliding blocks 190 are fixedly connected to the rear sides of the first arc-shaped rear vertical plate 151 and the second arc-shaped rear vertical plate 152, and specifically, fixing bolts are respectively and jointly arranged on the first arc-shaped bottom plate 110, the second arc-shaped bottom plate 120 and the two second arc-shaped sliding blocks 190. The first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120 are provided with second arc-shaped sliding grooves matched with the second arc-shaped sliding blocks 190. When the first arc-shaped rear vertical plate 151 and the second arc-shaped rear vertical plate 152 need to be slid, the first arc-shaped rear vertical plate 151 and the second arc-shaped rear vertical plate 152 are pushed, so that the second arc-shaped sliding block 190 slides in the second arc-shaped sliding groove. During sliding, the second arc-shaped sliding block 190 is firstly slid, then the first arc-shaped sliding block 160 is slid, and then the first arc-shaped sliding block 160 is fixed, so that the whole device is fixed.
The side of the second arc-shaped bottom plate 120 is provided with a slot 121 matched with the plugboard 130. The plugboard 130 is positioned in the slot 121 and is fixedly provided with a limiting block. The limiting block can prevent the plugboard 130 from being separated from the slot 121.
The utility model is used when:
the first arc bottom plate 110 and the second arc bottom plate 120 are respectively clamped outside the round pillar, then the first arc bottom plate 110 is pulled and contracted through the specification and the size of the round pillar, the plugboard 130 slides inside the second arc bottom plate 120, the first arc bottom plate 110 and the second arc bottom plate 120 can be just clamped outside the round pillar, and when the first arc bottom plate 110 and the second arc bottom plate 120 stretch, the first arc telescopic riser 140 and the second arc telescopic riser 150 stretch along with the circular pillar or the round pavement, so that the whole device is laid outside the round pillar or the round pavement. The arc-shaped arrangement of the whole device solves the technical problems of more bending and unattractive installation of the horizontal bridge frame installed in the circular structure, has high construction efficiency, saves materials and also realizes qualified engineering of high quality standard. Through the setting of picture peg 130, can adjust the angle of first arc bottom plate 110 and second arc bottom plate 120, can carry out real-time adjustment according to the specification of operation structure, improve the suitability of whole device. Through the sliding arrangement of the front side and the rear side of the first arc-shaped bottom plate 110 and the second arc-shaped bottom plate 120 respectively of the first arc-shaped telescopic vertical plate 140 and the second arc-shaped telescopic vertical plate 150, the laying area of the circular structure can be further improved, and the laying effect is improved.
Finally, it should be noted that: it is apparent that the above examples are only illustrative of the present utility model and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present utility model.

Claims (8)

1. A bridge structure of a circular building structure is characterized by comprising
First arc bottom plate (110) and second arc bottom plate (120), first arc bottom plate (110) one side fixedly connected with picture peg (130), the picture peg (130) other end scalable insert in inside second arc bottom plate (120), the front side and the rear side of first arc bottom plate (110) and second arc bottom plate (120) are provided with first arc flexible riser piece (140) and second arc flexible riser piece (150) in the slip respectively.
2. The bridge structure of a circular building structure according to claim 1, wherein the first arc-shaped telescopic riser (140) comprises a first arc-shaped front riser (141), a second arc-shaped front riser (142) and a first telescopic riser (143), the first arc-shaped front riser (141) and the second arc-shaped front riser (142) are respectively and slidably connected with the front sides of the first arc-shaped bottom plate (110) and the second arc-shaped bottom plate (120), and two sides of the first telescopic riser (143) are respectively and fixedly connected with opposite surfaces of the first arc-shaped front riser (141) and the second arc-shaped front riser (142).
3. The bridge structure of claim 1, wherein the second arc-shaped telescopic riser (150) comprises a first arc-shaped rear riser (151), a second arc-shaped rear riser (152) and a second telescopic riser (153), the first arc-shaped rear riser (151) and the second arc-shaped rear riser (152) are respectively connected with the rear sides of the first arc-shaped bottom plate (110) and the second arc-shaped bottom plate (120), and two sides of the second telescopic riser (153) are respectively fixedly connected with opposite surfaces of the first arc-shaped rear riser (151) and the second arc-shaped rear riser (152).
4. The bridge structure of the circular building structure according to claim 2, wherein the first arc-shaped front vertical plate (141) and the second arc-shaped front vertical plate (142) are fixedly connected with a first arc-shaped sliding block (160), and the first arc-shaped bottom plate (110) and the second arc-shaped bottom plate (120) are respectively provided with a first arc-shaped sliding groove matched with the first arc-shaped sliding block (160).
5. The bridge structure of the circular building structure according to claim 4, wherein the top parts of two ends of the two first arc-shaped sliding blocks (160) are fixedly connected with fixing plates (170), each fixing plate (170) is provided with a tightening bolt (180) in a screwed connection manner, and each tightening bolt (180) is respectively tightened against the upper surfaces of the first arc-shaped bottom plate (110) and the second arc-shaped bottom plate (120).
6. A bridge structure of a circular building structure according to claim 3, wherein the rear sides of the first arc-shaped rear vertical plate (151) and the second arc-shaped rear vertical plate (152) are fixedly connected with a second arc-shaped sliding block (190), and the first arc-shaped bottom plate (110) and the second arc-shaped bottom plate (120) are provided with a second arc-shaped sliding groove matched with the second arc-shaped sliding block (190).
7. Bridge structure of a circular building structure according to claim 1, characterized in that the side of the second arched bottom plate (120) is provided with a slot (121) cooperating with the insert plate (130).
8. The bridge structure of claim 7, wherein the insert plate (130) is fixed with a stopper inside the slot (121).
CN202321451961.5U 2023-06-08 2023-06-08 Bridge structure of circular building structure Active CN220060795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321451961.5U CN220060795U (en) 2023-06-08 2023-06-08 Bridge structure of circular building structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321451961.5U CN220060795U (en) 2023-06-08 2023-06-08 Bridge structure of circular building structure

Publications (1)

Publication Number Publication Date
CN220060795U true CN220060795U (en) 2023-11-21

Family

ID=88751934

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321451961.5U Active CN220060795U (en) 2023-06-08 2023-06-08 Bridge structure of circular building structure

Country Status (1)

Country Link
CN (1) CN220060795U (en)

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