CN219219343U - Assembly type concrete invisible frame connecting node - Google Patents

Assembly type concrete invisible frame connecting node Download PDF

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Publication number
CN219219343U
CN219219343U CN202320307069.3U CN202320307069U CN219219343U CN 219219343 U CN219219343 U CN 219219343U CN 202320307069 U CN202320307069 U CN 202320307069U CN 219219343 U CN219219343 U CN 219219343U
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shaped steel
screw rod
assembly
assembling
concrete
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CN202320307069.3U
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肖庆元
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Hubei Zhugong Assembly Equipment Co ltd
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Hubei Zhugong Assembly Equipment Co ltd
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Abstract

The application discloses an assembled concrete stealthy frame connected node belongs to building engineering technical field. The fabricated concrete invisible frame connecting node comprises a base component and a fixing component. The base assembly comprises: the first portion of assembling and second portion of assembling, the second is assembled the portion and is set up first portion of assembling is in, during the use, utilize the steel wire to tie up reinforcing bar and L shaped steel muscle together, this stealthy frame joint node neutral column of assembled concrete has partial wall body when putting up with original wall body combine to form stealthy frame construction, realized hiding of opposite pillar promptly, make the building of putting up more pleasing to the eye, make through public sleeve pipe, female sleeve pipe, T word steel and lead screw in addition between the stand and between crossbeam and the stand can be more quick location equipment, improved the packaging efficiency to stand and crossbeam.

Description

Assembly type concrete invisible frame connecting node
Technical Field
The application belongs to the technical field of constructional engineering, and more particularly relates to an assembled concrete invisible frame connecting node.
Background
Precast concrete refers to concrete that is produced into concrete products at a factory or at a job site (not the final design site). Precast concrete is poured elsewhere than at the final job site. The prefabricated concrete with different sizes and shapes can adopt fiber to strengthen the reliability and toughness after cracking. At present precast concrete's crossbeam and stand are in the in-process of assembling, and stand and crossbeam are in the same place after the equipment, and the stand often can expose in the outside, has reduced the pleasing to the eye of building, and the equipment between stand and the equipment between crossbeam and the stand need utilize the hoist to constantly debug the equipment in addition, and the operation is too consuming time, has reduced the packaging efficiency to stand and crossbeam.
Disclosure of Invention
In order to solve the defects in the prior art, the application provides an assembled concrete invisible frame connecting node, which is actually used for improving the problems that in the assembly process of a beam and a stand column of the existing precast concrete, the stand column is always exposed outside after the stand column and the beam are assembled together, the beauty of a building is reduced, and in addition, the assembly between the stand columns and the assembly between the beam and the stand column are required to be continuously debugged and assembled by using a crane, so that the operation is too time-consuming.
In order to achieve the above purpose, the technical scheme of the application is as follows:
an assembled concrete invisible frame connection node comprises a base component and a fixing component.
The base assembly comprises: the first assembly part and the second assembly part, the second assembly part is arranged on the first assembly part.
The fixing assembly comprises a positioning part and a connecting part, wherein the positioning part is arranged on the first assembling part, and the connecting part is simultaneously arranged on the first assembling part and the second assembling part.
In the implementation process, the first assembling part comprises a stand column and reinforcing steel bars, and the reinforcing steel bars are fixed on the outer wall of the stand column.
In the implementation process, the second assembly part comprises a cross beam and L-shaped steel bars, the L-shaped steel bars are fixed on the outer wall of the cross beam, and the cross beam is inserted on the upright post.
In the implementation process, the second assembling part further comprises U-shaped steel bars, and the U-shaped steel bars are fixed on the outer wall of the cross beam.
In the implementation process, the positioning part comprises a male sleeve and a female sleeve, a first positioning hole is formed in the male sleeve, the male sleeve and the female sleeve are respectively fixed on different surfaces of the upright post, and the male sleeve is inserted into the female sleeve.
In the implementation process, the female sleeve is provided with the second positioning hole, and the first positioning hole and the second positioning hole are correspondingly arranged.
In the implementation process, the connecting part comprises T-shaped steel, a screw rod and a nut, wherein the T-shaped steel is fixed on the outer wall of the cross beam, the screw rod is fixed on the outer wall of the upright post, the T-shaped steel is sleeved on the screw rod, and the nut is sleeved on the screw rod in a threaded manner.
In the implementation process, the T-shaped steel is provided with the sliding hole, and the screw rod penetrates through the sliding hole.
Compared with the prior art, the application has the following advantages:
when the concrete invisible frame joint is used, the T-shaped steel sleeve on the cross beam is arranged on the screw rod, then the cross beam is pushed, the position between the cross beam and the upright posts is adjusted, the nut thread sleeve is arranged on the screw rod after adjustment, the screw rod is fixed on the T-shaped steel, the male sleeve on the upright posts is inserted into the female sleeve, the upper upright posts and the lower upright posts are rapidly assembled together, the screw rod passes through the second positioning holes and the first positioning holes, the nut thread sleeve is arranged on the screw rod, the rapid assembly of the upper upright posts and the lower upright posts is realized, then the steel bars and the L-shaped steel bars are bound together by utilizing the steel wires, and the part of wall body provided with the neutral column of the assembled concrete invisible frame joint is combined with the original wall body to form an invisible frame structure, so that the hidden of the upright posts is realized, the built building is more attractive, and the upright posts and the cross beam and the upright posts can be rapidly positioned and assembled together through the male sleeve, the female sleeve, the T-shaped steel and the screw rod.
Drawings
Fig. 1 is a schematic structural view of an assembled concrete invisible frame connection node according to an embodiment of the present application;
FIG. 2 is an exploded view of a fabricated concrete latent frame connection node provided in an embodiment of the present application;
fig. 3 is a top view of a fabricated concrete contact frame connection node provided in an embodiment of the present application;
fig. 4 is an enlarged view of area a in fig. 3 provided in an embodiment of the present application.
In the figure: 100-a base component; 110-a first assembly part; 111-stand columns; 112-reinforcing steel bars; 120-a second assembly part; 121-a cross beam; 122-L-shaped steel bars; 123-U-shaped steel bars; 200-fixing the assembly; 210-a positioning part; 211-male sleeve; 212-a first positioning hole; 213-female sleeve; 214-a second locating hole; 220-connecting part; 221-T steel; 222-slide hole; 223-screw rod; 224-nut.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application will be further described in detail with reference to examples.
It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the present application.
In the examples, all means used are conventional in the art unless otherwise specified.
Referring to fig. 1-4, the present application provides a fabricated concrete concealed frame connection node comprising a base assembly 100 and a securing assembly 200.
The fixing assembly 200 is arranged on the foundation assembly 100, T-shaped steel 221 on a beam 121 is sleeved on a screw rod 223, then the beam 121 is pushed, the position between the beam 121 and an upright 111 is regulated, after regulation, nuts 224 are sleeved on the screw rod 223 in a threaded manner, the screw rod 223 is fixed on the T-shaped steel 221, a male sleeve 211 on the upright 111 is inserted into a female sleeve 213, the upper upright 111 and the lower upright 111 are quickly aligned together, a screw rod passes through a second positioning hole 214 and a first positioning hole 212, nuts 224 are sleeved on the screw rod in a threaded manner, quick assembly of the upper upright 111 and the lower upright 111 is realized, steel bars 112 and L-shaped steel bars 122 are bundled together by utilizing steel wires, and when part of a wall body provided with the upright 111 in an assembled concrete invisible frame is connected, an invisible frame structure is formed by combining with the original wall body, so that the hidden of the upright 111 is realized, the built building is more attractive, in addition, the positioning efficiency of the upright 111 and the beam 121 can be quickly aligned between the upright 111 and the upright 111 through the male sleeve 211, the female sleeve 213, the T-shaped steel 221 and the screw rod 223, and the assembly efficiency of the upright 111 can be quickly improved.
Referring to fig. 1 and 2, the base assembly 100 includes: the first portion of assembling 110 and second portion of assembling 120 are assembled to first portion of assembling 110 and include stand 111 and reinforcing bar 112, reinforcing bar 112 is fixed on the outer wall of stand 111, the setting of reinforcing bar 112 makes more firm fixing between the stand 111 together, the second portion of assembling 120 sets up on first portion of assembling 110, second portion of assembling 120 includes crossbeam 121 and L shaped steel muscle 122, L shaped steel muscle 122 is fixed on the outer wall of crossbeam 121, crossbeam 121 inserts and establishes on stand 111, L shaped steel muscle 122's setting makes crossbeam 121 and stand 111 more inseparable fixing together, second portion of assembling 120 still includes U shaped steel muscle 123, U shaped steel muscle 123 is fixed on the outer wall of crossbeam 121, U shaped steel muscle 123's setting is convenient for install the wall body between the crossbeam 121.
Referring to fig. 1, 3 and 4, the fixing assembly 200 includes a positioning portion 210 and a connecting portion 220, the positioning portion 210 is disposed on the first assembling portion 110, the positioning portion 210 includes a male sleeve 211 and a female sleeve 213, a first positioning hole 212 is formed in the male sleeve 211, the male sleeve 211 and the female sleeve 213 are respectively fixed on different surfaces of the upright 111, the male sleeve 211 is inserted into the female sleeve 213, the male sleeve 211 and the female sleeve 213 are disposed so that the upper upright 111 and the lower upright 111 are more quickly aligned, a second positioning hole 214 is formed in the female sleeve 213, the first positioning hole 212 and the second positioning hole 214 are correspondingly disposed, a screw rod is facilitated to pass through the male sleeve 211 and the female sleeve 213, the connecting portion 220 is simultaneously disposed on the first assembling portion 110 and the second assembling portion 120, the connecting portion 220 includes a T-shaped steel 221, a screw rod 223 and a 224, the T-shaped steel 221 is fixed on the outer wall of the cross beam 121, the screw rod 223 is fixed on the outer wall of the upright 111, the T-shaped steel 221 is sleeved on the screw rod 223, the T-shaped steel 223 is sleeved on the screw rod 223, the screw rod 223 is disposed on the T-shaped steel 223, the screw rod 223 is disposed on the screw rod 223 and the screw rod 223 is fixed on the screw rod 223, and the screw rod 223 is disposed on the screw rod 223 is convenient to move, and the screw rod 223 is disposed on the screw rod 223 and the screw rod 223 is convenient to pass through the screw rod and is disposed on the screw rod and the screw rod 223.
Specifically, the working principle of the connecting node of the fabricated concrete invisible frame is as follows: when the concrete hidden frame is used, the T-shaped steel 221 on the cross beam 121 is sleeved on the screw rod 223, then the cross beam 121 is pushed, the position between the cross beam 121 and the upright 111 is regulated, the screw rod 223 is sleeved on the screw rod 223 after regulation, the screw rod 223 is fixed on the T-shaped steel 221, the male sleeve 211 on the upright 111 is inserted into the female sleeve 213, the upper upright 111 and the lower upright 111 are quickly aligned, the screw rod passes through the second positioning hole 214 and the first positioning hole 212, the screw rod 224 is sleeved on the screw rod, the quick assembly of the upper upright 111 and the lower upright 111 is realized, the steel wire is utilized to bind the steel bars 112 and the L-shaped steel bars 122 together, a hidden frame structure is formed by combining part of the wall body with the upright 111 in the joint of the assembled concrete hidden frame, namely, the built building is more attractive, in addition, the upper upright 111 and the cross beam 121 and the upright 111 can be quickly positioned and assembled through the male sleeve 211, the female sleeve 213, the T-shaped steel 221 and the screw rod 223, and the assembly efficiency of the upright 111 is improved.
The foregoing examples represent only a few embodiments of the present application, which are described in detail and are not thereby to be construed as limiting the scope of the claims.
It should be noted that it would be apparent to those skilled in the art that various modifications and improvements could be made without departing from the spirit of the present application, which would be within the scope of the present application. Accordingly, the protection scope of the present application is subject to the appended claims.

Claims (8)

1. An assembled concrete invisible frame connecting node, comprising:
-a base assembly (100), the base assembly (100) comprising: a first assembly part (110) and a second assembly part (120), wherein the second assembly part (120) is arranged on the first assembly part (110); and
the fixing assembly (200), the fixing assembly (200) comprises a positioning part (210) and a connecting part (220), the positioning part (210) is arranged on the first assembling part (110), and the connecting part (220) is simultaneously arranged on the first assembling part (110) and the second assembling part (120).
2. The fabricated concrete invisible frame connection node according to claim 1, wherein the first assembly portion (110) comprises a post (111) and a reinforcing bar (112), and the reinforcing bar (112) is fixed to an outer wall of the post (111).
3. The fabricated concrete invisible frame connecting node according to claim 2, wherein the second assembly portion (120) comprises a beam (121) and an L-shaped steel bar (122), the L-shaped steel bar (122) is fixed on an outer wall of the beam (121), and the beam (121) is inserted on the upright (111).
4. A fabricated concrete hidden frame connection node according to claim 3, wherein the second assembly part (120) further comprises U-shaped steel bars (123), and the U-shaped steel bars (123) are fixed on the outer wall of the cross beam (121).
5. The fabricated concrete invisible frame connection node according to claim 2, wherein the positioning portion (210) comprises a male sleeve (211) and a female sleeve (213), a first positioning hole (212) is formed in the male sleeve (211), the male sleeve (211) and the female sleeve (213) are respectively fixed on different surfaces of the upright (111), and the male sleeve (211) is inserted into the female sleeve (213).
6. The fabricated concrete invisible frame connecting node according to claim 5, wherein the female sleeve (213) is provided with a second positioning hole (214), and the first positioning hole (212) and the second positioning hole (214) are correspondingly arranged.
7. A fabricated concrete invisible frame connection node according to claim 3, wherein the connection portion (220) comprises a T-shaped steel (221), a screw rod (223) and a nut (224), the T-shaped steel (221) is fixed on the outer wall of the cross beam (121), the screw rod (223) is fixed on the outer wall of the upright column (111), the T-shaped steel (221) is sleeved on the screw rod (223), and the nut (224) is sleeved on the screw rod (223) in a threaded manner.
8. The fabricated concrete invisible frame connecting node according to claim 7, wherein a slide hole (222) is formed in the T-shaped steel (221), and the screw rod (223) penetrates through the slide hole (222).
CN202320307069.3U 2023-02-24 2023-02-24 Assembly type concrete invisible frame connecting node Active CN219219343U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320307069.3U CN219219343U (en) 2023-02-24 2023-02-24 Assembly type concrete invisible frame connecting node

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320307069.3U CN219219343U (en) 2023-02-24 2023-02-24 Assembly type concrete invisible frame connecting node

Publications (1)

Publication Number Publication Date
CN219219343U true CN219219343U (en) 2023-06-20

Family

ID=86756131

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320307069.3U Active CN219219343U (en) 2023-02-24 2023-02-24 Assembly type concrete invisible frame connecting node

Country Status (1)

Country Link
CN (1) CN219219343U (en)

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