CN211396203U - Assembled floor - Google Patents

Assembled floor Download PDF

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Publication number
CN211396203U
CN211396203U CN201922385837.3U CN201922385837U CN211396203U CN 211396203 U CN211396203 U CN 211396203U CN 201922385837 U CN201922385837 U CN 201922385837U CN 211396203 U CN211396203 U CN 211396203U
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Prior art keywords
notch
hole
stopper
limiting block
column
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CN201922385837.3U
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Chinese (zh)
Inventor
翟泽明
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Shanghai Construction Technology Co ltd
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Zhengzhou Siyou Construction Technology Co ltd
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Priority to CN201922385837.3U priority Critical patent/CN211396203U/en
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Abstract

The utility model provides an assembled floor slab, which relates to the technical field of building materials and comprises a cross beam piece; the first lower bulge is arranged on the lower half part of the side surface of the cross beam piece; a first upper projection provided on an upper half of a side surface of the beam member; the first inserting column is arranged on the first lower bulge; a first notch formed on the first plug column; the first limiting block can be clamped into the first notch; the first elastic piece is used for connecting the first limiting block and the first notch; a first through hole which is arranged on the upper projection and can enable the first plug column to be inserted; the first limiting opening is formed in the inner wall of the first through hole; the first limiting block is in the shape of an arc on the upper surface and a plane on the lower surface; the utility model discloses well simple structure only needs to align the first lower portion arch from last down on the first upper portion arch on a crossbeam spare and on another crossbeam spare and can accomplish the installation, and it is very simple and convenient to operate, has improved the efficiency of construction.

Description

Assembled floor
Technical Field
The utility model relates to a building material technical field specifically is an assembled floor.
Background
In steel structure fabricated building, two common forms of floor slab are: the steel structure concrete floor adopts a cast-in-place or composite floor mode (wherein a composite part is prefabricated in a factory, and a surface layer is cast in place after field installation); and erecting keels or secondary beams, and directly paving strip-shaped or block-shaped plates such as the European pine boards. The former has high rigidity and is comfortable to use, but the field construction workload is large, and the construction time is long.
Through search and discovery, the Chinese patent with the publication number of CN208039575U discloses an assembled floor slab, which at least comprises a first beam group, a second beam group, a strip slab layer and a concrete layer.
In above-mentioned technical scheme, need weld first crossbeam group, second crossbeam group, slat layer each other, the work progress is loaded down with trivial details, has restricted the efficiency of construction, and first crossbeam group, second crossbeam group are all the fixed length moreover, can only be suitable for the demand of specific occasion, and application scope is also little.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an assembly type floor, it is loaded down with trivial details to aim at solving the assembly type floor work progress among the prior art, has restricted the efficiency of construction, and first crossbeam group, second crossbeam group all are the fixed length moreover, can only be suitable for the demand of specific occasion, problem that application scope is also little.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the fabricated floor slab comprises a cross beam member; the first lower bulge is arranged on the lower half part of the side surface of the cross beam piece; a first upper projection provided on an upper half of a side surface of the beam member; the first inserting column is arranged on the first lower bulge; a first notch formed on the first plug column; the first limiting block can be clamped into the first notch; the first elastic piece is used for connecting the first limiting block and the first notch; a first through hole which is arranged on the upper projection and can enable the first plug column to be inserted; the first limiting opening is formed in the inner wall of the first through hole; wherein, first stopper is upper surface arc and the planar shape of lower surface, and when inserting the first through-hole on another crossbeam spare when the first grafting post on a crossbeam spare, first stopper can be blocked in first spacing mouthful.
Still include perpendicular roof beam spare, the crossbeam spare with perpendicular roof beam spare joint.
A second upper portion protrusion is arranged on one side face of the vertical beam piece, a second through hole used for enabling the first inserting column to be inserted is formed in the second upper portion protrusion, and a second limiting opening used for enabling the first limiting block to be clamped in is formed in the inner wall of the second through hole.
The another side of erecting the roof beam piece is provided with that the second lower part is protruding, and the bellied last fixed surface in second lower part is connected with and is used for inserting the second of the first through-hole and pegs graft the post, and the second notch has been seted up to the side of second peg graft post, and the second notch passes through the second elastic component to be connected with the second stopper, and the second stopper extends out the outside of second notch under natural state, and the second stopper also can insert the second notch completely, the second stopper can be blocked in the first notch.
The first elastic piece and the second elastic piece are both compression springs.
And the inner side surface of the cross beam piece is fixedly connected with a supporting edge.
Laths are placed on the supporting edges.
And a concrete layer is arranged on the batten.
The utility model has the advantages that: when the cross beam piece needs to be assembled quickly, the first upper bulge on one cross beam piece can be directly aligned with the first lower bulge on the other cross beam piece from top to bottom, in the process, the first through hole on one cross beam piece is firstly inserted into the first inserting column on the other cross beam piece, when one cross beam piece drives the first through hole to move downwards, the first upper bulge on one cross beam piece can be contacted with the first limiting block on the other cross beam piece, because the first limiting block is in the shape of an arc-shaped upper surface and a plane lower surface, after the first upper bulge on one cross beam piece moves downwards, the first limiting block can be pushed into the first groove, at the moment, the first inserting column can be inserted into the first through hole, because the first limiting hole corresponds to the first limiting block at the moment, the first limiting block is clamped into the first limiting hole, at the moment, because the first lower bulge on one cross beam piece is contacted with the upper bulge on the other cross beam piece, it goes on spacingly to cooperate first stopper card again to first spacing mouthful to accomplish the rapid Assembly of crossbeam spare, consequently the utility model discloses well simple structure only needs to align first upper portion arch on a crossbeam spare from last down with the first lower arch on another crossbeam spare and can accomplish the installation, and it is very simple and convenient to operate, has improved the efficiency of construction, can also select the quantity of crossbeam spare assembly as required, thereby can make more specification model, and application scope is wide.
Drawings
Figure 1 is a front view of the overall installation of a particular embodiment of a fabricated floor.
Fig. 2 is an overall installation structure view of an embodiment of the fabricated floor.
Figure 3 is a front view of a cross member in an embodiment of the fabricated floor.
Figure 4 is a block diagram of a cross member in an embodiment of the fabricated floor.
Fig. 5 is a plan view showing a state where no lath is installed in the embodiment of the fabricated floor slab.
Fig. 6 is a plan view showing a state where the slabs are installed in the embodiment of the fabricated floor.
Detailed Description
The following description will further describe embodiments of the present invention with reference to the accompanying drawings.
As shown in fig. 1 to 4, a fabricated floor includes a cross member 1; a first lower projection 101 provided on the lower half of the side face of the cross member 1; a first upper projection 102 provided on the upper side half of the cross member 1; a first bayonet post 103 disposed on the first lower projection 101; a first slot 105 opened on the first plug column 103; a first stopper 104 that can be snapped into the first notch 105; a first elastic member 106 for connecting the first stopper 104 and the first notch 105; a first through hole 107 opened on the upper projection 102 and allowing the first inserting column 103 to be inserted therein; a first stopper port 108 provided on an inner wall of the first through hole 107; the first stopper 104 has an arc upper surface and a planar lower surface, and when the first insertion column 103 of one beam member 1 is inserted into the first through hole 107 of another beam member 1, the first stopper 104 can be inserted into the first stopper opening 108.
When the cross beam member 1 needs to be assembled quickly, the first upper protrusion 102 on one cross beam member 1 can be directly aligned with the first lower protrusion 101 on the other cross beam member 1 from top to bottom, in the process, the first through hole 107 on one cross beam member 1 is firstly inserted into the first insertion column 103 on the other cross beam member 1, when one cross beam member 1 carries the first through hole 107 to move downwards continuously, the first upper protrusion 102 on one cross beam member 1 can be contacted with the first limiting block 104 on the other cross beam member 1, because the first limiting block 104 is in the shape of an arc on the upper surface and a plane on the lower surface, after the first upper protrusion 102 on one cross beam member 1 moves downwards continuously, the first limiting block 104 can be pushed into the first notch 105, at the moment, the first insertion column 103 can be inserted into the first through hole 107, because the first limiting opening 108 corresponds to the first limiting block 104, then first stopper 104 card is gone into in first spacing mouthful 108, and this moment because the protruding 102 contact of upper portion on first lower portion 101 on a crossbeam spare 1 and another crossbeam spare 1 is spacing, and it goes on spacing to coordinate first stopper 104 card to go into first spacing mouthful 108 again, thereby accomplished the rapid Assembly of crossbeam spare 1, consequently the utility model discloses well simple structure only needs first upper portion protruding 102 on a crossbeam spare 1 from last down with another crossbeam spare on first lower portion protruding 101 align can accomplish the installation, operate very portably, improved the efficiency of construction, can also select the quantity of crossbeam spare assembly as required, thereby can make more specification model, application scope is wide.
Further, the foldable frame further comprises a vertical beam member 2, the cross beam member 1 is clamped with the vertical beam member 2, a second upper protrusion 201 is arranged on one side surface of the vertical beam member 2, a second through hole 203 for inserting the first inserting column 103 is formed in the second upper protrusion 201, a second limit opening 204 for clamping the first limit block 104 is formed in the inner wall of the second through hole 203, a second lower protrusion 202 is arranged on the other side surface of the vertical beam member 2, a second inserting column 205 for inserting into the first through hole 107 is fixedly connected to the upper surface of the second lower protrusion 202, a second notch 206 is formed in the side surface of the second inserting column 205, the second notch 206 is connected with a second limit block 208 through a second elastic member 207, preferably, the first elastic member 106 and the second elastic member 207 are compression springs, and the second limit block 208 extends out of the second notch 206 under a natural state, and the second stopper 208 can also be fully inserted into the second notch 206, and the second stopper 208 can be snapped into the first stopper opening 108.
Two side surfaces of the vertical beam piece 2 are respectively provided with a connecting structure which is the same as that of the transverse beam piece 1, so that the transverse beam piece 1 positioned at the end part can be conveniently arranged on the vertical beam piece 2.
Specifically, the laths 4 are placed on the supporting edges 3, and concrete layers are arranged on the laths 4.
In the description of the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.

Claims (8)

1. An assembled floor, comprising:
a cross member (1);
a first lower protrusion (101) provided on a lower half of a side surface of the beam member (1);
a first upper projection (102) provided on the upper half of the side surface of the beam member (1);
a first plug-in post (103) arranged on the first lower projection (101);
a first slot (105) opened on the first plug column (103);
a first stopper (104) which can be snapped into the first notch (105);
a first elastic piece (106) used for connecting the first limiting block (104) and the first notch (105);
a first through hole (107) which is opened on the upper projection (102) and can enable the first plug column (103) to be inserted;
a first limit opening (108) formed on the inner wall of the first through hole (107);
the first limiting block (104) is in the shape of an arc on the upper surface and a plane on the lower surface, and when the first inserting column (103) on one cross beam piece (1) is inserted into the first through hole (107) on the other cross beam piece (1), the first limiting block (104) can be clamped into the first limiting opening (108).
2. Fabricated floor according to claim 1, characterised in that it further comprises vertical beam elements (2), said transverse beam elements (1) being clamped to said vertical beam elements (2).
3. The fabricated floor slab as claimed in claim 2, wherein a second upper protrusion (201) is arranged on one side surface of the vertical beam member (2), a second through hole (203) for inserting the first inserting-connecting column (103) is formed in the second upper protrusion (201), and a second limiting opening (204) for clamping the first limiting block (104) is formed in the inner wall of the second through hole (203).
4. The fabricated floor slab as claimed in claim 3, wherein a second lower protrusion (202) is disposed on the other side of the vertical beam member (2), a second inserting column (205) for inserting into the first through hole (107) is fixedly connected to the upper surface of the second lower protrusion (202), a second notch (206) is formed in the side of the second inserting column (205), the second notch (206) is connected to a second stopper (208) through a second elastic member (207), the second stopper (208) extends out of the second notch (206) in a natural state, the second stopper (208) can be completely inserted into the second notch (206), and the second stopper (208) can be snapped into the first stopper opening (108).
5. Fabricated floor according to claim 4, characterised in that the first (106) and second (207) elastic elements are compression springs.
6. Fabricated floor according to any of the claims 1-5, characterised in that the inner side of the cross members (1) is fixedly connected with supporting edges (3).
7. Fabricated floor according to claim 6, characterised in that laths (4) are placed on the supporting edges (3).
8. Fabricated floor according to claim 7, characterised in that the laths (4) are provided with a layer of concrete.
CN201922385837.3U 2019-12-26 2019-12-26 Assembled floor Active CN211396203U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922385837.3U CN211396203U (en) 2019-12-26 2019-12-26 Assembled floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922385837.3U CN211396203U (en) 2019-12-26 2019-12-26 Assembled floor

Publications (1)

Publication Number Publication Date
CN211396203U true CN211396203U (en) 2020-09-01

Family

ID=72211248

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922385837.3U Active CN211396203U (en) 2019-12-26 2019-12-26 Assembled floor

Country Status (1)

Country Link
CN (1) CN211396203U (en)

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Effective date of registration: 20240419

Address after: 201111 floor 2, building 2, No. 1508, Kunyang Road, Minhang District, Shanghai

Patentee after: Shanghai Construction Technology Co.,Ltd.

Country or region after: China

Address before: 450000 Room 606, 6th floor, building 22, 305 Jinshui Road, Jinshui District, Zhengzhou City, Henan Province

Patentee before: Zhengzhou Siyou Construction Technology Co.,Ltd.

Country or region before: China