CN223523265U - Assembled house skeleton - Google Patents

Assembled house skeleton

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Publication number
CN223523265U
CN223523265U CN202422834732.2U CN202422834732U CN223523265U CN 223523265 U CN223523265 U CN 223523265U CN 202422834732 U CN202422834732 U CN 202422834732U CN 223523265 U CN223523265 U CN 223523265U
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CN
China
Prior art keywords
grooves
frame
frame section
square tube
joint
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CN202422834732.2U
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Chinese (zh)
Inventor
黄德全
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Tongcheng Hardware Products Co ltd In Nanhai District Foshan City
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Tongcheng Hardware Products Co ltd In Nanhai District Foshan City
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Priority to CN202422834732.2U priority Critical patent/CN223523265U/en
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Abstract

The utility model belongs to the technical field of assembly rooms, and particularly relates to an assembly room framework, which comprises a frame section, a structural plate body, a connecting square tube and a butt joint cross beam, wherein the top of the frame section is provided with a square tube clamping groove, the inner side of the frame section is provided with a cross beam sleeve groove with an inner side opening, one end of the butt joint cross beam can be vertically sleeved in the cross beam sleeve groove, a clearance through groove is formed above the cross beam sleeve groove, square tube grooves are formed around the side edge of the structural plate body, the widths of the Fang Tongka grooves and the square tube grooves are equal to the connecting square tube, and the depths of the Fang Tongka grooves and the square tube grooves are half of the thicknesses of the connecting square tube. Compared with the existing assembly room component scheme, the framework components are more firmly connected, the clamping grooves on the framework sections are utilized for butt joint, assembly is more convenient and rapid, positioning is accurate, the framework components can be used as supporting structural members, the product quality of the assembly room is effectively improved, and the assembly difficulty is reduced.

Description

Assembled house skeleton
Technical Field
The utility model relates to the technical field of assembly rooms, in particular to an assembly room framework.
Background
The spliced assembly house can be assembled and disassembled conveniently and rapidly, so that the universal standardization of temporary buildings is realized, and the spliced assembly house is widely applied to temporary houses for field operations such as roads, railways, building construction and the like, municipal, commercial and other temporary houses for cities, or temporary building houses for natural disasters during the post-transition period. The board houses in use at present are various in types, such as cement board houses, phosphorus-magnesium board houses, color steel plate movable houses, board houses and the like.
The common modularized assembled house structure on the market at present is shown in a patent document with a patent number of CN201610436752.1 and a name of a modularized assembled house system, and comprises one or more houses which are made in a modularized manner, wherein each house consists of a steel structure frame, a cold-formed thin-wall steel system wallboard, a cold-formed thin-wall steel system floor slab and a cold-formed thin-wall steel system roof; the steel structure frame comprises a beam, a vertical column and an angle steel assembly, wherein the beam and the vertical column are parallel up and down, eight corners surrounded by the beam and the vertical column are connected through connecting pieces, the cold-formed thin-wall steel system wallboard sequentially comprises an inner decorative plate, an inner base plate, a cold-formed thin-wall steel keel, glass centrifugal cotton, an outer base plate, breathing paper and an outer decorative plate from inside to outside, the cold-formed thin-wall steel system wallboard is meshed with the beam and the vertical column through concave-convex groove assemblies, the cold-formed thin-wall steel system floor sequentially comprises a composite floor, a building template base layer and glass fiber heat insulation cotton from top to bottom, the angle steel assembly is welded on the beam, the cold-formed thin-wall steel system floor is placed on the angle steel assembly, the cold-formed thin-wall steel system floor sequentially comprises a 5mm color tile roof, a osb plate base layer, glass fiber heat insulation cotton and a gypsum plate base layer from top to bottom, the concave-convex groove assemblies comprise steel columns at two ends, L-shaped angle steels, square steel and a wall frame at the middle, the L-shaped angle steel and the square steel frame are alternately welded together, and the L-shaped angle steel and square steel frame are arranged, and the L-shaped steel system floor can be interchangeably arranged.
However, the connection stability of the assembled house structure depends on the installation stability of the screws connected in series on the connecting piece, and the wallboard, the cross beam and the upright post are connected by utilizing the concave-convex groove component with complex structure and large volume, so that the requirements on the working quality and the structural strength of related parts are high, and the manufacturing cost is difficult to reduce. In addition, the requirement on the assembly process is high, and a worker needs to learn and train to master the related assembly operation.
In view of this, it is necessary to optimally design the module structure of the assembly house in order to reduce the assembly difficulty while compromising the structural reliability.
Disclosure of utility model
In order to solve the problems that the assembly room structure commonly used in the market has higher requirements on the working quality and the structural strength of the connecting parts, the learning threshold of the assembly operation is higher, the material cost of the parts is difficult to control, and the personnel are required to be trained to master related process requirements in a time-consuming and labor-consuming manner, and the use cost is difficult to reduce, the assembly room framework is provided.
The assembled house framework comprises a frame section, a structural plate body, a connecting square tube and a butt joint cross beam;
The top of the frame section bar is provided with a square through clamping groove, the inner side of the frame section bar is provided with a beam sleeve groove with an inner side opening, one end of the butt joint beam can be vertically sleeved in the beam sleeve groove, and a clearance through groove is arranged above the beam sleeve groove;
square grooves are formed around the side edges of the structural plate body;
The Fang Tongka grooves and the square grooves are equal to the connecting square grooves in width and half of the connecting square grooves in depth.
Further, the inner side surfaces of the Fang Tongka groove and the square groove are respectively provided with a clamping lug.
Further, the outside of frame section bar is provided with the joint slot, fixed sleeve has cup jointed the location splicing in the joint slot, passes through location splicing fixed connection between two adjacent frame section bars.
Further, the joint slots are arranged at two ends of the cross beam sleeve slot, and the positioning bolts are connected in series between the positioning tabs and the frame section bar.
Furthermore, a keel slot is penetrated and arranged in the frame section bar, a reinforcing keel is connected in series in the keel slot, and a plurality of frame section bars can be connected in series on one reinforcing keel.
Further, the thickness of the frame profile is greater than the thickness of the structural panel body.
Further, the height of the frame section bar is larger than the sum of the height of the butt-joint beam and the thickness of the structural plate body, and the beam sleeve groove is formed in the bottom of the inner side face of the frame section bar.
Further, the bottom of the outer side of the frame profile is provided with a supporting cambered surface which is contracted from top to bottom inwards.
Further, joint strips are respectively and adjacently arranged at the outer joint of the frame section and the structural plate body and the outer joint of the structural plate body.
The utility model has the advantages that:
1. the components are simplified, the production and the transportation are convenient, and the assembly speed is high.
2. The structure strength is higher, the support stability is stronger, and the service life is longer.
3. The assembly is easy, and the requirement on the connection stability and the alignment precision is low, so that the staff can quickly master the assembly flow.
4. The inside water and electricity pipeline that can be used to of frame section bar, the wire rod is hidden, and inside arrangement is clean and tidy, and the security is higher.
5. The structure has better sealing performance, and can avoid air leakage and water leakage.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is an exploded view of the components of an assembled house frame;
FIG. 2 is a side connection block diagram of a frame profile, structural panels, connection blocks and docking cross beams;
FIG. 3 is a perspective view of a front connection structure of a frame profile, a structural panel, and a connecting bracket;
FIG. 4 is a top view of the structure between two symmetrical frame profiles and a butt-jointed beam;
FIG. 5 is a top view of the structure between two frame profiles and the locating tab abutted at the corner points;
Fig. 6 is a top view of the series connection of the frame profile and the reinforcing runners.
The attached drawings are identified:
1. The frame comprises frame sections, 101 and Fang Tongka grooves, 102 and beam sleeve grooves, 103 and clearance through grooves, 104 and keel slots, 105 and supporting cambered surfaces, 2 and structural plate bodies, 201 and square through grooves, 3 and connecting square through parts, 4 and butt-joint beams, 401 and locking bolts, 5 and clamping convex blocks, 6 and joint slots, 7 and positioning tabs, 701 and positioning bolts, and 8 and reinforcing keels.
Detailed Description
In order to solve the problems that the assembly room structure commonly used in the market has higher requirements on the working quality and the structural strength of the connecting parts, the learning threshold of the assembly operation is higher, the material cost of the parts is difficult to control, and the personnel are required to be trained to master related process requirements in a time-consuming and labor-consuming manner, and the use cost is difficult to reduce, the assembly room framework is provided.
In order to make the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The terms "inner", "middle" and "a" and the like are used in the present specification for convenience of description, but are not intended to limit the scope of the present utility model, and the changes or modifications of the relative relationship are described in the foregoing description without any substantial change of technical content.
In the description of the present utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the device or element being referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first", "a second", etc. may explicitly or implicitly include one or more such feature. In the description of the present utility model, unless explicitly stated and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, directly connected, or indirectly connected through an intermediary, or may be in communication with the interior of two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art in a specific case.
As shown in fig. 1 to 5, the present embodiment provides an assembled house skeleton, comprising a frame profile 1, a structural panel 2, a connecting square tube 3 and a butt-joint cross beam 4;
The top of the frame section bar 1 is provided with a square through clamping groove 101, the inner side of the frame section bar 1 is provided with a beam sleeve groove 102 with an inner side opening, one end of the butt joint beam 4 can be vertically sleeved in the beam sleeve groove 102, and a clearance through groove 103 is arranged above the beam sleeve groove 102;
square grooves 201 are formed around the side edges of the structural plate body 2;
the Fang Tongka grooves 101 and the square grooves 201 are equal to the connecting square 3 in width and half in depth.
Wherein Fang Tongka groove 101, connection square tube 3, square tube recess 201 can dock in proper order, realize the quick concatenation between frame section bar 1 and the structure plate body 2, and also can dock in the square tube recess 201 through vertical connection square tube 3 card income square tube between two structure plate bodies 2, realize the construction of house wallboard.
And the frame profiles 1 serving as the two sides of the frame are connected by using the butt joint cross beam 4, so that the building of the house base is realized. The base structure is reversely buckled on the top and can also be used as a roof. The butt-joint beam 4 at the bottom is required to be paved with a floor to form a plane, so that the floor is convenient to use and isolated from the external ground. In order to ensure the connection stability, after the butt-joint cross beam 4 is inserted into the cross beam sleeve groove 102, a locking bolt 401 can be penetrated downwards at the bottom of the clearance through groove 103, so that the frame profile 1 is prevented from being released under stress.
In addition, the clearance through slots 103 may provide an arrangement channel for the hydro-power lines.
The inner side surfaces of the Fang Tongka groove 101 and the square through groove 201 are respectively provided with a clamping lug 5. The convex clamping convex blocks 5 enable the connecting square tube 3 to be clamped in a limiting mode to form interference fit when being inserted into the Fang Tongka groove 101 and the square tube groove 201, so that the connecting stability can be improved, and the loosening of the structure is avoided.
The outer side of the frame section bar 1 is provided with a joint slot 6, a positioning tab 7 is fixedly sleeved in the joint slot 6, and two adjacent frame section bars 1 are fixedly connected through the positioning tab 7. The joint slots 6 are arranged at two ends of the cross beam sleeve slot 102, and the positioning bolts 701 are connected in series between the positioning tabs 7 and the frame profile 1. Since the house is generally square, at right angles, the two frame profiles 1 need to be butted at an internal bevel of 45 °. At the moment, the L-shaped positioning connection sheet 7 is sleeved into the joint slot 6 of the frame profiles 1 at the two ends, so that the positioning butt joint at the corner can be finished. The positioning bolt 701 can enhance the butt joint stability of the connection point, so as to avoid loosening the structure. In addition, the design of the joint slots 6 integrated at both ends of the beam pocket 102 helps to control the volume of the frame profile 1, reducing the component manufacturing costs.
The frame section bar 1 is internally provided with a keel slot 104 in a penetrating way, the keel slot 104 is connected with a reinforcement keel 8 in series, and a plurality of frame section bars 1 can be connected with the reinforcement keel 8 in series. When the frame section bar 1 needs to be higher in strength or needs to be prolonged, the reinforcing keels 8 can be inserted, so that the frame section bar can adapt to various house designs.
The thickness of the frame profile 1 is greater than the thickness of the structural plate body 2. When the structural plate body 2 is vertically fixed above the frame section bar 1 through the matching of the Fang Tongka grooves 101, the connecting square through 3 and the square through grooves 201, the frame section bar 1 with the thickness larger than that of the structural plate body 2 can stably bear the weight of the structural plate body 2, and the structural stability is high.
The height of the frame section bar 1 is larger than the sum of the height of the butt joint cross beam 4 and the thickness of the structural plate body 2, and the cross beam sleeve groove 102 is arranged at the bottom of the inner side surface of the frame section bar 1. After the frame profiles 1 are installed at the two ends of the butt-joint cross beam 4, the structural plate body 2 can be clamped into a pit formed by surrounding the two frame profiles 1 and the middle butt-joint cross beam 4 to serve as a floor. Because the structural plate body 2 serving as the floor is inlaid at the inner side of the frame section bar 1, the structural plate body 2 is convenient to align, and the installation is quick and stable.
The outer bottom of the frame profile 1 is provided with a supporting cambered surface 105 which is contracted inwards from top to bottom. The supporting cambered surface 105 can improve the shock resistance of the frame profile 1, avoid the stress deformation of the frame profile 1 and improve the structural stability.
Sealing rubber strips (not shown) are respectively and tightly attached to the outer joint of the frame profile 1 and the structural plate body 2 and the outer joint of the adjacent structural plate body 2. The joint is fixedly butted by the connecting square tube 3, so that after the sealing rubber strip is arranged on the outer side of the joint, the sealing performance of the wall body and the frame profile 1 can be obviously improved, and air leakage leak is avoided.
The foregoing is a further detailed description of the utility model in connection with the preferred embodiments, and it is not intended to limit the utility model to the particular forms disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the utility model.

Claims (9)

1. The assembled house framework is characterized by comprising frame profiles, a structural plate body, connecting square tubes and butt joint cross beams;
The top of the frame section bar is provided with a square through clamping groove, the inner side of the frame section bar is provided with a beam sleeve groove with an inner side opening, one end of the butt joint beam can be vertically sleeved in the beam sleeve groove, and a clearance through groove is arranged above the beam sleeve groove;
square grooves are formed around the side edges of the structural plate body;
The Fang Tongka grooves and the square grooves are equal to the connecting square grooves in width and half of the connecting square grooves in depth.
2. The building framework of claim 1, wherein the interior sides of the Fang Tongka slots and the square grooves are each provided with a clamping bump.
3. The assembled house framework according to claim 1, wherein the outer sides of the frame profiles are provided with joint slots, positioning tabs are fixedly sleeved in the joint slots, and two adjacent frame profiles are fixedly connected through the positioning tabs.
4. The assembled house framework according to claim 3, wherein the joint slots are arranged at two ends of the cross beam sleeve slot, and the positioning bolts are connected in series between the positioning tabs and the frame section bar.
5. The building framework of claim 1, wherein a keel slot is formed through the frame section bar, a reinforcing keel is connected in series in the keel slot, and a plurality of frame section bars can be connected in series on a reinforcing keel.
6. The assembled building framework of claim 1, wherein the thickness of the frame profile is greater than the thickness of the structural panels.
7. The building framework of claim 1, wherein the frame profile has a height greater than the sum of the height of the butt-jointed beam and the thickness of the structural panel, and the beam pocket is provided in the bottom of the inner side of the frame profile.
8. The building framework of claim 1, wherein the outer bottom of the frame profile is provided with a supporting cambered surface which is contracted inwards from top to bottom.
9. The assembled house framework according to claim 1, wherein sealing rubber strips are arranged at the outer side joint of the frame profile and the structural plate body and the outer side joint of the adjacent structural plate body in a fitting mode.
CN202422834732.2U 2024-11-20 2024-11-20 Assembled house skeleton Active CN223523265U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422834732.2U CN223523265U (en) 2024-11-20 2024-11-20 Assembled house skeleton

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422834732.2U CN223523265U (en) 2024-11-20 2024-11-20 Assembled house skeleton

Publications (1)

Publication Number Publication Date
CN223523265U true CN223523265U (en) 2025-11-07

Family

ID=97534057

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422834732.2U Active CN223523265U (en) 2024-11-20 2024-11-20 Assembled house skeleton

Country Status (1)

Country Link
CN (1) CN223523265U (en)

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