Connecting structure for corner of assembled decoration light steel joist
Technical Field
The utility model relates to the technical field of interior decoration, in particular to a connecting structure for an assembled decoration light steel keel corner.
Background
The light steel joist in the market adopts high-quality continuous hot dip galvanized thin steel plates with the thickness of five millimeters to one point of five millimeters as raw materials, and is a metal skeleton rolled by a cold bending process, and the common models in the market are C50, C75 and C100, and are divided into a transverse joist, a vertical joist and a supporting clamp which are used as main structures, and are formed by combining gypsum boards as basic materials, gypsum and putty powder are hung on the outer layer of the plate, and the outer layer face can be decorated by various materials such as latex, wallpaper, wood and the like. During assembly decoration, the building components manufactured in factories are transported to a construction site and are directly assembled on the site.
CN220100497U discloses a connection structure at the corner of light steel joist for assembly decoration in prior art, through rotating the handle, make the worm drive the turbine rotatory, and make the connecting rod drive left and right sides screw rod and rotate, because the equal sliding connection in the inside of slide in the top of two fly leaves, and the screw thread opposite direction of two screw rods, therefore can make two fly leaves drive the inside of two fixture blocks card entering draw-in groove respectively, install between leveling box and the bottom plate, install the upper surface at the leveling box with world smooth rail fossil fragments this moment, install the outside at world smooth rail fossil fragments with world smooth rail fossil fragments simultaneously, install the upper surface at world fossil fragments with the steel sheet, reached the purpose that makes the connection between light steel joist and the corner of wall stable.
However, in the above prior art patents, it takes much time and labor to install and fix the leveling box on the base plate, so that quick installation cannot be achieved, and the working efficiency is low.
Disclosure of utility model
The utility model aims to provide a connecting structure for an assembled decoration light steel keel corner, which solves the problems that the existing leveling box is installed and fixed on a bottom plate, more time and labor are required, the quick installation cannot be realized, and the working efficiency is low.
In order to achieve the above purpose, the connecting structure for the assembled decoration light steel joist corner comprises a leveling box, a bottom plate, a top-bottom sliding rail joist, a top-bottom keel, a steel plate and a connecting assembly, wherein the leveling box is connected with the bottom plate and is positioned above the bottom plate, the top-bottom sliding rail joist is arranged on the upper surface of the leveling box, the top-bottom keel is connected with the top-bottom sliding rail joist, the steel plate is connected with the top-bottom sliding rail joist and is positioned on the upper surface of the top-bottom sliding rail joist, the connecting assembly comprises a sliding rod, a first inserting rod, a second inserting rod, a limiting spring, a movable rod, a limiting arc block and a supporting spring, the leveling box is provided with a cavity, the bottom plate is provided with a sliding groove and two clamping grooves, the sliding rod is fixedly connected with the leveling box and is positioned in the cavity, the first inserting rod and the second inserting rod are respectively connected with the sliding groove, the corresponding clamping groove is respectively matched with the top-bottom sliding rail joist, the steel plate is connected with the top-bottom sliding rail joist, the connecting assembly is provided with the upper surface of the top-bottom sliding rail joist, the connecting assembly comprises the sliding rod, the sliding rod and the sliding rod is provided with the sliding rod and the limiting arc block and the sliding rod.
The connecting assembly further comprises a movable arc block, wherein the movable arc block is fixedly connected with the movable rod and is located at one end, far away from the first inserting connection rod, of the movable rod.
The connecting assembly further comprises a rubber pad, wherein the rubber pad is fixedly connected with the limiting arc block and is located on the outer side wall of the limiting arc block.
The connecting structure for the assembled decoration light steel joist corner also comprises a positioning module, wherein the positioning module is arranged on the leveling box and is connected with the bottom plate.
The positioning module comprises a plurality of positioning columns and a plurality of guide arc blocks, the bottom plate is provided with a plurality of positioning grooves, the positioning columns are fixedly connected with the leveling box and are respectively matched with the corresponding positioning grooves, and the guide arc blocks are respectively fixedly connected with the corresponding positioning columns and are respectively located on the positioning columns.
The positioning module further comprises a plurality of extrusion washers, and the extrusion washers are respectively fixedly connected with the corresponding positioning columns and are respectively sleeved on the outer walls of the positioning columns.
According to the connecting structure at the corner of the assembled decorative light steel keel, when the leveling box is fixedly installed on the bottom plate, the two first inserting connection rods and the second inserting connection rods are pulled in the cavity of the leveling box, the first inserting connection rods and the second inserting connection rods relatively move on the sliding rod and compress the limiting springs, meanwhile, the movable rod on the first inserting connection rods can be inserted into the second inserting connection rods, the limiting arc blocks are pressed into the grooves, the second inserting connection rods pass through the grooves until the two inserting connection rods are attached, the acting force of the abutting springs can drive the limiting arc blocks to move out of the grooves, then the leveling box is attached to the bottom plate, and then the two inserting connection rods are loosened, the two inserting connection rods slide on the sliding rod through acting force of the limiting springs, the second inserting connection rods can be pressed into the grooves, in addition, the two inserting connection rods can be pressed into the grooves through acting force of the limiting springs, and the two inserting connection rods can be moved into the grooves, and the working efficiency of the leveling box can be improved, and the working efficiency of the two inserting connection boxes can be improved.
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 a schematic overall structure of a first embodiment of the present utility model.
Fig. 2 is a schematic structural view of a portion of the first embodiment of the present utility model.
Fig. 3 is a partial internal structure sectional view of the first embodiment of the present utility model.
Fig. 4 is a partial internal structure sectional view in a disassembled state of the first embodiment of the present utility model.
Fig. 5 is an enlarged view of the partial structure at a of fig. 4 according to the present utility model.
Fig. 6 is a schematic structural view of a portion of a second embodiment of the present utility model.
101-Leveling box, 102-bottom plate, 103-top and bottom slide rail keel, 104-top and bottom keel, 105-steel plate, 106-slide bar, 107-first inserting and connecting rod, 108-second inserting and connecting rod, 109-limit spring, 110-movable rod, 111-limit arc block, 112-holding spring, 113-movable arc block, 114-rubber pad, 115-cavity, 116-slide groove, 117-clamping groove, 118-groove, 201-positioning column, 202-guiding arc block, 203-extrusion washer and 204-positioning groove.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
First embodiment
Referring to fig. 1 to 5, fig. 1 is a schematic overall structure of the first embodiment, fig. 2 is a schematic partial structure of the first embodiment, fig. 3 is a partial internal structure of the first embodiment in cross-section, fig. 4 is a partial internal structure of the first embodiment in a disassembled state, and fig. 5 is a partial enlarged structure of a in fig. 4.
The utility model provides a connecting structure of an assembled decoration light steel keel corner, which comprises a leveling box 101, a bottom plate 102, a top-bottom sliding rail keel 103, a top-bottom keel 104, a steel plate 105 and a connecting component, wherein the connecting component comprises a sliding rod 106, a first inserting and connecting rod 107, a second inserting and connecting rod 108, a limiting spring 109, a movable rod 110, a limiting arc block 111, a supporting spring 112, a moving arc block 113 and a rubber pad 114. The problems that the existing leveling box needs more time and labor for installation and fixation on the bottom plate, the leveling box cannot be installed quickly and the working efficiency is low are solved through the scheme.
For this embodiment, the leveling box 101 is connected with the bottom plate 102 and is located above the bottom plate 102, the heaven and earth slide rail keel 103 is disposed on the upper surface of the leveling box 101, the heaven and earth slide rail keel 104 is connected with the heaven and earth slide rail keel 103, the steel plate 105 is connected with the heaven and earth slide rail keel 103 and is located on the upper surface of the heaven and earth slide rail keel 103, the bottom plate 102 is fixed on a foundation by a plurality of expansion screws, the leveling box 101 is fixed above the bottom plate 102, the heaven and earth slide rail keel 103 is mounted on the upper surface of the leveling box 101, meanwhile, the heaven and earth slide rail keel 104 is mounted on the outer side of the heaven and earth slide rail keel 103, and the steel plate 105 is mounted on the upper surface of the heaven and earth slide rail keel 104, thereby achieving the purpose of stabilizing the connection between the light steel joist and the corner.
The leveling box 101 has a cavity 115, the bottom plate 102 has a sliding groove 116 and two clamping grooves 117, the sliding rod 106 is fixedly connected with the leveling box 101 and is located in the cavity 115, the first inserting rod 107 and the second inserting rod 108 are respectively connected with the sliding rod 106 in a sliding manner and are respectively matched with the corresponding clamping grooves 117, two ends of the limiting spring 109 are respectively connected with the first inserting rod 107 and the second inserting rod 108 in a fixed manner, and are sleeved on the outer wall of the sliding rod 106, the movable rod 110 is fixedly connected with the first inserting rod 107 and is located on the outer side wall of the first inserting rod 107, the movable rod 110 is also connected with the second inserting rod 108 in a sliding manner and penetrates through the second inserting rod 108, the movable rod 110 is provided with a groove 118, two ends of the limiting arc block 111 are respectively connected with the movable rod 110 and the limiting block 111 in a fixed manner, when the leveling box 102 is mounted on the leveling box 101 and is pressed into the groove 108 by the second inserting rod 108, the second inserting rod 110 and is simultaneously pushed by the second inserting rod 110 and the second inserting rod 107, the second inserting rod 110 is pushed into the groove 108, and is simultaneously pushed by the second inserting rod 110 and the second inserting rod 110 into the groove 108, and the second inserting rod 110 is pushed by the second inserting rod 110 into the groove 108, and the second inserting rod 110 simultaneously, and the two inserting rod 110 is pushed by the second inserting rod 110 into the groove 107 and the leveling rod is pushed into the groove and the groove 107, the first inserting and connecting rod 107 and the second inserting and connecting rod 108 enter the sliding groove 116 of the bottom plate 102, and then the two inserting and connecting rods are loosened, wherein the two inserting and connecting rods slide on the sliding rod 106 through the acting force of the limiting spring 109, in addition, the second inserting and connecting rod 108 can squeeze the limiting arc block 111 into the groove 118 until the two inserting and connecting rods enter the clamping groove 117 of the bottom plate 102, the limiting arc block 111 enables the second inserting and connecting rod 108 to be unable to move on the movable rod 110, and therefore the leveling box 101 is installed on the bottom plate 102.
Secondly, the movable arc block 113 is fixedly connected with the movable rod 110 and is located at one end of the movable rod 110 away from the first inserting and connecting rod 107, the movable arc block 113 has an arc surface, and the movable rod 110 is convenient to penetrate through the second inserting and connecting rod 108 through the movable arc block 113.
Meanwhile, the rubber pad 114 is fixedly connected with the limiting arc block 111 and is located on the outer side wall of the limiting arc block 111, and the rubber pad 114 is arranged on the outer side of the limiting arc block 111, so that friction between the limiting arc block 111 and the second inserting and connecting rod 108 can be increased by the rubber pad 114, and the second inserting and connecting rod 108 can be fixed more stably.
When the leveling box 101 is fixedly installed on the bottom plate 102, the two first inserting connection rods 107 and the second inserting connection rods 108 are pulled in the cavity 115 of the leveling box 101, the first inserting connection rods 107 and the second inserting connection rods 108 relatively move on the sliding rods 106 and compress the limit springs 109, meanwhile, the movable rods 110 on the first inserting connection rods 107 can be inserted into the second inserting connection rods 108, the limit arc blocks 111 are pressed into the grooves 118, the second inserting connection rods 108 pass through the grooves 118 until the two inserting connection rods are attached, the acting force of the abutting springs 112 can drive the limit arc blocks 111 to move out of the grooves 118, then the leveling box 101 is attached to the bottom plate 102, the first inserting connection rods 107 and the second inserting connection rods 108 enter the grooves 116 of the bottom plate 102, then the two inserting connection rods are loosened, the two inserting connection rods 110 are enabled to slide on the second inserting connection rods 108 through the acting force of the limit springs 109, the two inserting connection rods 106 can be enabled to move into the grooves 108, in addition, the two inserting connection rods 111 can be enabled to be installed on the outer sides of the two inserting connection rods 110, the two inserting connection rods 110 can be enabled to move through the grooves 114, the two inserting connection rods 110 can be installed on the outer sides of the two inserting connection rods 110, the two inserting connection rods can be installed on the bottom plate 102, the two inserting connection rods can be enabled to move out of the groove 110, the two inserting connection rods can be firmly move, and the two inserting connection rods can be attached to the two inserting connection rods are tightly connected, the two inserting connection rods are tightly and the two connecting connection rods 110 are tightly connected with the two connecting rods 110, the two connecting rods are tightly and the connecting rods are tightly connected, and the connecting rod connecting rods are tightly connected with the connecting rod and the connecting rod and are tightly and the connecting rod and are tightly and connected with the connecting rod and are connected, the connecting rod and are connected.
Second embodiment
Referring to fig. 6, fig. 6 is a schematic structural diagram of a portion of the second embodiment.
On the basis of the first embodiment, the connecting structure at the corner of the assembled decorative light steel keel further comprises a positioning module, wherein the positioning module comprises a plurality of positioning columns 201, a plurality of guide arc blocks 202 and a plurality of extrusion gaskets 203.
The positioning module is arranged on the leveling box 101 and is connected with the bottom plate 102, and the leveling box 101 can be accurately positioned on the bottom plate 102 through the positioning module, so that the stabilizing effect of the leveling box 101 on the bottom plate 102 is improved.
The bottom plate 102 has a plurality of constant head tanks 204, and a plurality of reference columns 201 all with leveling case 101 fixed connection, and respectively with corresponding constant head tank 204 looks adaptation, a plurality of guide arc piece 202 respectively with corresponding reference column 201 fixed connection, and be located respectively on reference column 201 when will leveling case 101 is fixed on bottom plate 102, through with a plurality of below leveling case 101 reference column 201 insert to a plurality of constant head tanks 204 of bottom plate 102, every the below of reference column 201 sets up guide arc piece 202, guide arc piece 202 has the cambered surface, can make reference column 201 conveniently get into in the constant head tank 204, through above-mentioned mode, realized can be on bottom plate 102 to leveling case 101 accurate location, also increased simultaneously leveling case 101 is in the firm effect of bottom plate 102.
The extrusion washers 203 are respectively fixedly connected with the corresponding positioning columns 201 and are respectively sleeved on the outer walls of the positioning columns 201, the extrusion washers 203 are made of rubber materials and deform when being extruded, and when the positioning columns 201 are inserted into the positioning grooves 204, the extrusion washers 203 can increase friction of the positioning columns 201 in the positioning grooves 204.
When the leveling box 101 is fixed on the bottom plate 102, a plurality of positioning columns 201 below the leveling box 101 are inserted into a plurality of positioning grooves 204 of the bottom plate 102, a guide arc block 202 is arranged below each positioning column 201, the guide arc block 202 is provided with an arc surface, the positioning columns 201 can conveniently enter the positioning grooves 204, wherein the extrusion washers 203 are arranged on the outer walls of the positioning columns 201, the extrusion washers 203 can increase friction of the positioning columns 201 in the positioning grooves 204, and through the mode, accurate positioning of the leveling box 101 on the bottom plate 102 is achieved, and meanwhile the stabilizing effect of the leveling box 101 on the bottom plate 102 is also increased.
The above disclosure is only illustrative of two preferred embodiments of the present utility model, and it is not intended to limit the scope of the claims, and those skilled in the art will understand that all or part of the procedures described above may be performed, and that equivalent changes may be made, which are encompassed by the present utility model.