Heat preservation wallboard mounting structure for building
Technical Field
The utility model relates to the technical field of building wallboard installation, in particular to a heat preservation wallboard installation structure for a building.
Background
In recent years, along with the rapid development of the building industry, the heat-insulating wallboard is gradually approved and applied in the building industry, has the advantages of high construction speed, cost saving, environmental protection and the like, greatly reduces the field work load and improves the construction safety.
When traditional heat preservation wallboard is installed, generally use concrete to bond on the wall body, change inconveniently, and cause great damage to the wall easily, also rely on self draw-in groove limit and the chimb between the assembly back between when assembling between the heat preservation wallboard, rethread adhesive bonds with the wall, installs the steadiness relatively poor between the heat preservation wallboard.
Disclosure of utility model
The utility model aims to solve the defects in the prior art, and provides a heat-insulating wallboard mounting structure for a building.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a heat preservation wallboard mounting structure for building, including two fixed plates, fixedly connected with connecting rod between two fixed plates, be equipped with the heat preservation between two fixed plates, the top and the one side of fixed plate are equipped with first fixed strip, the bottom and the opposite side of fixed plate are equipped with the second fixed strip, the outside fixedly connected with fixed block of first fixed strip, the fixed slot has been seted up to the outside of second fixed strip, the draw-in groove has all been seted up to the both sides of fixed slot, the equal sliding connection in both sides of fixed block has the fixture block, the inside rotation of fixed block is connected with the dwang, the equal fixedly connected with dead lever in both sides of dwang, rotate between dead lever and the fixture block and be connected with the connecting rod.
Further, the through hole is formed in the middle of the fixing block, the through hole penetrates through the fixing block, and the clamping blocks are located on two sides of the through hole.
Further, the heat-insulating layer is made of phenolic foam, and a flame-retardant layer is coated on the outer part of the fixing plate.
Further, a positioning groove is formed in the outer portion of the first fixing strip, and a positioning block is arranged in the outer portion of the second fixing strip.
Further, the fixed orifices have been seted up at the middle part of dwang, and the fixed orifices runs through the fixed block.
The beneficial effects of the utility model are as follows:
1. When the adjacent heat-insulating wallboards are installed, the fixing blocks are inserted into the fixing grooves of the adjacent heat-insulating wallboards, then the rotating rods are rotated, so that the connecting rods are pushed by the rotating rods, and the clamping blocks are pushed by the connecting rods to move, so that the clamping blocks enter the clamping grooves of the fixing grooves, the adjacent heat-insulating wallboards are mutually fixed, the adjacent heat-insulating wallboards can be mutually fixed through the rotating rods, and the installation and disassembly efficiency is improved;
2. After the rotating rods are rotated to enable the adjacent heat-insulating wallboards to be mutually fixed, fixing bolts can be used in the fixing holes to fix the device in the wall, so that the stability of the device after being installed is improved;
3. When the adjacent heat-insulating wallboards are installed, the positioning blocks are inserted into the positioning grooves, so that the adjacent heat-insulating wallboards can be positioned and fixedly installed;
4. The insulating layer made of phenolic foam has the advantages of no combustion in fire, no melting, no toxic smoke emission, light weight, no toxicity, no corrosion, heat preservation, energy saving, sound insulation, low cost and the like.
Drawings
Fig. 1 is a schematic front view of a construction heat insulation wallboard mounting structure according to the present utility model;
FIG. 2 is an enlarged sectional view of the portion A of FIG. 1;
fig. 3 is a side structural sectional view of a heat insulation wallboard mounting structure for construction according to the present utility model.
In the figure: 1 fixed plate, 2 first fixed strip, 3 fixed block, 4 constant head tank, 5 second fixed strip, 6 locating piece, 7 fixed slot, 8 fixture block, 9 dwang, 10 dead lever, 11 connecting rod, 12 fixed orifices, 13 draw-in groove.
Detailed Description
In order to further describe the technical means and effects adopted by the present utility model for achieving the intended purpose, the following detailed description will refer to the specific implementation, structure, characteristics and effects according to the present utility model with reference to the accompanying drawings and preferred embodiments.
Referring to fig. 1 to 3, a thermal insulation wallboard mounting structure for building, including two fixed plates 1, fixedly connected with connecting rod between two fixed plates 1, be equipped with the heat preservation between two fixed plates 1, the top and the one side of fixed plate 1 are equipped with first fixed strip 2, the bottom and the opposite side of fixed plate 1 are equipped with second fixed strip 5, the outside fixedly connected with fixed block 3 of first fixed strip 2, fixed slot 7 has been seted up to the outside of second fixed strip 5, draw-in groove 13 has all been seted up to the both sides of fixed slot 7, the both sides of fixed block 3 all sliding connection have fixture block 8, the inside rotation of fixed block 3 is connected with dwang 9, both sides of dwang 9 all fixedly connected with dead lever 10, the rotation is connected with connecting rod 11 between dead lever 10 and the fixture block 8, when the adjacent thermal insulation wallboard is installed, insert the fixed block 3 inside of fixed slot 7 of adjacent thermal insulation wallboard, then rotate dwang 9, make dwang 9 promote connecting rod 11, connecting rod 11 promote fixture block 8 to move, thereby make fixture block 8 get into among the draw-in 13 of fixed slot 7, make adjacent wallboard rotate mutually fixed, and the device has been fixed through adjacent thermal insulation wallboard through the promotion efficiency of thermal insulation, and can be dismantled each other.
Wherein, the through-hole has been seted up at the middle part of fixed block 3, and the through-hole runs through fixed block 3, and fixture block 8 is in the both sides of through-hole, removes through the fixed block 3 of being convenient for to during the installation of being convenient for, fixed block 3 shifts out the through-hole, inserts the inside of draw-in groove 13, and adjacent heat preservation wallboard is fixed.
The heat-insulating layer is made of phenolic foam, the outer part of the fixing plate 1 is coated with a flame-retardant layer, and the heat-insulating layer made of phenolic foam has the advantages of no combustion in fire, no melting, no toxic smoke emission, light weight, no toxicity, no corrosion, heat preservation, energy conservation, sound insulation, low cost and the like.
Wherein, constant head tank 4 has been seted up to the outside of first fixed strip 2, and the outside of second fixed strip 5 is equipped with locating piece 6, and when adjacent heat preservation wallboard was installed, locating piece 6 inserted the inside of constant head tank 4 to the adjacent heat preservation wallboard of being convenient for fix a position fixed mounting.
Wherein, fixed orifices 12 have been seted up at the middle part of dwang 9, and fixed orifices 12 run through fixed block 3, and after the dwang 9 was rotated, make adjacent heat preservation wallboard mutually fixed, can use fixing bolt to the inside of fixed orifices 12, fix the device inside the wall to the steadiness after the hoisting device installation.
Working principle: when the adjacent heat-insulating wallboards are installed, the fixed blocks 3 are inserted into the fixed grooves 7 of the adjacent heat-insulating wallboards, then the rotating rods 9 are rotated, so that the rotating rods 9 push the connecting rods 11, the connecting rods 11 push the clamping blocks 8 to move, the clamping blocks 8 enter the clamping grooves 13 of the fixed grooves 7, the adjacent heat-insulating wallboards are mutually fixed, and the adjacent heat-insulating wallboards can be mutually fixed by rotating the rotating rods 9, so that the installation and disassembly efficiency is improved;
After the rotating rods 9 are rotated to fix the adjacent heat-insulating wallboards to each other, fixing bolts can be used for fixing the device in the wall by using the fixing holes 12, so that the stability of the device after being installed is improved;
when the adjacent heat-insulating wallboards are installed, the positioning blocks 6 are inserted into the positioning grooves 4, so that the adjacent heat-insulating wallboards can be positioned and fixedly installed;
The insulating layer made of phenolic foam has the advantages of no combustion in fire, no melting, no toxic smoke emission, light weight, no toxicity, no corrosion, heat preservation, energy saving, sound insulation, low cost and the like.
The basic principle and main characteristics of the utility model and the advantages of the utility model are shown and described above, standard parts used by the utility model can be purchased from market, special-shaped parts can be customized according to the description of the specification and the drawings, the specific connection modes of the parts adopt conventional means such as mature bolt rivets and welding in the prior art, the machines, the parts and the equipment adopt conventional models in the prior art, and the circuit connection adopts conventional connection modes in the prior art, so that the description is omitted.
The present utility model is not limited in any way by the above-described preferred embodiments, but is not limited to the above-described preferred embodiments, and any person skilled in the art will appreciate that the present utility model can be embodied in the form of a program for carrying out the method of the present utility model, while the above disclosure is directed to equivalent embodiments capable of being modified or altered in some ways, it is apparent that any modifications, equivalent variations and alterations made to the above embodiments according to the technical principles of the present utility model fall within the scope of the present utility model.