CN218374530U - Novel assembled type built-in energy-saving wallboard - Google Patents

Novel assembled type built-in energy-saving wallboard Download PDF

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Publication number
CN218374530U
CN218374530U CN202222216867.3U CN202222216867U CN218374530U CN 218374530 U CN218374530 U CN 218374530U CN 202222216867 U CN202222216867 U CN 202222216867U CN 218374530 U CN218374530 U CN 218374530U
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China
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energy
conserving
wallboard
mounting
bevel gear
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CN202222216867.3U
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Inventor
卜继斌
陈康荣
张武
罗伟龙
崔文佳
魏伟雄
周莹
王奕妍
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Guangzhou Pearl River Decoration Engineering Co ltd
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Guangzhou Pearl River Decoration Engineering Co ltd
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Abstract

The utility model discloses a novel assembled built-in energy-saving wallboard, relating to the technical field of building wallboards; including assembly connectors, upper and lower connecting piece and two energy-conserving wallboards, the one end of energy-conserving wallboard is equipped with the lug, the energy-conserving wallboard other end is equipped with the recess, be equipped with the locating part on the lug, link together through assembly connectors between two adjacent energy-conserving wallboards, and carry on spacingly through the locating part between two adjacent energy-conserving wallboards, assembly connectors rotates to be connected and obtains lug one side at energy-conserving wallboard, assembly connectors and the recess threaded connection of another energy-conserving wallboard, upper and lower connecting piece sets up top and the bottom at energy-conserving wallboard respectively. The utility model discloses can realize quick dismantlement and the installation between the energy-conserving wallboard, it is convenient to use.

Description

Novel assembled built-in energy-saving wallboard
Technical Field
The utility model relates to a building wallboard technical field especially relates to a novel built-in energy-conserving wallboard of assembled.
Background
The fabricated building is a building assembled on the construction site by prefabricated components, and is divided into five types, namely a block building, a plate building, a box type building, a framework plate building, a rising-rise building and the like according to the form and construction method of the prefabricated components.
A chinese patent with a current publication number of CN213087199U discloses a novel assembled heat-insulating energy-saving wallboard, which comprises: wallboard and interior wallboard in and, be connected through the connecting elements that interval arrangement set up between wallboard in and the side fascia, there is first clearance between wallboard in and the side fascia, first clearance is used for placing the heated board, connecting elements is by connecting screw, the nut, gasket and connecting plate are constituteed, the connecting plate is pre-buried to be set up in interior wallboard and seted up the through-hole, connecting screw's one end is pre-buried to be set up in the side fascia in advance, connecting screw's the other end runs through the through-hole and is connected with the connecting plate, the nut includes that two covers are located on connecting screw and lie in the first nut and the second nut of connecting plate both sides, the gasket sets up in first nut inboard. The utility model discloses an assembled heat preservation energy-saving wallboard, intensity performance is high, and this wallboard adopts sandwich insulation structure, and durability is good.
At present, when current energy-conserving wallboard was installed, it is inconvenient to install between two energy-conserving wallboards, and complex operation when installation and dismantlement is wasted time and energy, influences the efficiency of construction, so need provide the built-in energy-conserving wallboard of a novel assembled for using.
SUMMERY OF THE UTILITY MODEL
The utility model provides a novel assembled installs energy-conserving wallboard internally to solve above-mentioned technical problem.
The utility model provides a novel built-in energy-conserving wallboard of assembled, including assembly connector, upper and lower connecting piece and two energy-conserving wallboards, the one end of energy-conserving wallboard is equipped with the lug, the energy-conserving wallboard other end is equipped with the recess, be equipped with the locating part on the lug, link together through assembly connector between two adjacent energy-conserving wallboards, and carry on spacingly through the locating part between two adjacent energy-conserving wallboards, assembly connector rotates to connect and obtains lug one side at energy-conserving wallboard, assembly connector and another energy-conserving wallboard's recess threaded connection, upper and lower connecting piece sets up top and bottom at energy-conserving wallboard respectively.
Further, the assembly connecting piece includes axis of rotation and three connection group, be equipped with the mounting groove that three equidistant setting was equipped with on the lug, the vertical rotation of axis of rotation is connected in the lug, the top of axis of rotation is equipped with interior hexagonal groove, and is three the connection group sets up respectively in the mounting groove.
Further, every the connection group all includes mounting panel, horizontal bevel gear, vertical bevel gear and threaded rod, the mounting panel is connected on the lateral wall of mounting groove, horizontal bevel gear connects in the axis of rotation, vertical bevel gear rotate with the mounting panel be connected and with horizontal bevel gear meshing, threaded rod and mounting panel both normal running fit and sliding fit, the threaded rod be the level set up and with the lateral wall sliding fit of lug, threaded rod and vertical bevel gear threaded connection, be equipped with the screw hole with threaded rod threaded connection in the recess of energy-conserving wallboard.
Further, the upper connecting piece and the lower connecting piece comprise an upper mounting block and a lower mounting block which are respectively mounted at the top and the bottom of the energy-saving wallboard, a mounting slide way is arranged on the upper mounting plate, a mounting slide rail is arranged on the lower mounting block, and a plurality of thread mounting holes are formed in the upper mounting block and the lower mounting block.
Furthermore, the locating part includes a plurality of stoppers, and is a plurality of the stopper symmetry is equidistant to be set up on the lateral wall of lug, be equipped with the block groove with the stopper joint on the lateral wall of the recess of energy-conserving wallboard.
The utility model discloses an improve and provide a novel built-in energy-conserving wallboard of assembled here, compare with prior art, have following improvement and advantage:
one of the two, the utility model discloses after two adjacent energy-conserving wallboards are aimed at, thereby rotate through rotatory interior hexagonal groove and drive the axis of rotation and rotate and drive horizontal bevel gear and rotate, horizontal bevel gear rotates and drives vertical bevel gear and rotate on the mounting panel, vertical bevel gear rotates and drives the threaded rod and carry out horizontal rotation forward, rotate the threaded hole to the recess in with the threaded rod, the realization is to the installation between two energy-conserving wallboards, also only need rotatory axis of rotation to remove the threaded rod from the threaded hole when dismantling, realize the dismantlement operation of two energy-conserving wallboards, convenient and fast to use.
And secondly, the utility model discloses when assembling two upper and lower energy-conserving wallboards, the installation slide rail that will install down on the piece is pegged graft in the installation spout on last installation piece, will install down back in piece and the last installation piece, installs current bolt in the screw thread mounting hole, realizes assembly and installation between two energy-conserving wallboards, and simple to operate is convenient, facilitates the use.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is an assembly view between two energy saving wall panels of the present invention;
fig. 3 is a schematic perspective view of the upper and lower connecting members of the present invention;
fig. 4 is a schematic view of a partial three-dimensional structure of the present invention;
fig. 5 is a schematic view of a partial three-dimensional structure of the present invention;
FIG. 6 is an enlarged view at A in FIG. 5;
description of the reference numerals:
the energy-saving wall board comprises an assembly connecting piece 1, a rotating shaft 11, a connecting group 12, a mounting plate 13, a horizontal bevel gear 14, a vertical bevel gear 15, a threaded rod 16, an inner hexagonal groove 17, an upper connecting piece 2, a lower connecting piece 2, an upper mounting block 21, a lower mounting block 22, a mounting slide rail 23, a mounting slide rail 24, an energy-saving wall board 3, a convex block 31, a groove 32, a threaded hole 33, a mounting groove 34, a limiting piece 4, a limiting piece 41 and a clamping groove 42.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings 1 to 6, which clearly and completely describe the technical solutions in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model discloses an improve and provide here a novel built-in energy-conserving wallboard of assembled, including assembly connector 1, upper and lower connecting piece 2 and two energy-conserving wallboards 3, the one end of energy-conserving wallboard 3 is equipped with lug 31, the energy-conserving wallboard 3 other end is equipped with recess 32, be equipped with locating part 4 on the lug 31, link together through assembly connector 1 between two adjacent energy-conserving wallboards 3, and carry on spacingly through locating part 4 between two adjacent energy-conserving wallboards 3, locating part 4 is used for spacing to carrying on between two energy-conserving wallboards 3 to follow-up assembly connector 1's assembly, assembly connector 1 rotates to be connected in lug 31 one side of energy-conserving wallboard 3, assembly connector 1 and another energy-conserving wallboard 3's recess 32 threaded connection, upper and lower connecting piece 2 sets up respectively in energy-conserving wallboard 3's top and bottom.
Specifically, the assembly connector 1 comprises a rotating shaft 11 and three connecting groups 12, three mounting grooves 34 which are arranged at equal intervals are formed in the protruding block 31, the rotating shaft 11 is vertically and rotatably connected in the protruding block 31, an inner hexagonal groove 17 is formed in the top of the rotating shaft 11, and the three connecting groups 12 are respectively arranged in the mounting grooves 34; every connect group 12 all includes mounting panel 13, horizontal bevel gear 14, vertical bevel gear 15 and threaded rod 16, mounting panel 13 is connected on the lateral wall of mounting groove 34, horizontal bevel gear 14 is connected on axis of rotation 11, vertical bevel gear 15 rotate with mounting panel 13 be connected and with horizontal bevel gear 14 meshing, threaded rod 16 and mounting panel 13 both normal running fit and sliding fit, threaded rod 16 be the level set up and with the lateral wall sliding fit of lug 31, threaded rod 16 and vertical bevel gear 15 threaded connection, be equipped with the screw hole 33 with threaded rod 16 threaded connection in the recess 32 of energy-conserving wallboard 3. After two adjacent energy-conserving wallboards 3 align, thereby it rotates to drive axis of rotation 11 and rotates to drive horizontal bevel gear 14 through rotatory hexagonal socket 17 in and rotate, horizontal bevel gear 14 rotates and drives vertical bevel gear 15 and rotate on mounting panel 13, vertical bevel gear 15 rotates and drives threaded rod 16 and carry out horizontal rotation forward, rotate threaded rod 16 to screw hole 33 in the recess 32, the realization is to the installation between two energy-conserving wallboards 3, also only need rotatory axis of rotation 11 to remove threaded rod 16 from screw hole 33 when dismantling, realize the dismantlement operation of two energy-conserving wallboards 3, convenient and convenient to use.
Specifically, connecting piece 2 is including installing last installation piece 21 and lower installation piece 22 in energy-conserving wallboard 3 top and bottom respectively, upward be equipped with installation slide 23 on the mounting panel 13, be equipped with installation slide rail 24 down on the installation piece 22, upward all be equipped with a plurality of screw thread mounting holes on installation piece 21 and the lower installation piece 22, when assembling two energy-conserving wallboards 3 from top to bottom, will install down in the installation spout of pegging graft on last installation piece 21 installation slide rail 24 on the piece 22, will install down in piece 22 and the last installation piece 21 back, will have current bolt to install in the screw thread mounting hole, realize assembly and installation between two energy-conserving wallboards 3, simple to operate is convenient, facilitates the use.
Specifically, the limiting part 4 includes a plurality of limiting blocks 41, and is a plurality of the limiting blocks 41 are symmetrically arranged on the side wall of the protruding block 31 at equal intervals, and the side wall of the groove 32 of the energy-saving wall plate 3 is provided with a clamping groove 42 clamped with the limiting blocks 41. When assembling between two energy-conserving wallboards 3, peg graft in block groove 42 through stopper 41 to threaded rod 16 is aimed at in the screw hole 33, realizes spacing between two energy-conserving wallboards 3 and makes the installation and the assembly that can the parallel and level between two energy-conserving wallboards 3.
The working principle is as follows: realize the interconnect between two energy-conserving wallboards 3 through assembly connector 1, when installing two adjacent energy-conserving wallboards, peg graft the lug 31 on one energy-conserving wallboard 3 back in the recess 32 on another energy-conserving wallboard 3, make two energy-conserving wallboards 3 assemble together through rotatory assembly connector 1, the installation between two energy-conserving wallboards 3 about upper and lower connecting piece 2 can be realized, the utility model discloses the simple and easy installation and the dismantlement between two energy-conserving wallboards 3 can be realized to the device, and convenient to use is convenient.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (5)

1. The utility model provides a novel built-in energy-conserving wallboard of assembled which characterized in that: including assembly connector (1), upper and lower connecting piece (2) and two energy-conserving wallboards (3), the one end of energy-conserving wallboard (3) is equipped with lug (31), energy-conserving wallboard (3) other end is equipped with recess (32), be equipped with locating part (4) on lug (31), link together through assembly connector (1) between two adjacent energy-conserving wallboard (3), and carry on spacingly through locating part (4) between two adjacent energy-conserving wallboard (3), assembly connector (1) rotates to be connected and obtains lug (31) one side at energy-conserving wallboard (3), assembly connector (1) and recess (32) threaded connection of another energy-conserving wallboard (3), upper and lower connecting piece (2) set up respectively at the top and the bottom of energy-conserving wallboard (3).
2. The novel assembled built-in energy-saving wall board is characterized in that the assembling connecting piece (1) comprises a rotating shaft (11) and three connecting groups (12), three mounting grooves (34) which are arranged at equal intervals are formed in the lug (31), the rotating shaft (11) is vertically and rotatably connected in the lug (31), an inner hexagonal groove (17) is formed in the top of the rotating shaft (11), and the three connecting groups (12) are respectively arranged in the mounting grooves (34).
3. The novel assembled built-in energy-saving wallboard of claim 2, characterized in that each connecting group (12) comprises a mounting plate (13), a horizontal bevel gear (14), a vertical bevel gear (15) and a threaded rod (16), the mounting plate (13) is connected to the side wall of the mounting groove (34), the horizontal bevel gear (14) is connected to the rotating shaft (11), the vertical bevel gear (15) is connected to the mounting plate (13) in a rotating manner and meshed with the horizontal bevel gear (14), the threaded rod (16) is in rotating fit and sliding fit with the mounting plate (13), the threaded rod (16) is in a horizontal configuration and in sliding fit with the side wall of the convex block (31), the threaded rod (16) is in threaded connection with the vertical bevel gear (15), and a threaded hole (33) in threaded connection with the threaded rod (16) is formed in the groove (32) of the energy-saving wallboard (3).
4. The novel assembled built-in energy-saving wall board according to claim 1, wherein the upper and lower connecting pieces (2) comprise an upper mounting block (21) and a lower mounting block (22) which are respectively mounted at the top and the bottom of the energy-saving wall board (3), a mounting slide rail (23) is arranged on the upper mounting plate (13), a mounting slide rail (24) is arranged on the lower mounting block (22), and a plurality of threaded mounting holes are formed in the upper mounting block (21) and the lower mounting block (22).
5. The novel assembled built-in energy-saving wallboard according to claim 1, wherein the limiting member (4) comprises a plurality of limiting blocks (41), the limiting blocks (41) are symmetrically and equidistantly arranged on the side wall of the bump (31), and the side wall of the groove (32) of the energy-saving wallboard (3) is provided with a clamping groove (42) clamped with the limiting blocks (41).
CN202222216867.3U 2022-08-22 2022-08-22 Novel assembled type built-in energy-saving wallboard Active CN218374530U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222216867.3U CN218374530U (en) 2022-08-22 2022-08-22 Novel assembled type built-in energy-saving wallboard

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222216867.3U CN218374530U (en) 2022-08-22 2022-08-22 Novel assembled type built-in energy-saving wallboard

Publications (1)

Publication Number Publication Date
CN218374530U true CN218374530U (en) 2023-01-24

Family

ID=84970011

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222216867.3U Active CN218374530U (en) 2022-08-22 2022-08-22 Novel assembled type built-in energy-saving wallboard

Country Status (1)

Country Link
CN (1) CN218374530U (en)

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