CN215858505U - Assembled card formula fossil fragments fixed knot constructs - Google Patents
Assembled card formula fossil fragments fixed knot constructs Download PDFInfo
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- CN215858505U CN215858505U CN202121501410.6U CN202121501410U CN215858505U CN 215858505 U CN215858505 U CN 215858505U CN 202121501410 U CN202121501410 U CN 202121501410U CN 215858505 U CN215858505 U CN 215858505U
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- wing plate
- side wing
- keel
- plate
- adjusting nut
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Abstract
The utility model discloses an assembled clip type keel fixing structure which comprises a clip type keel, wherein the clip type keel comprises a first back strip plate, a first side wing plate and a second side wing plate which are arranged at two sides of the first back strip plate in an opposite mode, and a plurality of clamping blocks which are arranged along the extending direction of the first side wing plate and the second side wing plate and used for clamping a cladding keel, wherein the clamping blocks on the first side wing plate and the second side wing plate are arranged in an opposite mode; a plurality of connecting holes are formed in the first back ribbon board and used for being connected with a leveling mechanism fixed on the shed roof. The application provides an assembled card formula fossil fragments fixed knot constructs, simple structure is reasonable, and the installation is dismantled conveniently. The front operation can be realized in the whole installation process, the assembly difficulty is greatly reduced, and the assembly efficiency can be improved. The integral structure is stable after installation, and the aesthetic property is strong. Is worthy of large-area popularization and application.
Description
Technical Field
The utility model relates to the technical field of architectural decoration, in particular to an assembly type clamping type keel fixing structure.
Background
The traditional wet operation has the disadvantages of more common diseases, more links in decoration sites, long time consumption and complex process flow. Assembly finishing has various advantages over conventional finishing methods, for example, the materials used for assembly finishing are mainly semi-finished products (parts), prefabricated parts, etc., and the field fabrication is relatively few. Materials required for assembly decoration are more suitable for industrial mass production, and the cost of the materials is lower than that of a field workshop operation mode in terms of historical experience. Based on the advantages, the assembly decoration is more popular with people and is more and more widely applied.
However, in the assembly decoration process, the installation mode of the top surface is difficult to install, and the front surface of the top surface is required to be glued to make up for the defect of exposed screws in many modes, so that the installation cannot be finished simply, conveniently and quickly in many cases. In addition, the plate is supported at two sides in the current market, and the plate has no deflection and droop through the self deformation resistance of the plate. However, the method has the problem that the middle gap cannot be controlled in the using process. After long-term use, the gap between the two plates is easy to increase, the aesthetic property of the top surface is finally affected, and the risk of falling off also exists.
SUMMERY OF THE UTILITY MODEL
The utility model provides an assembly type clamping keel fixing structure.
The utility model provides the following scheme:
an assembled card formula fossil fragments fixed knot constructs includes:
the clamping type keel comprises a first back strip plate, a first side wing plate and a second side wing plate which are arranged on two sides of the first back strip plate in an opposite mode, and a plurality of clamping blocks which are arranged along the extending direction of the first side wing plate and the second side wing plate and used for clamping the cladding keel, wherein the clamping blocks on the first side wing plate and the second side wing plate are arranged in an opposite mode; the first back ribbon board is provided with a plurality of connecting holes, and the connecting holes are used for realizing connection with a leveling mechanism fixed on the shed roof;
the cladding keel comprises a second back strip plate, a third side wing plate and a fourth side wing plate, wherein the third side wing plate and the fourth side wing plate are arranged on two sides of the second back strip plate in a right-to-right mode, and the third side wing plate and the fourth side wing plate are respectively bent inwards to form a clamping groove structure; the clamping groove structure is used for realizing clamping connection with the clamping block under the action of self deformation force;
the outer side surface of the second back strip plate is used for being abutted to a plate to be installed, so that the cladding keel is connected with the plate to be installed through screws.
Preferably: the first side wing plate and the second side wing plate are inclined outwards from one side close to the first back ribbon board to one side far away from the first back ribbon board.
Preferably: the shape and the size of each clamping block are the same, and the distance between every two adjacent clamping blocks is the same.
Preferably: the third side wing plate and the fourth side wing plate are in a parallel state.
Preferably: and the two end faces of the plate to be installed, which are axially parallel to the cladding keel, are both partially inwards sunken to form L-shaped connecting ports with opposite directions.
Preferably: the leveling mechanism comprises a first connecting component and a second connecting component; the first connecting assembly comprises a hanging rod and an adjusting nut; the hanger rod is connected with the first end of the adjusting nut in a relatively rotating way, and an internal thread section extending from the second end of the adjusting nut to the first end of the adjusting nut is formed on the inner side of the adjusting nut; the second connecting assembly comprises a connecting screw rod and a locking nut, a blocking part fixedly connected with the first end of the connecting screw rod is formed at the first end of the connecting screw rod, and the locking nut is used for screwing the connecting screw rod into the connecting screw rod through the second end of the connecting screw rod after the connecting screw rod passes through the connecting hole so as to enable the clamping type keel to be connected with the second connecting assembly; the second end of the connecting screw rod is also used for being matched and connected with the internal thread section of the adjusting nut, so that the length of the leveling mechanism can be adjusted by rotating the adjusting nut.
Preferably: a first locking threaded hole and a second locking threaded hole are formed in the side wall of the adjusting nut, the first locking threaded hole is used for being matched and connected with a first locking screw, and the first locking screw is used for limiting the relative movement between the suspension rod and the adjusting nut; the second locking screw hole is used for being matched and connected with a second locking screw, and the second locking screw is used for limiting the relative movement between the connecting screw rod and the adjusting nut.
Preferably: the shape and the size of the cross section of the blocking part are the same as those of the cross section of the clamping keel.
According to the specific embodiment provided by the utility model, the utility model discloses the following technical effects:
the utility model can realize an assembled clip type keel fixing structure, and in an implementation mode, the structure can comprise a clip type keel, wherein the clip type keel comprises a first back strip plate, a first side wing plate and a second side wing plate which are arranged at two sides of the first back strip plate in an opposite way, and a plurality of clamping blocks which are arranged along the extending direction of the first side wing plate and the second side wing plate and used for clamping the cladding keel, and the clamping blocks on the first side wing plate and the second side wing plate are arranged in an opposite way; the first back ribbon board is provided with a plurality of connecting holes, and the connecting holes are used for realizing connection with a leveling mechanism fixed on the shed roof; the cladding keel comprises a second back strip plate, a third side wing plate and a fourth side wing plate, wherein the third side wing plate and the fourth side wing plate are arranged on two sides of the second back strip plate in a right-to-right mode, and the third side wing plate and the fourth side wing plate are respectively bent inwards to form a clamping groove structure; the clamping groove structure is used for realizing clamping connection with the clamping block under the action of self deformation force; the outer side surface of the second back strip plate is used for being abutted to a plate to be installed, so that the cladding keel is connected with the plate to be installed through screws. The application provides an assembled card formula fossil fragments fixed knot constructs, simple structure is reasonable, and the installation is dismantled conveniently. The front operation can be realized in the whole installation process, the assembly difficulty is greatly reduced, and the assembly efficiency can be improved. The integral structure is stable after installation, and the aesthetic property is strong. Is worthy of large-area popularization and application.
Of course, it is not necessary for any product in which the utility model is practiced to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic structural view of an assembled clip type keel fixing structure provided by an embodiment of the utility model;
FIG. 2 is an enlarged schematic view of section A provided by an embodiment of the present invention;
FIG. 3 is an enlarged schematic view of a portion B provided in an embodiment of the present invention;
FIG. 4 is a schematic structural diagram of a leveling mechanism provided in an embodiment of the present invention;
fig. 5 is a schematic view of an installation process of the fixing structure according to the embodiment of the present invention.
In the figure: the device comprises a clip type keel 1, a first back strip plate 11, a first side wing plate 12, a second side wing plate 13, a clip block 14, a cladding keel 2, a second back strip plate 21, a third side wing plate 22, a fourth side wing plate 23, a leveling mechanism 3, a first connecting assembly 31, a hanger rod 311, an adjusting nut 312, a first locking screw 313, a second locking screw 314, a second connecting assembly 32, a connecting screw rod 321, a locking nut 322, a blocking part 323, a screw 4, a plate 5 to be installed and a connecting port 51.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments that can be derived by one of ordinary skill in the art from the embodiments given herein are intended to be within the scope of the present invention.
Examples
Referring to fig. 1, 2, 3, 4, and 5, an assembled clip type keel fixing structure according to an embodiment of the present invention may include, as shown in fig. 1, 2, 3, 4, and 5:
the clip type keel 1 comprises a first back strip plate 11, a first side wing plate 12 and a second side wing plate 13 which are arranged on two sides of the first back strip plate 11 in an opposite mode, and a plurality of clip blocks 14 which are arranged along the extending direction of the first side wing plate 12 and the second side wing plate 13 and used for clipping the cladding keel 2, wherein the clip blocks 14 on the first side wing plate 12 and the second side wing plate 13 are arranged in an opposite mode; the first back ribbon board 11 is provided with a plurality of connecting holes, and the connecting holes are used for realizing connection with a leveling mechanism 3 fixed on a shed roof;
the cladding keel 2 comprises a second back strip plate 21, and a third side wing plate 22 and a fourth side wing plate 23 which are arranged at two sides of the second back strip plate 21 in a right-to-right mode, wherein the third side wing plate 22 and the fourth side wing plate 23 are respectively bent inwards to form a clamping groove structure; the clamping groove structure is used for realizing clamping connection with the clamping block 14 under the action of self deformation force;
wherein, the outer side surface of the second back strip plate 21 is used for realizing the abutting joint with the plate 5 to be installed, so that the connection of the cladding keel 2 and the plate 5 to be installed is realized through a screw 4.
The fixing structure that this application embodiment provided adopts the mode that card formula fossil fragments and cladding fossil fragments card solid to be connected to realize that suspended ceiling board's hoist and mount is fixed. The cladding keel can be connected with the plate on the ground, the whole operation process can be operated on the front side, reverse side operation is not needed, and the assembly difficulty can be greatly reduced. The clamping type keel and the cladding keel are connected, fastened and detachable.
Further, in order to improve the stability of installing the cladding keel, the embodiment of the present application may further provide that the first side wing plate 12 and the second side wing plate 13 are both inclined outwards from the side close to the first back strip plate 11 to the side far away from the first back strip plate 11. The distance between the joint piece can be increased to the trend of flare-out between first side pterygoid lamina and the second side pterygoid lamina, improves the stability of cladding keel installation.
In order to reduce the installation difficulty of the cladding keel and facilitate measurement and installation on the ground, the clamping blocks 14 are identical in shape and size, and the distance between every two adjacent clamping blocks 14 is identical.
In order to ensure the stability of the installation of the cladding keel and the clip keel, the third side wing plate 22 and the fourth side wing plate 23 are parallel. In order to ensure the tightness and the aesthetic appearance of the joint between the plates, the two end faces of the plate 5 to be installed, which are axially parallel to the facing keel 2, are both partially recessed inwards to form L-shaped connecting ports 51 with opposite directions.
Because the flatness of the installed clamping type keel determines the overall flatness of the installed suspended ceiling, the clamping type keel needs to be leveled in the installation process, and in order to facilitate connection and leveling, the leveling mechanism 3 can comprise a first connecting component 31 and a second connecting component 32; the first connecting assembly 31 comprises a hanger rod 311 and an adjusting nut 312; the hanger bar 311 is connected to a first end of the adjusting nut 312 in a relatively rotatable manner, and an inner side of the adjusting nut 312 is formed with an inner thread section extending from a second end of the adjusting nut 312 to the first end of the adjusting nut 312; the second connecting assembly 32 comprises a connecting screw 321 and a locking nut 322, a blocking part 323 for fixed connection is formed at a first end of the connecting screw 321, and the locking nut 322 is used for screwing the connecting screw 321 into the connecting screw 321 through a second end of the connecting screw 321 after the connecting screw 321 passes through the connecting hole, so that the clip type keel 1 is connected with the second connecting assembly 32; the second end of the connecting screw 321 is also used for being in fit connection with the internal thread section of the adjusting nut 312, so that the length of the leveling mechanism can be adjusted by rotating the adjusting nut 312. The second coupling assembling that this application embodiment provided can realize being connected with card formula fossil fragments on ground at first. Then the first end of the first suspender is fixedly connected with the shed roof. And finally, connecting the connecting screw rod with an adjusting nut to level. Because the adjusting nut for leveling is positioned above the clamping keel, the spanner can be conveniently inserted.
In order to ensure that the adjusting nut can be locked after leveling is completed, the embodiment of the present application may further provide that a first locking threaded hole and a second locking threaded hole are formed on a side wall of the adjusting nut, the first locking threaded hole is used for being in fit connection with a first locking screw 313, and the first locking screw 313 is used for limiting relative movement between the suspension rod 311 and the adjusting nut 312; the second locking screw hole is used for being matched and connected with a second locking screw 314, and the second locking screw 314 is used for limiting the relative movement between the connecting screw rod 321 and the adjusting nut 312. In order to prevent the blocking part from rotating during the process of tightening the locking nut, the embodiment of the application can also provide that the shape and the size of the cross section of the blocking part are the same as those of the cross section of the clamping keel.
When the structure is used, the second connecting component is firstly fixed with the shed roof, and after the clamping type keel is connected with the second connecting component, the first connecting component is connected with the second connecting component and leveled. The caliper serves as a measuring tape to clamp the cladding keel, then the cladding keel and the plate are fixed through screws, the plate beside the cladding keel is fixed in the same mode, the plate is lifted to the clamping keel, the cladding keel is clamped into the clamping keel, one plate can be installed, all the plates are clamped in sequence, and all the plates are installed.
In a word, the assembled card formula fossil fragments fixed knot that this application provided constructs, simple structure is reasonable, and the installation is dismantled conveniently. The front operation can be realized in the whole installation process, the assembly difficulty is greatly reduced, and the assembly efficiency can be improved. The integral structure is stable after installation, and the aesthetic property is strong. Is worthy of large-area popularization and application.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the scope of the present invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention shall fall within the protection scope of the present invention.
Claims (8)
1. The utility model provides an assembled card formula fossil fragments fixed knot constructs which characterized in that includes:
the clamping type keel comprises a first back strip plate, a first side wing plate and a second side wing plate which are arranged on two sides of the first back strip plate in an opposite mode, and a plurality of clamping blocks which are arranged along the extending direction of the first side wing plate and the second side wing plate and used for clamping the cladding keel, wherein the clamping blocks on the first side wing plate and the second side wing plate are arranged in an opposite mode; the first back ribbon board is provided with a plurality of connecting holes, and the connecting holes are used for realizing connection with a leveling mechanism fixed on the shed roof;
the cladding keel comprises a second back strip plate, a third side wing plate and a fourth side wing plate, wherein the third side wing plate and the fourth side wing plate are arranged on two sides of the second back strip plate in a right-to-right mode, and the third side wing plate and the fourth side wing plate are respectively bent inwards to form a clamping groove structure; the clamping groove structure is used for realizing clamping connection with the clamping block under the action of self deformation force;
the outer side surface of the second back strip plate is used for being abutted to a plate to be installed, so that the cladding keel is connected with the plate to be installed through screws.
2. The fabricated clip keel securing structure according to claim 1, wherein said first and second side wings each slope outwardly from a side proximate to said first back strip toward a side distal from said first back strip.
3. The assembled clip type keel fixing structure according to claim 2, wherein the shape and size of each clip block are the same, and the distance between two adjacent clip blocks is the same.
4. The fabricated clip keel fixing structure of claim 1, wherein said third and fourth side wings are in a parallel state.
5. The assembly type clip keel fixing structure according to claim 1, wherein two end faces of the plate to be installed, which are axially parallel to the facing keel, are both partially recessed inwards to form L-shaped connecting ports with opposite directions.
6. The fabricated clip-on keel fixing structure according to claim 1, wherein said leveling mechanism comprises a first connection assembly and a second connection assembly; the first connecting assembly comprises a hanging rod and an adjusting nut; the hanger rod is connected with the first end of the adjusting nut in a relatively rotating way, and an internal thread section extending from the second end of the adjusting nut to the first end of the adjusting nut is formed on the inner side of the adjusting nut; the second connecting assembly comprises a connecting screw rod and a locking nut, a blocking part fixedly connected with the first end of the connecting screw rod is formed at the first end of the connecting screw rod, and the locking nut is used for screwing the connecting screw rod into the connecting screw rod through the second end of the connecting screw rod after the connecting screw rod passes through the connecting hole so as to enable the clamping type keel to be connected with the second connecting assembly; the second end of the connecting screw rod is also used for being matched and connected with the internal thread section of the adjusting nut, so that the length of the leveling mechanism can be adjusted by rotating the adjusting nut.
7. The assembly-type snap-in keel fixing structure according to claim 6, wherein a first locking screw hole and a second locking screw hole are formed on a side wall of said adjusting nut, said first locking screw hole being adapted to be coupled with a first locking screw for limiting relative movement between said hanger bar and said adjusting nut; the second locking screw hole is used for being matched and connected with a second locking screw, and the second locking screw is used for limiting the relative movement between the connecting screw rod and the adjusting nut.
8. The fabricated snap-in keel fixing structure according to claim 6, wherein the shape and size of the cross section of the blocking part are the same as those of the cross section of the snap-in keel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121501410.6U CN215858505U (en) | 2021-07-03 | 2021-07-03 | Assembled card formula fossil fragments fixed knot constructs |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121501410.6U CN215858505U (en) | 2021-07-03 | 2021-07-03 | Assembled card formula fossil fragments fixed knot constructs |
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CN215858505U true CN215858505U (en) | 2022-02-18 |
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CN202121501410.6U Active CN215858505U (en) | 2021-07-03 | 2021-07-03 | Assembled card formula fossil fragments fixed knot constructs |
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2021
- 2021-07-03 CN CN202121501410.6U patent/CN215858505U/en active Active
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