CN210002670U - assembled ceiling structure - Google Patents

assembled ceiling structure Download PDF

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Publication number
CN210002670U
CN210002670U CN201920042300.4U CN201920042300U CN210002670U CN 210002670 U CN210002670 U CN 210002670U CN 201920042300 U CN201920042300 U CN 201920042300U CN 210002670 U CN210002670 U CN 210002670U
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China
Prior art keywords
hook
keel
ceiling structure
trip
horizontal
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CN201920042300.4U
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Chinese (zh)
Inventor
魏惠强
高云翔
颜海潘
冯佳庆
马学城
吕炎发
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Shenzhen Ruihe Construction Decoration Co Ltd
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Shenzhen Ruihe Construction Decoration Co Ltd
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Priority to CN201920042300.4U priority Critical patent/CN210002670U/en
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Abstract

The utility model discloses an assembled furred ceiling structure, it includes the built-in fitting, the jib, hang the sign indicating number, and fossil fragments subassembly, wherein the built-in fitting is suitable for pre-buried in the attachment structure, the fossil fragments subassembly is suitable for connecting the furred ceiling panel, the both ends of jib are detachably connected respectively in the built-in fitting and hang the sign indicating number, it is provided with the trip to hang the sign indicating number, the fossil fragments subassembly is provided with the second trip, trip and second trip looks adaptation, the fossil fragments subassembly is connected in hanging the sign indicating number through the lock of trip and second trip, thereby the realization is installed the furred ceiling panel in the attachment structure fast, and the construction efficiency is improved.

Description

assembled ceiling structure
Technical Field
The utility model relates to an architectural decoration field, more specifically relate to kinds of assembled furred ceiling structures.
Background
the suspended ceiling is a decoration method commonly used in indoor design, and can increase the layering of indoor space and beautify and decorate.
However, prior art drop ceiling installations still suffer from drawbacks:
1. expansion bolts need to be installed in the holes drilled in the site structure, damages the site structure to a certain extent, the labor intensity is high, the construction efficiency is low, and dust can be generated to pollute the environment;
2. the base keel is not modularized, the area is large, the installation and adjustment are difficult, the installation precision is low, the installation quality is difficult to control, and the modularized installation cannot be realized;
3. the suspension rod has low rigidity and low wind pressure resistance;
4. the panel and the keel are not modularized in a component mode, the field processing amount is large, the modularized installation cannot be formed, and the material loss is large;
5. the shock resistance of the whole system is poor.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide assembled furred ceiling structures, solved above-mentioned problem on degree of journey, can realize the modularization installation to the furred ceiling structure, improved the efficiency of construction, increased the overall stability of structure, and can not cause the damage to the site architecture.
In order to achieve the above object, the utility model provides an kinds of assembled suspended ceiling structures, it includes:
the embedded part is suitable for being embedded in the attachment structure;
hoisting; and
the keel assembly, wherein the both ends of jib do not detachably connect in the built-in fitting with the crane yard, the crane yard is provided with the trip, the keel assembly is provided with the second trip, trip with second trip looks adaptation, the keel assembly passes through the trip with the lock of second trip connect in the crane yard, the keel assembly is suitable for connecting suspended ceiling panel to the realization is installed suspended ceiling panel in the adhesion structure fast, has improved the efficiency of construction.
According to the utility model discloses a preferred embodiment, the assembled furred ceiling structure advances steps and includes clamping screw, clamping screw detachably install in the built-in fitting, the crane yard advances steps and includes connecting screw, the both ends of jib are provided with the internal thread, the both ends difference threaded connection of jib clamping screw with connecting screw, the fossil fragments subassembly can pass through the rotatory altitude mixture control that realizes conveniently of crane yard.
Preferably, a bearing plate is arranged at the end part of the suspension rod to increase the contact area of the suspension rod and the embedded part, so that the connection stability of the suspension rod and the embedded part is improved.
Preferably, the th hook is rotatably connected to the connecting screw, and the keel assembly can be conveniently adjusted in direction by rotating the th hook.
Preferably, a gasket and a fastener are arranged between the hanging weight and the hanging rod, so that the connection between the hanging weight and the hanging rod is more stable.
According to the utility model discloses a preferred embodiment, assembled furred ceiling structure further steps include the retaining member, the hanging sign indicating number is provided with the screw, the retaining member pass through threaded connection install in the screw, the retaining member passes through the screw passes the hanging sign indicating number, in order to lock the hanging sign indicating number with relative position after the fossil fragments subassembly is connected makes the fossil fragments subassembly with be connected between the hanging sign indicating number inseparabler firmly.
According to the utility model discloses a preferred embodiment, the fossil fragments subassembly includes horizontal fossil fragments and enhancement fossil fragments, the second trip sets up horizontal fossil fragments, horizontal fossil fragments still are provided with the third trip, it is provided with the fourth trip to strengthen the fossil fragments, the third trip with fourth trip looks adaptation, horizontal fossil fragments pass through trip with the lock of second trip connect in the crane yard, strengthen the fossil fragments and pass through fourth trip with the lock of third trip connect in horizontal fossil fragments, it is suitable for connecting ceiling panel to strengthen the fossil fragments, horizontal fossil fragments with it sets up alternately to strengthen the fossil fragments to improve ceiling panel's installation stability and holistic structural strength.
Preferably, the hook, the second hook, the third hook and the fourth hook are respectively provided with corresponding guiding inclined planes, when the two hooks are mutually buckled, the two hooks can relatively move along the guiding inclined planes under the action of gravity, so that the tighter the buckling is, the more tightly and firmly the combination is.
Preferably, the lateral wall of the horizontal keel is provided with a side wing to avoid lateral bending of the horizontal keel.
Preferably, the side wing panel is provided with an th fastening groove, the fourth fastening hook is provided with a second fastening groove, when the fourth fastening hook is fastened on the third fastening hook, the th fastening groove and the second fastening groove are oppositely arranged, the assembled ceiling structure further comprises an elastic fastening piece, the elastic fastening piece is suitable for being installed between the th fastening groove and the second fastening groove, so that a gap is avoided at the joint of the fourth fastening hook and the third fastening hook, the reinforced keel and the horizontal keel are connected more tightly and firmly, and relative displacement between the reinforced keel and the horizontal keel is prevented.
The above and other objects, features and advantages of the present invention will be apparent from the following detailed description and the accompanying drawings, which are incorporated in and constitute a part of this specification, generally designated .
Drawings
Fig. 1 is a schematic view of a fabricated ceiling structure according to a preferred embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of a fabricated ceiling construction according to a preferred embodiment of the present invention;
fig. 3 is a schematic structural view of a boom according to a preferred embodiment of the present invention;
fig. 4 is a schematic structural view of a hanger according to a preferred embodiment of the present invention;
fig. 5 is another schematic structural diagram of a hanger according to the preferred embodiment of the invention;
figure 6 is a schematic structural view of a horizontal keel according to a preferred embodiment of the invention;
figure 7 is a schematic structural view of a reinforcement keel according to a preferred embodiment of the invention;
FIG. 8 is an installation schematic view of a fabricated ceiling structure according to a preferred embodiment of the present invention;
in the drawing, the embedded part 10, the hanger rod 20, the internal thread 21, the supporting plate 22, the hanging weight 30, the -th clamping hook 31, the connecting screw rod 32, the screw hole 33, the horizontal keel 40, the second clamping hook 41, the third clamping hook 42, the side wing sheet 43, the -th clamping groove 431, the reinforcing keel 50, the fourth clamping hook 51, the second clamping groove 511, the fixing screw rod 61, the gasket 62, the fastener 63, the locking member 64, the elastic clamping member 65, the ceiling panel 70, the connecting angle code 81 and the angle code fastener 82 are arranged.
Detailed Description
The following steps are described in conjunction with the drawings and the detailed description, and it should be noted that any combination of the following embodiments or technical features can be made to form a new embodiment without conflict.
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art. The basic principles of the invention, as defined in the following description, may be applied to other embodiments, variations, modifications, equivalents and other technical solutions without departing from the spirit and scope of the invention.
It will be understood by those skilled in the art that in the present disclosure, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in a generic and descriptive sense only and not for purposes of limitation, as the terms are used in the description to indicate that the referenced device or element must have the specified orientation, be constructed and operated in the specified orientation, and not for the purpose of limitation.
It is to be understood that the term "" should be interpreted as "at least " or " or more," i.e., in embodiments, elements may be in number, and in other embodiments, the element may be in number, and the term "" should not be interpreted as limiting the number.
Referring to fig. 1-8 of the drawings, a fabricated ceiling structure according to a preferred embodiment of the present invention will be set forth in the following description, which includes an embedment 10, a hanger bar 20, a hanger 30, and a keel assembly, wherein the embedment 10 is adapted to be pre-disposed in an attachment structure of a ceiling panel 70. It will be readily appreciated that the attachment structure may be, but is not limited to, a roof, ceiling, or the like.
The two ends of the hanger rod 20 are respectively detachably connected to the embedded part 10 and the hanger 30, the hanger 30 is provided with -th hooks 31, the keel assembly is provided with second hooks 41, the -th hooks 31 are matched with the second hooks 41, the keel assembly is connected to the hanger 30 through buckling of the -th hooks 31 and the second hooks 41, and the keel assembly is suitable for being connected with a ceiling panel 70, so that the ceiling panel 70 is rapidly installed on an attachment structure, and the construction efficiency is improved.
Specifically, the fabricated ceiling structure further comprises a fixing screw 61, the fixing screw 61 is detachably mounted on the embedded part 10, the hanging bar 30 further comprises a connecting screw 32, two ends of the suspension bar 20 are provided with internal threads 21, and two ends of the suspension bar 20 are respectively in threaded connection with the fixing screw 61 and the connecting screw 32, so that the suspension bar 20 is connected with the embedded part 10 and the hanging bar 30.
Through pre-burying in the attachment structure in the building construction process the built-in fitting 10, install when jib 20 need not the scene to the attachment structure installation expansion bolts that drills, avoided causing the damage to the attachment structure, and do not produce the dust, the protection constructor is healthy, avoids the polluted environment.
In the actual work progress, constructor can earlier hang sign indicating number 30 with the end of jib 20 carries out threaded connection, then will jib 20 another end pass through clamping screw 61 connect in built-in fitting 10 to ordinary indoor floor height, constructor stands with the help of appurtenance and just can accomplish the installation operation on ground, does not need the operation of ascending a height, has improved the factor of safety of construction, simultaneously greatly reduced constructor's intensity of labour, improves the installation effectiveness by a wide margin.
Preferably, the end of the suspension rod 20 is provided with a support plate 22 to increase the contact area between the suspension rod 20 and the embedded part 10, so as to improve the connection stability between the suspension rod 20 and the embedded part 10.
, a washer 62 and a fastener 63 are provided between the hanger 30 and the hanger bar 20, and after the hanger 30 is adjusted to a predetermined height by the screw rotation, the washer 62 and the fastener 63 perform a locking function to make the connection between the hanger 30 and the hanger bar 20 more stable.
It is worth to mention that the hook 31 is rotatably connected to the connecting screw rod 32, and the keel assembly can be conveniently adjusted in direction by rotating the hook 31.
The keel assembly can conveniently adjust the height and the direction through the hanging code 30, the height adjustment and the direction adjustment are independent, the direction adjustment is not needed to be considered when the height is adjusted, the operation amount is reduced, the operation procedure is simplified, and the operation efficiency is greatly improved.
As shown in fig. 2 and 4, the fabricated ceiling structure further comprises a locking member 64, the hanger 30 is provided with a screw hole 33, the locking member 64 is installed in the screw hole 33 through a screw connection, the locking member 64 passes through the hanger 30 through the screw hole 33 to lock the relative position of the hanger 30 after being connected with the keel assembly, so that the keel assembly is more tightly and firmly connected with the hanger 30.
More specifically, the keel assembly comprises a horizontal keel 40 and a reinforcing keel 50, the second hook 41 is arranged on the horizontal keel 40, the horizontal keel 40 is further provided with a third hook 42, the reinforcing keel 50 is provided with a fourth hook 51, the third hook 42 is matched with the fourth hook 51, the horizontal keel 40 is connected to the hanger 30 through the fastening of the -th hook 31 and the second hook 41, and the reinforcing keel 50 is connected to the horizontal keel 40 through the fastening of the fourth hook 51 and the third hook 42.
The horizontal runners 40 and the reinforcement runners 50 are arranged crosswise to improve the mounting stability and overall structural strength of the ceiling panel 70.
It is worth to mention that the hook 31, the second hook 41, the third hook 42, and the fourth hook 51 are respectively provided with corresponding guiding slopes, when the two hooks are fastened to each other, the two hooks will move relatively along the guiding slopes under the action of gravity, so that the fastening is tighter and tighter, and the combination is tighter and firmer.
Preferably, the lateral wall of the horizontal keel 40 is provided with symmetrical lateral wing pieces 43 to prevent the horizontal keel 40 from being bent laterally, so as to ensure that the horizontal keel 40 is straight.
As shown in fig. 8, the reinforcement grid 50 is adapted to be connected to a ceiling panel 70. The ceiling panels 70 are mounted to the reinforcement grid 50 by connecting corner clips 81 and corner clip fasteners 82. The reinforcing keel 50 and the ceiling panel 70 can be assembled into a component in a factory to form a panel module, and then the fourth hook 51 and the third hook 42 are buckled and hung on the horizontal keel 40, so that the operation amount and the operation procedure are simplified through the design, and the construction operation is convenient.
It is worth mentioning that the lower side of the side wing 43 is provided with a fastening groove 431, and the upper side of the fourth hook 51 is provided with a second fastening groove 511. when the fourth hook 51 is fastened to the third hook 42, the fastening groove 431 and the second fastening groove 511 are oppositely disposed.
The fabricated ceiling structure further includes an elastic fastener 65, where the elastic fastener 65 is adapted to be installed between the fastening groove 431 and the second fastening groove 511, so as to avoid a gap at a connection between the fourth hook 51 and the third hook 42, so that the connection between the reinforcing keel 50 and the horizontal keel 40 is more tight and firm, and relative displacement between the reinforcing keel and the horizontal keel is prevented.
Work as assembled furred ceiling structure accomplishes the installation back, the wind pressure that furred ceiling panel 70 bore is followed in proper order furred ceiling panel 70 strengthen fossil fragments 50 horizontal fossil fragments 40 hang yard 30 the jib 20 and built-in fitting 10 transmits to the adhesion structure, and antidetonation wind resistance can be better, has prolonged life, has reduced the maintenance cost.
Preferably, the suspension rod 20 is implemented as a rigid member in the embodiment, and is not bent, so that the suspension rod can achieve better wind pressure resistance compared to a conventional steel bar suspension rod (which is bendable and belongs to a soft member).
In addition, the elastic clamping piece 65 has the elastic function of fixed buffer action, and the direct impact of external wind pressure on the whole ceiling structure is avoided.
The utility model provides a component is joined in marriage to each among assembled furred ceiling structure can carry out mass production in the mill with the standard component form, and the field installation need not carry out secondary operation again, directly installs with the assembled, simplifies the operation flow, has reduced work load, and has reduced material loss and construction manual work quantity by a wide margin, can shorten the time limit for a project by a wide margin.
It will be understood by those skilled in the art that the embodiments of the present invention as described above and shown in the drawings are given by way of example only and are not limiting of the present invention. The objects of the present invention have been fully and effectively accomplished. The functional and structural principles of the present invention have been shown and described in the embodiments without departing from the principles, embodiments of the present invention may have any deformation or modification.

Claims (9)

1, fabricated suspended ceiling structure, comprising:
the embedded part is suitable for being embedded in the attachment structure;
a boom;
hoisting; and
the keel assembly, wherein the both ends of jib do not detachably connect in the built-in fitting with the crane yard, the crane yard is provided with trip, the keel assembly is provided with the second trip, the keel assembly passes through trip with the lock of second trip connect in the crane yard, the keel assembly is suitable for connecting the suspended ceiling panel.
2. The fabricated ceiling structure of claim 1, wherein the step comprises a fixing screw detachably mounted to the embedded part, the step comprises a connecting screw, two ends of the suspension rod are provided with internal threads, and two ends of the suspension rod are respectively in threaded connection with the fixing screw and the connecting screw.
3. The fabricated ceiling structure of claim 1, wherein the ends of the hanger bar are provided with support plates to increase the contact area of the hanger bar with the embedment.
4. The fabricated ceiling structure of claim 2, wherein the th hook is rotatably connected to the connection screw.
5. The fabricated ceiling structure of claim 1, further comprising a locking member , wherein the hanger is provided with screw holes, the locking member is mounted to the screw holes through threaded connections, and the locking member passes through the hanger through the screw holes to lock the relative position of the hanger after being connected to the keel assembly.
6. The fabricated ceiling structure of claim 1, wherein the keel assembly comprises a horizontal keel and a reinforcing keel, the second hook is arranged on the horizontal keel, the horizontal keel is further provided with a third hook, the reinforcing keel is provided with a fourth hook, the horizontal keel is connected to the hanging weight through the buckling of the hook and the second hook, the reinforcing keel is connected to the horizontal keel through the buckling of the fourth hook and the third hook, the horizontal keel and the reinforcing keel are arranged crosswise, and the reinforcing keel is suitable for being connected with a ceiling panel.
7. The fabricated ceiling structure of claim 6, wherein the th hook, the second hook, the third hook, and the fourth hook are provided with corresponding guide slopes, respectively.
8. The fabricated ceiling structure of claim 6, wherein the side walls of the horizontal runners are provided with side flaps.
9. The fabricated ceiling structure of claim 8, wherein the side flaps are provided with th fastening grooves, the fourth hook is provided with a second fastening groove, the th fastening groove and the second fastening groove are oppositely disposed when the fourth hook is fastened to the third hook, and the fabricated ceiling structure further comprises an elastic fastening piece, and the elastic fastening piece is suitable for being installed between the th fastening groove and the second fastening groove.
CN201920042300.4U 2019-01-10 2019-01-10 assembled ceiling structure Active CN210002670U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920042300.4U CN210002670U (en) 2019-01-10 2019-01-10 assembled ceiling structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920042300.4U CN210002670U (en) 2019-01-10 2019-01-10 assembled ceiling structure

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CN210002670U true CN210002670U (en) 2020-01-31

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CN201920042300.4U Active CN210002670U (en) 2019-01-10 2019-01-10 assembled ceiling structure

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112998488A (en) * 2021-04-24 2021-06-22 赵伟 Hoist and mount formula car decomposes show platform

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112998488A (en) * 2021-04-24 2021-06-22 赵伟 Hoist and mount formula car decomposes show platform

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