CN212427740U - Suspended ceiling connecting component - Google Patents

Suspended ceiling connecting component Download PDF

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Publication number
CN212427740U
CN212427740U CN202022182402.1U CN202022182402U CN212427740U CN 212427740 U CN212427740 U CN 212427740U CN 202022182402 U CN202022182402 U CN 202022182402U CN 212427740 U CN212427740 U CN 212427740U
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CN
China
Prior art keywords
hook
mounting plate
plate
ceiling
component
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN202022182402.1U
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Chinese (zh)
Inventor
丁欣欣
丁泽成
王文广
周东珊
王聪聪
余广
薛猛
周华君
张烁培
钱依玲
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Zhejiang Yasha Decoration Co Ltd
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Zhejiang Yasha Decoration Co Ltd
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Priority to CN202022182402.1U priority Critical patent/CN212427740U/en
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Publication of CN212427740U publication Critical patent/CN212427740U/en
Withdrawn - After Issue legal-status Critical Current
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Abstract

The utility model relates to a no fossil fragments furred ceiling installation accessory technical field especially relates to a furred ceiling connecting elements. The mounting frame is used for mounting a ceiling board formed by splicing a plurality of single boards to a side wall body, and comprises a first member group arranged on one single board, a second member group arranged on an adjacent single board and a third member, wherein each of the first member group and the second member group comprises a plurality of sub-members arranged along the splicing edges of the single boards, and each sub-member comprises a connecting part and a first hook part; the third component comprises a mounting plate, and at least two second hook parts arranged on the mounting plate; all the first hook parts of the first component group are clamped with one second hook part, and all the first hook parts of the second component group are clamped with the other second hook part; an insertion part for inserting the mounting frame is formed between the end part of the single plate along the direction of the splicing edge and the end part of the mounting plate along the direction of the splicing edge. This application has the material saving, and the installation effectiveness is high, and the layer height space occupies lowly, advantage that the limitation is little.

Description

Suspended ceiling connecting component
Technical Field
The utility model relates to a no fossil fragments furred ceiling installation accessory technical field especially relates to a furred ceiling connecting elements.
Background
Assembly decoration is a form of decorative construction emerging in recent years. The assembled decoration is as the name implies, namely, each part required to be used for decoration is produced and completed in a factory and then is transported to a decoration site for combined installation, so that the operations of measurement, cutting and the like of each part in the traditional decoration site are omitted, the construction is simpler and more convenient, the construction efficiency of the decoration site can be greatly improved, the construction site is cleaner and more beautiful, excessive decorative material garbage cannot be generated, and the assembled decoration is a more environment-friendly decoration construction form.
The suspended ceiling is a decoration for decorating the top of the residential environment of a house. In short, it refers to the decoration of ceiling, which is one of the important parts of interior decoration. The suspended ceiling has the functions of heat preservation, heat insulation, sound insulation and sound absorption, and is also a hidden layer for projects such as electric, ventilation air-conditioning, communication and fire prevention, alarm pipeline equipment and the like.
Among present interior decoration, to the fitment of some space furred ceilings, the mounting means of integrated assembled can be used, the furred ceiling is formed by the concatenation of a plurality of monolithic boards promptly, and install these monolithic boards on the fossil fragments through connecting element, for example such novel furred ceiling mounting structure that patent document publication No. CN105464273A discloses, it comprises main joist, hang the piece, the connecting piece, secondary joist and furred ceiling board, it is fixed with the jib through the jib connector that hangs piece one end, it is fixed with the main joist that the other end of hanging the piece passes through the main joist connector, the connecting piece is connected with the main joist through the fashioned elbow structure of its one side, the both sides at secondary joist "worker" font top can the holding make it fixed with the connecting piece in the slot structure, the lower part both sides of secondary joist "worker" font are connected with the groove structure cooperation of furred ceiling board side respectively. The construction and installation process is complicated, the used component parts are more, and the requirement of simple structure and convenient installation cannot be met. Meanwhile, because the keel is required to be installed, the phenomena of limited layer height and insufficient space exist. In addition, the mounting method of the I-shaped ceiling part has the problems of complex mounting, uneven board surface, low mounting efficiency and the like due to the facts that nailing is hard and stress is eccentric.
The keel-free ceiling structure is developed in the prior art, and the use of keels is avoided so as to solve the problem of limited floor height. For example, patent publication No. CN104278784A discloses a keelless suspended ceiling, which comprises a concrete sheet member, a turnbuckle, a hook expansion bolt, a turnbuckle nut, and a self-made pull rod. The cement sheet component is a flat component and a corner component which are manufactured according to the actual size of the building, and is ordered in advance or prepared for standby. The component replaces a keel and a panel, and can be combined at will or applied independently. The ring on the turn buckle is connected with the hook expansion bolt, the lower part of the turn buckle is hooked in the embedded connecting piece, and the component is pulled to one side. The screw rod on the pull rod is connected with the turn-buckle nut, the lower end of the screw rod is welded at the central position of the adjacent edges of the two components, and the components are pulled directly. The inserted bar on the component is fixed with the wall inserting hole connecting wedge, and the adjacent sides of the component are bound or welded. However, when the installation is carried out, the problems of complex installation, uneven plate surface and the like still exist.
SUMMERY OF THE UTILITY MODEL
The utility model discloses solve above-mentioned problem, provide a furred ceiling connecting elements.
The utility model provides a technical scheme of solve the problem provides a furred ceiling connecting elements for in installing the furred ceiling that is formed by a plurality of monolithic boards concatenation to the no fossil fragments formula furred ceiling structure of mounting bracket that lateral wall set up, the mounting bracket includes the portion of accepting perpendicular with lateral wall, including set up in the first member group of a monolithic board, set up in the second member group of adjacent monolithic board and be used for the third component that links together first member group and second member group, first member group and second member group all include a plurality of along monolithic board be used for with the concatenation limit setting of adjacent monolithic board concatenation, the component includes the connecting portion that are connected with a monolithic board and set up in the first hook portion of connecting portion; the third component comprises a mounting plate parallel to the single plate and at least two second hook parts which are arranged on the mounting plate and are arranged in an axisymmetric manner by taking the central axis of the mounting plate as an axis; all the first hook parts of the first component group are clamped with one second hook part, and all the first hook parts of the second component group are clamped with the other second hook part; the length of the mounting plate along the direction of the splicing edge is consistent with that of the single plate along the direction of the splicing edge, so that an insertion part for the bearing part to be inserted is formed between the end part of the single plate along the direction of the splicing edge and the end part of the mounting plate along the direction of the splicing edge.
Preferably, the first hook part comprises a first extension part and a first hook edge part, wherein one end of the first extension part is connected with the connecting part, the other end of the first extension part protrudes out of the surface of the single plate, and the first hook edge part is connected with the protruding end of the first extension part and is not parallel to the first extension part; the second hook part comprises a second extending part and a second hook edge part, one end of the second extending part is connected with the mounting plate, the other end of the second extending part protrudes out of the surface of the mounting plate, the second extending part is connected with the protruding end of the second extending part and is not parallel to the second extending part, and the first hook edge part is lapped on the second hook edge part.
Preferably, the first hook edge portion includes a lap portion that laps over the second hook edge portion and a free portion that does not overlap over the second hook edge portion.
Preferably, the first extending portions are perpendicular to the single plate.
Preferably, the second extending portions are perpendicular to the mounting plate.
Preferably, the first hook edge portion and the second hook edge portion are parallel to the single plate.
As the utility model discloses an prefer, still include the buckle structure that is used for dismantling adjacent single plate and connects.
As the utility model discloses a preferred, buckle structure is equipped with respectively including setting up in the recess of single plate concatenation limit place side and both ends and can insert the plug connector of the lug of recess.
The utility model has the advantages that:
1. this application is applicable to the installation of no fossil fragments formula furred ceiling structure, need not fossil fragments during the installation, not only saves the material, and the floor height space occupies lowly moreover, and the limitation is little, the limited space of applicable floor height.
2. This application will be adjacent two monolithic boards through setting up two second hook portions on an installation board and connect, has guaranteed the connection parallel and level degree of two monolithic boards to guarantee finally whole furred ceiling board's level and smooth. Meanwhile, the two second hook parts are axially symmetrical with the central shaft of the mounting plate, so that the stress balance degree of the third component is ensured, and the service life of the connecting component is prolonged.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate embodiments of the invention and together with the description, serve to explain the principles of the invention. In the drawings, like reference numerals are used to indicate like elements. The drawings in the following description are directed to some, but not all embodiments of the invention. For a person skilled in the art, other figures can be derived from these figures without inventive effort.
FIG. 1 is a schematic view of an installation of a ceiling coupling member;
FIG. 2 is a schematic view of a ceiling attachment member attachment;
FIG. 3 is a schematic view of a ceiling attachment member;
in the figure: the single board 1, the mounting bracket 2, the receiving portion 21, the sub-component 3, the connecting portion 31, the first hook portion 32, the first extending portion 321, the first hook edge portion 322, the third component 4, the mounting plate 41, the second hook portion 42, the second extending portion 421, the second hook edge portion 422, the inserting portion 5, and the plug 6.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. 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. It should be noted that the embodiments and features of the embodiments in the present application may be arbitrarily combined with each other without conflict.
The utility model provides a furred ceiling connecting elements, as shown in fig. 1 for in installing the furred ceiling board that is formed by the concatenation of a plurality of monolithic boards 1 to the no fossil fragments formula furred ceiling structure of mounting bracket 2 that lateral part wall body set up, mounting bracket 2 is the common structure among the traditional furred ceiling structure, is the wood-plastic block of L shape, including the fixed part that is on a parallel with the lateral part wall body and the accepting part 21 of being connected perpendicularly with the fixed part, generally be used for helping the furred ceiling board to make level fixedly, after being connected fixed part and lateral part wall body, accepting part 21 is perpendicular with the lateral part wall body promptly. In the present application, the conventional mounting bracket 2 is used as a ceiling tile fixing structure.
As shown in fig. 2 and 3, the ceiling connecting member of the present application includes a first member group provided to one single panel 1, a second member group provided to an adjacent single panel 1, and a third member 4 for connecting the first member group and the second member group together. In fact, the two ends of the same single board 1 are respectively provided with a first member group and a second member group, so that n single boards 1 can be spliced together through n-1 third members.
The first member group and the second member group respectively comprise a plurality of component members 3 which are arranged along the splicing edge of the single plate 1 and used for being spliced with the adjacent single plate 1, each component member 3 comprises a connecting part 31 connected with the single plate 1 and a first hook part 32 arranged on the connecting part 31, and the connecting part 31 can be a straight plate directly and is directly connected with the single plate 1 by a fixing nail after being attached. The third member 4 comprises a mounting plate 41, at least two second hook parts 42 arranged on the mounting plate 41; all the first hook portions 32 of the first component group are engaged with one second hook portion 42, and all the first hook portions 32 of the second component group are engaged with the other second hook portion 42 on the same mounting plate 41. In order to ensure the balance of the connection between the mounting plate 41 and the first member group and the connection between the mounting plate 41 and the second member group, the mounting plate 41 is parallel to the single plate 1, and the two second hooks 42 are arranged axially symmetrically with respect to the central axis of the mounting plate 41.
When two single boards 1 are connected together through the third member 4, the side surfaces of the two single boards 1 are attached to each other, in order to improve the connectivity between the single boards 1, the connecting structure further comprises a buckle structure for detachably connecting the adjacent single boards 1, and the buckle structure can be various, for example, a groove is formed in the side surface of one single board 1, a protruding block capable of being inserted into the groove is formed in the side surface of the other single board 1, or a concave-convex structure is formed in the side surface of one single board 1, a concave-convex structure is formed in the side surface of the other single board 1, and the like. In this embodiment, the fastening structure includes a groove respectively formed in the side surface of the single board 1, and a plug-in unit 6 having a protrusion at each end thereof and capable of being inserted into the groove. In the structure, the connecting direction of the fixing nail is consistent with the gravity direction of the single board 1, so that the fixing nail is easy to loosen, and the single board 1 can be prevented from falling off after the fixing nail is loosened by the plug connector 6.
In order to realize the structure, the first hook portion 32 includes a first extension portion 321, one end of which is connected to the connecting portion 31 and the other end of which protrudes from the surface of the single board 1, and a first hook edge portion 322, which is connected to the protruding end of the first extension portion 321 and is not parallel to the first extension portion 321; the second hook portion 42 includes a second extension portion 421 having one end connected to the mounting plate 41 and the other end protruding out of the surface of the mounting plate 41, and a second hook edge portion 422 connected to the protruding end of the second extension portion 421 and not parallel to the second extension portion 421, and the first hook edge portions 322 are all lapped on the second hook edge portion 422. The first hook edge portion 322 includes an overlapping portion overlapping the second hook edge portion 422 and a free portion not overlapping the second hook edge portion 422, and this design is mainly for improving the convenience of detachment. In general, the first extending portion 321, the first hook edge portion 322, the second extending portion 421, and the second hook edge portion 422 are not necessarily straight plates, and may be curved plates.
Meanwhile, due to the structures of the first extending portion 321 and the second extending portion 421 protruding from the hook portion 31 and the second hook portion 42, a space is necessarily formed between the mounting plate 41 and the single plate 1, and this application utilizes this space, so that the length of the mounting plate 41 in the direction of the splicing edge is consistent with the length of the single plate 1 in the direction of the splicing edge, so that the insertion portion 5 into which the receiving portion 21 is inserted is formed between the end of the single plate 1 in the direction of the splicing edge and the end of the mounting plate 41 in the direction of the splicing edge. The ceiling board can be attached by inserting the receiving portion 21 into the insertion portion 5. The installation of the ceiling tile is smooth as long as the mounting brackets 2 of the opposite side walls are maintained at the same level when the mounting brackets 2 are installed. Meanwhile, the lengths and angles of the first and second extending portions 321 and 421 are controlled to control the distance between the single board 1 and the mounting board 41, so that the inserting portion 5 can be more adapted to the receiving portion 21.
In the first hook 32, an end of the first extension 321 may be connected to an end of the connection portion 31, or may be connected to a flat portion of the connection portion 31. In this embodiment, if the first extending portion 321 is connected to the connecting portion 31, in order to improve the connection stability, the connecting portion 31 is bound to the first extending portion 321, and both side portions thereof are necessarily connected to the single board 1 by the fixing nails, otherwise there is a problem of unbalanced force, so that the first extending portion 321 and the connecting portion 31 are connected at the ends in order to avoid unbalanced force and reduce the use of the fixing nails. The included angle between the first extending portion 321 and the connecting portion 31 can be any angle, but an acute angle or an obtuse angle can cause a part of the force to be dispersed in the horizontal direction, so that the connecting force in the vertical direction is reduced, and therefore, the included angle between the first extending portion 321 and the connecting portion 31 is a right angle, that is, the first extending portions 321 are perpendicular to the single board 1.
Similarly, the other end of the first extending portion 321 may be connected to the end of the first hook edge portion 322 or the plate surface of the first hook edge portion 322, and an included angle smaller than 180 ° between the first extending portion 321 and the first hook edge portion 322 forms a fastening hook groove for fastening. In this embodiment, if the plate surfaces of the first extending portion 321 and the first hook edge portion 322 are connected, two engaging hook grooves are formed, but only one engaging hook groove engages with the second hook portion 42, and the self-gravity of the first hook edge portion 322 in the other direction may adversely affect the connection stability, so that the end portions of the first extending portion 321 and the first hook edge portion 322 are connected. Meanwhile, in the first hook portion 32, the first hook edge portion 322 may be on the same side of the first extension portion 321 as the connection portion 31, or may be on a different side of the first extension portion 321. However, if the first hook edge portion 322 is on the same side of the first extension portion 321 as the connecting portion 31, the upward urging direction of the third member 4 to the entire sub-member 3 and the connecting direction of the staple are almost on the same vertical line, which is more likely to cause the staple to fall off than if the first hook edge portion 322 and the connecting portion 31 were provided on different sides. Therefore, in the present embodiment, the first hook edge portion 322 and the connecting portion 31 of the first hook portion 32 are respectively on both sides of the first extension portion 321. The included angle between the first extending portion 321 of the first hook portion 32 and the first hook edge portion 322 may be any angle, but considering that the second hook portions 42 at the two ends of the mounting plate 41 are respectively engaged with the first hook portion 32, the inclined angle may cause one end to be engaged and the other end to be difficult to engage, and therefore, the first extending portion 321 and the first hook edge portion 322 are also at a right angle, that is, on the basis that the first extending portion 321 is perpendicular to the single plate 1, the first hook edge portion 322 is parallel to the single plate 1.
The second hook portions 42 are arranged substantially in the same manner as the first hook portions 32, and the second extension portions 421 are perpendicular to the mounting plate 41 in order to prevent the force from being dispersed to a part in the horizontal direction; the second hook edge portion 422 is parallel to the attachment plate 41 and also parallel to the single plate 1 for engagement with the first hook portion 32.
Unlike the first hook 32, one end of the second extension 421 is connected to the plate surface of the mounting plate 41, and serves as a part of the second hook 42 and a rib of the mounting plate 41 to prevent the mounting plate 41 from being bent. On this basis, the other end of the second extension 421 is connected to the end of the second hook edge 422. At this time, the second hook edge portion 422 may be closer to the center of the mounting plate 41 than the second extension portion 421, or may be farther from the center of the mounting plate 41 than the second extension portion 421. The latter arrangement is employed in this embodiment.
Accordingly, the installation method of the ceiling connection member includes the steps of:
a. mounting frames 2 are mounted at the positions of the elastic lines of the wall surface;
b. mounting the first member group and the second member group to the single board 1;
c. assembling the single boards 1 together by the third member 4 to form a ceiling tile whole;
d. the ceiling plate is lifted as a whole and hung on the receiving portion 21 of the mounting bracket 2 through the insertion portion 5.
The above-described embodiments can be implemented individually or in various combinations, and such variations are within the scope of the present invention.
It should be noted that, in the description of the present application, it should be noted that the terms "upper end", "lower end" and "bottom end" indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the drawings or the orientation or positional relationship which the product of the application is usually placed in when the product of the application is used, and are only for convenience of describing the present application and simplifying the description, but do not indicate or imply that the device referred to must have a specific orientation, be constructed in a specific orientation and be operated, and thus, should not be construed as limiting the present application. 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.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (8)

1. The utility model provides a furred ceiling connecting elements for in installing the no fossil fragments formula furred ceiling structure of mounting bracket (2) that lateral part wall body set up by the furred ceiling board that a plurality of monolithic boards (1) splice formed, mounting bracket (2) include with lateral part wall body vertically accept portion (21), its characterized in that: the split type single-plate combined type wall body comprises a first component group arranged on one single plate (1), a second component group arranged on the adjacent single plate (1) and a third component (4) used for connecting the first component group and the second component group together, wherein each of the first component group and the second component group comprises a plurality of sub-components (3) arranged along the splicing edge of the single plate (1) used for being spliced with the adjacent single plate (1), and each sub-component (3) comprises a connecting part (31) connected with the single plate (1) and a first hook part (32) arranged on the connecting part (31); the third component (4) comprises a mounting plate (41) parallel to the single plate (1), and at least two second hook parts (42) which are arranged on the mounting plate (41) and are axisymmetrically arranged by taking the central axis of the mounting plate (41) as an axis; all the first hook parts (32) of the first component group are clamped with one second hook part (42), and all the first hook parts (32) of the second component group are clamped with the other second hook part (42); the length of the mounting plate (41) along the splicing edge direction is consistent with that of the single plate (1) along the splicing edge direction, so that an insertion part (5) for inserting the bearing part (21) is formed between the end part of the single plate (1) along the splicing edge direction and the end part of the mounting plate (41) along the splicing edge direction.
2. A ceiling connecting member according to claim 1, wherein: the first hook part (32) comprises a first extension part (321) and a first hook edge part (322), wherein one end of the first extension part is connected with the connecting part (31), and the other end of the first extension part protrudes out of the plate surface of the single plate (1), and the first hook edge part is connected with the protruding end of the first extension part (321) and is not parallel to the first extension part (321); the second hook part (42) comprises a second extending part (421) with one end connected with the mounting plate (41) and the other end protruding out of the surface of the mounting plate (41), and a second hook edge part (422) which is connected with the protruding end of the second extending part (421) and is not parallel to the second extending part (421), and the first hook edge part (322) is overlapped on the second hook edge part (422).
3. A ceiling connecting member according to claim 2, wherein: the first hook edge portion (322) includes a lap portion that laps over the second hook edge portion (422) and a free portion that is not laps over the second hook edge portion (422).
4. A ceiling connecting member according to claim 2, wherein: the first extension portions (321) are perpendicular to the single plate (1).
5. A ceiling connecting member according to claim 2, wherein: the second extensions (421) are each perpendicular to the mounting plate (41).
6. A ceiling connecting member according to claim 2, wherein: the first hook edge portion (322) and the second hook edge portion (422) are both parallel to the single board (1).
7. A ceiling connecting member according to claim 1, wherein: the clamping device also comprises a buckling structure used for detachably connecting the adjacent single plates (1).
8. A ceiling connecting member according to claim 7, wherein: the buckling structure comprises grooves respectively arranged on the side surfaces of the splicing edges of the single plates (1) and a plug connector (6) of which two ends are respectively provided with a lug which can be inserted into the grooves.
CN202022182402.1U 2020-09-29 2020-09-29 Suspended ceiling connecting component Withdrawn - After Issue CN212427740U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022182402.1U CN212427740U (en) 2020-09-29 2020-09-29 Suspended ceiling connecting component

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022182402.1U CN212427740U (en) 2020-09-29 2020-09-29 Suspended ceiling connecting component

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112049310A (en) * 2020-09-29 2020-12-08 浙江亚厦装饰股份有限公司 Ceiling connecting component and mounting method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112049310A (en) * 2020-09-29 2020-12-08 浙江亚厦装饰股份有限公司 Ceiling connecting component and mounting method
CN112049310B (en) * 2020-09-29 2024-09-06 浙江亚厦装饰股份有限公司 Suspended ceiling connecting component and installation method

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