CN220747395U - Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure - Google Patents

Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure Download PDF

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Publication number
CN220747395U
CN220747395U CN202322311405.4U CN202322311405U CN220747395U CN 220747395 U CN220747395 U CN 220747395U CN 202322311405 U CN202322311405 U CN 202322311405U CN 220747395 U CN220747395 U CN 220747395U
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China
Prior art keywords
suspender
aluminum plate
honeycomb aluminum
node structure
keel
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CN202322311405.4U
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Chinese (zh)
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罗帅
李平
胡凌
葛一帆
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Wuhan Construction Engineering Huada Architectural Decoration Design Engineering Co ltd
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Wuhan Construction Engineering Huada Architectural Decoration Design Engineering Co ltd
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Abstract

The utility model relates to a connecting node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling, which is used for being arranged on the roof of a spherical net rack and connected with the curved honeycomb aluminum plate through a conversion layer, wherein the connecting node structure comprises a first suspender and a second suspender; one end of the second suspender is connected with the longitudinal keel, the other end of the second suspender is connected with the installation keel, and the curved honeycomb aluminum plate is arranged on the installation keel. The utility model can adjust and adapt to the space change of the continuous curved surface by adopting the conversion layer, and utilizes the net structure formed by the total transverse keels and the longitudinal keels, and the construction error caused by inaccurate positions of the lower chord ball nodes of the steel mesh frame can be effectively eliminated by combining the first suspender and the second suspender, and meanwhile, the space change of the light steel keels along with the continuous curved surface is satisfied.

Description

Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure
Technical Field
The utility model relates to the technical field of building decoration, in particular to a connecting node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling.
Background
For a long time, the principle of pursuing practicality, safety, economy and beauty in architectural decoration engineering design is carried out, and along with the development of national economy, the special works of decoration become carriers reflecting the social and economic technological level and cultural idea of an era. Meanwhile, the metal suspended ceiling mode with the ultra-large ultra-high space has larger lifting difficulty and quality requirements with a common suspended ceiling.
The proportion of construction cost that curved surface honeycomb aluminum plate furred ceiling engineering accounts for is very big for whole decoration engineering, and the construction error that the inaccurate position that causes of traditional steel rack lower chord ball node is difficult to satisfy the light gauge steel simultaneously along with the change in continuous curved surface space, leads to the effect after the hoist and mount of curved surface honeycomb aluminum plate poor, and in order to guarantee its hoist and mount effect, often needs to adjust, causes the construction progress slow.
Disclosure of Invention
The utility model provides a connecting node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling, which aims to solve the problems of low installation efficiency and poor hoisting effect of the connection of the traditional curved honeycomb aluminum plate and the suspended ceiling.
According to one aspect of the utility model, a connecting node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling is provided, wherein the connecting node structure is used for being arranged on the roof of a spherical net rack and connected with the curved honeycomb aluminum plate through a conversion layer, the connecting node structure comprises a first suspender and a second suspender, a lower chord bolt ball of the spherical net rack is connected with an anchor ear L-shaped adapter through a bolt, the conversion layer is formed by a longitudinal keel and a transverse keel frame, one end of the first suspender is connected with the anchor ear L-shaped adapter, and the other end of the first suspender is connected with the transverse keel; one end of the second suspender is connected with the longitudinal keel, the other end of the second suspender is connected with the installation keel, and the curved honeycomb aluminum plate is arranged on the installation keel.
On the basis of the scheme, preferably, a hanging piece is arranged on the installation keel, and the curved honeycomb aluminum plate is arranged on the installation keel through the hanging piece.
On the basis of the scheme, preferably, the first suspender and the second suspender are full-thread screw rods.
On the basis of the scheme, preferably, the transverse keels are connected through connecting plates, and the end parts of the first suspenders are connected with the connecting plates.
On the basis of the scheme, the connecting plate is preferably galvanized channel steel.
On the basis of the scheme, preferably, the anchor ear L-shaped adapter comprises a connector in a concave shape, a adapter tube and a baffle plate, wherein the adapter tube is fixed on the connector, the baffle plate is welded at the end part of the adapter tube, the bottom of the connector is fixed on the lower chord bolt ball through a bolt, and one end of the first suspender is penetrated on the baffle plate and is locked and fixed on the connector through the bolt.
According to the connecting node structure of the large-span space curved surface honeycomb aluminum plate and the suspended ceiling, the space change of the adapting continuous curved surface can be adjusted by adopting the conversion layer, and the net structure formed by the total transverse keels and the longitudinal keels is utilized, so that the construction error caused by inaccurate positions of the lower chord ball nodes of the steel grid frame can be effectively eliminated by combining the first suspender and the second suspender, and meanwhile, the change of the light steel keels along with the space change of the continuous curved surface is met.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed for the description of 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 utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art. In the drawings:
FIG. 1 is a schematic structural view of a connection node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling of the utility model;
FIG. 2 is a partial view of the structure of the connection node between the large-span space curved honeycomb aluminum plate and the suspended ceiling of the utility model;
reference numerals illustrate:
the device comprises a spherical net rack 1, a lower chord bolt ball 11, a longitudinal keel 21, a transverse keel 22, a curved honeycomb aluminum plate 3, a first suspender 4, a second suspender 5, a hoop L-shaped adapter 6, an installation keel 7, a hanger 71, a curved honeycomb aluminum plate 8, a connecting plate 9, a connector 10, an adapter 13 and a baffle 12.
Detailed Description
The following describes in further detail the embodiments of the present utility model with reference to the drawings and examples. The following examples are illustrative of the utility model and are not intended to limit the scope of the utility model.
It should be understood that the terms "comprises" and/or "comprising," when used in this specification and the appended claims, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
For the sake of simplicity of the drawing, the parts relevant to the present utility model are shown only schematically in the figures, which do not represent the actual structure thereof as a product. Additionally, in order to simplify the drawing for ease of understanding, components having the same structure or function in some of the drawings are shown schematically with only one of them, or only one of them is labeled. Herein, "a" means not only "only this one" but also "more than one" case.
It should be further understood that the term "and/or" as used in this specification and the appended claims refers to any and all possible combinations of one or more of the associated listed items, and includes such combinations.
In the embodiment shown in the drawings, indications of orientation (such as up, down, left, right, front and rear) are used to explain the structure and movement of the various components of the utility model are not absolute but relative. These descriptions are appropriate when the components are in the positions shown in the drawings. If the description of the location of these components changes, then the indication of these directions changes accordingly.
In addition, in the description of the present application, the terms "first," "second," and the like are used merely to distinguish between descriptions and are not to be construed as indicating or implying relative importance.
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the following description will explain the specific embodiments of the present utility model with reference to the accompanying drawings. It is evident that the drawings in the following description are only examples of the utility model, from which other drawings and other embodiments can be obtained by a person skilled in the art without inventive effort.
Referring to fig. 1, in combination with fig. 2, the connection node structure of the large-span space curved honeycomb aluminum plate 83 and the suspended ceiling of the present utility model is used for being installed on the roof of a spherical net rack to connect the curved honeycomb aluminum plate 83 through a conversion layer, the specific connection node structure comprises a first suspender 4 and a second suspender 5, a lower chord bolt ball 11 of the spherical net rack is connected with a hoop L-shaped adaptor 6 through a bolt, the conversion layer is formed by constructing a longitudinal keel 21 and a transverse keel 22, the longitudinal keel 21 and the transverse keel 22 are staggered, and when the length of the transverse keel 22 and the longitudinal keel 21 is insufficient, the connection plate 9 is preferably a galvanized steel channel, and both ends of the galvanized steel channel are respectively connected with the keels through bolts, so as to achieve the purpose of extending the length thereof.
One end of a first suspender 4 is connected with an anchor ear L-shaped adapter 6, and the other end of the first suspender 4 is connected with a transverse keel 22, and the fact that a plurality of first suspenders 4 are needed to realize the connection of a spherical net rack and an adapter layer; and a power supply of the second suspender 5 is connected with the longitudinal keel 21, and a curved honeycomb aluminum plate 83 with a mounting keel 7 connected with the other end of the second suspender 5 is arranged on the mounting keel 7.
According to the connecting node structure of the large-span space curved surface honeycomb aluminum plate 83 and the suspended ceiling, the bottom of the spherical grid structure is connected with the conversion layer formed by combining the longitudinal keels 21 and the transverse keels 22 through the first suspenders 4, errors caused by installation can be adjusted or compensated through the first suspenders 4, meanwhile, the installation keels 7 are installed on the conversion layer through the second suspenders 5, fine adjustment of the installation keels 7 can be achieved through the second suspenders 5, and the connecting node structure is convenient and quick to use.
The construction technology application of the spherical grid 1 adopting the light steel joists and the conversion layers solves the problem that a large-area curved aluminum plate keeps the design and construction technology of a curved aluminum slat suspended ceiling in a continuous structure through a simple and effective construction method.
Preferably, the hanging piece 71 is arranged on the installation keel 7, the curved honeycomb aluminum plate 83 is arranged on the installation keel 7 through the hanging piece 71, and the first hanging rod 4 and the second hanging rod 5 are full-thread screw rods.
Specifically, the anchor ear L-shaped adapting piece 6 comprises a connector 10 in a concave shape, an adapting tube 13 and a baffle plate 12, wherein the adapting tube 13 and the baffle plate 12 are fixed on the connector 10, the baffle plate 12 is welded on the end part of the adapting tube 13, the bottom of the connector 10 is fixed on the lower chord bolt ball 11 through bolts, one end of the first suspender 4 is penetrated on the baffle plate 12 and is fixed on the connecting tube through bolt locking, so that the anchor ear L-shaped adapting piece 6 and the lower chord bolt ball 11 are combined quickly, and the anchor ear L-shaped adapting piece is convenient and quick to install.
According to the connection node structure of the large-span space curved honeycomb aluminum plate 83 and the suspended ceiling, the space change of the adapting continuous curved surface can be adjusted by adopting the conversion layer, and the construction error caused by the inaccurate position of the steel grid lower chord ball node can be effectively eliminated by combining the first suspender 4 and the second suspender 5 by utilizing the net structure formed by the total transverse keels 22 and the longitudinal keels 21, so that the change of the light steel keels along with the space change of the continuous curved surface is met.
Finally, the methods of the present application are only preferred embodiments and are not intended to limit the scope of the utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (6)

1. The connecting node structure is characterized by comprising a first suspender and a second suspender, wherein the lower chord bolt ball of the spherical net rack is connected with an anchor ear L-shaped adapter through bolts, the conversion layer is formed by a longitudinal keel and a transverse keel frame, one end of the first suspender is connected with the anchor ear L-shaped adapter, and the other end of the first suspender is connected with the transverse keel; one end of the second suspender is connected with the longitudinal keel, the other end of the second suspender is connected with the installation keel, and the curved honeycomb aluminum plate is arranged on the installation keel.
2. The connection node structure of a large-span space curved honeycomb aluminum plate and a suspended ceiling of claim 1, wherein a hanging piece is arranged on the installation keel, and the curved honeycomb aluminum plate is arranged on the installation keel through the hanging piece.
3. The large span space curved honeycomb aluminum plate and ceiling connection node structure of claim 1, wherein the first and second hanger rods are full threaded screw rods.
4. The large span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure of claim 1, wherein the transverse keels are connected by a connecting plate, and the end of the first suspender is connected with the connecting plate.
5. The large span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure of claim 4, wherein the connection plate is a galvanized channel steel.
6. The connection node structure of the large-span space curved surface honeycomb aluminum plate and the suspended ceiling according to claim 4, wherein the anchor ear L-shaped adapter comprises a concave connector, a transfer tube and a baffle plate, wherein the transfer tube is fixed on the connector, the baffle plate is welded at the end part of the transfer tube, the bottom of the connector is fixed on the lower chord bolt ball through a bolt, and one end of the first suspender is penetrated on the baffle plate and is fixed on the transfer tube through the bolt locking.
CN202322311405.4U 2023-08-28 2023-08-28 Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure Active CN220747395U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322311405.4U CN220747395U (en) 2023-08-28 2023-08-28 Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322311405.4U CN220747395U (en) 2023-08-28 2023-08-28 Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure

Publications (1)

Publication Number Publication Date
CN220747395U true CN220747395U (en) 2024-04-09

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ID=90552105

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322311405.4U Active CN220747395U (en) 2023-08-28 2023-08-28 Large-span space curved surface honeycomb aluminum plate and suspended ceiling connection node structure

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CN (1) CN220747395U (en)

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