CN220870715U - Top plate lamp strip structure - Google Patents
Top plate lamp strip structure Download PDFInfo
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- CN220870715U CN220870715U CN202322881111.5U CN202322881111U CN220870715U CN 220870715 U CN220870715 U CN 220870715U CN 202322881111 U CN202322881111 U CN 202322881111U CN 220870715 U CN220870715 U CN 220870715U
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Abstract
A roof lamp strip structure comprises a keel framework, a suspended roof and a lamp strip; the keel framework comprises a longitudinal keel and a transverse keel; the transverse keels are connected with the longitudinal keels through the switching keels; the keel framework is provided with a strip-shaped groove; the suspended ceiling plate is arranged below the keel framework, and a mounting groove is formed in the strip-shaped groove; the internal corner positions of the suspended ceiling plates are respectively provided with a shaping plate; the lamp strip is a soft lamp strip and is arranged in the mounting groove; limiting clamping strips are respectively arranged on two sides of the bottom of the mounting groove; a group of upper light-transmitting plates are arranged in the upper groove of the limiting clamping strip, and a group of lower light-transmitting plates are arranged in the lower groove of the limiting clamping strip; the group of upper light-transmitting plates and the group of lower light-transmitting plates are arranged in a staggered manner; the upper light-transmitting plate and the lower light-transmitting plate are connected by magnetic attraction. The utility model solves the technical problems that the conventional ceiling lamp strip structure is very difficult to maintain in daily life and the conventional ceiling lamp is complicated to operate, install and work such as reserving a power supply and opening holes for fixing and installing.
Description
Technical Field
The utility model belongs to the technical field of constructional engineering, and particularly relates to a roof lamp strip structure.
Background
The specific design and style of ceiling lights depends on the individual needs and the style of the finish. They can be used in various situations such as houses, businesses, offices, etc., and provide lighting and decorative effects. Conventional ceiling lamps typically have a mounting groove reserved in the ceiling, the lamp is mounted in the mounting groove, and then a light-transmitting shielding plate is disposed at the bottom of the mounting groove, so that the entire ceiling structure has a neat appearance. Such a ceiling light structure has the following drawbacks.
1. Since the conventional shield is integral, it is difficult to maintain the conventional shield in a routine connection with the ceiling tile. If the lamp fails, the lamp needs to be replaced, and the whole shielding plate needs to be removed, the time and the labor are wasted.
2. The traditional ceiling lamp needs to be fixedly installed, power supply reservation, tapping and other operations are needed, and installation work is complex.
Disclosure of utility model
The utility model aims to provide a top plate lamp strip structure, which aims to solve the technical problems that the conventional top plate lamp strip structure is very difficult to maintain daily and the operation and installation work such as reserving a power supply, perforating and the like are complicated when the conventional ceiling lamp is fixedly installed.
In order to achieve the above purpose, the present utility model adopts the following technical scheme.
A roof lamp strip structure is arranged at the top of an indoor space and comprises a keel framework, a ceiling board and a lamp strip; the keel framework comprises a longitudinal keel and a transverse keel; the longitudinal keels are arranged at the bottom of the floor slab along the transverse interval; a group of transverse keels are arranged between every two adjacent longitudinal keels at intervals in the longitudinal direction, and the distance between the transverse keels and the floor slab is larger than the distance between the longitudinal keels and the floor slab; two ends of the transverse keels are respectively connected with the longitudinal keels on two sides through the switching keels; the switching keels are in an inverted L shape, and the transverse edge ends of the switching keels are connected with the longitudinal keels; a strip-shaped groove is formed in the keel frame at a position corresponding to the longitudinal keel; the suspended ceiling plate is arranged below the keel framework, and is inwards recessed at the strip-shaped groove to form a mounting groove; stiffening plates are arranged on the inner side surface of the suspended ceiling plate at intervals along the longitudinal direction; the stiffening plate is connected with the keel framework through the connecting component; the internal corner positions of the suspended ceiling plates are respectively provided with a shaping plate; the shaping plate is strip-shaped, and the cross section of the shaping plate is L-shaped; the vertical edges and the horizontal edges of the shaping plate are respectively stuck to the side surfaces of the two sides of the internal corner; the lamp strip is a soft lamp strip and is arranged in the mounting groove; limiting clamping strips are respectively arranged on two sides of the bottom of the mounting groove; the cross section of the limiting clamping strip is E-shaped, a group of upper light-transmitting plates are arranged in the upper groove of the limiting clamping strip, and a group of lower light-transmitting plates are arranged in the lower groove of the limiting clamping strip; the group of upper light-transmitting plates and the group of lower light-transmitting plates are arranged in a staggered manner, and the notch of the whole mounting groove is covered; the upper light-transmitting plate and the lower light-transmitting plate are connected through magnetic attraction.
Preferably, the connecting assembly comprises a first connecting plate, a first bolt and a first screw; the longitudinal section of the first connecting plate is in an inverted U shape, vertical edges at two sides of the first connecting plate are respectively clamped at two sides of the stiffening plate, and the transverse edges of the first connecting plate are attached to the bottom of the keel frame; the first bolts fix the vertical edges at two sides of the first connecting plate with the stiffening plate; the first screw fixes the transverse edge of the first connecting plate with the keel frame, and a first gasket is arranged between the transverse edge of the first connecting plate and the keel frame in a cushioning mode.
Preferably, the longitudinal keel is connected with the floor slab through a first hanging piece; the transverse keels are connected with the floor slab through second hanging pieces.
Preferably, the bottom of the longitudinal keel is provided with a second connecting plate along the longitudinal through length; the cross section of the second connecting plate is in an inverted U shape; the suspended ceiling plate is formed by splicing a group of suspended ceiling plate units, and longitudinal seams of adjacent suspended ceiling plate units are correspondingly arranged with longitudinal keels at the strip-shaped grooves; the side edges of the suspended ceiling plates at the two sides of the longitudinal joint are respectively bent inwards to form inserting edges; the inserting edge is correspondingly inserted in a groove of the second connecting plate, and the inserting edge is connected with the second connecting plate through a third bolt; the longitudinal joint is filled with foam bars and sealant.
Preferably, stainless steel bars are respectively arranged at the bottom of the upper light-transmitting plate along the front side and the rear side; the top of the lower light-transmitting plate is provided with magnetic strips along the front side and the rear side respectively; the upper light-transmitting plate and the lower light-transmitting plate are connected with the magnetic stripe through stainless steel bars in a magnetic attraction mode.
Preferably, a second gasket is arranged between the bottom of the upper light-transmitting plate and the bottom of the upper groove of the limit clamping strip; a third gasket is arranged between the bottom of the lower light-transmitting plate and the bottom of the lower groove of the limiting clamping strip.
Compared with the prior art, the utility model has the following characteristics and beneficial effects.
1. In the embodiment, the shaping plate is arranged on the suspended ceiling plate and positioned at the internal corner, and the vertical edges and the horizontal edges of the shaping plate are respectively attached to the side surfaces of the two sides of the internal corner, so that the stability of the suspended ceiling plate is improved, and the suspended ceiling plate at the two sides of the installation groove is prevented from deforming; in addition, the keel frames are arranged around the mounting grooves, so that the possibility of deformation of the suspended ceiling plate at the mounting groove is further reduced.
2. The roof lamp strip structure is convenient to maintain: when the lamp strip in the mounting groove breaks down or needs to be replaced, the part needing to be replaced can be replaced only by sliding the lower light-transmitting plate or the upper light-transmitting plate, and a large amount of disassembly and assembly are not needed, so that time and labor are wasted, and the disassembly-free work during maintenance avoids damaging decoration materials such as a suspended ceiling and a top plate.
3. The lamp strip provided by the utility model adopts the soft lamp strip, and the soft lamp strip can be directly installed by using glue or patches and the like, so that the lamp strip is simpler and more convenient, the operations of reserving a power supply, perforating and the like on a suspended ceiling are avoided, and the installation work is simple.
Drawings
The utility model is described in further detail below with reference to the accompanying drawings.
Fig. 1 is a schematic view of the overall structure of the ceiling lamp band structure of the present utility model.
Fig. 2 is a schematic diagram of a connection structure between a lower light-transmitting plate and an upper light-transmitting plate in the present utility model.
Fig. 3 is a schematic structural view of the lower light-transmitting plate and the upper light-transmitting plate mounted on the limiting clamping strip in the present utility model.
Reference numerals: 1-keel frame, 1.1-longitudinal keels, 1.2-transverse keels, 1.3-transfer keels, 2-ceiling tile, 2.1-insert edge, 3-light strip, 4-bar slot, 5-connection assembly, 5.1-first connection plate, 5.2-first bolt, 5.3-first screw, 6-stiffener, 7-mounting slot, 8-profiled plate, 9-limit clip strip, 10-lower light-transmitting plate, 11-upper light-transmitting plate, 12-first spacer, 13-first hanger, 14-second hanger, 15-second connection plate, 16-third bolt, 17-foam rod, 18-sealant, 19-stainless steel bar, 20-magnetic strip, 21-second spacer, 22-third spacer.
Detailed Description
As shown in fig. 1-3, the ceiling lamp strip structure is arranged at the top of an indoor space and comprises a keel frame 1, a ceiling board 2 and a lamp strip 3; the keel frame 1 comprises a longitudinal keel 1.1 and a transverse keel 1.2; the longitudinal keels 1.1 are arranged at the bottom of the floor slab along the transverse interval; a group of transverse keels 1.2 are arranged between every two adjacent longitudinal keels 1.1 at intervals in the longitudinal direction, and the distance between the transverse keels 1.2 and the floor slab is larger than the distance between the longitudinal keels 1.1 and the floor slab; two ends of the transverse keels 1.2 are respectively connected with the longitudinal keels 1.1 at two sides through the switching keels 1.3; the transfer keel 1.3 is in an inverted L shape, and the transverse edge end part of the transfer keel 1.3 is connected with the longitudinal keel 1.1; a strip-shaped groove 4 is formed in the keel frame 1 at a position corresponding to the longitudinal keel 1.1; the suspended ceiling plate 2 is arranged below the keel frame 1, and the suspended ceiling plate 2 is inwards recessed at the strip-shaped groove 4 to form an installation groove 7; the suspended ceiling plate 2 is made of an aluminum plate; stiffening plates 6 are arranged on the inner side surface of the suspended ceiling plate 2 at intervals along the longitudinal direction; the stiffening plate 6 is connected with the keel frame 1 through the connecting component 5; the internal corner positions of the suspended ceiling plates 2 are respectively provided with a shaping plate 8; the shaping plate 8 is strip-shaped, and the cross section of the shaping plate 8 is L-shaped; the vertical edges and the horizontal edges of the shaping plate 8 are respectively stuck to the side surfaces of the two sides of the internal corner; the lamp strip 3 is a soft lamp strip and is arranged in the mounting groove 7; limiting clamping strips 9 are respectively arranged on two sides of the bottom of the mounting groove 7; the cross section of the limiting clamping strip 9 is E-shaped, a group of upper light-transmitting plates 11 are arranged in the upper groove of the limiting clamping strip 9, and a group of lower light-transmitting plates 10 are arranged in the lower groove of the limiting clamping strip 9; the group of upper light-transmitting plates 11 and the group of lower light-transmitting plates 10 are arranged in a staggered manner, and the notch of the whole mounting groove 7 is covered; the upper light-transmitting plate 11 is magnetically connected with the lower light-transmitting plate 10.
In this embodiment, the connecting assembly 5 includes a first connecting plate 5.1, a first bolt 5.2 and a first screw 5.3; the longitudinal section of the first connecting plate 5.1 is in an inverted U shape, vertical edges at two sides of the first connecting plate 5.1 are respectively clamped at two sides of the stiffening plate 6, and transverse edges of the first connecting plate 5.1 are attached to the bottom of the keel frame 1; the first bolts 5.2 fix the vertical edges at the two sides of the first connecting plate 5.1 with the stiffening plate 6; the first screw 5.3 fixes the transverse edge of the first connecting plate 5.1 with the keel frame 1, and a first gasket 12 is arranged between the transverse edge of the first connecting plate 5.1 and the keel frame 1 in a cushioning manner.
In this embodiment, the longitudinal keel 1.1 is connected to the floor slab by a first hanger 13; the transverse keel 1.2 is connected with the floor slab through a second hanging piece 14; the first and second hangers 13, 14 each comprise a boom.
In this embodiment, a second connecting plate 15 is disposed at the bottom of the longitudinal keel 1.1 along the longitudinal through length; the cross section of the second connecting plate 15 is in an inverted U shape; the suspended ceiling plate 2 is formed by splicing a group of suspended ceiling plate units, and longitudinal seams of adjacent suspended ceiling plate units are correspondingly arranged with longitudinal keels 1.1 at the strip-shaped grooves 4; the side edges of the suspended ceiling plates 2 at the two sides of the longitudinal joint are respectively bent inwards to form inserting edges 2.1; the inserting edge 2.1 is correspondingly inserted into a groove of the second connecting plate 15, and the inserting edge 2.1 is connected with the second connecting plate 15 through a third bolt 16; the longitudinal slits are filled with foam bars 17 and sealant 18.
In this embodiment, stainless steel bars 19 are respectively disposed at the bottom of the upper transparent plate 11 along the front and rear sides; the top of the lower transparent plate 10 is provided with magnetic strips 20 along the front and rear sides respectively; the upper light-transmitting plate 11 and the lower light-transmitting plate 10 are magnetically connected with the magnetic stripe 20 through stainless steel bars 19.
In this embodiment, a second gasket 21 is disposed between the bottom of the upper transparent plate 11 and the bottom of the upper groove of the limit clamping strip 9; a third gasket 22 is arranged between the bottom of the lower light-transmitting plate 10 and the bottom of the lower groove of the limiting clamping strip 9.
In the embodiment, the longitudinal keels 1.1 and the transverse keels 1.2 are made of rectangular steel pipes; the transfer keel 1.3 is formed by welding two sections of rectangular steel pipes.
In this embodiment, the depth of the mounting groove 7 is 80mm to 120, and the width of the mounting groove 7 is 120 mm to 150mm.
In this embodiment, the width of the notch of the second connecting plate 15 is not less than 12mm.
In this embodiment, the lamp strip 3 has two lamp strips, which are arranged in the mounting groove 7 at intervals in the lateral direction.
In this embodiment, the cross runners 1.2 are connected to the floor slab by means of second suspension elements 14.
The above embodiments are not exhaustive of the specific embodiments, and other embodiments are possible, and the above embodiments are intended to illustrate the present utility model, not to limit the scope of the present utility model, and all applications that come from simple variations of the present utility model fall within the scope of the present utility model.
Claims (6)
1. The ceiling lamp strip structure is arranged at the top of an indoor space and comprises a keel framework (1), a ceiling board (2) and a lamp strip (3); the method is characterized in that: the keel framework (1) comprises a longitudinal keel (1.1) and a transverse keel (1.2); the longitudinal keels (1.1) are arranged at the bottom of the floor slab at intervals along the transverse direction; the transverse keels (1.2) are arranged between every two adjacent longitudinal keels (1.1) at intervals in the longitudinal direction, and the distance between the transverse keels (1.2) and the floor slab is larger than the distance between the longitudinal keels (1.1) and the floor slab; two ends of the transverse keels (1.2) are respectively connected with the longitudinal keels (1.1) at two sides through the switching keels (1.3); the transfer keel (1.3) is in an inverted L shape, and the end part of the transverse edge of the transfer keel (1.3) is connected with the longitudinal keel (1.1); a strip-shaped groove (4) is formed in the keel framework (1) at a position corresponding to the longitudinal keel (1.1); the suspended ceiling plate (2) is arranged below the keel frame (1), and the suspended ceiling plate (2) is inwards recessed at the strip-shaped groove (4) to form a mounting groove (7); stiffening plates (6) are arranged on the inner side surface of the suspended ceiling plate (2) at intervals along the longitudinal direction; the stiffening plate (6) is connected with the keel frame (1) through the connecting component (5); the internal corner positions of the suspended ceiling plates (2) are respectively provided with a shaping plate (8); the shaping plate (8) is in a strip shape, and the cross section of the shaping plate (8) is L-shaped; the vertical edge and the horizontal edge of the shaping plate (8) are respectively stuck to the side surfaces of the two sides of the internal corner; the lamp strip (3) is a soft lamp strip and is arranged in the mounting groove (7); limiting clamping strips (9) are respectively arranged on two sides of the bottom of the mounting groove (7); the cross section of the limiting clamping strip (9) is E-shaped, a group of upper light-transmitting plates (11) are arranged in the upper groove of the limiting clamping strip (9), and a group of lower light-transmitting plates (10) are arranged in the lower groove of the limiting clamping strip (9); the group of upper light-transmitting plates (11) and the group of lower light-transmitting plates (10) are arranged in a staggered manner, and the notch of the whole mounting groove (7) is covered; the upper light-transmitting plate (11) is connected with the lower light-transmitting plate (10) through magnetic attraction.
2. The roof light strip structure of claim 1, wherein: the connecting assembly (5) comprises a first connecting plate (5.1), a first bolt (5.2) and a first screw (5.3); the longitudinal section of the first connecting plate (5.1) is in an inverted U shape, vertical edges at two sides of the first connecting plate (5.1) are respectively clamped at two sides of the stiffening plate (6), and the transverse edge of the first connecting plate (5.1) is attached to the bottom of the keel frame (1); the first bolts (5.2) fix the vertical edges at the two sides of the first connecting plate (5.1) with the stiffening plate (6); the first screw (5.3) fixes the transverse edge of the first connecting plate (5.1) with the keel frame (1), and a first gasket (12) is arranged between the transverse edge of the first connecting plate (5.1) and the keel frame (1) in a cushioning mode.
3. The roof light strip structure of claim 1, wherein: the longitudinal keel (1.1) is connected with the floor slab through a first hanging piece (13); the transverse keel (1.2) is connected with the floor slab through a second hanging piece (14).
4. The roof light strip structure of claim 1, wherein: the bottom of the longitudinal keel (1.1) is provided with a second connecting plate (15) along the longitudinal through length; the cross section of the second connecting plate (15) is in an inverted U shape; the suspended ceiling plate (2) is formed by splicing a group of suspended ceiling plate units, and longitudinal seams of adjacent suspended ceiling plate units are correspondingly arranged with longitudinal keels (1.1) at the positions of the strip-shaped grooves (4); the side edges of the suspended ceiling plates (2) at the two sides of the longitudinal joint are respectively bent inwards to form inserting edges (2.1); the inserting edge (2.1) is correspondingly inserted into a groove of the second connecting plate (15), and the inserting edge (2.1) is connected with the second connecting plate (15) through a third bolt (16); the longitudinal joint is filled with foam bars (17) and sealant (18).
5. The roof light strip structure of claim 1, wherein: stainless steel bars (19) are respectively arranged at the bottom of the upper light-transmitting plate (11) along the front side edge and the rear side edge; the top of the lower light-transmitting plate (10) is provided with magnetic strips (20) along the front side and the rear side respectively; the upper light-transmitting plate (11) and the lower light-transmitting plate (10) are connected with the magnetic strip (20) through stainless steel bars (19) in a magnetic attraction mode.
6. The roof light strip structure of claim 5, wherein: a second gasket (21) is arranged between the bottom of the upper light-transmitting plate (11) and the bottom of the upper groove of the limiting clamping strip (9); a third gasket (22) is arranged between the bottom of the lower light-transmitting plate (10) and the bottom of the lower groove of the limiting clamping strip (9).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322881111.5U CN220870715U (en) | 2023-10-26 | 2023-10-26 | Top plate lamp strip structure |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322881111.5U CN220870715U (en) | 2023-10-26 | 2023-10-26 | Top plate lamp strip structure |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN220870715U true CN220870715U (en) | 2024-04-30 |
Family
ID=90815627
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202322881111.5U Active CN220870715U (en) | 2023-10-26 | 2023-10-26 | Top plate lamp strip structure |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN220870715U (en) |
-
2023
- 2023-10-26 CN CN202322881111.5U patent/CN220870715U/en active Active
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