Honeycomb lamp set supporting multiple installation and combination modes

By designing a honeycomb lamp group that supports multiple installation combinations, the problems of inconvenient installation of existing honeycomb lamps and insufficient aesthetics of flat lampshades are solved, and a variety of installation forms and efficient lighting effects are achieved.

CN222950896UActive Publication Date: 2025-06-06SHENZHEN BENTUO ELECTRONICS TECH
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Patent Information

Application Number
CN202421953161.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-06-06
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

Existing honeycomb lamps are inconvenient to install after splicing, and different installation methods cannot be provided for different splicing combinations. At the same time, the flat lampshade has poor light concentration effect, insufficient aesthetics, and gaps are prone to occur during splicing.

Method used

A honeycomb lamp group that supports multiple installation combination methods is designed. Through the combination of two sets of relatively arranged profiles, profile connecting plates, luminous lamp plates, diffusion plates and honeycomb cover groups, a variety of installation forms of honeycomb lamps are realized, and the combination of lifting components and connectors is achieved to achieve stable installation of the honeycomb lamp group.

Benefits of technology

It realizes a variety of installation forms of honeycomb lamps, meets the needs of different splicing combinations, enhances the convenience and stability of installation, and improves the aesthetics and lighting effect of the honeycomb lamp group.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a honeycomb lamp group supporting multiple installation combination modes, which comprises at least one group of honeycomb lamps, each honeycomb lamp comprises two groups of oppositely arranged section bars and a section bar connecting plate for connecting the two groups of section bars, the left side and the right side of each section bar are connected through a plug, and a light-emitting lamp panel is arranged between the opposite surfaces of the section bars. A honeycomb cover set is arranged below the diffusion plate, a power source is arranged above the sectional material, the power source is connected with the sectional material through a power source installation plate, the power source supplies power to the lamp panel, and a sealing ring is arranged at the joint of the power source and a power source connection plate. The honeycomb lamp is installed and fixed through the connecting assembly. The honeycomb lamp is mounted through different shapes of the connecting pieces, different mounting forms of the honeycomb lamp are met, the honeycomb lamp is mounted through combination of the different connecting pieces during splicing, mounting is more convenient, meanwhile, the number of the hoisting assemblies is small enough, and mounting stability is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the field of honeycomb lamps, in particular to a honeycomb lamp group supporting multiple installation combination modes. Background Art

[0002] A chandelier is a traditional indoor decorative lighting lamp, which is used in homes, shopping malls and other occasions to play a decorative embellishment effect. Among the various types of chandeliers currently available, all are chandeliers of fixed specifications, models and styles and materials produced by specialized manufacturers. Their defects cannot meet the actual effect requirements of customers on site, cannot achieve the best effect in decorative embellishment, and are relatively expensive. Now, according to the actual needs of customers on site, a chandelier is designed that can have both decorative and lighting effects, with a strong three-dimensional sense, intuitive image, and highlight the overall decorative effect and product lighting effect. Existing lights often use flat lampshades, which have poor focusing effects when used and are not aesthetically pleasing. Flat lampshades are prone to leaving gaps when spliced, and the aesthetics of the splicing is insufficient; at the same time, the current honeycomb lamps are inconvenient to install after splicing, and cannot provide different installation methods for different splicing combinations.

[0003] Chinese patent announcement number CN208519622U discloses a hexagonal honeycomb chandelier, characterized in that it includes one chandelier module or more than one chandelier module spliced ​​together, each chandelier module includes a stainless steel shell with a U-shaped cross section, an acrylic panel is provided at the bottom of the inner side of the stainless steel shell, acrylic side strips are provided on both sides of the acrylic panel, a chevron plate is provided above the acrylic side strip, a rear bottom plate is provided above the chevron plate, an LED lamp is provided on the rear bottom plate relative to the bottom of the stainless steel shell, and a plurality of L-shaped bending parts are fixed above the rear bottom plate, and the top of each L-shaped bending part is connected to a hook fixed on the base layer through a steel wire rope. The utility model adopts the principle of acrylic luminous effect characteristics, and uses multiple luminous modules to form a three-dimensional geometric luminous figure, which has a strong three-dimensional sense and good visual effect. Although the patent records the honeycomb lamp, it cannot achieve continuous splicing in the splicing of the honeycomb lamp, and cannot meet the splicing use of the honeycomb lamp.

[0004] Chinese patent announcement number CN206890117U discloses a seamless splicing lamp structure, characterized in that the seamless splicing lamp structure includes one or more unit modules, each unit module includes an optical lens, a lamp body and a side cover, wherein the lamp body includes a mesh front cover, a PCB board, a back cover and an integrated adhesive film, the mesh front cover has a sunken pouring groove in the middle, and the bottom of the pouring groove is a mesh structure; the PCB board and the back cover are fixed to the inside of the mesh front cover, the integrated adhesive film is installed in the mesh structure, and the optical lens is integrally formed in the pouring groove of the mesh front cover; there are side covers at both ends of the lamp body, and the surface of the side cover has an opening adapted to the size and shape of the pouring groove. When the side cover is buckled onto the lamp body, the side of the mesh front cover and the optical lens can be exposed, and the end faces of the mesh front cover and the optical lens are flush with the surface of the side cover. Although the patent records the seamless splicing of lamps, it does not record the installation of the spliced ​​lamps. The weight of the spliced ​​lamps increases, and certain structural improvements are also required for installation. Utility Model Content

[0005] The technical problem to be solved by the utility model is that the existing lights often use flat lampshades, which have poor focusing effect when in use and are not aesthetically pleasing. Flat lampshades are prone to leaving gaps when spliced, which results in insufficient aesthetics of the splicing. At the same time, the existing honeycomb lamps are inconvenient to install after splicing, and cannot provide different installation methods for different splicing combinations. In view of the above-mentioned defects of the prior art, a honeycomb lamp group supporting multiple installation combinations is provided.

[0006] In order to solve the above technical problems, the technical solution adopted by the utility model is:

[0007] A honeycomb lamp group supporting multiple installation combinations is constructed, including at least one group of honeycomb lamps, the honeycomb lamps including two groups of profiles arranged opposite to each other, and a profile connecting plate arranged to connect the two groups of profiles, the left and right sides of the profiles are connected by a plug, a light-emitting lamp board and a diffusion plate placed below the light-emitting lamp board are arranged between the opposite surfaces of the profiles, characterized in that a honeycomb cover group is arranged below the diffusion plate, a power supply is arranged above the profiles, the power supply is connected to the profiles through a power supply mounting plate, and the power supply supplies power to the lamp board, a sealing ring is arranged at the connection between the power supply and the power supply connecting plate, the honeycomb lamps can be seamlessly spliced ​​with adjacent honeycomb lamps to form a honeycomb lamp group, and the honeycomb lamp group also includes a connecting component connected to the honeycomb lamp, and the honeycomb lamp group is installed and fixed by the connecting component.

[0008] Preferably, a light board slot and a diffuser plate slot are provided on opposite sides of the profile, the light board is placed in the light board slot, and the diffuser plate is placed in the diffuser plate slot, a tooth groove is provided above the profile, the profile connecting plate is connected to the profile at the tooth groove, and a hollow cavity is provided between the light board slot and the diffuser plate slot.

[0009] Preferably, the honeycomb cover group is formed by splicing multiple honeycomb covers. Below the opposite surfaces of the profile, there are honeycomb cover clamping grooves. On both sides of the honeycomb cover, corresponding clamping posts are provided to connect the honeycomb cover to the profile. At the lower end of the profile, there is an inclined surface, and the honeycomb cover is correspondingly provided with an inclined surface.

[0010] Preferably, on both sides of the honeycomb cover, there are respectively an upper convex block and a lower convex block. When the honeycomb covers are spliced, the upper convex block and the lower convex block are connected to form a seamless honeycomb cover group.

[0011] Preferably, the connection component includes a honeycomb lamp connection arm connected to the honeycomb lamp, and a mounting arm connected to the honeycomb lamp connection arm. There are through holes on the mounting arm, and the honeycomb lamp group is installed through the through holes on the mounting arm.

[0012] Preferably, the honeycomb lamp connection arm and the mounting arm are integrally formed and form an included angle to form an angular connecting piece. The honeycomb lamp connection arm and the mounting arm are integrally formed through the connecting arm to form a geometric connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling-sucking connecting piece. There is a side wall between the honeycomb lamp connection arm and the mounting arm, and the side wall improves the strength and toughness of the connecting piece.

[0013] Preferably, when the honeycomb lamp group is a single honeycomb lamp, the connection component is one of an angular connecting piece, a geometric connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling-sucking connecting piece;

[0014] When the honeycomb lamp group is multiple honeycomb lamps spliced together, the connection component is a combination of at least one of an angular connecting piece, a geometric connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling-sucking connecting piece.

[0015] Preferably, when the honeycomb lamp group is multiple honeycomb lamps spliced horizontally, a square steel is connected to the geometric connecting piece, and multiple honeycomb lamps are connected through the square steel. When multiple angular connecting pieces are provided, an I-shaped connecting piece is arranged between the angular connecting pieces to adjust the distance between the angular connecting pieces;

[0016] An L-shaped clamping groove is arranged on the geometric connecting piece, and a connecting screw rod is arranged in the middle of the square connecting piece.

[0017] Preferably, the connection component installs the honeycomb lamp through a hoisting component. The hoisting component includes a suspension rope component and / or a suspension rod component, and the suspension rope component or the suspension rod component is detachably connected to the connection component.

[0018] Preferably, the lifting rope assembly includes a lifting rope, and an upper lifting assembly connected to the upper end of the lifting rope, the upper lifting assembly includes an upper lifting rope threaded column connected to the upper end of the lifting rope, and an upper sleeve connected to the upper lifting rope threaded column, the upper sleeve is connected to an expansion screw, the lower end of the lifting rope is connected to a lower lifting assembly, the lower lifting assembly includes a lower lifting rope threaded column connected to the connecting assembly, and a lower sleeve connected to the lower lifting rope threaded column, and the connecting assembly is placed between the lower sleeve and the lower lifting rope threaded column;

[0019] Or the upper and lower ends of the lifting rope are annular, and the upper end is connected to the fixing screw through the lifting hook, and the lower end is connected to the connecting component;

[0020] The boom assembly includes a boom and a boom connector connected to the boom, the upper end of the boom is connected to the boom connector via a nut, the lower end of the boom is connected to the connecting assembly via a nut, the upper end of the boom connector is installed and fixed via a hanging screw, and a hanging cover is also provided on the boom.

[0021] The beneficial effects of the utility model are as follows: the honeycomb lamp can be installed through the shapes of different connectors to meet the different installation forms of the honeycomb lamp, and the installation is carried out through the combination of different connectors during splicing, which makes the installation more convenient. At the same time, the number of hoisting components is small enough, and the installation stability is also guaranteed. The honeycomb lamp group can be effectively stabilized by splicing in the horizontal direction, side by side, and in the inclined direction. At the same time, the hoisting component is matched with the hanging rope component and the hanging rod component. The hanging rope component is convenient for adjusting the height of the installation. The hanging rod component has higher stability after installation, and the mutual cooperation makes the installation more convenient. The upper and lower protrusions on the surface of the honeycomb lampshade allow the honeycomb lamp to be infinitely spliced, realizing infinite seamless splicing, and the aesthetics after splicing is better. And due to the focusing property of the honeycomb lampshade, the lighting effect of the honeycomb lamp is better when in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the utility model will be further described below in conjunction with the accompanying drawings and embodiments. The drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work:

[0023] Figure 1 This is a schematic diagram of the three-dimensional structure of a honeycomb lamp assembly according to a preferred embodiment of the present utility model;

[0024] Figure 2 This is a three-dimensional structural diagram of a honeycomb lamp assembly (excluding the hanging assembly) according to a preferred embodiment of the utility model;

[0025] Figure 3This is a schematic diagram of the exploded structure of the honeycomb lamp assembly (excluding the hanging assembly) of the preferred embodiment 1 of the utility model;

[0026] Figure 4 This is a schematic cross-sectional structure diagram of a honeycomb lamp assembly (excluding the hanging assembly) of a preferred embodiment of the utility model;

[0027] Figure 5 This is a schematic diagram of the light-emitting surface structure of a honeycomb lamp assembly according to a preferred embodiment of the utility model;

[0028] Figure 6 This is a schematic diagram of the connection structure of the honeycomb cover group of the preferred embodiment 1 of the utility model;

[0029] Figure 7 The honeycomb lampshade of the preferred embodiment 1 of the utility model Figure 6 A is an enlarged structural diagram;

[0030] Figure 8 This is a three-dimensional structural schematic diagram of a suspension rope assembly according to a preferred embodiment of the present utility model;

[0031] Fig. 9 This is a schematic diagram of the explosion structure of the upper hanging assembly of the preferred embodiment 1 of the utility model;

[0032] Fig.10 This is a schematic diagram of the exploded structure of the lower hanging assembly of the first preferred embodiment of the utility model;

[0033] Fig.11 This is a three-dimensional structural schematic diagram of a suspension rod assembly according to a preferred embodiment of the present utility model;

[0034] Fig.12 The utility model is a preferred embodiment of the suspension rod assembly Fig.11 The enlarged structural diagram at B in FIG.

[0035] Fig.13 This is a three-dimensional structural schematic diagram of a polygonal connector according to a preferred embodiment of the present utility model;

[0036] Fig.14 This is a schematic diagram of the three-dimensional structure of a horizontally spliced ​​honeycomb lamp group according to a second preferred embodiment of the utility model;

[0037] Fig.15 The second preferred embodiment of the present invention Fig.14 The enlarged structural diagram at C in FIG.

[0038] Fig.16 This is a schematic diagram of the connection structure of the horizontally spliced ​​honeycomb lamp of the second preferred embodiment of the utility model;

[0039] Fig.17 The second preferred embodiment of the present invention Fig.16 An enlarged schematic diagram of point D in FIG.

[0040] Fig.18 This is a schematic diagram of the three-dimensional structure of the mouth-shaped connector of the second preferred embodiment of the utility model;

[0041] Fig.19 This is a schematic diagram of the connection structure of a single-row obliquely spliced ​​honeycomb lamp according to a third preferred embodiment of the utility model;

[0042] Fig. 20 The third preferred embodiment of the present invention Fig.19 The enlarged structural diagram at E in FIG.

[0043] Fig.21 This is a schematic diagram of the three-dimensional structure of the angle connector of the third preferred embodiment of the utility model;

[0044] Fig. 22 This is a schematic diagram of the connection structure of a double-row honeycomb lamp in a fourth preferred embodiment of the utility model;

[0045] Fig.23 The fourth preferred embodiment of the present invention Fig. 22 The enlarged structural diagram at F in FIG.

[0046] Fig.24 This is a schematic diagram of the three-dimensional structure of the U-shaped connector of the fourth preferred embodiment of the present utility model;

[0047] Fig.25 This is a schematic diagram of the connection structure of the double-row and horizontally spliced ​​honeycomb lamps of the fifth preferred embodiment of the utility model;

[0048] Fig.26 The fifth preferred embodiment of the present invention Fig.25 The enlarged structural diagram at G in FIG.

[0049] Fig. 27 This is a schematic diagram of the connection structure of a double-row obliquely spliced ​​honeycomb lamp according to a sixth preferred embodiment of the utility model;

[0050] Fig.28 The sixth preferred embodiment of the present invention Fig. 27 The enlarged structural diagram at H in FIG.

[0051] Fig.29 It is a schematic diagram of the exploded structure of the angle-shaped, one-shaped and several-shaped connecting pieces of the preferred embodiment 6 of the utility model;

[0052] Fig.30 This is a schematic diagram of the connection structure of three rows of honeycomb lights in the seventh preferred embodiment of the utility model;

[0053] Fig.31 The seventh preferred embodiment of the present invention Fig.30 The enlarged structural diagram at position I in FIG.

[0054] Fig.32 This is a schematic diagram of the connection structure of three rows of horizontally spliced ​​honeycomb lights according to the eighth preferred embodiment of the utility model;

[0055] Fig.33 For the preferred embodiment 8 of the utility model Fig.32 The enlarged structural diagram at J in FIG.

[0056] Fig.34 This is a structural schematic diagram of a ceiling honeycomb lamp according to a ninth preferred embodiment of the present utility model;

[0057] Fig.35 It is a schematic diagram of the three-dimensional structure of the ceiling connecting piece of the ninth preferred embodiment of the present utility model. DETAILED DESCRIPTION

[0058] In order to make the purpose, technical solution and advantages of the embodiments of the utility model clearer, the following will be described clearly and completely in combination with the technical solution in the embodiments of the utility model. Obviously, the described embodiments are partial embodiments of the utility model, not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the protection scope of the utility model.

[0059] A preferred embodiment of the utility model is a honeycomb lamp group that supports multiple installation combinations; Figure 1 As shown, the honeycomb lamp 50 includes a connection assembly 30 connected to both ends of the honeycomb lamp 50, and the honeycomb lamp group is installed through a hanging assembly 20 connected to the connection assembly. The honeycomb lamp is also provided with a power supply 10, which is connected to an external power supply to power the honeycomb lamp.

[0060] Specifically, Figure 2-3As shown, the honeycomb lamp 50 includes two groups of profiles 500 arranged opposite to each other, the upper ends of the two groups of profiles are connected by a profile connector 504, a lamp board 501 is arranged between the two groups of profiles, and a diffuser 505 is arranged below the lamp board, and a honeycomb cover group 503 is arranged below the diffuser. The left and right sides of the two groups of profiles are connected by plugs 502 to seal the profiles to form the appearance of the honeycomb lamp. A power connection plate 100 is arranged at the upper end of the profile, and the power supply is arranged on the power connection plate. The power connection plate connects the two groups of profiles to the left and right. The profile connection plate 504 can be arranged in the middle according to the length of the profile to improve the stability of the honeycomb lamp. A hole for the wire to pass through is arranged on the power connection plate. The connecting wire of the power supply passes through the hole and is connected to the lamp board 501, and a sealing ring 40 is arranged at the connection. Two groups of power supplies can be set for each group of honeycomb lamps according to needs for control. The left and right sides of the upper surface of the profile are connected to the several-shaped connectors 300, and the installation of the honeycomb lamp is realized by connecting the several-shaped connectors with the hanging assembly.

[0061] Furthermore, if Figure 4 As shown, there are multiple groups of slots between the two groups of profiles 500. From top to bottom, a light board slot 5000 is provided corresponding to the light board 501, a diffusion board slot 5001 is provided corresponding to the diffusion plate 505, and a lampshade slot 5002 is provided corresponding to the honeycomb cover group 503, so as to connect the light board, the diffusion plate and the honeycomb lampshade to the profile. A tooth groove 5004 is provided at the upper end of the profile. The profile connecting plate 504 and the power supply installation plate 100 are both connected to the profile by screws, and the screws are installed in the tooth groove. Since the tooth groove is provided in the radial direction of the profile, it is only necessary to connect the profile connecting plate to the position where it needs to be installed, which is more convenient to install. In order to increase the toughness and stability of the profile, a hollow cavity 5003 is provided between the light board slot 5000 and the diffusion board slot 5001. The hollow cavity can reduce the mass of the profile, save costs, and provide buffering properties, providing a certain buffering force for the impact of the honeycomb lamp. The lower end of the lampshade slot 5002 is provided with an inclined surface, and a corresponding inclined surface is provided on the honeycomb lampshade. The contact between the inclined surfaces increases the contact area, the connection is more stable, and the installation of the lampshade is convenient.

[0062] Furthermore, if Figure 5-7 As shown, the honeycomb cover group 503 is formed by splicing together a plurality of groups of identical honeycomb covers 5030, and a clamping column 5031 is provided on the left and right sides of the honeycomb cover, and the clamping column is inserted into the lampshade clamping groove 5002 to connect the honeycomb lampshade to the profile. In order to make the spliced ​​honeycomb lampshades more neat, each group of honeycomb lampshades is composed of a plurality of hexagons, and the ones close to the left and right groups are formed by splitting the middle part of the hexagon. The two groups of half hexagons can be spliced ​​together to form a complete hexagon. There is no specific restriction on the shape of the honeycomb lampshade. In order to improve the seamlessness of the splicing, the two adjacent groups of honeycomb covers are provided with a lower protrusion 5032 and an upper protrusion 5033. When the two groups of honeycomb lampshades are installed, the upper protrusion and the lower protrusion are spliced ​​together to form a seamless splicing, and the splicing is more convenient.

[0063] Furthermore, if Figure 8-10 As shown, the hanging assembly 20 can adopt a hanging rope assembly type, which includes a hanging rope 200, and an upper hanging assembly 201 arranged above the hanging rope, and a lower hanging assembly 202 arranged below the hanging rope. The upper hanging assembly is fixed to the ceiling or the part to be installed, and the lower hanging assembly is connected to the connecting assembly 30. The lower hanging assembly includes a lower hanging rope threaded column 2011 connected to the connecting assembly, and the lower hanging rope threaded column is threadedly connected with the lower sleeve 2010 after passing through the connecting assembly, so that the connecting assembly is connected by the lower sleeve and the lower hanging rope threaded column, and the connection between the lower end of the hanging rope and the honeycomb lamp is realized. The upper hanging assembly 202 includes an upper hanging rope threaded column 2022 connected to the upper end of the hanging rope, and an upper sleeve 2021 connected to the upper hanging rope threaded column, and an expansion screw 2020 passes through the upper sleeve and is connected to the installation part, so that the upper end of the hanging rope is connected to the upper hanging assembly, and the disassembly of the hanging assembly is facilitated by threaded connection and locking.

[0064] Furthermore, if Figure 11-12 As shown, the hanging assembly 20 can also adopt a hanging rod assembly type, which includes a hanging rod 203. The lower end of the hanging rod is connected to the connecting assembly and can be locked by nuts or the like. The upper end is connected to the hanging connector 204 and locked by the same nut method. The two groups of hanging connectors are installed to the installation site, such as the ceiling, through hanging screws 206. The threaded connection also facilitates the disassembly of the hanging assembly. In order to improve the aesthetics, a hanging cover 205 is provided at the lower end of the hanging connector. The height of the hanging cover can be adjusted as needed. It should be noted that the hanging rod connection is not easy to shake, but the installation height is relatively limited due to the distance limit of the hanging rod. The installation height of the hanging rope connection method is more flexible, but it is easy to shake.

[0065] Furthermore, if Fig.13 As shown, the connection assembly 30 adopts a "J"-shaped connector 300, which includes a mounting arm 3001 connected to the lifting assembly, and a through hole 3002 is set on the mounting arm. The lower hanging rope threaded column 2011 passes through the through hole and is connected to the lower sleeve to fix the "J"-shaped connector, or the suspension rod 203 passes through the through hole and is fixed by a nut to fix the "J"-shaped connector. Two groups of honeycomb lamp connecting arms 3000 are set below the "J"-shaped connector. The honeycomb lamp connecting arms and the profile connecting plate or the power supply mounting plate can be locked by screws and the like, and are placed in the middle of the honeycomb lamp. The honeycomb lamp connecting arm 3000 is connected to the mounting arm 3001 by a vertical arm 3005, so that the connecting assembly is in the shape of a "J". In order to facilitate the installation of the "J"-shaped connector, an L-slot is set on the honeycomb lamp connecting arm, which is inserted through the vertical slot 3004 and screws, and then slid on the horizontal slot 3003 and locked. The shaped connectors, hanging components and honeycomb lamps are easy to disassemble, which is convenient for the installation and disassembly of the honeycomb lamp group and the adjustment of the installation height of the honeycomb lamp.

[0066] A preferred embodiment 2 of the utility model is a honeycomb lamp group that supports multiple installation combinations; Figure 14-17 As shown, on the basis of the first embodiment, two groups of honeycomb light groups are connected horizontally. Although it is also possible to install two groups of honeycomb light groups by setting a hoisting assembly, it results in more hoisting assemblies and more complicated installation. If it is only installed on the left and right sides, the middle part cannot be hoisted, which may cause the middle part to collapse and affect the service life. Therefore, the two groups of honeycomb light groups are connected by square steel 60, and the square steel passes through the several-shaped connector 300 to connect the two groups of honeycomb light groups. The length of the square steel can be cut as needed, and then it is connected to the square steel through the through hole 3002 by screws. At this time, the hanging rope can be connected to the locking screw 206 in the form of a hook 207, and the upper and lower ends of the hanging rope are set in a closed locking form. It can refer to the existing structure, the upper end is suspended on the hook, and the lower part passes through the square steel. The rope can be placed in the middle of the honeycomb light group to balance the weight on both sides as needed.

[0067] like Fig.14 and Figure 16-18 As shown, a mouth-shaped hanging piece 301 is provided on the square steel to connect with the hanging assembly. The mouth-shaped hanging piece includes two groups of honeycomb lamp connecting arms 3010 connected with the square steel, and a mounting arm 3011 connected with the hanging assembly at the upper end. A through hole 3012 is provided on the mounting arm, and the hanging assembly can be passed through the through hole. The honeycomb lamp connecting arm and the mounting arm are connected by a side arm 3013, and a connecting screw 3015 is provided at the connection. The connecting screw and the honeycomb lamp connecting arm are connected with the square steel, and the mounting arm and the honeycomb lamp connecting arm are connected with the hanging assembly, so as to avoid shaking of the hook-type assembly when in use, and the position of the hanging assembly is more stable.

[0068] A preferred embodiment 3 of the utility model is a honeycomb lamp group that supports multiple installation combinations; Figure 19-21 As shown, the difference from the first embodiment is that, in order to facilitate the inclined installation of the honeycomb lamp group, the polygonal connector 300 is connected to the honeycomb lamp through an angle connector 302, and the angle connector includes a honeycomb lamp connecting arm 3020 connected to the honeycomb lamp, and a mounting arm 3021 integrally formed with the honeycomb lamp connecting arm. A through hole 3022 is provided on the mounting arm, which is connected to the polygonal connector 300 or the hanging assembly through the through hole. The connection with the hanging assembly can realize the inclined installation of a single honeycomb lamp group, and after being connected to the polygonal connector, it is connected to the square steel to realize the inclined installation of multiple honeycomb lamp groups spliced ​​in the length direction. Since there is a certain angle between the honeycomb lamp connecting arm 3020 and the mounting arm 3021, it is similar to an angle connector with the symbol of "∠", and at the same time, the opposite surfaces of the honeycomb lamp connecting arm and the mounting arm are provided with side walls 3023, and the side walls increase the strength of the angle connector to avoid breakage or deformation.

[0069] A preferred embodiment 4 of the utility model is a honeycomb lamp group that supports multiple installation combinations; Figure 22-24As shown, the difference from the first embodiment is that two sets of honeycomb lights are spliced in the vertical direction. Although a j-shaped splicing part can also be used for installation at this time, it results in the need to set two sets of hoisting components for each set of honeycomb lights, making the installation inconvenient. Therefore, the j-shaped connecting part is replaced with a 冂-shaped connecting part 303. The length of the honeycomb light connecting arm 3030 of the 冂-shaped connecting part can cover two sets of honeycomb lights to connect the two sets of honeycomb lights. An installation arm 3031 is provided at the upper end, and through holes 3032 are provided on the installation arm. The aforementioned hoisting components can be connected to the installation arm in the same way. The installation arm and one side of the honeycomb light connecting arm are connected by a vertical arm 3033, and the other side of the honeycomb light connecting arm is set such that the side part is not connected to the installation arm, facilitating the installation and disassembly of the hoisting components. Since the length of the honeycomb light connecting arm is sufficient to connect two sets of honeycomb lights, two sets of hoisting components can be used to install and fix the vertically connected honeycomb light group, making the installation simpler.

[0070] A honeycomb light group supporting multiple installation combination methods according to the fifth preferred embodiment of the present invention; the difference from the fourth embodiment is that, as Figure 25-26 shown, four sets of honeycomb lights are respectively arranged in the horizontal and vertical directions. At this time, in the vertical direction, a 冂-shaped connecting part 303 is used to connect the honeycomb lights in the vertical direction. Two sets of 冂-shaped connecting parts are provided for each two sets in the vertical direction. Multiple 冂-shaped connecting parts are connected with a j-shaped connecting part 300, and a square steel passes through the j-shaped connecting part and is connected to the hoisting component. The connection in the horizontal direction is the same as that in the second embodiment, and will not be repeated here.

[0071] A honeycomb light group supporting multiple installation combination methods according to the sixth preferred embodiment of the present invention; the difference from the fifth embodiment is that, as Figure 27-29 shown, the horizontally connected honeycomb light groups are connected by an angular connecting part 302, so that both sets of honeycomb light groups are inclined. At this time, each set of honeycomb light groups can be connected by an angular connecting part 302, and the installation arm is connected to the j-shaped connecting part 300, and then connected to the square steel in the aforementioned manner to complete the inclined installation of the honeycomb light group. In order to facilitate the adjustment of the distance between the inclined honeycomb lights, the installation arms are connected by a 一-shaped connecting part 304. Multiple through holes are provided on the 一-shaped connecting part and are respectively connected to the installation arm and the j-shaped connecting part to adjust the distance between the two angular connecting parts.

[0072] A honeycomb light group supporting multiple installation combination methods according to the seventh preferred embodiment of the present invention; as Figure 30-31 shown, the difference from the fifth embodiment is that three sets of honeycomb light groups are arranged in the vertical direction. They are connected by a 冂-shaped connecting part 303, and two sets of suspension ropes 200 and a set of suspension rods 203 are provided on the 冂-shaped connecting part. The suspension rod is placed between the two sets of suspension ropes to form two sets of suspension rope components and a suspension rod component. The suspension rod component prevents the honeycomb light group from shaking, while the suspension rope components balance the weights at both ends of the honeycomb light group on the left and right sides.

[0073] A honeycomb lamp group supporting multiple installation combination methods in the eighth preferred embodiment of the present utility model; as Figure 32-33 shown, on the basis of the seventh embodiment, three groups of vertically arranged honeycomb lamps are horizontally connected and installed by connecting the J-shaped connecting piece 303 with the J-shaped connecting piece 300 and the square steel 60. The specific structure is the same as the foregoing and will not be repeated here.

[0074] A honeycomb lamp group supporting multiple installation combination methods in the ninth preferred embodiment of the present utility model; as Figure 34-35 shown, the difference from the first embodiment is that the honeycomb lamp is installed by ceiling suction with the ceiling suction piece 305. The ceiling suction piece includes a honeycomb lamp connecting arm 3050 connected to the honeycomb lamp and an installation arm 3051. The installation arm is fixedly connected to the installation position. A through hole 3052 is provided on the installation arm, and the installation arm and the honeycomb lamp connecting arm are connected by an inclined arm 3053 to facilitate the operation of ceiling suction installation. It should be noted that the foregoing J-shaped connecting piece, U-shaped connecting piece and angle-shaped connecting piece can also be used for ceiling suction installation, and the ceiling suction connecting piece can also be connected to a hoisting assembly or combined with other connecting pieces for installation connection to realize the splicing installation of different honeycomb lamps in the horizontal or vertical direction.

[0075] It should be understood that the present utility model is described by some embodiments. Those skilled in the art know that without departing from the spirit and scope of the present utility model, various changes or equivalent replacements can be made to these features and embodiments. In addition, under the teaching of the present utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present utility model.

Claims

1. A honeycomb lamp group supporting multiple installation combinations, comprising at least one group of honeycomb lamps, the honeycomb lamp comprising two groups of profiles arranged opposite to each other, and a profile connecting plate arranged to connect the two groups of profiles, the left and right sides of the profiles are connected by plugs, a light-emitting lamp board is arranged between the opposite surfaces of the profiles, and a diffusion plate is arranged below the light-emitting lamp board, characterized in that: A honeycomb cover group is arranged below the diffusion plate, and a power supply is arranged above the profile. The power supply is connected to the profile through a power supply mounting plate, and the power supply supplies power to the lamp board. A sealing ring is arranged at the connection between the power supply and the power supply connection plate. The honeycomb lamps can be seamlessly spliced with adjacent honeycomb lamps to form a honeycomb lamp group. The honeycomb lamp group further includes a connection component for connecting the honeycomb lamps, and the honeycomb lamp group is installed and fixed through the connection component.

2. The honeycomb lamp assembly according to claim 1, characterized in that: Lamp board slots and diffusion plate slots are arranged on opposite surfaces of the profile. The lamp board is placed in the lamp board slots, and the diffusion plate is placed in the diffusion plate slots. Tooth grooves are arranged above the profile, and the profile connection plate is connected to the profile at the tooth grooves. A hollow cavity is arranged between the lamp board slots and the diffusion plate slots.

3. The honeycomb lamp assembly according to claim 1, characterized in that: The honeycomb cover group is formed by splicing multiple groups of honeycomb covers. Honeycomb cover slots are arranged below opposite surfaces of the profile. Clamping posts are correspondingly arranged on both sides of the honeycomb cover to connect the honeycomb cover to the profile. An inclined surface is arranged at the lower end of the profile, and the honeycomb cover is correspondingly provided with an inclined surface.

4. The honeycomb lamp assembly according to claim 3, characterized in that: Upper convex blocks and lower convex blocks are respectively arranged on both sides of the honeycomb cover. When the honeycomb covers are spliced, the upper convex blocks are connected to the lower convex blocks to form a seamless honeycomb cover group.

5. The honeycomb lamp assembly according to any one of claims 1 to 4, characterized in that: The connection component includes a honeycomb lamp connection arm connected to the honeycomb lamp, and a mounting arm connected to the honeycomb lamp connection arm. Through holes are arranged on the mounting arm, and the honeycomb lamp group is installed through the through holes on the mounting arm.

6. The honeycomb lamp assembly according to claim 5, characterized in that: The honeycomb lamp connection arm and the mounting arm are integrally formed and form an included angle to form an angular connecting piece. The honeycomb lamp connection arm and the mounting arm are integrally formed through the connecting arm to form a shaped connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling connecting piece. A side wall is arranged between the honeycomb lamp connection arm and the mounting arm, and the side wall improves the strength of the connecting piece.

7. The honeycomb lamp assembly according to claim 6, characterized in that: When the honeycomb lamp group is a single honeycomb lamp, the connection component is one of an angular connecting piece, a shaped connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling connecting piece; When the honeycomb lamp group is formed by splicing multiple groups of honeycomb lamps, the connection component is a combination of at least one of an angular connecting piece, a shaped connecting piece, a U-shaped connecting piece, a square connecting piece, and a ceiling connecting piece.

8. The honeycomb lamp assembly according to claim 7, characterized in that: When the honeycomb lamp group is formed by horizontally splicing multiple groups of honeycomb lamps, a square steel is connected to the shaped connecting piece, and multiple groups of honeycomb lamps are connected through the square steel. When multiple angular connecting pieces are arranged, a linear connecting piece is arranged between the angular connecting pieces, and the distance between the angular connecting pieces is adjusted through the linear connecting piece; An L-shaped slot is arranged on the shaped connecting piece, and a connecting screw is arranged in the middle of the square connecting piece.

9. The honeycomb lamp assembly according to claim 1, characterized in that: The connection component installs the honeycomb lamp through a hoisting component. The hoisting component includes a hoisting rope component and / or a hanging rod component, and the hoisting rope component or the hanging rod component is detachably connected to the connection component.

10. The honeycomb lamp assembly according to claim 9, characterized in that: The hoisting rope component includes a hoisting rope, and an upper hoisting component connected to the upper end of the hoisting rope. The upper hoisting component includes an upper hoisting rope threaded column connected to the upper end of the hoisting rope, and an upper sleeve connected to the upper hoisting rope threaded column. An expansion screw is connected to the upper sleeve. The lower end of the hoisting rope is connected to a lower hoisting component. The lower hoisting component includes a lower hoisting rope threaded column connected to the connection component, and a lower sleeve connected to the lower hoisting rope threaded column. The connection component is arranged between the lower sleeve and the lower hoisting rope threaded column; Or the upper and lower ends of the lifting rope are annular, and the upper end is connected to the fixing screw through the lifting hook, and the lower end is connected to the connecting component; The boom assembly includes a boom and a boom connector connected to the boom, the upper end of the boom is connected to the boom connector via a nut, the lower end of the boom is connected to the connecting assembly via a nut, the upper end of the boom connector is installed and fixed via a hanging screw, and a hanging cover is also provided on the boom.

Citation Information

Patent Citations

  • Seamless concatenation lamps and lanterns structure

    CN206890117U

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    CN208519622U