Splicing type line lamp

The structural design of positioning pins, positioning holes, and slots solves the problems of stability and light leakage in spliced ​​linear lights, achieving a simple and efficient splicing process and aesthetic effect.

CN224003642UActive Publication Date: 2026-03-17GUANGDONG PAK CORP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing splicing linear light structure is not stable enough, the splicing process is troublesome, and gaps and light leakage are prone to occur.

Method used

The lamp housing is securely connected by a combination of positioning pins and positioning holes, along with a slot design. The design of the protrusion and the surrounding plate of the slot reduces gaps and light leakage at the splicing points.

Benefits of technology

It improves the simplicity and stability of the splicing process, enhances the connection strength of the lamp housing, reduces gaps and light leakage at the splicing points, and improves aesthetics and user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of lighting tools, and discloses a splicing type line lamp which comprises a first lamp shell, a second lamp shell and a splicing structure which are arranged in sequence. The splicing structure comprises a splicing plate, a first positioning pin and a second positioning pin are arranged on the splicing plate, and a first positioning hole and a second positioning hole are formed in the first lamp shell and the second lamp shell respectively, or the first positioning hole and the second positioning hole are formed in the splicing plate, and the first positioning pin and the second positioning pin are arranged on the first lamp shell and the second lamp shell respectively. The first positioning pin and the second positioning pin are respectively inserted into the first positioning hole and the second positioning hole; a protruding part is arranged on one side of the splice plate, a first clamping groove and a second clamping groove are defined by the protruding part and the splice plate, and the end of the first lamp shell and the end of the second lamp shell are clamped in the first clamping groove and the second clamping groove respectively. The LED lamp has the beneficial effects that the splicing pieces and the lamp shell are connected through the structures of the positioning pins, the positioning holes and the clamping grooves, so that the splicing process is simple, and the assembly efficiency and the production benefit are improved.
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Description

Technical Field

[0001] This utility model relates to the field of lighting tools technology, and in particular to a splicing linear light. Background Technology

[0002] Linear lights are a type of high-end flexible decorative lighting, boasting advantages such as low power consumption, long lifespan, and high brightness, making them quite common in modern production and daily life. In practical applications, the required length of linear lights varies depending on the situation, leading to the emergence of modular linear lights on the market, allowing users to splice them according to their actual needs. However, existing modular linear lights have at least the following shortcomings: 1. Many existing modular linear lights have an internal splicing component or several small connecting structures at the splicing points, resulting in insufficient structural stability; 2. The use of screws for splicing is cumbersome; 3. Gaps remain between the two linear lights after splicing, affecting aesthetics and causing light leakage. Utility Model Content

[0003] The main purpose of this utility model is to propose a splicing linear light, which aims to solve at least one of the shortcomings of the above-mentioned prior art.

[0004] To achieve the above objectives, this utility model proposes a splicing linear light, comprising a first lamp housing, a splicing structure, and a second lamp housing arranged sequentially. The splicing structure includes a splicing plate, on which a first positioning pin and a second positioning pin are provided. The first lamp housing and the second lamp housing are respectively provided with a first positioning hole and a second positioning hole. Alternatively, the splicing plate is provided with a first positioning hole and a second positioning hole, and the first lamp housing and the second lamp housing are respectively provided with a first positioning pin and a second positioning pin. The first positioning pin and the second positioning pin are respectively inserted into the first positioning hole and the second positioning hole to restrict the axial movement of the first lamp housing and the second lamp housing. A protrusion is provided on one side of the splicing plate, and the protrusion and the splicing plate together form a first slot and a second slot. The ends of the first lamp housing and the second lamp housing are respectively engaged in the first slot and the second slot. The first slot can restrict the first positioning pin from disengaging from the first positioning hole, and the second slot can restrict the second positioning pin from disengaging from the second positioning hole.

[0005] The beneficial effects of this utility model are as follows: In the splicing linear light of this utility model, the splicing plate is connected to the first and second lamp housings through a matching structure of positioning pins and positioning holes. Furthermore, the limiting effect of the first and second slots prevents the positioning pins from disengaging from the positioning holes, thereby achieving the splicing of the first and second lamp housings. The splicing linear light of this utility model, through the structure of positioning pins, positioning holes, and slots, connects the splicing components to the lamp housing, making the splicing process simpler, improving assembly efficiency, and increasing production benefits.

[0006] Preferably, the first lamp housing includes a first left lamp housing plate, a first upper lamp housing plate, and a first right lamp housing plate connected in sequence, with the first left and first right lamp housing plates located below the first upper lamp housing plate. The second lamp housing includes a second left lamp housing plate, a second upper lamp housing plate, and a second right lamp housing plate connected in sequence, with the second left and second right lamp housing plates located below the second upper lamp housing plate. The splicing structure includes multiple splicing plates, including a left splicing plate, an upper splicing plate, and a right splicing plate arranged in sequence, with the left and right splicing plates located below the upper splicing plate. The first left and second left lamp housing plates are connected to the left splicing plate, the first upper lamp housing plate and the second upper lamp housing plate are connected to the upper splicing plate, and the first right and second right lamp housing plates are connected to the right splicing plate, making the connection between the first and second lamp housings relatively stable and less likely to detach.

[0007] Preferably, the left splicing plate, the upper splicing plate, and the right splicing plate are formed from the same piece of plate by bending, which is more conducive to making the splicing joints of the spliced ​​linear lights less prone to deformation and ensuring the quality of the spliced ​​linear lights.

[0008] Preferably, the protrusion includes a partition and a groove enclosure plate. The partition is perpendicular to the splicing plate, and the groove enclosure plate is parallel to the splicing plate. One side of the partition is connected to the splicing plate, and the other side of the partition is connected to the groove enclosure plate. Both sides of the groove enclosure plate protrude from the partition, making the cross-section of the protrusion T-shaped, so that a first slot and a second slot are formed on both sides of the partition, respectively. The opening of the first slot faces the first lamp housing, and the opening of the second slot faces the second lamp housing, making the spliced ​​linear light more integrated and less likely to fall apart.

[0009] Preferably, the protrusions on the left splicing plate, the upper splicing plate, and the right splicing plate are connected in sequence. The left splicing plate, the upper splicing plate, and the right splicing plate are located inside the first lamp housing and the second lamp housing. The partition is located between the first lamp housing and the second lamp housing. The groove enclosure plate is located outside the first lamp housing and the second lamp housing. The purpose is to make the exposed area of ​​the splicing structure smaller and improve the aesthetics of the splicing linear light.

[0010] Preferably, the groove enclosure plate on the left splicing plate extends away from the upper splicing plate to form a left extension strip, and the groove enclosure plate on the right splicing plate extends away from the upper splicing plate to form a right extension strip. The left extension strip, the right extension strip, and the groove enclosure plates on the left, upper, and right splicing plates can block the gap between the first and second lamp housings, prevent light leakage, and reduce the entry of impurities and dust, thereby optimizing the user experience.

[0011] Preferably, the first lamp housing further includes a first left connecting diagonal strip and a first right connecting diagonal strip, the first left connecting diagonal strip connecting the first upper lamp housing plate and the first left lamp housing plate, and the first right connecting diagonal strip connecting the first upper lamp housing plate and the first right lamp housing plate; the second lamp housing further includes a second left connecting diagonal strip and a second right connecting diagonal strip, the second left connecting diagonal strip connecting the second upper lamp housing plate and the second lamp housing plate, and the second right connecting diagonal strip connecting the second upper lamp housing plate and the second right lamp housing plate; the splicing structure further includes a left splicing strip and a right splicing strip, the left splicing strip connecting the upper splicing plate and the left splicing plate, and the right splicing strip connecting the upper splicing plate and the right splicing plate, so that the splicing structure matches the shape of the first lamp housing and the second lamp housing.

[0012] Preferably, the splicing plate is provided with a first positioning hole and a second positioning hole, the first lamp housing is provided with a first positioning pin, and the second lamp housing is provided with a second positioning pin, which helps to improve the aesthetics.

[0013] Preferably, the upper splicing plate is provided with two first positioning holes and two second positioning holes, the first upper lamp housing plate is provided with two first positioning pins, and the second lamp housing plate is provided with two second positioning pins.

[0014] Preferably, the system also includes a light-transmitting plate. Both sides of the light-transmitting plate are provided with fastening structures. The lower sides of the first left lamp housing plate, first right lamp housing plate, second left lamp housing plate, and second right lamp housing plate are all provided with locking structures that engage with the fastening structures. The light-transmitting plate is connected to the first and second lamp housings through the fastening and locking structures. The light-transmitting plate can restrict the first left and first right lamp housing plates from moving closer or further apart, and can also restrict the second left and second right lamp housing plates from moving closer or further apart. This arrangement helps to make the connection between the splicing structure and the first and second lamp housings more stable, improving the quality of the spliced ​​linear light. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of the spliced ​​linear light in an embodiment of this utility model;

[0017] Figure 2 This is a schematic diagram of the splicing structure in an embodiment of the present utility model;

[0018] Figure 3 This is a front view of the splicing structure in an embodiment of this utility model;

[0019] Figure 4 for Figure 3 AA section view in the middle;

[0020] Figure 5 for Figure 4 A magnified view of a section at point B in the middle;

[0021] Figure 6 This is a rear view of the first lamp housing in an embodiment of the present utility model;

[0022] Figure 7 This is a front view of the second lamp housing in an embodiment of this utility model;

[0023] Figure 8 This is a front view of the spliced ​​linear light in an embodiment of this utility model;

[0024] Figure 9 This is a schematic diagram of the splicing structure and the first lamp housing in an embodiment of this utility model;

[0025] Figure 10 This is a schematic diagram of the structure in an embodiment of the present invention, showing the first upper lamp housing plate and the second upper lamp housing plate being spliced ​​together by an upper splicing plate.

[0026] In the attached diagram: 1-First lamp housing, 11-First left lamp housing plate, 12-First upper lamp housing plate, 13-First right lamp housing plate, 14-First left connecting diagonal strip, 15-First right connecting diagonal strip, 16-First positioning pin, 2-Second lamp housing, 21-Second left lamp housing plate, 22-Second upper lamp housing plate, 23-Second right lamp housing plate, 24-Second left connecting strip, 25-Second right connecting strip, 26-Second positioning pin, 3-Assembly Structure, 31-Left splicing plate, 32-Upper splicing plate, 33-Right splicing plate, 34-First positioning hole, 35-Second positioning hole, 36-Splicing plate, 37-Left splicing strip, 38-Right splicing strip, 4-Protrusion, 41-Partition plate, 42-Trench enclosure plate, 43-First slot, 44-Second slot, 45-Left extension strip, 46-Right extension strip, 5-Snap-fit ​​structure, 6-Light-transmitting plate, 61-Snap-fit ​​structure.

[0027] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] It should be noted that if the embodiments of this utility model involve directional indicators, such as up, down, left, right, front, back, etc., the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0030] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0031] like Figures 1 to 10 As shown, a modular linear light includes a first lamp housing 1, a splicing structure 3, and a second lamp housing 2 arranged sequentially. The splicing structure 3 includes a splicing plate 36, on which a first positioning pin 16 and a second positioning pin 26 are provided. The first lamp housing 1 and the second lamp housing 2 are respectively provided with a first positioning hole 34 and a second positioning hole 35. Alternatively, the splicing plate 36 is provided with a first positioning hole 34 and a second positioning hole 35, and the first lamp housing 1 and the second lamp housing 2 are respectively provided with a first positioning pin 16 and a second positioning pin 26. The first positioning pin 16 is inserted into the first positioning hole 34 and the second positioning hole 35 respectively to restrict the axial movement of the first lamp housing 1 and the second lamp housing 2; a protrusion 4 is provided on one side of the splicing plate 36, and the protrusion 4 and the splicing plate 36 form a first slot 43 and a second slot 44. The ends of the first lamp housing 1 and the second lamp housing 2 are respectively locked in the first slot 43 and the second slot 44. The first slot 43 can restrict the first positioning pin 16 from disengaging from the first positioning hole 34, and the second slot 44 can restrict the second positioning pin 26 from disengaging from the second positioning hole 35.

[0032] In this embodiment of the splicing linear light, the splicing plate 36 is connected to the first lamp housing 1 and the second lamp housing 2 through a matching structure of positioning pins and positioning holes. Furthermore, the positioning pins are prevented from disengaging from the positioning holes by the limiting action of the first slot 43 and the second slot 44, thereby achieving the splicing of the first lamp housing 1 and the second lamp housing 2. This splicing linear light in this embodiment uses a structure of positioning pins, positioning holes, and slots to connect the splicing components to the lamp housings, making the splicing process simpler and improving assembly efficiency and production effectiveness.

[0033] In some specific embodiments, reference is made to Figure 2The first lamp housing 1 includes a first left lamp housing plate 11, a first upper lamp housing plate 12, and a first right lamp housing plate 13 connected in sequence. The first left lamp housing plate 11 and the first right lamp housing plate 13 are both located below the first upper lamp housing plate 12. The second lamp housing 2 includes a second left lamp housing plate 21, a second upper lamp housing plate 22, and a second right lamp housing plate 23 connected in sequence. The second left lamp housing plate 21 and the second right lamp housing plate 23 are both located below the second upper lamp housing plate 22. The splicing structure 3 includes multiple A splicing panel 36, comprising a left splicing panel 31, an upper splicing panel 32, and a right splicing panel 33 arranged sequentially. The left splicing panel 31 and the right splicing panel 33 are both located below the upper splicing panel 32. The first left lamp housing panel 11 and the second left lamp housing panel 21 are connected to the left splicing panel 31. The first upper lamp housing panel 12 and the second upper lamp housing panel 22 are connected to the upper splicing panel 32. The first right lamp housing panel 13 and the second right lamp housing panel 23 are connected to the right splicing panel 33.

[0034] The lamp housing of a linear light generally includes a left lamp housing plate, an upper lamp housing plate, and a right lamp housing plate. In order to better splice the first lamp housing 1 and the second lamp housing 2, the splicing structure 3 includes a left splicing plate 31, an upper splicing plate 32, and a right splicing plate 33, which splice the first left lamp housing plate 11 and the second left lamp housing plate 21, the first upper lamp housing plate 12 and the second upper lamp housing plate 22, and the first right lamp housing plate 13 and the second right lamp housing plate 23, respectively, so that the connection between the first lamp housing 1 and the second lamp housing 2 is more stable and not easy to detach from each other.

[0035] In some specific embodiments, reference is made to Figure 2 The left splicing plate 31, the upper splicing plate 32, and the right splicing plate 33 are formed by bending the same plate.

[0036] The left splicing plate 31, the upper splicing plate 32, and the right splicing plate 33 are formed by bending the same plate, which makes the connection between the splicing plates 36 tighter and more conducive to preventing deformation at the splicing joints of the splicing linear lights, thus ensuring the quality of the splicing linear lights.

[0037] In some specific embodiments, reference is made to Figures 2 to 5 The protrusion 4 includes a partition 41 and a groove enclosure plate 42. The partition 41 is perpendicular to the splicing plate 36, and the groove enclosure plate 42 is parallel to the splicing plate 36. One side of the partition 41 is connected to the splicing plate 36, and the other side of the partition 41 is connected to the groove enclosure plate 42. Both sides of the groove enclosure plate 42 protrude from the partition 41, so that the cross-section of the protrusion 4 is T-shaped, so that a first slot 43 and a second slot 44 are formed on both sides of the partition 41 respectively. The opening of the first slot 43 faces the first lamp housing 1, and the opening of the second slot 44 faces the second lamp housing 2.

[0038] The partition plate 41 and the groove enclosure plate 42 are arranged in a T-shape, which can be combined with the splicing plate 36 to form the first slot 43 and the second slot 44. This helps to reduce material usage and simplify the structure. Moreover, the first slot 43 and the second slot 44 are relatively close to each other, which can make the first lamp housing 1 and the second lamp housing 2 relatively close to each other. The overall integrity of the spliced ​​linear light is stronger and it is not easy to fall apart.

[0039] In this embodiment, the width of the first slot 43 is less than the sum of the thickness of the first lamp housing 1 and the length of the first positioning pin 16. This ensures that the first slot 43 prevents the first positioning pin 16 from falling off the first positioning hole 34. During assembly, the production personnel need to first squeeze the end of the first lamp housing 1 so that the end of the first lamp housing 1 enters the first slot 43, and then push the first lamp housing 1 into the first slot 43 until the first positioning pin 16 is engaged in the first positioning hole 34. The installation method of the second lamp housing 2 is the same as the installation method of the first lamp housing 1.

[0040] In some specific embodiments, reference is made to Figure 2 and Figure 3 The protrusions 4 on the left splicing plate 31, the upper splicing plate 32 and the right splicing plate 33 are connected in sequence. The left splicing plate 31, the upper splicing plate 32 and the right splicing plate 33 are located inside the first lamp housing 1 and the second lamp housing 2. The partition plate 41 is located between the first lamp housing 1 and the second lamp housing 2. The trough enclosure plate 42 is located outside the first lamp housing 1 and the second lamp housing 2.

[0041] The protrusions 4 on the left splicing plate 31, the upper splicing plate 32, and the right splicing plate 33 are connected in sequence, allowing the various groove enclosure plates to be connected together. After splicing, the groove enclosure plate 42 is located outside the first lamp housing 1 and the second lamp housing 2, while the left splicing plate 31, the upper splicing plate 32, and the right splicing plate 33 are located inside the first lamp housing 1 and the second lamp housing 2. The purpose is to minimize the exposed area of ​​the splicing structure 3 and improve the aesthetics of the spliced ​​linear light.

[0042] In some specific embodiments, reference is made to Figures 2 to 4 The groove enclosure plate 42 on the left splicing plate 31 extends away from the upper splicing plate 32 to form a left extension strip 45, and the groove enclosure plate 42 on the right splicing plate 33 extends away from the upper splicing plate 32 to form a right extension strip 46. The left extension strip 45, the right extension strip 46 and the groove enclosure plate 42 on the left splicing plate 31, the upper splicing plate 32 and the right splicing plate 33 can block the gap between the first lamp housing 1 and the second lamp housing 2.

[0043] In this embodiment, taking the first lamp housing 1 as an example, since the inner sides of the first left lamp housing plate 11 and the first right lamp housing plate 13 are provided with engaging structures 61 near the lower edge, the left splicing plate 31 cannot extend to the lowest side of the first left lamp housing plate 11, and the right splicing plate 33 cannot extend to the lowest side of the first right lamp housing plate 13. The same situation applies to the second lamp housing 2. Therefore, a portion of the gap between the first lamp housing 1 and the second lamp housing 2 cannot be blocked by the splicing plate 36, resulting in light leakage and easy entry of impurities and dust. By setting the left extension strip 45 and the right extension strip 46, the portion of the gap between the first lamp housing 1 and the second lamp housing 2 that cannot be blocked by the splicing plate 36 can be blocked, preventing light leakage and reducing the entry of impurities and dust, thereby optimizing the user experience.

[0044] In some specific embodiments, reference is made to Figure 2 , Figure 6 and Figure 7 The first lamp housing 1 also includes a first left connecting diagonal strip 14 and a first right connecting diagonal strip 15. The first left connecting diagonal strip 14 connects the first upper lamp housing plate 12 and the first left lamp housing plate 11, and the first right connecting diagonal strip 15 connects the first upper lamp housing plate 12 and the first right lamp housing plate 13. The second lamp housing 2 also includes a second left connecting diagonal strip and a second right connecting diagonal strip. The second left connecting diagonal strip connects the second upper lamp housing plate 22 and the second lamp housing plate 23, and the second right connecting diagonal strip connects the second upper lamp housing plate 22 and the second right lamp housing plate 23. The splicing structure 3 also includes a left splicing strip and a right splicing strip. The left splicing strip connects the upper splicing plate 32 and the left splicing plate 31, and the right splicing strip connects the upper splicing plate 32 and the right splicing plate 33, so that the splicing structure 3 matches the shape of the first lamp housing 1 and the second lamp housing 2.

[0045] Taking the first lamp housing 1 as an example, in order to prevent the lamp housing structure from easily deforming, a first left connecting diagonal strip 14 and a first right connecting diagonal strip 15 are provided to ensure that the bending angle of each part of the first lamp housing 1 is not too large, thus guaranteeing the strength of the first lamp housing 1. The same configuration is used for the second lamp housing 2.

[0046] To ensure a higher degree of matching between the splicing structure 3 and the first lamp housing 1 and the second lamp housing 2, and to make the connection more stable and less prone to loosening, the splicing structure 3 also includes a left splicing strip and a right splicing strip, which correspond to the positions of the left and right connecting diagonal strips of the lamp housing, respectively, during splicing.

[0047] In some specific embodiments, reference is made to Figure 2 The splicing plate 36 is provided with a first positioning hole 34 and a second positioning hole 35, the first lamp housing 1 is provided with a first positioning pin 16, and the second lamp housing 2 is provided with a second positioning pin 26.

[0048] Since the splicing plate 36 is located inside the first lamp housing 1 and the second lamp housing 2, and the first positioning hole 34 and the second positioning hole 35 are located on the splicing plate 36, and the first positioning pin 16 and the second positioning pin 26 are respectively located on the first lamp housing 1 and the second lamp housing 2, after splicing, the first positioning pin 16 and the second positioning pin 26 will only be on the inside of the spliced ​​linear light, which is beneficial to improving the aesthetics. Conversely, if the first positioning hole 34 and the second positioning hole 35 are respectively located on the first lamp housing 1 and the second lamp housing 2, and the first positioning pin 16 and the second positioning pin 26 are located on the splicing plate 36, after splicing, the first positioning pin 16 and the second positioning pin 26 will protrude from the outer wall of the spliced ​​linear light, which is not conducive to improving the aesthetics.

[0049] In some specific embodiments, reference is made to Figure 2 The upper splicing plate 32 is provided with two first positioning holes 34 and two second positioning holes 35, the first upper lamp housing plate 12 is provided with two first positioning pins 16, and the second lamp housing plate 2 is provided with two second positioning pins 26.

[0050] Since the area and width of the first upper lamp housing plate 12 and the second upper lamp housing plate 22 are generally large, the upper splicing plate 32 is provided with two first positioning holes 34 and two second positioning holes 35, the first upper lamp housing plate 12 is provided with two first positioning pins 16, and the second lamp housing plate 22 is provided with two second positioning pins 26. This helps to make the splicing of the first upper lamp housing plate 12 and the second upper lamp housing plate 22 more stable. This setting is highly targeted, and the structure is differentiated according to the different situations of each splicing part.

[0051] In some specific embodiments, reference is made to Figure 8 It also includes a light-transmitting plate 6, with fastening structures 5 on both sides of the light-transmitting plate 6. The lower sides of the first left lamp housing plate 11, the first right lamp housing plate 13, the second left lamp housing plate 21, and the second right lamp housing plate 23 are all provided with locking structures 61 that engage with the fastening structures 5. The light-transmitting plate 6 is connected to the first lamp housing 1 and the second lamp housing 2 through the fastening structures 5 and the locking structures 61. The light-transmitting plate 6 can restrict the first left lamp housing plate 11 and the first right lamp housing plate 13 from getting closer or further away from each other, and can also restrict the second left lamp housing plate 21 and the second right lamp housing plate 23 from getting closer or further away from each other.

[0052] Since the splicing plate 36 is located inside the first lamp housing 1 and the second lamp housing 2, taking the first lamp housing 1 as an example, if the first left lamp housing plate 11 is far away from the first right lamp housing plate 13, the first left lamp housing plate 11 may move along the length direction of the first positioning pin 16 on the left splicing plate 31, which may cause the first left lamp housing plate 11 to detach from the first positioning pin 16 on the left splicing plate 31. The same situation applies to the second lamp housing 2. After the light-transmitting plate 6 is installed, the relative movement between the first left lamp housing plate 11 and the first right lamp housing plate 13, and between the second left lamp housing plate 21 and the second right lamp housing plate 23, will be restricted under the action of the light-transmitting plate 6, especially the relative movement of the first left lamp housing plate 11 and the first right lamp housing plate 13 moving away from each other, and the relative movement of the second left lamp housing plate 21 and the second right lamp housing plate 23 moving away from each other. Therefore, this setting helps to make the connection between the splicing structure 3 and the first lamp housing 1 and the second lamp housing 2 more stable, and improves the quality of the spliced ​​linear light.

[0053] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A modular lineal light, characterized by: The first lamp shell (1), the splicing structure (3) and the second lamp shell (2) are sequentially arranged. The splicing structure (3) comprises a splicing plate (36), the splicing plate (36) is provided with a first positioning pin (16) and a second positioning pin (26), the first lamp shell (1) and the second lamp shell (2) are respectively provided with a first positioning hole (34) and a second positioning hole (35), or the splicing plate (36) is provided with a first positioning hole (34) and a second positioning hole (35), the first lamp shell (1) and the second lamp shell (2) are respectively provided with a first positioning pin (16) and a second positioning pin (26), the first positioning pin (16) and the second positioning pin (26) are respectively inserted into the first positioning hole (34) and the second positioning hole (35) to limit the axial movement of the first lamp shell (1) and the second lamp shell (2). One side of the splicing plate (36) is provided with a protruding portion (4), the protruding portion (4) and the splicing plate (36) enclose a first clamping groove (43) and a second clamping groove (44), the end of the first lamp shell (1) and the end of the second lamp shell (2) are respectively clamped in the first clamping groove (43) and the second clamping groove (44), the first clamping groove (43) can limit the first positioning pin (16) from leaving the first positioning hole (34), and the second clamping groove (44) can limit the second positioning pin (26) from leaving the second positioning hole (35).

2. The spliced lineal lamp of claim 1, wherein: The first lamp shell (1) comprises a first left lamp shell plate (11), a first upper lamp shell plate (12) and a first right lamp shell plate (13) connected in sequence, the first left lamp shell plate (11) and the first right lamp shell plate (13) are located on the lower side of the first upper lamp shell plate (12), and the second lamp shell (2) comprises a second left lamp shell plate (21), a second upper lamp shell plate (22) and a second right lamp shell plate (23) connected in sequence, the second left lamp shell plate (21) and the second right lamp shell plate (23) are located on the lower side of the second upper lamp shell plate (22). The splicing structure (3) comprises a plurality of splicing plates (36), the plurality of splicing plates (36) comprise a left splicing plate (31), an upper splicing plate (32) and a right splicing plate (33) arranged in sequence, the left splicing plate (31) and the right splicing plate (33) are located on the lower side of the upper splicing plate (32), the first left lamp shell plate (11) and the second left lamp shell plate (21) are connected to the left splicing plate (31), the first upper lamp shell plate (12) and the second upper lamp shell plate (22) are connected to the upper splicing plate (32), and the first right lamp shell plate (13) and the second right lamp shell plate (23) are connected to the right splicing plate (33).

3. The spliced lineal lamp of claim 2, wherein: The left splicing plate (31), the upper splicing plate (32) and the right splicing plate (33) are formed by bending from the same plate.

4. The spliced lineal lamp of claim 3, wherein: The protruding part (4) comprises a partition plate (41) and a groove enclosing plate (42), the partition plate (41) is perpendicular to the splicing plate (36), the groove enclosing plate (42) is parallel to the splicing plate (36), one side of the partition plate (41) is connected with the splicing plate (36), the other side of the partition plate (41) is connected with the groove enclosing plate (42), both sides of the groove enclosing plate (42) protrude from the partition plate (41), so that the cross section of the protruding part (4) is T-shaped, to form the first clamping groove (43) and the second clamping groove (44) on both sides of the partition plate (41) respectively, the opening of the first clamping groove (43) faces the first lamp shell (1), and the opening of the second clamping groove (44) faces the second lamp shell (2).

5. The spliced lineal lamp of claim 4, wherein: The protruding part (4) on the left splicing plate (31), the upper splicing plate (32) and the right splicing plate (33) are sequentially connected, the left splicing plate (31), the upper splicing plate (32) and the right splicing plate (33) are located on the inner side of the first lamp shell (1) and the second lamp shell (2), the partition plate (41) is located between the first lamp shell (1) and the second lamp shell (2), and the groove enclosing plate (42) is located on the outer side of the first lamp shell (1) and the second lamp shell (2).

6. The spliced lineal lamp of claim 5, wherein: The groove enclosing plate (42) on the left splicing plate (31) extends in a direction away from the upper splicing plate (32) to form a left extension strip (45), the groove enclosing plate (42) on the right splicing plate (33) extends in a direction away from the upper splicing plate (32) to form a right extension strip (46), and the left extension strip (45), the right extension strip (46) and the groove enclosing plate (42) on the left splicing plate (31), the upper splicing plate (32) and the right splicing plate (33) can shield the interval between the first lamp shell (1) and the second lamp shell (2).

7. The modular lineal light of claim 2, wherein: The first lamp shell (1) further comprises a first left connecting inclined strip (14) and a first right connecting inclined strip (15), the first left connecting inclined strip (14) connects the first upper lamp shell plate (12) and a first left lamp shell plate (11), and the first right connecting inclined strip (15) connects the first upper lamp shell plate (12) and the first right lamp shell plate (13). The second lamp shell (2) further comprises a second left connecting inclined strip and a second right connecting inclined strip, the second left connecting inclined strip connects the second upper lamp shell plate (22) and a second left lamp shell plate, and the second right connecting inclined strip connects the second upper lamp shell plate (22) and the second right lamp shell plate (23). The splicing structure (3) further comprises a left splicing strip (37) and a right splicing strip (38), the left splicing strip (37) connects the upper splicing plate (32) and the left splicing plate (31), and the right splicing strip (38) connects the upper splicing plate (32) and the right splicing plate (33), so that the splicing structure (3) is matched with the shapes of the first lamp shell (1) and the second lamp shell (2).

8. The spliced lineal lamp of claim 5, wherein: The splicing plate (36) is provided with the first positioning hole (34) and the second positioning hole (35), the first lamp shell (1) is provided with the first positioning pin (16), and the second lamp shell (2) is provided with the second positioning pin (26).

9. The spliced lineal lamp of claim 8, wherein: The upper splicing plate (32) is provided with two first positioning holes (34) and two second positioning holes (35), the first upper lamp shell plate (12) is provided with two first positioning pins (16), and the second lamp shell (2) is provided with two second positioning pins (26).

10. The modular lineal light of claim 2, wherein: Further comprising a light-transmitting plate (6), both sides of the light-transmitting plate (6) are provided with buckling structures (5), the lower side of the first left lamp shell plate (11), the first right lamp shell plate (13), the second left lamp shell plate (21) and the second right lamp shell plate (23) are provided with clamping structures (61) matched with the buckling structures (5), the light-transmitting plate (6) is connected to the first lamp shell (1) and the second lamp shell (2) through the buckling structures (5) and the clamping structures (61), the light-transmitting plate (6) can limit the first left lamp shell plate (11) and the first right lamp shell plate (13) from approaching or moving away from each other, and can limit the second left lamp shell plate (21) and the second right lamp shell plate (23) from approaching or moving away from each other.