Splicing assembly and line lamp

By incorporating a barrier strip into the linear light assembly, the problem of users accidentally touching conductive parts is solved, thus improving the safety of using the linear lights.

CN223795172UActive Publication Date: 2026-01-13ZHONGSHAN KAIKE LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202520087069.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-01-13
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

When assembling existing linear lights, users are prone to accidentally touching the copper plates, resulting in low safety and affecting the safety of use.

Method used

Design a splicing component including a first splicing piece and a second splicing piece, with a baffle strip positioned between mounting holes and a conductive component installed inside the mounting holes. The user touches the baffle strip first and then touches the conductive component to avoid accidental contact with the conductive component.

Benefits of technology

The design of the barrier strip prevents users from accidentally touching conductive parts, improving the safety of the linear lights and reducing the risk of electric shock.

✦ Generated by Eureka AI based on patent content.

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Abstract

The splicing assembly comprises a first splicing piece and a second splicing piece, the first splicing piece is used for being connected with a first sectional material, the first splicing piece is provided with a plurality of first mounting holes which are formed side by side at intervals, and the first mounting holes are used for mounting first conductive pieces connected with a power source; the first splicing piece is used for being connected with a first profile, the second splicing piece is used for being connected with a second profile, the second splicing piece is provided with a plurality of second mounting holes arranged side by side at intervals, the second mounting holes are used for mounting second conductive pieces, a splicing structure is arranged between the first splicing piece and the second splicing piece, and the splicing structure is used for fixing the first splicing piece and the second splicing piece. And at least one barrier strip is arranged on the side, facing the second splicing piece, of the first splicing piece, and the barrier strips are located between the adjacent first mounting holes, so that by arranging the barrier strips, the situation that a user mistakenly touches the first conductive pieces can be avoided, and the use safety of the line lamp can be improved.
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Description

Technical Field

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

[0002] Existing linear lights are composed of multiple profile segments spliced ​​together, with light strips embedded within the profiles. When two adjacent profile segments are spliced ​​together, they need to be joined into one piece using splicing components. During the assembly of the light strips within adjacent profiles, the two light strips are electrically connected through copper plates on the splicing components. During splicing, users are prone to accidentally touching the copper plates on the splicing components, resulting in low safety when using the linear lights. Utility Model Content

[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a splicing assembly that improves the safety of linear lights.

[0004] This utility model also proposes a linear light having the above-mentioned splicing components.

[0005] The splicing assembly according to a first aspect embodiment of the present invention includes:

[0006] The first splicing component is used to connect with the first profile. The first splicing component is provided with a plurality of first mounting holes arranged side by side at intervals. The first mounting holes are used to install a first conductive component connected to a power source.

[0007] The second splicing component is used to connect with the second profile. The second splicing component is provided with a plurality of second mounting holes arranged side by side at intervals. The second mounting holes are used to install the second conductive component. A splicing structure is provided between the first splicing component and the second splicing component. The splicing structure is used to fix the first splicing component and the second splicing component so that the first conductive component and the second conductive component are electrically connected.

[0008] The first splicing component has at least one baffle on the side facing the second splicing component, and the baffle is located between adjacent first mounting holes.

[0009] The splicing assembly according to the first aspect of the present invention has at least the following beneficial effects:

[0010] By setting at least one baffle between adjacent first mounting holes, and installing the first conductive element in the first mounting hole, since the first conductive element is connected to the power supply, the user touches the baffle before touching the first conductive element, which can prevent the user from accidentally touching the first conductive element, thereby reducing the risk of electric shock to the user and improving the safety of linear lights.

[0011] According to some embodiments of the present invention, the splicing structure includes a splicing protrusion and a splicing groove. One of the splicing protrusion and the splicing groove is disposed in the first splicing member, and the other is disposed in the second splicing member. The splicing protrusion is accommodated in the splicing groove and abuts against the side wall of the splicing groove.

[0012] According to some embodiments of the present invention, the second splicing member is provided with a first groove, and the baffle is accommodated in the first groove.

[0013] According to some embodiments of the present invention, a first receiving groove is provided at the middle position of the first splicing component, and a second receiving groove is provided at the middle position of the second splicing component. The first receiving groove and the second receiving groove are connected to form a receiving channel, which is used to accommodate the light strip.

[0014] A linear light according to a second aspect embodiment of the present invention includes:

[0015] First profile and second profile;

[0016] Multiple first conductive elements and multiple second conductive elements;

[0017] In the splicing assembly described in the above embodiments, the first splicing component is connected to the first profile, the second splicing component is connected to the second profile, the number of the first conductive component is equal to the number of the first mounting holes, and the first conductive component is at least partially installed in the corresponding first mounting hole; the number of the second conductive component is equal to the number of the second mounting holes, and the second conductive component is at least partially installed in the second mounting hole.

[0018] The linear light according to the second aspect embodiment of the present invention has at least the following beneficial effects:

[0019] The splicing assembly of the first aspect of this utility model is provided with at least one baffle bar located between adjacent first mounting holes. The first conductive element is installed in the first mounting hole. Since the first conductive element is connected to the power supply, the user touches the baffle bar before touching the first conductive element, which can prevent the user from accidentally touching the first conductive element, thereby reducing the risk of electric shock to the user and improving the safety of linear lights.

[0020] According to some embodiments of the present invention, there is a first gap between the first profile and the second profile, and a second gap between the first splicing component and the second splicing component. Along the length direction of the linear light, the first gap and the second gap are staggered.

[0021] According to some embodiments of the present invention, the linear light further includes a plurality of first sealing members, the number of which is equal to the number of the first mounting holes. The first sealing member blocks the end of the corresponding first mounting hole away from the second splicing member, and the first conductive member passes through the corresponding first sealing member.

[0022] According to some embodiments of the present invention, from the first splicing member to the second splicing member, the width of the outer peripheral surface of the first sealing member gradually decreases, and the maximum width of the outer peripheral surface of the first sealing member is greater than the maximum width of the first mounting hole.

[0023] According to some embodiments of the present invention, the linear light further includes a first cover plate, which abuts against the side of each first sealing member away from the second splicing member, and the first cover plate is connected to the first splicing member, and each first conductive member passes through the corresponding first sealing member.

[0024] According to some embodiments of the present invention, the first cover plate is connected to the first splicing member by a first fastener.

[0025] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0026] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0027] Figure 1 This is a schematic diagram of the structure of a linear light according to an embodiment of the present utility model;

[0028] Figure 2 This is an exploded view of a linear light according to an embodiment of the present utility model;

[0029] Figure 3 This is an assembly diagram of the splicing component, the first conductive component, and the second conductive component according to an embodiment of the present utility model;

[0030] Figure 4 This is an exploded view of the splicing component, the first conductive component, and the second conductive component according to an embodiment of the present utility model;

[0031] Figure 5 for Figure 3 Top view;

[0032] Figure 6 for Figure 5 Sectional view of line AA in the middle;

[0033] Figure 7This is an exploded view of the first and second splicing components according to an embodiment of the present utility model.

[0034] Figure label:

[0035] First splicing component 100, first mounting hole 110, stop bar 120, splicing protrusion 130, first receiving groove 140, second splicing component 200, second mounting hole 210, splicing groove 220, first groove 230, second receiving groove 240, first profile 310, second profile 320, first conductive component 330, first conductive post 331, first sealing part 332, second conductive component 340, second conductive post 341, second sealing part 342, first sealing component 350, first cover plate 360, second sealing component 370, second cover plate 380. Detailed Implementation

[0036] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0037] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0038] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.

[0039] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0040] In related technologies, existing linear lights are composed of multiple profile segments spliced ​​together, with light strips embedded within the profiles. When two adjacent profile segments are spliced ​​together, they need to be joined into one piece using splicing components. During the assembly of the light strips within adjacent profiles, the two light strips are electrically connected through copper plates on the splicing components. During splicing, users are prone to accidentally touching the copper plates on the splicing components, resulting in low safety when using the linear lights.

[0041] Understandably, when a linear light malfunctions, maintenance personnel need to disconnect the splicing assembly to check if current is flowing through the copper contacts on the assembly. Since the copper contacts are exposed, maintenance personnel are prone to accidentally touching them, which could lead to electric shock and affect the safety of the linear light.

[0042] Reference Figures 1 to 7 According to a first aspect embodiment of the present invention, the splicing assembly includes a first splicing member 100 and a second splicing member 200. The first splicing member 100 is used to connect with a first profile 310 and has a plurality of first mounting holes 110 arranged side-by-side at intervals. The first mounting holes 110 are used to install a first conductive member 330 connected to a power source. The second splicing member 200 is used to connect with a second profile 320 and has a plurality of second mounting holes 210 arranged side-by-side at intervals. The second mounting holes 210 are used to install a second conductive member 34. A splicing structure is provided between the first splicing component 100 and the second splicing component 200. The splicing structure is used to fix the first splicing component 100 and the second splicing component 200 so that the first conductive component 330 and the second conductive component 340 are electrically connected. The first splicing component 100 has at least one baffle 120 on the side facing the second splicing component 200. The baffle 120 is located between adjacent first mounting holes 110. In this way, by setting the baffle 120, the user can be prevented from accidentally touching the first conductive component 330, thereby improving the safety of the linear light.

[0043] For example, by setting at least one baffle 120 between adjacent first mounting holes 110, and installing the first conductive element 330 in the first mounting hole 110, since the first conductive element 330 is connected to the power supply, the user touches the baffle 120 before touching the first conductive element 330, which can prevent the user from accidentally touching the first conductive element 330, thereby reducing the risk of electric shock to the user and improving the safety of linear lights.

[0044] In some embodiments of this utility model, the splicing structure includes a splicing protrusion 130 and a splicing groove 220. One of the splicing protrusion 130 and the splicing groove 220 is disposed in the first splicing member 100 and the other is disposed in the second splicing member 200. The splicing protrusion 130 is accommodated in the splicing groove 220 and abuts against the side wall of the splicing groove 220, which facilitates the splicing of the first splicing member 100 and the second splicing member 200, so as to facilitate the assembly of linear lights.

[0045] Specifically, the splicing protrusion 130 has an L-shaped structure and includes a connecting section and a limiting section connected to the connecting section. The end of the connecting section away from the limiting section is connected to the first splicing member 100. The splicing groove 220 has a corresponding L-shaped structure and includes a clearance groove and a limiting groove that connects to the clearance groove. When the first splicing member 100 and the second splicing member 200 are spliced, the connecting section is accommodated in the clearance groove, and the limiting section is accommodated in the limiting groove and can abut against the side wall of the limiting groove to restrict the separation of the first splicing member 100 and the second splicing member 200, which facilitates the assembly of linear lights.

[0046] It should be noted that the positions of the splicing protrusion 130 and the splicing groove 220 can be interchanged, that is, the splicing groove 220 is located on the first splicing component 100 and the splicing protrusion 130 is located on the second splicing component 200, without any restrictions.

[0047] As another implementation method, the splicing structure can also be a snap-fit ​​structure, such as a structure in which a hook and a slot work together, which will not be described in detail here.

[0048] In some embodiments of this utility model, the second splicing member 200 is provided with a first groove 230, and the baffle 120 is accommodated in the first groove 230, which can reduce the fitting gap between the first splicing member 100 and the second splicing member 200, so that the first conductive member 330 can be stably electrically connected to the second conductive member 340, and the reliability of the linear light can be guaranteed.

[0049] Specifically, when the first splicing component 100 and the second splicing component 200 are spliced ​​together, the first splicing component 100 and the second splicing component 200 are fastened together by the structure of the splicing protrusion 130 and the splicing groove 220. At this time, the baffle 120 is accommodated in the first groove 230, which can reduce the fitting gap between the first splicing component 100 and the second splicing component 200, so that the first conductive component 330 can be stably electrically connected to the second conductive component 340, and the reliability of the linear light can be guaranteed.

[0050] In some embodiments of this utility model, a first receiving groove is provided at the middle position of the first splicing member 100, and a second receiving groove 240 is provided at the middle position of the second splicing member 200. The first receiving groove and the second receiving groove 240 are connected to form a receiving channel, which is used to accommodate the light strip and facilitates the assembly of the light strip.

[0051] Specifically, both the first receiving groove and the second receiving groove 240 are U-shaped structures, which prevents the light strip from interfering with the first splicing component 100 and the second splicing component 200. The openings of the first receiving groove and the second receiving groove 240 can be placed into the first splicing component 100 and the second splicing component 200 respectively, which facilitates the assembly of the light strip.

[0052] Reference Figure 1 , Figure 2 According to a second aspect embodiment of the present invention, a linear light includes a first profile 310, a second profile 320, a plurality of first conductive elements 330, a plurality of second conductive elements 340, and a splicing assembly according to a first aspect embodiment of the present invention. A first splicing component 100 is connected to the first profile 310, and a second splicing component 200 is connected to the second profile 320. The number of first conductive elements 330 is equal to the number of first mounting holes 110, and the first conductive elements 330 are at least partially installed in the corresponding first mounting holes 110. The number of second conductive elements 340 is equal to the number of second mounting holes 210, and the second conductive elements 340 are at least partially installed in the second mounting holes 210. By setting a baffle 120, the user can be prevented from accidentally touching the first conductive elements 330, thereby improving the safety of using the linear light.

[0053] For example, by setting at least one baffle 120 between adjacent first mounting holes 110, and installing the first conductive element 330 in the first mounting hole 110, since the first conductive element 330 is connected to the power supply, the user touches the baffle 120 before touching the first conductive element 330, which can prevent the user from accidentally touching the first conductive element 330, thereby reducing the risk of electric shock to the user and improving the safety of linear lights.

[0054] In some embodiments of this utility model, there is a first gap between the first profile 310 and the second profile 320, and a second gap between the first splicing member 100 and the second splicing member 200. The first gap and the second gap are staggered along the length direction of the linear light, which can effectively prevent light leakage from the linear light and thus improve the user experience.

[0055] Specifically, the linear light has a strip-shaped structure. The first gap is located at the connection between the first profile 310 and the second profile 320, and the second gap is located at the connection between the first splicing piece 100 and the second splicing piece 200. Since the first gap and the second gap are staggered along the length of the linear light, light leakage of the linear light can be effectively prevented, thereby improving the user experience.

[0056] In some embodiments of this utility model, the linear light also includes a plurality of first sealing members 350, the number of first sealing members 350 being equal to the number of first mounting holes 110. The first sealing member 350 blocks the end of the corresponding first mounting hole 110 away from the second splicing member 200, and the first conductive member 330 passes through the corresponding first sealing member 350, which can prevent dust or impurities from entering the first mounting hole 110, so as to facilitate the installation of the first conductive member 330.

[0057] Specifically, the first sealing element 350, the first conductive element 330, and the first mounting hole 110 correspond one-to-one. The first conductive element 330 includes a first conductive post 331 and a first sealing part 332 connected to one end of the first conductive post 331. The first sealing part 332 blocks the end of the first mounting hole 110 near the second splicing member 200. The first conductive post 331 passes through the first sealing element 350, and the first sealing element 350 blocks the end of the first mounting hole 110 away from the second splicing member 200, so that the first mounting hole 110 is sealed, which can prevent dust or impurities from entering the first mounting hole 110, so as to facilitate the installation of the first conductive element 330.

[0058] It should be noted that the first sealing part 332 abuts against and is electrically connected to the corresponding second conductive part 340, which will not be described in detail here.

[0059] In some embodiments of this utility model, the width of the outer peripheral surface of the first sealing member 350 gradually decreases from the first splicing member 100 to the second splicing member 200, and the maximum width of the outer peripheral surface of the first sealing member 350 is greater than the maximum width of the first mounting hole 110, which can guide the first sealing member 350 to facilitate the installation of the first sealing member 350.

[0060] For example, the cross-section of the first mounting hole 110 is a square structure, and the first sealing member 350 is a truncated pyramid structure. One end of the first sealing member 350 is housed in the first mounting hole 110, and the other end of the first sealing member 350 extends out of the first mounting hole 110. The outer peripheral surface of the first sealing member 350 is in sealing contact with the side wall of the first mounting hole 110, which can guide the first sealing member 350 to facilitate its installation.

[0061] As another implementation, the cross-section of the first mounting hole 110 can also be a circular structure, and the first sealing member 350 can be a frustum structure, which is not limited here.

[0062] In some embodiments of this utility model, the linear light also includes a first cover plate 360, which abuts against the side of each first sealing member 350 away from the second splicing member 200, and the first cover plate 360 ​​is connected to the first splicing member 100. Each first conductive member 330 passes through the corresponding first sealing member 350, which facilitates the installation and fixing of multiple first sealing members 350.

[0063] In some embodiments of this utility model, the first cover plate 360 ​​is connected to the first splicing component 100 by a first fastener, which is a screw or bolt or other component, so that the first cover plate 360 ​​and the first splicing component 100 can be stably connected, and the first cover plate 360 ​​can be easily installed or disassembled, and the linear lights can be easily inspected or maintained.

[0064] In some embodiments of this utility model, the linear light also includes a plurality of second sealing members 370, the number of second sealing members 370 being equal to the number of second mounting holes 210. The second sealing member 370 blocks the end of the corresponding second mounting hole 210 away from the second splicing member 200, and the second conductive member 340 passes through the corresponding second sealing member 370, which can prevent dust or impurities from entering the second mounting hole 210, so as to facilitate the installation of the second conductive member 340.

[0065] Specifically, the second sealing member 370, the second conductive member 340, and the second mounting hole 210 correspond one-to-one. The second conductive member 340 includes a second conductive post 341 and a second sealing part 342 connected to one end of the second conductive post 341. The second sealing part 342 seals the end of the second mounting hole 210 near the first splicing member 100. The second conductive post 341 passes through the second sealing member 370, and the second sealing member 370 seals the end of the second mounting hole 210 away from the first splicing member 100, so that the second mounting hole 210 is sealed, which can prevent dust or impurities from entering the second mounting hole 210, so as to facilitate the installation of the second conductive member 340.

[0066] It should be noted that the second sealing part 342 abuts against and is electrically connected to the corresponding first sealing part 332, which will not be described in detail here.

[0067] In some embodiments of this utility model, the width of the outer peripheral surface of the second sealing member 370 gradually decreases from the direction of the second splicing member 200 to the second splicing member 200, and the maximum width of the outer peripheral surface of the second sealing member 370 is greater than the maximum width of the second mounting hole 210, which can guide the second sealing member 370 to facilitate the installation of the second sealing member 370.

[0068] For example, the cross-section of the second mounting hole 210 is a square structure, and the second sealing member 370 is a corresponding truncated pyramid structure. One end of the second sealing member 370 is housed in the second mounting hole 210, and the other end of the second sealing member 370 extends out of the second mounting hole 210. The outer peripheral surface of the second sealing member 370 is in sealing contact with the side wall of the second mounting hole 210, which can guide the second sealing member 370 to facilitate its installation.

[0069] As another implementation, the cross-section of the second mounting hole 210 can also be a circular structure, and the second sealing member 370 can be a frustum structure, which is not limited here.

[0070] In some embodiments of this utility model, the linear light also includes a second cover plate 380, which abuts against the side of each second sealing member 370 away from the first splicing member 100, and the second cover plate 380 is connected to the second splicing member 200. Each second conductive member 340 passes through the corresponding second sealing member 370, which facilitates the installation and fixing of multiple second sealing members 370.

[0071] In some embodiments of this utility model, the second cover plate 380 is connected to the second splicing piece 200 by a second fastener, which is a screw or bolt or other component, so that the second cover plate 380 and the second splicing piece 200 can be stably connected, and the second cover plate 380 can be easily installed or disassembled, and the linear lights can be easily inspected or maintained.

[0072] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0073] The present invention has been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the invention.

Claims

1. A splicing component, characterized in that, include: The first splicing component (100) is used to connect with the first profile (310). The first splicing component (100) is provided with a plurality of first mounting holes (110) arranged side by side and spaced apart. The first mounting holes (110) are used to install the first conductive component (330) connected to the power supply. The second splicing component (200) is used to connect with the second profile (320). The second splicing component (200) is provided with a plurality of second mounting holes (210) arranged side by side and spaced apart. The second mounting holes (210) are used to install the second conductive component (340). A splicing structure is provided between the first splicing component (100) and the second splicing component (200). The splicing structure is used to fix the first splicing component (100) and the second splicing component (200) so that the first conductive component (330) and the second conductive component (340) are electrically connected. The first splicing component (100) has at least one baffle (120) on the side facing the second splicing component (200), and the baffle (120) is located between adjacent first mounting holes (110).

2. The splicing component according to claim 1, characterized in that, The splicing structure includes a splicing protrusion (130) and a splicing groove (220). One of the splicing protrusion (130) and the splicing groove (220) is disposed in the first splicing member (100), and the other is disposed in the second splicing member (200). The splicing protrusion (130) is accommodated in the splicing groove (220) and abuts against the side wall of the splicing groove (220).

3. The splicing component according to claim 1, characterized in that, The second splicing component (200) is provided with a first groove (230), and the baffle (120) is accommodated in the first groove (230).

4. The splicing component according to claim 1, characterized in that, The first splicing component (100) has a first receiving groove at the middle position, and the second splicing component (200) has a second receiving groove (240) at the middle position. The first receiving groove and the second receiving groove (240) are connected to form a receiving channel, which is used to accommodate the light strip.

5. A linear light, characterized in that, include: First profile (310) and second profile (320); Multiple first conductive elements (330) and multiple second conductive elements (340); According to any one of claims 1 to 4, the first splicing member (100) is connected to the first profile (310), the second splicing member (200) is connected to the second profile (320), the number of the first conductive member (330) is equal to the number of the first mounting holes (110), the first conductive member (330) is at least partially installed in the corresponding first mounting hole (110), the number of the second conductive member (340) is equal to the number of the second mounting holes (210), and the second conductive member (340) is at least partially installed in the second mounting hole (210).

6. The linear light according to claim 5, characterized in that, There is a first gap between the first profile (310) and the second profile (320), and there is a second gap between the first splice (100) and the second splice (200). Along the length direction of the linear light, the first gap and the second gap are staggered.

7. The linear light according to claim 5, characterized in that, The linear light also includes a plurality of first sealing members (350), the number of which is equal to the number of the first mounting holes (110). The first sealing member (350) blocks the end of the corresponding first mounting hole (110) away from the second splicing member (200), and the first conductive member (330) passes through the corresponding first sealing member (350).

8. The linear light according to claim 7, characterized in that, From the first splicing member (100) to the second splicing member (200), the width of the outer peripheral surface of the first sealing member (350) gradually decreases, and the maximum width of the outer peripheral surface of the first sealing member (350) is greater than the maximum width of the first mounting hole (110).

9. The linear light according to claim 7, characterized in that, The linear light also includes a first cover plate (360), which abuts against the side of each first sealing member (350) away from the second splicing member (200), and the first cover plate (360) is connected to the first splicing member (100), and each first conductive member (330) passes through the corresponding first sealing member (350).

10. The linear light according to claim 9, characterized in that, The first cover plate (360) is connected to the first splice (100) by a first fastener.