A spliced line light
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-05-09
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]本发明的主要目的是提出一种拼接线条灯,旨在解决现有技术中拼接线条灯的接电方式接电较麻烦、效率较低、成本较高的技术问题
[0011]在第一灯体插入第一拼接插槽的过程中,第一磁吸球与第一磁铁吸合,表示第一灯体插入到位,并起到左右方向的限位作用;在第二灯体插入第二拼接插槽的过程中,第二磁吸球与第二磁铁吸合,表示第二灯体插入到位,并起到左右方向的限位作用。本方案通过第一灯体与中间拼接件的插接、第二灯体与中间拼接件的插接,以及通过第一磁吸球与第一磁铁的磁吸、第二磁吸球与第二磁铁的磁吸,在插接过程中即完成拼接,在分拆时拉动第一灯体与中间拼接件使第一磁吸球与第一磁铁分离、拉动第二灯体与中间拼接件使第二磁吸球与第二磁铁分离即可,操作简单快捷。
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Figure CN122544280A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of lighting technology, and in particular to a splicing strip light. Background Technology
[0002] Splicing strip lights refer to two or more linear lights installed together, which can flexibly adapt to different installation spaces. Typically, two linear lights are connected by an intermediate connector. Currently, splicing strip lights are powered in two main ways: The first is that after splicing two or more linear lights, additional wires are soldered between the light panels of the two lights in parallel. This only requires two wires (one positive and one negative), but the process is complex, inefficient, and labor-intensive. The second is that each linear light is powered independently, requiring a separate wire for each light. This wiring method is complex and costly. Those skilled in the art desire a splicing strip light that can achieve a simpler and more cost-effective power connection. Summary of the Invention
[0003] The main objective of this invention is to propose a splicing strip light, which aims to solve the technical problems of the existing splicing strip light's power connection method being cumbersome, inefficient, and costly.
[0004] To achieve the above objectives, the present invention proposes a splicing strip light, comprising: The first linear light includes a first light body and a first light strip. The first light strip is fixed to the inner side of the first light body. The first light strip is provided with a first conductive contact and a second conductive contact. The first conductive contact and the second conductive contact are arranged at intervals along the front-back direction with the length direction of the first light body as the left-right direction and the width direction of the first light body as the front-back direction. The second linear light includes the first linear light and the second linear light arranged in the left-right direction. The second linear light includes a second light body and a second light strip. The second light strip is fixed to the inner side of the second light body. The second light strip is provided with a third conductive contact and a fourth conductive contact. The third conductive contact and the fourth conductive contact are arranged at intervals in the front-back direction. An intermediate splicing component is disposed between the first linear light and the second linear light. The left and right ends of the intermediate splicing component are respectively provided with a first splicing slot and a second splicing slot. The end of the first light body is inserted into the first splicing slot and is detachably connected. The end of the second light body is inserted into the second splicing slot and is detachably connected. The intermediate splicing component is provided with a first conductive sheet and a second conductive sheet. The first conductive sheet and the second conductive sheet are arranged at intervals along the front-back direction. The first conductive sheet includes a first fixing piece, a first contact spring piece, and a second contact spring piece. The first fixing piece is fixedly connected to the intermediate splicing member. The first contact spring piece and the second contact spring piece are respectively connected to the left and right ends of the first fixing piece. The first fixing piece is located between the first lamp body and the second lamp body. The first contact spring piece is located on the upper side of the first lamp strip and abuts against the first conductive contact. The first contact spring piece can generate a downward pressing force on the first conductive contact. The second contact spring piece is located on the upper side of the second lamp strip and abuts against the third conductive contact. The second contact spring piece can generate a downward pressing force on the third conductive contact. The second conductive piece includes a second fixing piece, a third contact spring piece, and a fourth contact spring piece. The second fixing piece is fixedly connected to the intermediate splicing piece. The third and fourth contact spring pieces are respectively connected to the left and right ends of the second fixing piece. The second fixing piece is located between the first lamp body and the second lamp body. The third contact spring piece is located on the upper side of the first lamp strip and abuts against the second conductive contact. The third contact spring piece can generate a downward pressing force on the second conductive contact. The fourth contact spring piece is located on the upper side of the second lamp strip and abuts against the fourth conductive contact. The fourth contact spring piece can generate a downward pressing force on the fourth conductive contact. The first linear light and the intermediate splicing component can switch between an insertion state, a splicing holding state, and a disassembly state, wherein: In the insertion action state, the end of the first lamp body is inserted into the first splicing slot in the left-right direction, and the first contact spring and the third contact spring are respectively close to the first conductive contact and the second conductive contact. In the splicing and holding state, the first contact spring is pressed against the first conductive contact to achieve conductive contact, and the third contact spring is pressed against the second conductive contact to achieve conductive contact; During the disassembly process, the end of the first lamp body exits the first splicing slot in the left-right direction, and the first and third electrical contact springs move away from the first conductive contact and the second conductive contact, respectively.
[0005] The first and second linear lights are connected by an intermediate splicing piece. During splicing, the end of the first light body inserts into the first splicing slot, which serves as a limiting element in the front-back and vertical directions. The end of the second light body inserts into the second splicing slot, which also serves as a limiting element in the front-back and vertical directions. When the first linear light is spliced with the intermediate splicing piece, the first contact spring of the first conductive sheet and the third contact spring of the second conductive sheet respectively abut against the first and second conductive contacts on the first light strip to conduct electricity. When the second linear light is spliced with the intermediate splicing piece, the second contact spring of the first conductive sheet and the fourth contact spring of the second conductive sheet respectively abut against the third and fourth conductive contacts on the second light strip to conduct electricity, thus achieving interconnection between the first and second light strips. This invention, by setting the first and second conductive sheets on the intermediate splicing piece, allows the first and second conductive sheets to be connected in parallel to the first and second light strips after splicing, eliminating the need for additional wire welding between the first and second light strips. This simplifies the connection structure, improves assembly efficiency, and reduces costs.
[0006] Preferably, the surface of the first conductive contact is an arc-shaped curved surface that convexes upward in the middle. A first guide is fixed on the first lamp body or the first lamp strip. The first guide is located on the front or rear side of the first conductive contact. The first guide is offset from the first contact spring. The first guide has a first raised slope on the side near the first fixing piece in the left-right direction. The first raised slope is inclined from bottom to top away from the first fixing piece. The first guide has a first through-hole in the middle in the up-down direction. The side of the first through-hole near the first contact spring is open. The lower side of the first contact spring is provided with a first raised portion that can press against the first conductive contact surface. A first raised piece extends from the first contact spring in the front-rear direction near the first guide member. The first raised piece is located on the side of the first raised portion away from the first fixed piece. The first raised piece is inclined from bottom to top towards the side away from the first fixed piece. The first raised piece is directly opposite the first guide member in the front-rear direction. The first raised piece is matched with the first raised inclined surface and the first notch, such that: In the insertion action state, the first lifting part slides along the surface of the first conductive contact, causing the first contact spring to tilt upward. The upper side of the first lifting piece is located on the upper side of the first notch near the first fixing piece. The first lifting piece slides upward along the first lifting slope, causing the first contact spring to continue to tilt upward. When the first lifting piece reaches the highest point of the first guide, it goes around the first guide. The first contact spring rebounds downward and presses against the first conductive contact to switch to the splicing holding state. In the disassembly operation state, the first lifting part slides along the surface of the first conductive contact, causing the first contact spring to tilt upward. The lower side of the first lifting piece is located inside the side of the first notch away from the first fixing piece. Then the first lifting piece enters and passes through the first notch, causing the first contact spring to move away from the first conductive contact.
[0007] When assembling the first lamp body and the intermediate splicing component, the first lifting piece does not pass through the first notch. The first contact spring, after being raised by the first lifting piece and the first lifting ramp, and after passing around the upper end of the first guide piece, quickly presses down onto the first conductive contact under a large rebound force, which can improve the contact continuity probability and stability between the first contact spring and the first conductive contact. When separating the first lamp body and the intermediate splicing component, the first lifting piece can pass through the first notch without affecting the separation of the first lamp body and the intermediate splicing component.
[0008] Preferably, the first raised portion is a first scraping angle, which is used to scrape the surface of the first conductive contact when the first lamp body is close to the intermediate splicing piece.
[0009] When the first scraping angle scrapes across the surface of the first conductive contact, it can remove the surface rosin or dust, increasing the probability of subsequent contact and conduction.
[0010] Preferably, a first magnet is fixed on the first lamp body, and a first slot extending in the left-right direction is provided on the first lamp body. The first slot has a first opening on the side near the second linear lamp and is connected to the first magnet. A second magnet is fixed on the second lamp body, and a second slot extending in the left-right direction is provided on the second lamp body. The second slot has a second opening on the side near the first linear lamp and is connected to the second magnet. The intermediate splicing component is provided with a first magnetic ball and a second magnetic ball. The first magnetic ball is disposed in the first splicing slot, and the second magnetic ball is disposed in the second splicing slot. The first magnetic ball is matched with the first magnet, and the second magnetic ball is matched with the second magnet. During the insertion action, the first magnetic ball passes through the first opening, enters the first slot, and approaches the first magnet; In the splicing holding state, the first magnetic ball is magnetically connected to the first magnet. In the disassembly action state, the first magnetic ball is separated from the first magnet and the first magnetic ball exits the first slot. When assembling the second lamp body and the intermediate splicing component, the second magnetic ball passes through the second opening and enters the second slot, where it is magnetically connected to the second magnet. When separating the second lamp body and the intermediate splicing component, the second magnetic ball separates from the second magnet and exits the second slot.
[0011] During the insertion of the first lamp body into the first splicing slot, the first magnetic ball and the first magnet attract each other, indicating that the first lamp body is inserted in place and also serving as a lateral limit. Similarly, during the insertion of the second lamp body into the second splicing slot, the second magnetic ball and the second magnet attract each other, indicating that the second lamp body is inserted in place and also serving as a lateral limit. This solution completes the splicing process during insertion by connecting the first lamp body to the intermediate splicing component, connecting the second lamp body to the intermediate splicing component, and using the magnetic attraction between the first and second magnetic balls and the first and second magnetic balls and the second magnet. Disassembly is simple and quick: pulling the first lamp body to the intermediate splicing component separates the first magnetic ball from the first magnet, and pulling the second lamp body to the intermediate splicing component separates the second magnetic ball from the second magnet.
[0012] Preferably, the splicing strip light further includes a first spring, which is connected between the first magnetic ball and the intermediate splicing member, such that: During the insertion action, the first spring is stretched as the first magnetic ball approaches the first magnet; During the disassembly process, the first spring pulls the first magnetic ball away from the first magnet.
[0013] Preferably, the splicing strip light further includes a first ball valve, which is disposed in the first slot. The first ball valve includes a first ball spring and a first mounting plate connected together. The first mounting plate is disposed on the side of the first ball spring away from the first opening. The first ball spring and the first mounting plate are offset in the front-rear direction. The first mounting plate is fixedly connected to the first lamp body. The first ball spring is located below the first magnet. The lower side of the first magnet is provided with a first groove that can partially accommodate the first magnetic ball. The first ball spring includes a lower guide section and an upper gate section. The lower guide section is inclined from bottom to top towards the side away from the first opening. The upper gate section is inclined from bottom to top towards the side away from the first opening. The first groove is directly opposite the upper side of the lower guide section. The upper gate section is located on the side of the first groove away from the first opening. The first magnetic ball and the first ball spring are directly opposite each other in the front-rear direction. The first spring is disposed in the front-rear direction on the side of the first ball spring away from the first mounting plate. During the insertion action, the first magnetic ball is on the side of the first guide ball spring near the first opening, and the first magnetic ball moves upward along the lower guide section; When the splicing is held in the state, the first magnetic ball is attracted by the first magnet and enters the first groove. The upper gate section is located on the lower side of the first magnetic ball. The first spring is in a stretched and taut state. The end of the first spring connected to the intermediate splicing piece is located on the side of the first magnetic ball away from the first opening in the left-right direction. The splitting action includes a first splitting stage and a second splitting stage performed sequentially, wherein: In the first disassembly stage, the intermediate splicing piece and the first lamp body first approach each other, the first spring pulls the first magnetic ball out of the first groove and moves to the side away from the first opening, the first magnetic ball opens and passes through the upper side of the upper gate section and moves to the side of the upper gate section away from the first opening; In the second disassembly stage, the intermediate splice is moved away from the first lamp body, the first spring pulls the first magnetic ball to move downward on the side of the first guide ball spring away from the first opening, the first magnetic ball opens and moves through the lower guide section and toward the first opening, and the first lifting piece enters and passes through the first notch.
[0014] When splicing the first lamp body and the intermediate splicing piece, the first guide ball valve can guide the first magnetic ball to approach the first magnet; in the first disassembly stage, when the first magnetic ball opens the upper gate section and moves to the side of the upper gate section away from the first opening, the upper gate section springs back to its original position. At this time, the first guide ball valve can weaken the magnetic attraction of the first magnet to the first magnetic ball. Then, in the second disassembly stage, the first magnetic ball moves downward away from the first magnet due to gravity and the tension of the first spring. After the first magnetic ball continues to open the lower side of the lower guide section, it can exit the first slot.
[0015] Preferably, a first chamfer is provided on the lower side of the first opening. The first chamfer can guide the first magnetic ball, facilitating its entry into the first slot.
[0016] Preferably, the first lamp body includes a first base plate and two first side plates, the two first side plates being respectively disposed on the front and rear sides of the first base plate, and each of the two first side plates being provided with a first magnet and a first slot. The second lamp body includes a second base plate and two second side plates, the two second side plates being respectively disposed on the front and rear sides of the second base plate, and each of the two second side plates being provided with a second magnet and a second slot. The intermediate splicing member is provided with two first magnetic spheres and two second magnetic spheres, the two first magnetic spheres being respectively disposed corresponding to the two first magnets, and the two second magnetic spheres being respectively disposed corresponding to the two second magnets. The first light strip is disposed on the first base plate.
[0017] Setting up two sets of first magnetic balls and first magnets, and two sets of second magnetic balls and second magnets, can improve the stability after splicing.
[0018] Preferably, the first contact spring is provided with a downward-facing first V-shaped groove. In the spliced holding state, the first V-shaped groove presses against the first conductive contact, and the first contact spring conducts electricity through the first V-shaped groove and the first conductive contact. The left and right side walls of the first V-shaped groove can contact the first conductive contact, increasing the probability of contact continuity.
[0019] Preferably, the splicing strip light further includes a splicing light board, which is fixed on the intermediate splicing component. The splicing light board is located between the first light body and the second light body. The splicing light board is provided with a fifth conductive contact and a sixth conductive contact. The fifth conductive contact is electrically connected to the first fixing piece, and the sixth conductive contact is electrically connected to the second fixing piece.
[0020] A splicing light board is installed on the intermediate splicing component. The splicing light board is connected to the first conductive sheet and the second conductive sheet. When the first linear light, the intermediate splicing component and the second linear light are spliced and powered on, the splicing light board is also powered on and illuminated to avoid forming a dark area at the position of the intermediate splicing component. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of the present invention 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 the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of the splicing strip light of the present invention when disassembled; Figure 2 This is a schematic diagram of the splicing strip light of the present invention after splicing; Figure 3 This is a schematic diagram of the structure of the intermediate splicing component of the present invention; Figure 4 This is a partial structural schematic diagram of the first linear lamp of the present invention; Figure 5 for Figure 4 A magnified view of a section at point A in the middle; Figure 6 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light of the present invention before splicing; Figure 7 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the insertion action state of the present invention. Figure 1 ; Figure 8 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the insertion action state of the present invention. Figure 2 ; Figure 9 for Figure 8 A magnified view of a section at point B in the middle; Figure 10 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light before they are spliced and held in the splicing state. Figure 3 ; Figure 11 for Figure 10 A magnified view of a section at point C; Figure 12 This is a partial enlarged view of point C when the intermediate splicing component and the first linear light are in the splicing holding state according to the present invention; Figure 13 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the first disassembly stage of the present invention. Figure 1 ; Figure 14 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the first disassembly stage of the present invention. Figure 2 ; Figure 15 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the second disassembly stage of the present invention. Figure 1 ; Figure 16 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the second disassembly stage of the present invention. Figure 2 ; Figure 17 for Figure 16 A magnified view of a section at point E in the middle; Figure 18 This is a schematic diagram of the structure of the intermediate splicing component and the first linear light in the second disassembly stage of the present invention. Figure 3 .
[0023] In the attached diagram: 1-First linear light, 11-First light body, 111-First slot, 112-First opening, 113-First chamfer, 114-First base plate, 115-First side plate, 12-First light strip, 13-First conductive contact, 14-Second conductive contact, 15-First guide, 151-First raised slope, 152-First notch, 16-First magnet, 161-First groove, 17-First ball valve, 171-First ball spring, 1711-Lower guide section, 1712-Upper gate section, 172-First mounting piece, 2-Second linear light, 21-Second light body, 211-Second slot 22-Second LED strip, 23-Third conductive contact, 24-Fourth conductive contact, 25-Second magnet, 3-Intermediate splicing piece, 31-First conductive sheet, 311-First fixing piece, 312-First electrical contact spring, 3121-First lifting part, 3122-First lifting piece, 3123-First notch, 3124-First V-groove, 313-Second electrical contact spring, 32-Second conductive sheet, 321-Second fixing piece, 322-Third electrical contact spring, 323-Fourth electrical contact spring, 33-First splicing slot, 34-Second splicing slot, 35-First magnetic ball, 37-First spring, 4-Splicing light panel.
[0024] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0025] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0026] It should be noted that if the embodiments of the present invention 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.
[0027] Furthermore, if the embodiments of this invention 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 technical features indicated. Therefore, a feature 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. When 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 invention.
[0028] like Figures 1 to 18 As shown, a splicing strip light includes a first strip light 1, a second strip light 2, and an intermediate splicing component 3. The first strip light 1 and the second strip light 2 are arranged in a left-right direction, and the intermediate splicing component 3 is located between the first strip light 1 and the second strip light 2.
[0029] The first linear light 1 includes a first light body 11 and a first light strip 12. The first light strip 12 is fixed to the inner side of the first light body 11. The first light strip 12 is provided with a first conductive contact 13 and a second conductive contact 14. The first conductive contact and the second conductive contact are arranged alternately along the front-back direction with the length direction of the first light body 11 as the left-right direction and the width direction of the first light body 11 as the front-back direction.
[0030] The second linear light 2 includes a second light body 21 and a second light strip 22. The second light strip 22 is fixed to the inner side of the second light body 21. The second light strip 22 is provided with a third conductive contact 23 and a fourth conductive contact 24, which are arranged alternately in the front-to-back direction. The first conductive contact 13 and the second conductive contact 14 are used to connect the positive and negative poles, respectively. When the first conductive contact is connected to the third conductive contact, and the second conductive contact is connected to the fourth conductive contact, a wire is led out from the first light strip 12 or the second light strip 22. After the wire is energized, the first light strip 12 and the second light strip 22 can emit light.
[0031] Intermediate splicing component 3, which is located between the first linear light 1 and the second linear light 2, as shown in the reference. Figure 1 and Figure 3 The middle splicing component 3 has a first splicing slot 33 and a second splicing slot 34 at its left and right ends, respectively. The end of the first lamp body 11 is inserted into the first splicing slot 33 and can be detachably connected. The end of the second lamp body 21 is inserted into the second splicing slot 34 and can be detachably connected. The detachable connection can be made by screws or buckles. The middle splicing component 3 has a first conductive sheet 31 and a second conductive sheet 32. The first conductive sheet 31 and the second conductive sheet 32 are arranged at intervals along the front and back direction. The first conductive piece 31 includes a first fixing piece 311, a first contact spring piece 312, and a second contact spring piece 313. The first fixing piece 311 is fixedly connected to the intermediate splicing piece 3. The first contact spring piece 312 and the second contact spring piece 313 are respectively connected to the left and right ends of the first fixing piece 311. The first fixing piece 311 is located between the first lamp body 11 and the second lamp body 21. The first contact spring piece 312 is located on the upper side of the first lamp strip 12 and abuts against the first conductive contact 13. The first contact spring piece 312 can generate a spring force that presses down on the first conductive contact 13. The second contact spring piece 313 is located on the upper side of the second lamp strip 22 and abuts against the third conductive contact 23. The second contact spring piece 313 can generate a spring force that presses down on the third conductive contact 23. The second conductive piece 32 includes a second fixing piece 321, a third contact spring piece 322, and a fourth contact spring piece 323. The second fixing piece 321 is fixedly connected to the intermediate splicing piece 3. The third contact spring piece 322 and the fourth contact spring piece 323 are respectively connected to the left and right ends of the second fixing piece 321. The second fixing piece 321 is located between the first lamp body 11 and the second lamp body 21. The third contact spring piece 322 is located on the upper side of the first lamp strip 12 and abuts against the second conductive contact 14. The third contact spring piece 322 can generate a downward elastic force to press the second conductive contact 14. The fourth contact spring piece 323 is located on the upper side of the second lamp strip 22 and abuts against the fourth conductive contact 24. The fourth contact spring piece 323 can generate a downward elastic force to press the fourth conductive contact 24. The first line light 1 and the middle splicing component 3 can switch between insertion, splicing and holding, and splitting states, wherein: In the insertion action state, the end of the first lamp body 11 is inserted into the first splicing slot 33 in the left and right direction, and the first contact spring 312 and the third contact spring 322 are close to the first conductive contact 13 and the second conductive contact 14 respectively. In the splicing holding state, the first contact spring 312 presses against the first conductive contact 13 to achieve conductive contact, and the third contact spring 322 presses against the second conductive contact 14 to achieve conductive contact. During the disassembly process, the end of the first lamp body 11 exits the first splicing slot 33 in the left-right direction, and the first electrical contact spring 312 and the third electrical contact spring 322 move away from the first conductive contact 13 and the second conductive contact 14, respectively.
[0032] The first linear light 1 and the second linear light 2 are connected by an intermediate splicing piece 3. During splicing, the end of the first light body 11 is inserted into the first splicing slot 33, which serves as a limiting force in the front-back and vertical directions. The end of the second light body 21 is inserted into the second splicing slot 34, which also serves as a limiting force in the front-back and vertical directions. When the first linear light 1 and the intermediate splicing piece 3 are spliced, the first contact spring 312 of the first conductive sheet 31 and the third contact spring 322 of the second conductive sheet 32 respectively abut against the first conductive contact 13 and the second conductive contact 14 on the first light strip 12 for conduction. When the second linear light 2 and the intermediate splicing piece 3 are spliced, the second contact spring 313 of the first conductive sheet 31 and the fourth contact spring 323 of the second conductive sheet 32 respectively abut against the third conductive contact 23 and the fourth conductive contact 24 on the second light strip 22 for conduction, realizing the connection between the first light strip 12 and the second light strip 22. Figure 2 .
[0033] The present invention provides a first conductive sheet 31 and a second conductive sheet 32 on the intermediate splicing component 3. After splicing, the first conductive sheet 31 and the second conductive sheet 32 can be connected in parallel to the first light strip 12 and the second light strip 22. There is no need to weld wires between the first light strip 12 and the second light strip 22. The power connection structure is simple, which can improve assembly efficiency and reduce costs.
[0034] In some specific embodiments, reference is made to Figure 4 and Figure 5 The surface of the first conductive contact 13 is an arc-shaped curved surface with the center convex upward. The arc-shaped curved surface can utilize the shape of the solder joint. A first guide 15 is fixed on the first lamp body 11 or the first lamp strip 12. The first guide 15 is preferably disposed on the first lamp strip 12. The first guide 15 is disposed on the front or rear side of the first conductive contact 13. The first guide 15 and the first contact spring 312 are offset from each other. The first guide 15 has a first lifting slope 151 on the side of the first fixed piece 311 in the left-right direction. The first lifting slope 151 is inclined from bottom to top towards the side away from the first fixed piece 311. The first guide 15 has a first through-hole 152 in the middle of the vertical direction. The side of the first through-hole 152 near the first contact spring 312 is open. The lower side of the first contact spring 312 is provided with a first raised portion 3121 capable of pressing against the first conductive contact surface. A first raised piece 3122 extends from the side of the first contact spring 312 near the first guide member 15 in the front-rear direction. The first raised piece 3122 is located on the side of the first raised portion 3121 away from the first fixed piece 311. The first raised piece 3122 is inclined from bottom to top towards the side away from the first fixed piece 311. The first raised piece 3122 is directly opposite the first guide member 15 in the front-rear direction. The first raised piece 3122 is positioned to match the first raised inclined surface 151 and the first notch 152, such that: Reference Figures 6 to 12 During the insertion process, the first lifting portion 3121 slides along the surface of the first conductive contact 13, causing the first contact spring 312 to tilt upwards. The upper side of the first lifting piece 3122 is located on the upper side of the first notch 152 near the first fixing piece 311. (Refer to...) Figure 8 and Figure 9 The first lifting piece 3122 cannot enter the first notch 152. The first lifting piece 3122 slides upward along the first lifting slope 151, causing the first contact spring piece 312 to continue to tilt upward. When the first lifting piece 3122 reaches the highest point of the first guide 15, it bypasses the first guide 15. (Refer to...) Figure 10 and Figure 11 The first contact spring 312 rebounds downward and presses against the first conductive contact 13 to switch to the splicing holding state, as shown in the figure. Figure 12 ; Reference Figures 15 to 18 During the disassembly process, the first lifting part 3121 slides along the surface of the first conductive contact 13, causing the first contact spring 312 to tilt upwards, as shown in the reference. Figure 16 and Figure 17 The lower side of the first lifting piece 3122 is located inside the first notch 152 on the side away from the first fixing piece 311. Then, the first lifting piece 3122 enters and passes through the first notch 152. During this process, the lower side of the first lifting piece 3122 enters the first notch 152 first. Due to the tilted setting of the first lifting piece 3122, the first notch 152 will press down the first lifting piece 3122 and the first electrical contact spring 312 during the disassembly process. Then, the first electrical contact spring 312 moves away from the first conductive contact 13. (Refer to...) Figure 18 .
[0035] When assembling the first lamp body 11 and the intermediate splicing component 3, the first lifting piece 3122 does not pass through the first notch 152. The first contact spring 312, after being raised by the first lifting piece 3122 and the first lifting ramp 151, and after passing around the upper end of the first guide member 15, quickly presses downwards onto the first conductive contact 13 under a large rebound force. This improves the contact conductivity probability and stability between the first contact spring 312 and the first conductive contact 13. When separating the first lamp body 11 and the intermediate splicing component 3, the first lifting piece 3122 can pass through the first notch 152 without affecting the separation of the first lamp body 11 and the intermediate splicing component 3.
[0036] Furthermore, the first raised portion 3121 is a first scraping angle, which is used to scrape the surface of the first conductive contact 13 when the first lamp body 11 is close to the intermediate splicing piece 3.
[0037] When the first scraping angle scrapes across the surface of the first conductive contact 13, it can remove the rosin or dust on the surface, increasing the probability of subsequent contact and conduction.
[0038] Furthermore, the upper surface of the first contact spring 312 is provided with a first notch 3123 extending in the front-rear direction. The first notch 3123 is located on the side of the first scraping corner near the first fixing piece 311. Providing the first notch 3123 on the first contact spring 312 facilitates the upward rotation and tilting of the first contact spring 312.
[0039] In some specific embodiments, a first magnet 16 is fixed on the first lamp body 11, and a first slot 111 extending in the left-right direction is provided on the first lamp body 11. The first slot 111 has a first opening 112 on the side near the second linear lamp 2. The first slot 111 is connected to the first magnet 16. A second magnet 25 is fixed on the second lamp body 21, and a second slot 211 extending in the left-right direction is provided on the second lamp body 21. The second slot 211 has a second opening on the side near the first linear lamp 1. The second slot 211 is connected to the second magnet 25. The intermediate splicing component 3 is provided with a first magnetic ball 35 and a second magnetic ball. The first magnetic ball 35 is located in the first splicing slot 33, and the second magnetic ball is located in the second splicing slot 34. The first magnetic ball 35 is matched with the first magnet 16, and the second magnetic ball is matched with the second magnet 25. The first magnetic ball 35 and the second magnetic ball can be made of steel balls.
[0040] During the insertion action, the first magnetic ball 35 passes through the first opening 112, enters the first slot 111, and approaches the first magnet 16. When the splicing is held, the first magnetic ball 35 is magnetically connected to the first magnet 16. When the disassembly is performed, the first magnetic ball 35 is separated from the first magnet 16 and the first magnetic ball 35 exits the first slot 111. When assembling the second lamp body 21 and the intermediate splicing piece 3, the second magnetic ball passes through the second opening and enters the second slot 211, where it is magnetically connected to the second magnet 25. When separating the second lamp body 21 and the intermediate splicing piece 3, the second magnetic ball separates from the second magnet 25 and exits the second slot 211.
[0041] During the insertion of the first lamp body 11 into the first splicing slot 33, the first magnetic ball 35 and the first magnet 16 are attracted to each other. The operator feels an impact or hears a "click" sound when they are attracted, indicating that the first lamp body 11 is inserted in place. The attraction of the first magnetic ball 35 and the first magnet 16 also serves as a limit in the left and right directions. During the insertion of the second lamp body 21 into the second splicing slot 34, the second magnetic ball and the second magnet 25 are attracted to each other, indicating that the second lamp body 21 is inserted in place and also serves as a limit in the left and right directions. This solution completes the splicing process by inserting the first lamp body 11 into the intermediate splicing component 3, inserting the second lamp body 21 into the intermediate splicing component 3, and magnetically attracting the first magnetic ball 35 to the first magnet 16 and the second magnetic ball to the second magnet 25. When disassembling, simply pull the first lamp body 11 into the intermediate splicing component 3 to separate the first magnetic ball 35 from the first magnet 16, and pull the second lamp body 21 into the intermediate splicing component 3 to separate the second magnetic ball from the second magnet 25. The operation is simple and quick.
[0042] Furthermore, the splicing strip light also includes a first spring 37, which is connected between the first magnetic ball 35 and the intermediate splicing piece 3, such that: During the insertion action, the first spring 37 is stretched as the first magnetic ball 35 approaches the first magnet 16; During the disassembly process, the first spring 37 pulls the first magnetic ball 35 away from the first magnet 16.
[0043] The first magnetic ball 35 is connected to the intermediate splicing piece 3 via the first spring 37. The first magnetic ball 35 has a certain amount of room to move relative to the intermediate splicing piece 3. The length and elastic coefficient of the first spring 37 should be matched to enable the first magnetic ball 35 to attract and separate from the first magnet 16.
[0044] Furthermore, the splicing strip light also includes a first ball valve 17, which is disposed within the first slot 111. The first ball valve 17 includes a first ball spring 171 and a first mounting plate 172 connected together. The first mounting plate 172 is disposed on the side of the first ball spring 171 away from the first opening 112. The first ball spring 171 and the first mounting plate 172 are offset in the front-rear direction. The first mounting plate 172 is fixedly connected to the first lamp body 11. The first ball spring 171 is located below the first magnet 16. The lower side of the first magnet 16 is provided with a first groove 161 that can partially accommodate the first magnetic ball 35. 171 includes a lower guide section 1711 and an upper gate section 1712. The lower guide section 1711 is inclined from bottom to top towards the side away from the first opening 112. The upper gate section 1712 is inclined from bottom to top towards the side away from the first opening 112. The inclined arrangement can be an arc-shaped surface or a straight surface. The first groove 161 is directly opposite the upper side of the lower guide section 1711. The upper gate section 1712 is located on the side of the first groove 161 away from the first opening 112. The first magnetic ball 35 and the first guide ball spring 171 are directly opposite each other. The first spring 37 is located in the front-back direction on the side of the first guide ball spring 171 away from the first mounting piece 172. Reference Figures 6 to 8 During the insertion action, the first magnetic ball 35 moves upward along the lower guide section 1711 on the side of the first guide ball spring 171 near the first opening 112. Reference Figure 10 When the splicing is in the holding state, the first magnetic ball 35 is attracted by the first magnet 16 and enters the first groove 161. The upper gate section 1712 is located on the lower side of the first magnetic ball 35. The first spring 37 is in a stretched and taut state. The end of the first spring 37 connected to the intermediate splicing piece 3 is located on the side of the first magnetic ball 35 away from the first opening 112 in the left and right direction, so that the first magnetic ball 35 can be pulled away from the first magnet 16 in the future. The splitting process includes a first splitting stage and a second splitting stage, which are performed sequentially. Reference Figure 13 and Figure 14 In the first disassembly stage, the intermediate splice 3 and the first lamp body 11 first approach each other, the first spring 37 pulls the first magnetic ball 35 out of the first groove 161 and moves to the side away from the first opening 112, the first magnetic ball 35 opens and passes through the upper side of the upper gate section 1712 and moves to the side of the upper gate section 1712 away from the first opening 112. Since the first spring 37 is offset from the first guide ball spring 171 in the front-back direction, the first spring 37 and the first guide ball spring 171 do not interfere with each other. Reference Figure 15 , Figure 16 and Figure 18In the second disassembly stage, the intermediate splice 3 and the first lamp body 11 move away from each other. The first spring 37 pulls the first magnetic ball 35 downward on the side of the first guide ball spring 171 away from the first opening 112. The first magnetic ball 35 opens and moves through the lower guide section 1711 and into the first opening 112. The first lifting piece 3122 enters and passes through the first notch 152.
[0045] When splicing the first lamp body 11 and the intermediate splicing part 3, the first guide ball valve 17 can guide the first magnetic ball 35 to approach the first magnet 16; in the first disassembly stage, when the first magnetic ball 35 opens the upper gate section 1712 and moves to the side of the upper gate section 1712 away from the first opening 112, the upper gate section 1712 springs back to its original position. At this time, the first guide ball valve 17 can weaken the magnetic attraction of the first magnet 16 to the first magnetic ball 35. Then, in the second disassembly stage, the first magnetic ball 35 moves downward away from the first magnet 16 due to gravity and the pulling force of the first spring 37. After the first magnetic ball 35 continues to open the lower side of the lower guide section 1711, it can exit the first slot 111.
[0046] Furthermore, a first chamfer 113 is provided on the lower side of the first opening 112. The first chamfer 113 can guide the first magnetic ball 35, making it easier for the first magnetic ball 35 to enter the first slot 111.
[0047] In some specific embodiments, the structure and disassembly process of the second magnetic ball and the second magnet 25 can adopt the same structure and disassembly process as the first magnetic ball 35 and the first magnet 16.
[0048] In some specific embodiments, the first lamp body 11 includes a first base plate 114 and two first side plates 115, which are respectively disposed on the front and rear sides of the first base plate 114. Each of the two first side plates 115 is provided with a first magnet 16 and a first slot 111. The second lamp body 21 includes a second base plate and two second side plates, which are respectively disposed on the front and rear sides of the second base plate. Each of the two second side plates is provided with a second magnet 25 and a second slot 211. The intermediate splicing component 3 is provided with two first magnetic balls 35 and two second magnetic balls. The two first magnetic balls 35 are respectively disposed corresponding to the two first magnets 16, and the two second magnetic balls are respectively disposed corresponding to the two second magnets 25. The first lamp strip 12 is disposed on the first base plate 114. The arrangement of two sets of first magnetic balls 35 and first magnets 16, and two sets of second magnetic balls and second magnets 25, can improve the stability after splicing.
[0049] In some specific embodiments, the first contact spring 312 is provided with a downward-facing first V-shaped groove 3124. When in the spliced holding state, the first V-shaped groove 3124 presses against the first conductive contact 13, and the first contact spring 312 conducts electricity through the first V-shaped groove 3124 against the first conductive contact 13. The left and right side walls of the first V-shaped groove 3124 can contact the first conductive contact 13, increasing the probability of contact and conduction.
[0050] In some specific embodiments, the structure and disassembly process of the second contact spring 313 and the third conductive contact 23, the third contact spring 322 and the second conductive contact 14, and the fourth contact spring 323 and the fourth conductive contact 24 can be achieved by using the same structure and disassembly process as the first contact spring 312 and the first conductive contact 13 to achieve contact conduction and separation.
[0051] In some specific embodiments, the splicing strip light also includes a splicing light board 4, which is fixed on the intermediate splicing piece 3. The splicing light board 4 is located between the first light body 11 and the second light body 21. The splicing light board 4 is provided with a fifth conductive contact and a sixth conductive contact. The fifth conductive contact is electrically connected to the first fixing piece 311, and the sixth conductive contact is electrically connected to the second fixing piece 321.
[0052] Existing splicing strip lights have a certain distance between the two strip lights, resulting in a dark area with low brightness at the position of the middle splicing piece 3. A splicing light board 4 is installed on the middle splicing piece 3. The splicing light board 4 is connected to the first conductive sheet 31 and the second conductive sheet 32. When the first strip light 1, the middle splicing piece 3 and the second strip light 2 are spliced and powered on, the splicing light board 4 is also powered on and illuminates. That is, there is also light in the space between the first light body 11 and the second light body 21, so as to avoid the formation of a dark area at the position of the middle splicing piece 3.
[0053] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention's specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A spliced lineal light, characterized by, include: The first linear light (1) includes a first light body (11) and a first light strip (12). The first light strip (12) is fixed to the inner side of the first light body (11). The first light strip (12) is provided with a first conductive contact (13) and a second conductive contact (14). The first conductive contact and the second conductive contact are arranged at intervals along the front-back direction with the length direction of the first light body (11) as the left-right direction and the width direction of the first light body (11) as the front-back direction. The second linear light (2) is arranged in the left-right direction with the first linear light (1) and the second linear light (2). The second linear light (2) includes a second light body (21) and a second light strip (22). The second light strip (22) is fixed to the inner side of the second light body (21). The second light strip (22) is provided with a third conductive contact (23) and a fourth conductive contact (24). The third conductive contact and the fourth conductive contact are arranged at intervals in the front-back direction. An intermediate splicing component (3) is provided between the first linear light (1) and the second linear light (2). The left and right ends of the intermediate splicing component (3) are respectively provided with a first splicing slot (33) and a second splicing slot (34). The end of the first light body (11) is inserted into the first splicing slot (33) and can be detachably connected. The end of the second light body (21) is inserted into the second splicing slot (34) and can be detachably connected. The intermediate splicing component (3) is provided with a first conductive sheet (31) and a second conductive sheet (32). The first conductive sheet (31) and the second conductive sheet (32) are arranged at intervals along the front and back direction. The first conductive sheet (31) includes a first fixing sheet (311), a first contact spring (312), and a second contact spring (313). The first fixing sheet (311) is fixedly connected to the intermediate splicing member (3). The first contact spring (312) and the second contact spring (313) are respectively connected to the left and right ends of the first fixing sheet (311). The first fixing sheet (311) is located between the first lamp body (11) and the second lamp body (21). The first contact spring (312) Located on the upper side of the first light strip (12), the first contact spring (312) abuts against the first conductive contact (13), and the first contact spring (312) can generate a spring force that presses down on the first conductive contact (13). The second contact spring (313) is located on the upper side of the second light strip (22), and the second contact spring (313) abuts against the third conductive contact (23), and the second contact spring (313) can generate a spring force that presses down on the third conductive contact (23). The second conductive piece (32) includes a second fixing piece (321), a third electrical contact spring (322), and a fourth electrical contact spring (323). The second fixing piece (321) is fixedly connected to the intermediate splicing piece (3). The third electrical contact spring (322) and the fourth electrical contact spring (323) are respectively connected to the left and right ends of the second fixing piece (321). The second fixing piece (321) is located between the first lamp body (11) and the second lamp body (21). The third electrical contact spring (322) Located on the upper side of the first light strip (12), the third contact spring (322) abuts against the second conductive contact (14), and the third contact spring (322) can generate a spring force that presses down on the second conductive contact (14). The fourth contact spring (323) is located on the upper side of the second light strip (22), and the fourth contact spring (323) abuts against the fourth conductive contact (24), and the fourth contact spring (323) can generate a spring force that presses down on the fourth conductive contact (24). The first linear light (1) and the intermediate splicing component (3) can switch between an insertion action state, a splicing holding state, and a disassembly action state, wherein: In the insertion action state, the end of the first lamp body (11) is inserted into the first splicing slot (33) in the left and right direction, and the first contact spring (312) and the third contact spring (322) are close to the first conductive contact (13) and the second conductive contact (14), respectively. In the splicing and holding state, the first contact spring (312) presses against the first conductive contact (13) to achieve conductive contact, and the third contact spring (322) presses against the second conductive contact (14) to achieve conductive contact; In the disassembly operation state, the end of the first lamp body (11) exits the first splicing slot (33) in the left and right direction, and the first electrical contact spring (312) and the third electrical contact spring (322) move away from the first conductive contact (13) and the second conductive contact (14), respectively.
2. The spliced lineal light of claim 1, wherein, The surface of the first conductive contact (13) is an arc-shaped curved surface with the center convex upward. A first guide (15) is fixed on the first lamp body (11) or the first lamp strip (12). The first guide (15) is located on the front or rear side of the first conductive contact (13). The first guide (15) and the first contact spring (312) are staggered front and back. The first guide (15) has a first raised slope (151) on the side close to the first fixing piece (311) in the left and right direction. The first raised slope (151) is inclined from bottom to top to the side away from the first fixing piece (311). The first guide (15) has a first through-hole (152) in the middle of the vertical direction. The side of the first through-hole (152) close to the first contact spring (312) is open. The lower side of the first contact spring (312) is provided with a first raised portion (3121) that can press against the first conductive contact surface. The first contact spring (312) extends a first raised piece (3122) from the side of the first guide (15) in the front-rear direction. The first raised piece (3122) is located on the side of the first raised portion (3121) away from the first fixed piece (311). The first raised piece (3122) is inclined from bottom to top towards the side away from the first fixed piece (311). The first raised piece (3122) is directly opposite the first guide (15) in the front-rear direction. The first raised piece (3122) is matched with the first raised inclined surface (151) and the first notch (152) in position, such that: In the insertion action state, the first lifting part (3121) slides along the surface of the first conductive contact (13) to make the first contact spring (312) tilt upward. The upper side of the first lifting piece (3122) is located on the upper side of the first notch (152) near the first fixing piece (311). The first lifting piece (3122) slides upward along the first lifting slope (151) to make the first contact spring (312) continue to tilt upward. When the first lifting piece (3122) reaches the highest point of the first guide (15) and passes around the first guide (15), the first contact spring (312) rebounds downward and presses against the first conductive contact (13) to switch to the splicing holding state. In the disassembly operation state, the first lifting part (3121) slides along the surface of the first conductive contact (13) to make the first contact spring (312) tilt upward. The lower side of the first lifting piece (3122) is located inside the side of the first notch (152) away from the first fixing piece (311). Then the first lifting piece (3122) enters and passes through the first notch (152) so that the first contact spring (312) moves away from the first conductive contact (13).
3. The spliced lineal light of claim 2, wherein, The first raised part (3121) is a first scraping angle, which is used to scrape the surface of the first conductive contact (13) when the first lamp body (11) is close to the intermediate splice (3).
4. The splicing strip light as described in claim 2, characterized in that, A first magnet (16) is fixed on the first lamp body (11). The first lamp body (11) is provided with a first slot (111) extending in the left and right direction. The first slot (111) is provided with a first opening (112) on the side near the second linear lamp (2). The first slot (111) is connected to the first magnet (16). A second magnet (25) is fixed on the second lamp body (21). The second lamp body (21) is provided with a second slot (211) extending in the left and right direction. The second slot (211) is provided with a second opening on the side near the first linear lamp (1). The second slot (211) is connected to the second magnet (25). The intermediate splicing component (3) is provided with a first magnetic ball (35) and a second magnetic ball. The first magnetic ball (35) is located in the first splicing slot (33), and the second magnetic ball is located in the second splicing slot (34). The first magnetic ball (35) is matched with the first magnet (16), and the second magnetic ball is matched with the second magnet (25). In the insertion action state, the first magnetic ball (35) passes through the first opening (112), enters the first slot (111), and approaches the first magnet (16). In the splicing holding state, the first magnetic ball (35) is magnetically connected to the first magnet (16). In the disassembly action state, the first magnetic ball (35) separates from the first magnet (16) and the first magnetic ball (35) exits the first slot (111). When splicing the second lamp body (21) and the intermediate splicing piece (3), the second magnetic ball passes through the second opening and enters the second slot (211) and is magnetically connected to the second magnet (25). When separating the second lamp body (21) and the intermediate splicing piece (3), the second magnetic ball separates from the second magnet (25) and the second magnetic ball exits the second slot (211).
5. The splicing strip light as described in claim 4, characterized in that, The splicing strip light also includes a first spring (37), which is connected between the first magnetic ball (35) and the intermediate splicing piece (3), such that: During the insertion action, the first spring (37) is stretched as the first magnetic ball (35) approaches the first magnet (16); During the disassembly operation, the first spring (37) pulls the first magnetic ball (35) away from the first magnet (16).
6. The splicing strip light as described in claim 5, characterized in that, The splicing strip light also includes a first ball valve (17), which is located in the first slot (111). The first ball valve (17) includes a first ball spring (171) and a first mounting plate (172) connected together. The first mounting plate (172) is located on the side of the first ball spring (171) away from the first opening (112). The first ball spring (171) and the first mounting plate (172) are offset in the front-back direction. The first mounting plate (172) is fixedly connected to the first lamp body (11). The first ball spring (171) is located on the lower side of the first magnet (16). The lower side of the first magnet (16) is provided with a first groove (161) that can partially accommodate the first magnetic ball (35). The first ball guide spring (171) includes a lower guide section (1711) and an upper gate section (1712). The lower guide section (1711) is inclined from bottom to top towards the side away from the first opening (112). The upper gate section (1712) is inclined from bottom to top towards the side away from the first opening (112). The first groove (161) is directly opposite the upper side of the lower guide section (1711). The upper gate section (1712) is located on the side of the first groove (161) away from the first opening (112). The first magnetic ball (35) is arranged opposite the first ball guide spring (171) front to back. The first spring (37) is arranged in the front-back direction on the side of the first ball guide spring (171) away from the first mounting plate (172). In the insertion action state, the first magnetic ball (35) is on the side of the first guide ball spring (171) near the first opening (112), and the first magnetic ball (35) moves upward along the lower guide section (1711); When the splicing is held, the first magnetic ball (35) is attracted by the first magnet (16) and enters the first groove (161). The upper gate section (1712) is located on the lower side of the first magnetic ball (35). The first spring (37) is in a stretched and taut state. The end of the first spring (37) connected to the intermediate splicing piece (3) is located on the side of the first magnetic ball (35) away from the first opening (112) in the left-right direction. The splitting action includes a first splitting stage and a second splitting stage performed sequentially, wherein: In the first disassembly stage, the intermediate splice (3) and the first lamp body (11) first approach each other, the first spring (37) pulls the first magnetic ball (35) out of the first groove (161) and moves to the side away from the first opening (112), the first magnetic ball (35) opens and passes through the upper side of the upper gate section (1712) and moves to the side of the upper gate section (1712) away from the first opening (112); In the second disassembly stage, the intermediate splice (3) is moved away from the first lamp body (11), the first spring (37) pulls the first magnetic ball (35) downward on the side of the first guide ball spring (171) away from the first opening (112), the first magnetic ball (35) opens and moves through the lower guide section (1711) and toward the first opening (112), and the first lifting piece (3122) enters and passes through the first notch (152).
7. The splicing strip light as described in claim 4, characterized in that, The lower side of the first opening (112) is provided with a first chamfer (113).
8. The splicing strip light as described in claim 4, characterized in that, The first lamp body (11) includes a first base plate (114) and two first side plates (115). The two first side plates (115) are respectively located on the front and rear sides of the first base plate (114). The two first side plates (115) are each provided with a first magnet (16) and a first slot (111). The second lamp body (21) includes a second base plate and two second side plates. The two second side plates are respectively located on the front and rear sides of the second base plate. The two second side plates are each provided with a second magnet (25) and a second slot (211). The intermediate splicing piece (3) is provided with two first magnetic balls (35) and two second magnetic balls. The two first magnetic balls (35) are respectively provided with two first magnets (16). The two second magnetic balls are respectively provided with two second magnets (25). The first lamp strip (12) is located on the first base plate (114).
9. The splicing strip light as described in claim 1, characterized in that, The first contact spring (312) is provided with a first V-shaped groove (3124) with the opening facing downward. When the splicing is held, the first V-shaped groove (3124) presses against the first conductive contact (13), and the first contact spring (312) conducts electricity through the first V-shaped groove (3124) and the first conductive contact (13).
10. The splicing strip light as described in claim 1, characterized in that, The splicing strip light also includes a splicing light plate (4), which is fixed on the intermediate splicing piece (3). The splicing light plate (4) is located between the first light body (11) and the second light body (21). The splicing light plate (4) is provided with a fifth conductive contact and a sixth conductive contact. The fifth conductive contact is electrically connected to the first fixing piece (311), and the sixth conductive contact is electrically connected to the second fixing piece (321).