LED lamp processing jig for building landscape

By designing a fixture for LED lights used in architectural landscapes, the problem of inconvenient disassembly of landscape light housings is solved by utilizing the squeezing action of material blocks and fixed rods, thus enabling convenient disassembly and maintenance of LED light housings.

CN224209869UActive Publication Date: 2026-05-08SHENZHEN UNITED CHUANGYI ARCHITECTURAL DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN UNITED CHUANGYI ARCHITECTURAL DESIGN CO LTD
Filing Date
2025-05-23
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing landscape lights have housings that are difficult to disassemble, making maintenance difficult and preventing the replacement of damaged parts individually.

Method used

A fixture for handling LED lights in architectural landscapes has been designed, including a base plate, an operating plate, a material fixing component, and a material dispensing component. The LED light housing is disassembled by the cooperation of the material dispensing block and the material fixing rod. The squeezing action of the material dispensing block and the material fixing rod causes the card block and the card to separate. Combined with the clamping of the material picking component, the housing is disassembled.

Benefits of technology

It enables easy disassembly of the landscape LED light housing, facilitating the maintenance of the LED components on the base and improving maintenance efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224209869U_ABST
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Abstract

The utility model relates to the field of component processing tools, and discloses a building landscape LED lamp processing jig which comprises a bottom plate, an operation plate, a material fixing assembly and a material distributing assembly, the operation plate is arranged on the bottom plate, a material groove is formed in the middle of the operation plate, and a first material distributing groove and a second material distributing groove are formed in the two opposite sides of the material groove respectively; the material distributing assembly comprises a first material distributing block, a second material distributing block and a material distributing piece, the first material distributing block is arranged on the bottom plate and penetrates through the first material distributing groove, and the material distributing piece is at least partially movably arranged and is connected with the second material distributing block penetrating through the second material distributing groove; the material fixing assembly comprises a material fixing driving part, a material fixing rod and a material fixing seat, a material fixing groove communicated with the material containing groove is formed in one side of the operation plate, the middle of the material fixing rod is rotationally arranged in the material fixing groove through a rotating shaft, the material fixing driving part is arranged on the bottom side of the operation plate, the working end of the material fixing driving part is rotationally connected with one end of the material fixing rod, and the material fixing seat is arranged at the other end of the material fixing rod. The scheme is simple in structure, and the shell is convenient to disassemble.
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Description

Technical Field

[0001] This utility model relates to the field of component processing tooling, specifically to a fixture for processing LED lights for architectural landscapes. Background Technology

[0002] Landscape lights utilize different shapes, colors, and brightness to create scenic effects. They are frequently used in the construction of parks, villas, gardens, and other architectural areas, providing illumination while beautifying the environment. Currently used landscape lights consist of LED components, a base, a housing, and connectors. The LED components are first installed inside the base, then the housing is installed on the base, and finally, the LED light base is installed in the designated position using connectors. Landscape lights are prone to damage due to prolonged use and exposure to the environment. In case of failure, the entire light fixture usually needs to be replaced, making disassembly and maintenance inconvenient. Therefore, there is a need for a simple, easily disassembled LED light fixture for architectural landscapes. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a novel LED lighting fixture for architectural landscaping, which solves the problem of difficulty in disassembling the housing in existing technologies.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A fixture for handling LED lights in architectural landscapes, used for disassembling LED light housings, includes a base plate, an operating plate, a material-fixing component, and a material-distributing component. The operating plate is disposed on the base plate, and a material trough is provided in the middle of the operating plate. A first material-distributing trough and a second material-distributing trough are respectively provided on the two sides opposite to the material-fixing trough. Both the first material-distributing trough and the second material-distributing trough are connected to the material-fixing trough.

[0006] The material distribution assembly includes a first material distribution block, a second material distribution block, and a material distribution component. The first material distribution block is disposed on the base plate and passes through the first material distribution groove. The material distribution component is disposed on the side of the base plate away from the first material distribution block and is at least partially movable to connect with the second material distribution block passing through the second material distribution groove, thereby driving the second material distribution block to move within the second material distribution groove.

[0007] The material positioning assembly includes a material positioning drive, a material positioning rod, and a material positioning seat. A material positioning slot communicating with the material placement slot is provided on one side of the operation plate. The middle part of the material positioning rod is rotatably disposed in the material positioning slot via a rotating shaft. The material positioning drive is disposed on the bottom side of the operation plate, and its working end is rotatably connected to one end of the material positioning rod. The material positioning seat is disposed at the other end of the material positioning rod and is at least partially located in the material positioning slot.

[0008] Furthermore, two first material distribution slots and two second material distribution slots are respectively opened on opposite sides of the operation panel. There are two first material distribution blocks, which are respectively inserted into the two first material distribution slots and at least partially protrude from the top side of the operation panel; there are two second material distribution blocks, which are respectively inserted into the two second material distribution slots and at least partially protrude from the top side of the operation panel.

[0009] Furthermore, the material distribution component includes a material distribution drive cylinder, a material distribution guide rail, and a material distribution plate. The material distribution plate is disposed on the side of the base plate away from the first material distribution block. The material distribution drive cylinder and the material distribution guide rail are both disposed on the material distribution plate. The two second material distribution blocks are both disposed on the material distribution guide rail and connected to the working end of the material distribution drive cylinder.

[0010] Furthermore, the portion of the first and second material distribution blocks that protrudes from the top side of the operating plate constitutes a material distribution section, which has an oblique conical protrusion structure.

[0011] Furthermore, the base plate is provided with multiple flange seats, and the flange seats are provided with support columns, the top of which is connected to the operating plate.

[0012] Furthermore, the fixed material trough is perpendicular to the second material distribution trough, and the middle part of the fixed material rod extends toward the material placement trough to form a connecting block. The connecting block is rotatably connected to the rotating shaft provided in the fixed material trough.

[0013] Furthermore, the bottom of the fixed material seat is provided with a stop block, the bottom of the stop block extends toward the material placement groove to form a stop platform, and a stop block is provided at the end of the connecting block away from the fixed material rod.

[0014] Furthermore, a material-picking component is provided on the side of the operation panel away from the material trough. The material-picking component includes a material-picking drive, a material-picking plate, and a material-picking element. The material-picking drive is fixed to the side of the operation panel, and its working end is connected to the material-picking plate located on the upper side of the operation panel. The material-picking element is located on the lower side of the material-picking plate and above the material trough.

[0015] Compared to existing technologies, the advantages of this invention are that, by adopting the above solution, the structure is simple and suitable for disassembling the snap-fit ​​landscape LED light housing. First, the LED light body is placed in the material slot in the middle of the operating panel. Then, the material separating component drives the second material separating block to move towards the first material separating block and cooperate with the first material separating block to press the LED light body base placed in the material slot inward, causing it to deform slightly, so that the snap-fit ​​on the base can disengage from the snap-fit ​​on the housing. Next, the material fixing drive component drives the material fixing rod to rotate along the rotating shaft in the material fixing slot, so that the material fixing seat moves towards the LED light body base and abuts against the upper part of the LED light body base, causing it to be pressed inward and deform slightly, so that the snap-fit ​​on the base can disengage from the snap-fit ​​on the housing. Subsequently, the material picking component's material picking drive component moves with the material picking component to clamp the housing, thereby realizing the disassembly of the landscape LED light housing, which facilitates the maintenance of the LED components on the base and has good market application value. Attached Figure Description

[0016] Figure 1 This is one of the structural schematic diagrams of an LED lighting fixture for architectural landscaping according to an embodiment of this utility model;

[0017] Figure 2 For the present utility model Figure 1 Schematic diagram of the structure of the LED lighting fixture for architectural landscaping in the embodiment (2);

[0018] Figure 3 For the present utility model Figure 1 A schematic diagram of the material distribution component in the embodiment;

[0019] Figure 4 For the present utility model Figure 1 A schematic diagram of the material feeding assembly in the embodiment;

[0020] In the diagram, 1 is the base plate; 11 is the support column; 2 is the operating panel; 21 is the material feeding trough; 22 is the first material distribution trough; 23 is the second material distribution trough; 24 is the fixed material trough; 25 is the rotating shaft; 26 is the housing; 27 is the base; 3 is the fixed material assembly; 31 is the fixed material drive component; 32 is the fixed material rod; 33 is the fixed material seat; 34 is the connecting block; 35 is the abutment block; 36 is the abutment platform; 37 is the stop block; 4 is the material distribution assembly; 41 is the first material distribution block; 42 is the second material distribution block; 43 is the material distribution component; 44 is the material distribution drive cylinder; 45 is the material distribution plate; 46 is the material distribution guide rail component; 47 is the material distribution section; 5 is the material picking assembly; 51 is the material picking drive component; 52 is the material picking plate; 53 is the material picking component. Detailed Implementation

[0021] To facilitate understanding of this utility model by those skilled in the art, specific embodiments of this utility model are described below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described in this specification. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0022] It should be noted that when a component is referred to as being "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or there may be an intervening component. The terms "mounted," "fixed," "top," "connected," and similar expressions used in this specification are for illustrative purposes only.

[0023] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention.

[0024] One embodiment of this utility model is as follows: Figure 1 , 2 As shown, the LED light handling fixture for architectural landscaping is used to disassemble the LED light housing 26. It includes a base plate 1, an operating plate 2, a material fixing component 3, and a material distributing component 4. The operating plate 2 is set on the base plate 1. A material trough 21 is opened in the middle of the operating plate 2. A first material distributing trough 22 and a second material distributing trough 23 are respectively opened on the two sides opposite to the material trough 21. The first material distributing trough 22 and the second material distributing trough 23 are both connected to the material trough 21.

[0025] The material distribution assembly 4 includes a first material distribution block 41, a second material distribution block 42, and a material distribution component 43. The first material distribution block 41 is disposed on the base plate 1 and passes through the first material distribution groove 22. The material distribution component 43 is disposed on the side of the base plate 1 away from the first material distribution block 41 and is at least partially movably disposed to connect with the second material distribution block 42 passing through the second material distribution groove 23, thereby driving the second material distribution block 42 to move within the second material distribution groove 23.

[0026] The material setting assembly 3 includes a material setting drive 31, a material setting rod 32, and a material setting seat 33. A material setting groove 24 communicating with the material placement groove 21 is provided on one side of the operation plate 2. The middle part of the material setting rod 32 is rotatably disposed in the material setting groove 24 through a rotating shaft 25. The material setting drive 31 is disposed on the bottom side of the operation plate 2, and its working end is rotatably connected to one end of the material setting rod 32. The material setting seat 33 is disposed at the other end of the material setting rod 32 and is at least partially located in the material setting groove 24.

[0027] The architectural landscape LED light fixture in this solution is suitable for disassembling the snap-fit ​​landscape LED light housing 26. First, the LED light body is placed in the material placement groove 21 in the middle of the operating plate 2. Then, the material distribution component 43 drives the second material distribution block 42 to move towards the first material distribution block 41, cooperating with the first material distribution block 41 to press inwards the LED light body base 27 placed in the material placement groove 21, causing a slight deformation so that the locking block on the base 27 disengages from the locking slot on the housing 26. Then, the fixing... The material drive unit 31 drives the fixed material rod 32 to rotate along the rotating shaft 25 in the fixed material groove 24, causing the fixed material seat 33 to move towards the LED lamp body base 27 and abut against the upper part of the LED lamp body base 27, causing it to be pressed inward and slightly deformed, so that the card on the base 27 is disengaged from the card slot on the housing 26; then the material picking component 5's material picking drive unit 51 moves with the material picking component 53 to clamp the housing 26, so as to realize the disassembly of the landscape LED lamp housing 26, so as to facilitate the maintenance of the LED components on the base 27.

[0028] In this embodiment, as Figure 2 As shown, two first material distribution grooves 22 and two material distribution grooves 23 are respectively opened on opposite sides of the operation plate 2. There are two first material distribution blocks 41, which are respectively inserted into the two first material distribution grooves 22 and at least partially protrude from the top side of the operation plate 2; there are two second material distribution blocks 42, which are respectively inserted into the two second material distribution grooves 23 and at least partially protrude from the top side of the operation plate 2.

[0029] Specifically, two first material distribution slots 22 and two second material distribution slots 23 are respectively opened on the front and rear sides of the material placement slot 21 on the operation plate 2, so that the two first material distribution blocks 41 are located on the front side of the material placement slot 21 and the two second material distribution blocks 42 are located on the rear side of the material placement slot 21. The material distribution component 43 drives the second material distribution blocks 42 to move forward along the second material distribution slot 23 to cooperate with the first material distribution blocks 41 and press inward against the bottom of the LED lamp body base 27 placed in the material placement slot 21, causing it to deform slightly, so that the locking block on the base 27 disengages from the locking slot on the housing 26.

[0030] In this embodiment, as Figure 3 As shown, the material distribution component 43 includes a material distribution drive cylinder 44, a material distribution guide rail 46, and a material distribution plate 45. The material distribution plate 45 is disposed on the side of the base plate 1 away from the first material distribution block 41. The material distribution drive cylinder 44 and the material distribution guide rail 46 are both disposed on the material distribution plate 45. The two second material distribution blocks 42 are both disposed on the material distribution guide rail 46 and connected to the working end of the material distribution drive cylinder 44.

[0031] Specifically, the material distribution plate 45 is located in the middle of the rear side of the base plate 1, the material distribution guide rail 46 is located in front of the material distribution plate 45, and the material distribution drive cylinder 44 is a telescopic cylinder that drives the two second material distribution blocks 42 to move back and forth along the material distribution guide rail 46 in the second material distribution groove 23, thereby limiting the movement range of the second material distribution blocks 42 through the second material distribution groove 23.

[0032] In this embodiment, as Figure 3 As shown, the portion of the first material distribution block 41 and the second material distribution block 42 that protrudes from the top side of the operation plate 2 is the material distribution section 47, which is a slanted conical protrusion structure.

[0033] Specifically, the upper parts of the first dividing block 41 and the second dividing block 42 protrude from the top side of the operating plate 2 to form a dividing part 47. The dividing part 47 is a wedge-shaped structure that is smaller at the top and larger at the bottom. When the first dividing block 41 and the second dividing block 42 press inward against the bottom of the LED lamp body base 27, causing it to deform slightly, but the locking block on the base 27 still cannot be disengaged from the locking slot on the housing 26, the LED lamp body base 27 is pressed down, so that the dividing part 47 is inserted between the locking block and the locking slot like a wedge, and it is opened up so that the locking block on the base 27 is separated from the locking slot on the housing 26.

[0034] In this embodiment, as Figure 3 As shown, the base plate 1 is provided with multiple flange seats, and the flange seats are provided with support columns 11. The top of the support column 11 is connected to the operating plate 2.

[0035] Specifically, a flange seat is provided at each of the four corners of the base plate 1, so that there is a support column 11 at each of the four corners of the base plate 1, to ensure that the relative position of the base plate 1 and the operating plate 2 is fixed, and the height of the operating plate 2 can be adjusted along the support column 11. Not only can the height of the material distribution section 47 be adjusted, but the overall height of the operating plate 2 can also be adjusted to adapt to other mechanisms in the process.

[0036] In this embodiment, as Figure 2As shown, the fixed material trough 24 is perpendicular to the second material distribution trough 23. The middle part of the fixed material rod 32 extends towards the material placement trough 21 to form a connecting block 34. The connecting block 34 is rotatably connected to the rotating shaft 25 provided in the fixed material trough 24.

[0037] Specifically, the left side of the operation plate 2 is provided with a material trough 24 with an opening to the left, so that the rotating shaft 25 can be installed in the material trough 24. The material stabilizing drive component 31 is a push rod cylinder, which is fixed to the lower part of the operation plate 2. The working end on the left side is rotatably connected to the bottom end of the material stabilizing rod 32 through a pin, so as to drive the top end of the material stabilizing rod 32 to move to the lower right.

[0038] In this embodiment, as Figure 4 As shown, the bottom of the fixed material seat 33 is provided with a stop block 35, the bottom of the stop block 35 extends toward the material placement groove 21 to form a stop platform 36, and the end of the connecting block 34 away from the fixed material rod 32 is provided with a stop block 37.

[0039] Specifically, the bottom of the material-fixing seat 33 is connected to the abutment block 35 via an elastic element. The bottom of the abutment block 35 extends to the right to form an abutment platform 36. A stop block 37 is provided at the bottom right end of the connecting block 34. The material-fixing drive member 31 drives the material-fixing rod 32 to rotate along the rotating shaft 25 in the material-fixing groove 24, causing the material-fixing seat 33 to move towards the LED lamp body base 27. The right end face of the material-fixing seat 33 abuts against the upper part of the LED lamp body base 27. At this time, the abutment platform 36 is located on the left side of the base 27. On the lower side, as the material-fixing drive unit 31 continues to work, the right end face of the material-fixing seat 33 mates with the wall of the material-placing groove 21, and the base 27 is slightly deformed by being pressed inward from the left and right directions, so that the card on the base 27 is disengaged from the slot on the housing 26. At the same time, the stop block 37 at the right end of the connecting block 34 abuts against the bottom left end of the abutting block 35, so that the abutting platform 36 is slightly tilted upward, so that the card and the card on the base 27 are misaligned with the slot and the opening on the housing 26, so that the housing 26 can be removed.

[0040] In this embodiment, as Figure 1 As shown, a material picking component 5 is provided on the side of the operation plate 2 away from the material trough 24. The material picking component 5 includes a material picking drive 51, a material picking plate 52, and a material picking component 53. The material picking drive 51 is fixed to the side of the operation plate 2, and its working end is connected to the material picking plate 52 located on the upper side of the operation plate 2. The material picking component 53 is located on the lower side of the material picking plate 52 and above the material trough 21.

[0041] Specifically, the material picking drive 51 is a push rod cylinder, fixed to the right side of the operation plate 2, which drives the material picking plate 52 to move up and down. The material picking component 53 includes a clamping cylinder and a gripper set on the clamping cylinder. After the material distribution component 4 causes the card on the base 27 to disengage from the slot on the housing 26, and the material fixing component 3 causes the card on the base 27 to disengage from the slot on the housing 26, the material picking drive 51 drives the material picking component 53 to move down and clamp the housing 26 to disassemble the landscape LED light housing 26, so as to facilitate the maintenance of the LED components on the base 27.

[0042] It should be noted that the above-mentioned technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of this utility model specification; and, for those skilled in the art, improvements or modifications can be made based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims of this utility model.

Claims

1. A fixture for handling LED lights in architectural landscaping, used for disassembling LED light housings (26), characterized in that: It includes a base plate (1), an operation plate (2), a material fixing component (3) and a material distributing component (4). The operation plate (2) is disposed on the base plate (1). A material trough (21) is opened in the middle of the operation plate (2). A first material distributing trough (22) and a second material distributing trough (23) are respectively opened on the opposite sides of the material trough (21). The first material distributing trough (22) and the second material distributing trough (23) are both connected to the material trough (21). The material distribution assembly (4) includes a first material distribution block (41), a second material distribution block (42), and a material distribution component (43). The first material distribution block (41) is disposed on the base plate (1) and passes through the first material distribution groove (22). The material distribution component (43) is disposed on the side of the base plate (1) away from the first material distribution block (41) and is at least partially movably disposed to connect with the second material distribution block (42) passing through the second material distribution groove (23) and drive the second material distribution block (42) to move within the second material distribution groove (23). The material setting component (3) includes a material setting drive (31), a material setting rod (32), and a material setting seat (33). A material setting groove (24) communicating with the material placement groove (21) is provided on one side of the operation plate (2). The middle part of the material setting rod (32) is rotatably set in the material setting groove (24) through a rotating shaft (25). The material setting drive (31) is set on the bottom side of the operation plate (2), and its working end is rotatably connected to one end of the material setting rod (32). The material setting seat (33) is set at the other end of the material setting rod (32) and is at least partially located in the material setting groove (24).

2. The LED lighting fixture for architectural landscaping according to claim 1, characterized in that, The operation panel (2) has two first material distribution slots (22) and two second material distribution slots (23) on opposite sides. There are two first material distribution blocks (41), which are respectively inserted into the two first material distribution slots (22) and at least partially protrude from the top side of the operation panel (2). There are two second material distribution blocks (42), which are respectively inserted into the two second material distribution slots (23) and at least partially protrude from the top side of the operation panel (2).

3. The LED lighting fixture for architectural landscaping according to claim 2, characterized in that, The material distribution component (43) includes a material distribution drive cylinder (44), a material distribution guide rail (46), and a material distribution plate (45). The material distribution plate (45) is disposed on the side of the base plate (1) away from the first material distribution block (41). The material distribution drive cylinder (44) and the material distribution guide rail (46) are both disposed on the material distribution plate (45). The two second material distribution blocks (42) are both disposed on the material distribution guide rail (46) and connected to the working end of the material distribution drive cylinder (44).

4. The LED lighting fixture for architectural landscaping according to claim 2, characterized in that, The portion of the first material distribution block (41) and the second material distribution block (42) that protrudes from the top side of the operating plate (2) is the material distribution part (47), which is a slanted conical protrusion structure.

5. The LED lighting fixture for architectural landscaping according to claim 1, characterized in that, The base plate (1) is provided with a plurality of flange seats, and the flange seats are provided with support columns (11), the top of the support columns (11) being connected to the operating plate (2).

6. The LED lighting fixture for architectural landscaping according to claim 1, characterized in that, The fixed material trough (24) is perpendicular to the second material distribution trough (23). The middle part of the fixed material rod (32) extends toward the material placement trough (21) to form a connecting block (34). The connecting block (34) is rotatably connected to the rotating shaft (25) provided in the fixed material trough (24).

7. The LED lighting fixture for architectural landscaping according to claim 6, characterized in that, The bottom of the fixed material seat (33) is provided with a stop block (35), the bottom of the stop block (35) extends toward the material placement groove (21) to form a stop platform (36), and a stop block (37) is provided at the end of the connecting block (34) away from the fixed material rod (32).

8. The LED lighting fixture for architectural landscaping according to claim 1, characterized in that, On the side of the operation plate (2) away from the fixed material trough (24), a material picking component (5) is provided. The material picking component (5) includes a material picking drive (51), a material picking plate (52), and a material picking component (53). The material picking drive (51) is fixed to the side of the operation plate (2), and its working end is connected to the material picking plate (52) located on the upper side of the operation plate (2). The material picking component (53) is located on the lower side of the material picking plate (52) and above the material placement trough (21).