Flocking electrostatic generation device with constant voltage system
The design of the lifting and snap-fit components solves the problem of inconvenient disassembly and height adjustment of the electrostatic generator, enabling quick assembly and disassembly and flexible height adjustment of the electrostatic generator, and improving the convenience of maintenance and use of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGCHUN SHUANGYANG XINGLONG AUTOMOBILE PARTS CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-05
AI Technical Summary
Existing static electricity generators are not easy to disassemble and adjust in height, which makes maintenance and use inconvenient.
The system employs a lifting assembly and a snap-fit assembly. The lifting frame is moved by a bidirectional threaded rod and a transmission block. Combined with the snap-fit assembly, the electrostatic generator can be quickly disassembled and its height adjusted.
It enables quick disassembly and assembly of the electrostatic generator and flexible height adjustment, improving the maintenance efficiency and operational flexibility of the device.
Smart Images

Figure CN224205374U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an electrostatic generating device, specifically a flocking electrostatic generating device with a constant voltage system, belonging to the technical field of flocking devices. Background Technology
[0002] Flocking utilizes the physical property that like charges repel and unlike charges attract. The flocking fibers are made to carry a negative charge. When the object to be flocked is placed under zero potential or grounded conditions, the flocking fibers are attracted by the opposite potential of the plant and accelerate vertically to the surface of the object to be flocked. Before flocking the object surface, it is necessary to apply static electricity to it.
[0003] Currently, most static electricity generators are fixed in place using bolts, and the generators are mostly fixed in the middle of the device. This makes it inconvenient to quickly disassemble the generator for maintenance purposes, and also makes it difficult to adjust the height of the generator according to the height of the object to which static electricity is applied.
[0004] Therefore, a flocking electrostatic generator with a constant voltage system is proposed here. Utility Model Content
[0005] This invention proposes a flocked electrostatic generator with a constant voltage system, which can be quickly disassembled and assembled according to the maintenance needs of the electrostatic generator, and the distance between the electrostatic generator and the object can be adjusted according to the usage needs of the electrostatic generator.
[0006] This utility model is achieved through the following technical solution: a flocking electrostatic generator with a constant pressure system, comprising a base plate, a conveyor belt above the base plate, a support frame fixed on the upper surface of the base plate, a lifting frame inside the support frame, and a lifting assembly inside the support frame for driving the lifting frame to move up and down. The lifting assembly includes a set of first support blocks fixed to the inner top wall of the support frame. A bidirectional threaded rod is rotatably sleeved inside the first support block. Both ends of the bidirectional threaded rod are threadedly sleeved with transmission blocks that slide on the inner top wall of the support frame. A transmission rod is rotatably connected to the bottom surface of the transmission block, and the bottom end of the transmission rod is rotatably connected to the top surface of the lifting frame.
[0007] Furthermore, the two ends of the bidirectional threaded rod are provided with two sections of threads in opposite directions. One end of the bidirectional threaded rod rotatably passes through one of the first support blocks and is fixedly sleeved with a transmission wheel.
[0008] Furthermore, a set of protective rods is fixed to the inner wall of the support frame, and the protective rods slide on both sides of the lifting frame.
[0009] Below the lifting frame is a storage shell. The bottom surface of the storage shell has a working groove. Both sides of the storage shell have a set of transmission grooves. An electrostatic generator is installed inside the storage shell. Two sets of snap-fit components are installed inside the storage shell to fix the position of the electrostatic generator. The snap-fit components include a limiting frame fixed to the inner side wall of the storage shell. A connecting plate is slidably connected inside the limiting frame. A heart-shaped groove is opened on one side of the connecting plate. Two connecting rods are fixed on one side of the connecting plate. The end of the connecting rod away from the connecting plate slides through the limiting frame and is fixed with a sensing plate. Two transmission plates are fixed on the side of the connecting plate away from the heart-shaped groove. The side of the transmission plate away from the connecting plate slides through the transmission groove and has an oblique sliding groove. A transmission shaft slides between the two oblique sliding grooves. A positioning frame is fixedly sleeved around the transmission shaft.
[0010] Furthermore, the snap-fit assembly also includes a positioning rod rotatably connected to one side of the limiting frame. The end of the positioning rod away from the limiting frame is fixedly sleeved with a positioning shaft, and the positioning shaft slides inside the heart-shaped groove. A compression spring is fixed between the limiting frame and the connecting plate.
[0011] Furthermore, the snap-fit assembly also includes a limiting block fixed to one side of the storage shell, and the end of the limiting block away from the storage shell is rotatably connected to the inside of the positioning frame.
[0012] Furthermore, the bottom surface of the lifting frame is provided with a transmission assembly that drives the storage shell to move. The transmission assembly includes two second support blocks fixed to the bottom surface of the lifting frame. A transmission threaded rod is rotatably sleeved between the two second support blocks. A movable plate fixed to the top surface of the storage shell is threadedly sleeved on the outer periphery of the transmission threaded rod. One end of the transmission threaded rod rotatably passes through one of the second support blocks and is fixedly sleeved with a rocker arm.
[0013] Furthermore, a limiting plate is fixedly sleeved around the periphery of the electrostatic generator, and two slots are formed on one side of the limiting plate.
[0014] This invention provides a flocking electrostatic generator with a constant voltage system, which has the following beneficial effects:
[0015] 1. This flocked electrostatic generator with constant pressure system allows the electrostatic generator to be placed inside the storage shell and pressed. The electrostatic generator triggers the induction plate to move, and the connecting rod drives the connecting plate to slide inside the limit frame, which in turn drives the transmission plate to move. The cooperation between the inclined slide and the transmission shaft drives the positioning frame to rotate, so that the end of the positioning frame away from the limit block is locked inside the limit block. The electrostatic generator is installed inside the storage shell, and it can be quickly disassembled and assembled according to the needs of electrostatic generator maintenance.
[0016] 2. This flocked electrostatic generator with a constant pressure system rotates the transmission wheel to make the bidirectional threaded rod rotate, and drives the transmission block to slide on the inner top wall of the support frame. By utilizing the cooperation between the transmission block and the transmission rod, the lifting frame is driven to slide on the inner side wall of the support frame. The distance between the electrostatic generator and the object can be adjusted according to the needs of the electrostatic generator, so as to adjust the intensity of the electrostatic generator applying static electricity to the object. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0018] Figure 2 This is a three-dimensional sectional view of the internal structure of the support frame in this utility model;
[0019] Figure 3 This is a three-dimensional structural diagram of the storage shell in this utility model;
[0020] Figure 4 This is a three-dimensional structural diagram of the storage shell and the snap-fit assembly in this utility model.
[0021] Explanation of reference numerals in the attached figures
[0022] 1. Base plate; 2. Support frame; 21. Guardrail; 3. Conveyor belt; 4. Lifting frame;
[0023] 5. Lifting assembly; 51. First support block; 52. Double-ended threaded rod; 53. Transmission block; 54. Transmission rod; 55. Transmission wheel;
[0024] 6. Storage shell; 61. Working slot; 62. Transmission slot;
[0025] 7. Transmission assembly; 71. Second support block; 72. Transmission threaded rod; 73. Rocker arm; 74. Moving plate;
[0026] 8. Static electricity generator; 81. Limit plate; 82. Card slot;
[0027] 9. Snap-fit assembly; 91. Limiting frame; 92. Connecting plate; 921. Heart-shaped groove; 93. Positioning rod; 931. Positioning shaft; 94. Compression spring; 95. Connecting rod; 96. Sensing plate; 97. Transmission plate; 971. Inclined slide; 98. Limiting block; 99. Positioning frame; 991. Transmission shaft. Detailed Implementation
[0028] The technical solutions of the embodiments of this application 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 this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this application.
[0029] Please see Figures 1-4 The present invention proposes the following implementation scheme: a flocking electrostatic generator with a constant pressure system, including a base plate 1, a conveyor belt 3 above the base plate 1, a support frame 2 fixed on the upper surface of the base plate 1, a lifting frame 4 inside the support frame 2, and a lifting assembly 5 inside the support frame 2 to drive the lifting frame 4 to move up and down. The lifting assembly 5 includes a set of first support blocks 51 fixed to the inner top wall of the support frame 2. A bidirectional threaded rod 52 is rotatably sleeved inside the first support block 51. Both ends of the bidirectional threaded rod 52 are threadedly sleeved with transmission blocks 53 that slide on the inner top wall of the support frame 2. A transmission rod 54 is rotatably connected to the bottom surface of the transmission block 53, and the bottom end of the transmission rod 54 is rotatably connected to the top surface of the lifting frame 4.
[0030] Please refer to this carefully. Figure 2 The two ends of the bidirectional threaded rod 52 are provided with two threads in opposite directions. One end of the bidirectional threaded rod 52 rotates through one of the first support blocks 51 and is fixedly sleeved with a transmission wheel 55.
[0031] In the above scheme, the rotating transmission wheel 55 causes the bidirectional threaded rod 52 to rotate, and drives the transmission block 53 to slide on the inner top wall of the support frame 2. By utilizing the cooperation between the transmission block 53 and the transmission rod 54, the lifting frame 4 is moved, and the distance between the electrostatic generator 8 and the object can be adjusted according to the needs of the electrostatic generator.
[0032] A set of protective rods 21 are fixed to the inner wall of the support frame 2, and the protective rods 21 slide on both sides of the lifting frame 4.
[0033] Please refer to this carefully. Figure 3 and Figure 4Below the lifting frame 4 is a storage shell 6. The bottom surface of the storage shell 6 has a working groove 61. Both sides of the storage shell 6 have a set of transmission grooves 62. An electrostatic generator 8 is installed inside the storage shell 6. Two sets of snap-fit components 9 are installed inside the storage shell 6 to fix the position of the electrostatic generator 8. The snap-fit components 9 include a limiting frame 91 fixed to the inner side wall of the storage shell 6. A connecting plate 92 is slidably connected inside the limiting frame 91. A heart-shaped groove 921 is opened on one side of the connecting plate 92. Two connecting rods 95 are fixed on one side of the connecting plate 92. The end of the connecting rod 95 away from the connecting plate 92 slides through the limiting frame 91 and is fixed with a sensing plate 96. Two transmission plates 97 are fixed on the side of the connecting plate 92 away from the heart-shaped groove 921. The side of the transmission plate 97 away from the connecting plate 92 slides through the transmission groove 62 and has an inclined sliding groove 971. A transmission shaft 991 slides between the two inclined sliding grooves 971. A positioning frame 99 is fixedly sleeved around the transmission shaft 991.
[0034] Please refer to this carefully. Figure 4 The snap-fit assembly 9 also includes a positioning rod 93 rotatably connected to one side of the limiting frame 91. The end of the positioning rod 93 away from the limiting frame 91 is fixedly sleeved with a positioning shaft 931, and the positioning shaft 931 slides inside the heart-shaped groove 921. A compression spring 94 is fixed between the limiting frame 91 and the connecting plate 92.
[0035] The snap-fit assembly 9 also includes a limiting block 98 fixed to one side of the storage shell 6, and the end of the limiting block 98 away from the storage shell 6 is rotatably connected to the inside of the positioning frame 99.
[0036] In the above scheme, the electrostatic generator 8 is placed inside the storage shell 6 and pressed down. The electrostatic generator 8 triggers the induction plate 96 to move. The connecting rod 95 can drive the connecting plate 92 to slide inside the limiting frame 91 and drive the transmission plate 97 to move. The cooperation between the inclined slide groove 971 and the transmission shaft 991 can drive the positioning frame 99 to rotate, so that the end of the positioning frame 99 away from the limiting block 98 is locked inside the limiting block 98. The electrostatic generator 8 is installed inside the storage shell 6, and it can be quickly disassembled and assembled according to the maintenance needs of the electrostatic generator 8.
[0037] Please refer to this carefully. Figure 3 The bottom surface of the lifting frame 4 is provided with a transmission assembly 7 that drives the storage shell 6 to move. The transmission assembly 7 includes two second support blocks 71 fixed to the bottom surface of the lifting frame 4. A transmission threaded rod 72 is rotatably sleeved between the two second support blocks 71. A movable plate 74 fixed to the top surface of the storage shell 6 is threadedly sleeved around the transmission threaded rod 72. One end of the transmission threaded rod 72 rotatably passes through one of the second support blocks 71 and is fixedly sleeved with a rocker arm 73.
[0038] In the above scheme, the rotating rocker arm 73 drives the transmission threaded rod 72 to rotate, and drives the moving plate 74 to slide on the bottom surface of the lifting frame 4, so that the storage shell 6 moves to one side of the support frame 2, which facilitates the disassembly and assembly of the electrostatic generator.
[0039] Please refer to this carefully. Figure 4 The electrostatic generator 8 is fixedly sleeved with a limiting plate 81, and two slots 82 are opened on one side of the limiting plate 81.
[0040] In use, the rotating rocker arm 73 drives the transmission threaded rod 72 to rotate, and drives the moving plate 74 to slide on the bottom surface of the lifting frame 4, so that the storage shell 6 moves to one side of the support frame 2, which facilitates the disassembly and assembly of the electrostatic generator; then the electrostatic generator 8 is placed inside the storage shell 6 and pressed, and the electrostatic generator 8 triggers the induction plate 96 to move. The connecting rod 95 drives the connecting plate 92 to slide inside the limiting frame 91, so that the positioning shaft 931 moves to the side of the heart-shaped groove 921 close to the limiting plate 81. The compression spring 94 pushes the connecting plate 92, which can fix the position of the connecting plate 92. When the connecting plate 92 moves, it drives the transmission plate 97 to slide inside the transmission groove 62. By utilizing the cooperation between the inclined slide 971 and the drive shaft 991, the positioning frame 99 can be driven to rotate around the limiting block 98, so that the end of the positioning frame 99 away from the limiting block 98 is engaged inside the limiting block 98, and the electrostatic generator 8 is installed inside the storage shell 6. It can be quickly disassembled and assembled according to the maintenance needs of the electrostatic generator 8, improving the installation efficiency of the electrostatic generator 8. The rotating drive wheel 55 causes the bidirectional threaded rod 52 to rotate, and drives the drive block 53 to slide on the inner top wall of the support frame 2. By utilizing the cooperation between the drive block 53 and the drive rod 54, the lifting frame 4 is driven to slide on the inner side wall of the support frame 2, and the distance between the electrostatic generator 8 and the object can be adjusted according to the needs of the electrostatic generator.
[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A flocking electrostatic generator with a constant voltage system, comprising a base plate (1), characterized in that: A conveyor belt (3) is provided above the base plate (1). A support frame (2) is fixed on the upper surface of the base plate (1). A lifting frame (4) is provided inside the support frame (2). A lifting assembly (5) is provided inside the support frame (2) to drive the lifting frame (4) to move up and down. The lifting assembly (5) includes a set of first support blocks (51) fixed to the inner top wall of the support frame (2). A bidirectional threaded rod (52) is rotatably sleeved inside the first support block (51). Both ends of the bidirectional threaded rod (52) are threadedly sleeved with transmission blocks (53) that slide on the inner top wall of the support frame (2). A transmission rod (54) is rotatably connected to the bottom surface of the transmission block (53). The bottom end of the transmission rod (54) is rotatably connected to the top surface of the lifting frame (4). A storage shell (6) is provided below the lifting frame (4). A working groove (61) is provided on the bottom surface of the storage shell (6). A set of transmission grooves (62) is provided on both sides of the storage shell (6). An electrostatic generator (8) is provided inside the storage shell (6). Two sets of snap-fit components (9) are provided inside the storage shell (6) to fix the position of the electrostatic generator (8). The snap-fit components (9) include a limiting frame (91) fixed to the inner side wall of the storage shell (6). A connecting plate (92) is slidably connected inside the limiting frame (91). A heart-shaped groove is provided on one side of the connecting plate (92). (921) Two connecting rods (95) are fixed on one side of the connecting plate (92). The end of the connecting rod (95) away from the connecting plate (92) slides through the limiting frame (91) and is fixed with a sensing plate (96). Two transmission plates (97) are fixed on the side of the connecting plate (92) away from the heart-shaped groove (921). The side of the transmission plate (97) away from the connecting plate (92) slides through the transmission groove (62) and is provided with an inclined slide groove (971). A transmission shaft (991) slides between the two inclined slide grooves (971). A positioning frame (99) is fixedly sleeved around the outer periphery of the transmission shaft (991).
2. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: The two ends of the bidirectional threaded rod (52) are provided with two threads in opposite directions. One end of the bidirectional threaded rod (52) rotates through one of the first support blocks (51) and is fixedly sleeved with a transmission wheel (55).
3. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: A set of protective rods (21) is fixed to the inner wall of the support frame (2), and the protective rods (21) slide on both sides of the lifting frame (4).
4. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: The bottom surface of the lifting frame (4) is provided with a transmission assembly (7) that drives the storage shell (6) to move. The transmission assembly (7) includes two second support blocks (71) fixed on the bottom surface of the lifting frame (4). A transmission threaded rod (72) is rotatably sleeved between the two second support blocks (71). A movable plate (74) fixed on the top surface of the storage shell (6) is threaded around the outer periphery of the transmission threaded rod (72). One end of the transmission threaded rod (72) rotatably passes through one of the second support blocks (71) and is fixedly sleeved with a rocker arm (73).
5. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: The snap-fit assembly (9) also includes a positioning rod (93) rotatably connected to one side of the limiting frame (91). The end of the positioning rod (93) away from the limiting frame (91) is fixedly sleeved with a positioning shaft (931), and the positioning shaft (931) slides inside the heart-shaped groove (921). A compression spring (94) is fixed between the limiting frame (91) and the connecting plate (92).
6. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: The snap-fit assembly (9) also includes a limiting block (98) fixed to one side of the storage shell (6), and the end of the limiting block (98) away from the storage shell (6) is rotatably connected to the inside of the positioning frame (99).
7. The flocking electrostatic generator with a constant voltage system according to claim 1, characterized in that: The electrostatic generator (8) is fixedly sleeved with a limiting plate (81), and two slots (82) are opened on one side of the limiting plate (81).