High-voltage power supply resin vacuum packaging equipment
By designing a mobile encapsulation device and an auger, the problems of low applicability and conveying efficiency of existing equipment are solved, enabling efficient resin encapsulation of power supplies at different positions and heights.
Patent Information
- Application Number
- CN202520510181.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing high-voltage power supply resin vacuum encapsulation equipment can only inject resin into a fixed position, which has poor applicability. Furthermore, the efficiency of transporting resin by air pressure difference is low, resulting in slow encapsulation speed.
A mobile encapsulation device and an auger are used for directional transport of resin. Combined with the use of a vibrator, resin is injected into different positions and heights. The transport efficiency is improved by the rotation of the auger and the multi-dimensional movement of the mobile encapsulation tube.
It improves the applicability of the equipment and the efficiency of resin delivery, thereby increasing the encapsulation speed.
Smart Images

Figure CN223864160U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of high-voltage power supply resin vacuum packaging equipment, and in particular to a high-voltage power supply resin vacuum packaging equipment. Background Technology
[0002] High-voltage power supplies are a common type of power equipment. In order to protect the power supply components, resin needs to be potted into the power supply in a vacuum environment.
[0003] Existing high-voltage power supply resin vacuum encapsulation equipment, such as the Chinese utility model patent CN219768886U (a high-voltage power supply resin vacuum encapsulation equipment), represents a class of prior art whose main structure includes a vacuum chamber, a resin mixture guiding system, a material rack, and a resin material mixing system. The vacuum chamber keeps the material rack in a vacuum environment, the resin mixture guiding system injects resin into the power supply while maintaining a vacuum state, the material rack stores the power supply, and the resin material mixing system stirs the resin and removes gas from the resin.
[0004] However, existing technology and equipment still have the following problems when in use: existing machines can only inject resin into materials at fixed locations, resulting in poor machine applicability; and existing machines transport resin by air pressure difference, resulting in low conveying efficiency and low encapsulation speed. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a high-voltage power supply resin vacuum packaging device that improves the machine's applicability by setting a mobile packaging device to inject resin into power supplies at different positions and heights, and improves the conveying efficiency and packaging speed by using a screw conveyor to directionally transport the resin through the mobile packaging device.
[0006] This utility model discloses a high-voltage power supply resin vacuum encapsulation device, including a machine body; it also includes a resin stirring and mixing device, a vacuum chamber, a vacuum extraction device, a movable encapsulation device, and a vibrating rod. The resin stirring and mixing device and the vacuum chamber are both mounted on the machine body. The vacuum extraction device is mounted on the machine body, the resin stirring and mixing device, and the vacuum chamber. The movable encapsulation device is mounted on the machine body and the vacuum chamber. The vibrating rod is mounted on the movable encapsulation device. The machine body provides support. The resin stirring and mixing device stirs the resin. The vacuum chamber places the power supply. The vacuum extraction device provides a vacuum to the resin stirring and mixing device and the vacuum chamber. The movable encapsulation device encapsulates the power supply with resin. The vibrating rod vibrates the resin to improve the encapsulation uniformity.
[0007] Preferably, the body includes multiple support bases, bracket one, bracket two, bracket three and bracket four, bracket one is installed on the top of multiple support bases, and bracket two, bracket three and bracket four are all installed on the top of bracket one; providing support.
[0008] Preferably, the resin mixing device includes multiple mixing tanks, multiple first-type tank covers, a first-type pipe, a first-type reducer, a first-type motor, multiple vacuum gauges, multiple second-type pipes, and multiple second-type tank covers. One mixing tank is installed at the top of the second-type support, and one first-type tank cover is installed at the top of the mixing tank. One end of the first-type pipe is connected to the bottom of the first mixing tank. The first-type reducer is fixedly installed at the bottom of the first mixing tank, and a stirrer is rotatably mounted on the top of the first-type reducer passing through the first mixing tank. The first-type motor is fixedly installed at the bottom of the first-type reducer, and the first-type motor provides power to the stirrer through the first-type reducer. Multiple second-type pipes are all installed in the first mixing tank. One barrel lid is installed on top of one of the remaining mixing barrels, and the remaining multiple mixing barrels are installed on top of multiple pipes. The remaining multiple barrel lids are installed on top of the remaining multiple mixing barrels. Multiple vacuum gauges are installed on top of multiple barrel lids. Multiple barrel lids are screwed onto the top of the upper multiple barrel lids. One motor provides power to drive the agitator on one reducer to rotate and stir the mixed resin inside the lower mixing barrel. The upper mixing barrel is vacuumed to facilitate the addition of new raw materials to the machine. The vacuum gauges display the vacuum level inside the mixing barrel. The barrel lids seal the upper mixing barrel.
[0009] Preferably, the vacuum chamber includes a chamber body, a first magnet, a hinge, a door, a second magnet, and a handle. The chamber body is mounted on the top of a third bracket. A mounting groove is provided at the front end of the chamber body, an exhaust port is provided at the side end of the chamber body, and a feed port is provided at the top end of the chamber body. The first magnet is fixedly installed in the mounting groove of the chamber body, the hinge is fixedly installed at the front end of the chamber body, the door is rotatably mounted on the hinge, a mounting groove is provided at the rear end of the door, the second magnet is fixedly installed in the mounting groove of the door, and the handle is fixedly installed at the front end of the door. The door folds to open and close the chamber body, the first magnet and the second magnet cooperate to fix the door, and the handle facilitates the operation of the door by the worker.
[0010] Preferably, the vacuuming device includes a vacuum pump, a second motor, a third pipe, and multiple solenoid valves. The vacuum pump is fixedly installed at the top of the first bracket, the second motor is fixedly installed at the side of the vacuum pump, and the second motor provides power to the vacuum pump. The third pipe is installed at the top of the vacuum pump, the top of the multiple first bucket lids, and the exhaust port of the box. The multiple solenoid valves are all installed on the third pipe, and the installation positions of the multiple third pipes are close to the multiple first bucket lids and the box, respectively. The second motor provides power to drive the vacuum pump to operate and evacuate the mixing bucket and the inside of the box, and the solenoid valves control the position of the vacuum evacuation.
[0011] Preferably, the mobile packaging device includes a conveyor cylinder, an auger, a second reducer, a third motor, a fourth pipe, multiple fifth supports, a first linear motor, two sixth supports, a first optical bar, a first slider, a second linear motor, a seventh support, a second optical bar, a second slider, a hydraulic cylinder, a eighth support, a ninth support, and a packaging tube. The conveyor cylinder is fixedly installed at the top of the fourth support, the other end of the first pipe is installed at the side of the conveyor cylinder, the auger is rotatably installed inside the conveyor cylinder, the second reducer is fixedly installed at the rear end of the conveyor cylinder and is rotatably connected between the conveyor cylinder and the auger, the third motor is fixedly installed at the rear end of the second reducer and provides power to the auger through the second reducer, one end of the fourth pipe is installed at the front end of the conveyor cylinder, multiple fifth supports are all installed at the top of the inside of the housing, the first linear motor and the two sixth supports are respectively installed at the bottom of the multiple fifth supports, the first optical bar is installed on the two sixth supports, and the first slider... The linear motor is mounted on the light bar 1. Linear motor 2 and bracket 7 are both mounted on linear motor 1 and slider 1. Light bar 2 is mounted on bracket 7. Slider 2 is slidably mounted on light bar 2. Hydraulic cylinder is mounted on linear motor 2 and slider 2. Bracket 8 is fixedly mounted on the side of hydraulic cylinder. Bracket 9 is mounted on the bottom of hydraulic cylinder. The other end of pipe 4 passes through the feed port of the box and bracket 8 is mounted on the top of bracket 9. Encapsulation tube is fixedly mounted on the bottom of bracket 9, and encapsulation tube and pipe 4 are connected. Motor 3 provides power to drive the auger to rotate and transport resin. Linear motor 1 provides power to drive the encapsulation tube to move left and right. Linear motor 2 provides power to drive the encapsulation tube to move back and forth. Hydraulic cylinder provides power to drive the encapsulation tube to move up and down. Motor 3, linear motor 1, linear motor 2 and hydraulic cylinder work together to drive the encapsulation tube to approach the power source and encapsulate the resin towards the power source.
[0012] Preferably, the vibrating rod is installed at the bottom of the bracket nine; the vibrating rod provides vibration, so that the resin is evenly distributed inside the power supply, thereby improving the encapsulation effect of the power supply.
[0013] Compared with the prior art, the advantages of this utility model are: it can inject resin into power sources at different positions and heights, making the machine more adaptable; and it can directionally transport the resin, resulting in higher transport efficiency and faster encapsulation speed. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the isometric structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the isometric structure of this utility model;
[0016] Figure 3 This is an isometric structural diagram of the fuselage;
[0017] Figure 4 This is a schematic diagram of the isometric cross-sectional structure of the vacuum chamber;
[0018] Figure 5This is a utility model Figure 1 A schematic diagram of the isometric structure at point A;
[0019] Figure 6 This is a utility model Figure 2 A schematic diagram of the isometric structure at point B;
[0020] Figure 7 This is a utility model Figure 2 A schematic diagram of the isometric structure at point C;
[0021] Figure 8 This is a utility model Figure 2 A schematic diagram of the isometric structure at point D;
[0022] Figure 9 This is a schematic diagram of the isometric cross-sectional structure of the mobile packaging device;
[0023] Figure 10 This is an isometric structural diagram of the mobile packaging device and the vibrating rod.
[0024] The attached diagram is labeled as follows: 01. Body; 11. Support base; 12. Bracket 1; 13. Bracket 2; 14. Bracket 3; 15. Bracket 4; 02. Resin mixing device; 21. Mixing tank; 22. Tank lid 1; 23. Pipe 1; 24. Reducer 1; 25. Motor 1; 26. Vacuum gauge; 27. Pipe 2; 28. Tank lid 2; 03. Vacuum chamber; 31. Chamber body; 32. Magnet 1; 33. Hinge; 34. Door; 35. Magnet 2; 36. Handle; 04. Vacuum extraction device; 41. 42. Vacuum pump; 43. Motor II; 44. Pipeline III; 55. Solenoid valve; 66. Moving packaging device; 77. Conveying cylinder; 88. Screwdriver; 99. Reducer II; 100. Motor III; 11. Pipeline IV; 12. Support V; 13. Linear motor I; 14. Support VI; 15. Optical bar I; 16. Slider I; 17. Linear motor II; 18. Support VII; 19. Optical bar II; 10. Slider II; 11. Hydraulic cylinder; 12. Support VIII; 10. Support IX; 11. Packaging tube; 12. Vibrating rod. Detailed Implementation
[0025] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.
[0026] Example 1
[0027] like Figure 1 and Figure 2As shown, the device includes a body 01; it also includes a resin mixing device 02, a vacuum chamber 03, a vacuum pumping device 04, a mobile packaging device 05, and a vibrating rod 06. The resin mixing device 02 and the vacuum chamber 03 are both mounted on the body 01. The vacuum pumping device 04 is mounted on the body 01, the resin mixing device 02, and the vacuum chamber 03. The mobile packaging device 05 is mounted on the body 01 and the vacuum chamber 03. The vibrating rod 06 is mounted on the mobile packaging device 05. The body 01 provides support, the resin mixing device 02 mixes the resin, the vacuum chamber 03 places the power supply, the vacuum pumping device 04 provides a vacuum to the resin mixing device 02 and the vacuum chamber 03, the mobile packaging device 05 packages the resin into the power supply, and the vibrating rod 06 vibrates the resin to improve the packaging uniformity.
[0028] like Figure 3 As shown, the body 01 includes multiple support bases 11, bracket one 12, bracket two 13, bracket three 14 and bracket four 15. Bracket one 12 is installed on the top of multiple support bases 11, and bracket two 13, bracket three 14 and bracket four 15 are all installed on the top of bracket one 12.
[0029] like Figures 6 to 8 As shown, the resin mixing device 02 includes multiple mixing tanks 21, multiple first tank covers 22, pipes 23, a reducer 24, a motor 25, multiple vacuum gauges 26, multiple second pipes 27, and multiple second tank covers 28. One mixing tank 21 is mounted on the top of the second support 13, one first tank cover 22 is mounted on the top of the mixing tank 21, one end of the first pipe 23 is connected to and installed at the bottom of the first mixing tank 21, and the reducer 24 is fixedly installed at the bottom of the first mixing tank 21, with the top of the reducer 24 passing through the first mixing tank 21. 1. A stirrer is provided for rotation. Motor 1 25 is fixedly installed at the bottom of reducer 1 24 and the motor 1 25 provides power to the stirrer through reducer 1 24. Multiple pipes 27 are installed on the top of the first bucket cover 22. The remaining multiple mixing buckets 21 are respectively installed on the top of the multiple pipes 27. The remaining multiple bucket covers 1 22 are respectively installed on the top of the remaining multiple mixing buckets 21. Multiple vacuum gauges 26 are respectively installed on the top of the multiple bucket covers 1 22. Multiple bucket covers 28 are screwed on the top of the multiple bucket covers 1 22 above.
[0030] like Figure 4As shown, the vacuum box 03 includes a box body 31, a magnet 32, a hinge 33, a door 34, a magnet 35, and a handle 36. The box body 31 is installed on the top of the bracket 14. The front end of the box body 31 is provided with a mounting groove 1. The side end of the box body 31 is provided with an exhaust port. The top end of the box body 31 is provided with a feed port. The magnet 32 is fixedly installed in the mounting groove 1 of the box body 31. The hinge 33 is fixedly installed at the front end of the box body 31. The door 34 is rotatably installed on the hinge 33. The rear end of the door 34 is provided with a mounting groove 2. The magnet 35 is fixedly installed in the mounting groove 2 of the door 34. The handle 36 is fixedly installed at the front end of the door 34.
[0031] like Figures 5 to 7 As shown, the vacuum pumping device 04 includes a vacuum pump 41, a second motor 42, a third pipe 43, and multiple solenoid valves 44. The vacuum pump 41 is fixedly installed on the top of the bracket 12, the second motor 42 is fixedly installed on the side of the vacuum pump 41, and the second motor 42 provides power to the vacuum pump 41. The third pipe 43 is installed at the top of the vacuum pump 41, the top of multiple barrel covers 22, and the exhaust port of the box 31. Multiple solenoid valves 44 are all installed on the third pipe 43, and the installation positions of the multiple third pipes 43 are close to the multiple barrel covers 22 and the box 31, respectively.
[0032] like Figures 8 to 10As shown, the mobile packaging device 05 includes a conveyor cylinder 51, an auger 52, a second reducer 53, a third motor 54, a fourth pipe 55, multiple fifth supports 56, a first linear motor 57, two sixth supports 58, a first optical bar 59, a first slider 60, a second linear motor 71, a seventh support 72, a second optical bar 73, a second slider 74, a hydraulic cylinder 75, a eighth support 76, a ninth support 77, and a packaging tube 78. The conveyor cylinder 51 is fixedly installed at the top of the fourth support 15. The other end of the first pipe 23 is installed on the side of the conveyor cylinder 51. The auger 52 is rotatably installed inside the conveyor cylinder 51. The second reducer 53 is fixedly installed at the rear end of the conveyor cylinder 51 and is rotatably connected between the conveyor cylinder 51 and the auger 52. The third motor 54 is fixedly installed at the rear end of the second reducer 53 and provides power to the auger 52 through the second reducer 53. One end of the fourth pipe 55 is installed at... At the front end of the conveyor cylinder 51, multiple brackets 56 are installed inside the top of the housing 31. Linear motor 1 57 and two brackets 6 58 are respectively installed at the bottom of the multiple brackets 56. A light bar 1 59 is installed on the two brackets 6 58. A slider 1 60 is slidably installed on the light bar 1 59. Linear motor 2 71 and bracket 72 are both installed on linear motor 1 57 and slider 1 60. A light bar 2 73 is installed on bracket 72. A slider 2 74 is slidably installed on light bar 2 73. A hydraulic cylinder 75 is installed on linear motor 2 71 and slider 2 74. A bracket 8 76 is fixedly installed on the side of the hydraulic cylinder 75. A bracket 9 77 is installed at the bottom of the hydraulic cylinder 75. The other end of pipe 4 55 passes through the feed inlet of the housing 31 and is installed at the top of bracket 9 77 through bracket 8 76. A sealing tube 78 is fixedly installed at the bottom of bracket 9 77. The sealing tube 78 and pipe 4 55 are connected.
[0033] First, open the chamber door 34, insert the power supply into the chamber 31, and then close the chamber door 34. Magnets 32 and 35 work together to secure the chamber door 34. The handle 36 facilitates operation of the chamber door 34 by the worker. Next, put the resin raw material into the upper mixing tank 21, and then turn on motor 42. Motor 42 provides power to drive vacuum pump 41 to evacuate the mixing tank 21 and the chamber 31. Solenoid valve 44 controls the vacuum position. When the mixing tank 21 is evacuated, turn on motor 25. Motor 25 provides power to drive the stirrer on reducer 24 to rotate and stir the mixed resin inside the lower mixing tank 21. 21 Vacuuming is performed on various resin raw materials to facilitate the addition of new raw materials to the machine. Vacuum gauge 26 displays the vacuum level inside mixing tank 21. Tank lid 28 seals the upper mixing tank 21. Then, motor 3 54 is turned on, providing power to drive auger 52 to rotate and transport the resin. Linear motor 1 57 provides power to drive encapsulation tube 78 to move left and right. Linear motor 2 71 provides power to drive encapsulation tube 78 to move back and forth. Hydraulic cylinder 75 provides power to drive encapsulation tube 78 to move up and down. Motor 3 54, linear motor 1 57, linear motor 2 71 and hydraulic cylinder 75 work together to drive encapsulation tube 78 to approach the power source and encapsulate the resin towards the power source.
[0034] Example 2
[0035] In addition to Example 1, it also includes:
[0036] like Figure 10 As shown, the vibrating rod 06 is installed at the bottom end of the bracket 9 77;
[0037] First, open the door 34 and insert the power supply into the housing 31. Then close the door 34. Magnets 32 and 35 work together to secure the door 34. The handle 36 facilitates operation of the door 34. Next, place the resin raw materials into the upper mixing tank 21. Then, turn on motor 42, which provides power to drive vacuum pump 41 to evacuate the mixing tank 21 and the housing 31. Solenoid valve 44 controls the vacuum position. Once the mixing tank 21 is evacuated, turn on motor 25, which provides power to drive the agitator on reducer 24 to rotate and stir the mixed resin inside the lower mixing tank 21. The upper mixing tank 21 is evacuated to facilitate the addition of various resin raw materials to the machine. Add new raw materials, vacuum gauge 26 displays the vacuum level inside mixing tank 21, tank lid 28 seals the mixing tank 21 above, then motor 3 54 is turned on, motor 3 54 provides power to drive auger 52 to rotate and transport resin, linear motor 1 57 provides power to drive encapsulation tube 78 to move left and right, linear motor 2 71 provides power to drive encapsulation tube 78 to move back and forth, and hydraulic cylinder 75 provides power to drive encapsulation tube 78 to move up and down. Motor 3 54, linear motor 1 57, linear motor 2 71 and hydraulic cylinder 75 work together to drive encapsulation tube 78 close to the power source and encapsulate resin with the power source. At the same time, vibrator 06 is turned on, vibrator 06 provides vibration to make the resin evenly distributed inside the power source, improving the encapsulation effect of the power source.
[0038] like Figures 1 to 10As shown, this utility model discloses a high-voltage power supply resin vacuum encapsulation device. During operation, the door 34 is first opened, and the power supply is placed inside the housing 31. Then, the door 34 is closed. Magnets 32 and 35 work together to secure the door 34. A handle 36 facilitates operation of the door 34. Next, resin raw materials are placed into the upper mixing tank 21. Then, motor 42 is turned on, providing power to drive the vacuum pump 41 to evacuate the mixing tank 21 and the housing 31. The solenoid valve 44 controls the vacuum position. Once the mixing tank 21 is evacuated, motor 25 is turned on, providing power to drive the agitator on the reducer 24 to rotate and stir the mixed resin inside the lower mixing tank 21. The upper mixing tank 21 is used for mixing various resins. The raw materials are vacuumed to facilitate the addition of new raw materials to the machine. Vacuum gauge 26 displays the vacuum level inside mixing tank 21. Tank lid 28 seals the mixing tank 21 above. Then, motor 3 54 is turned on, providing power to drive auger 52 to rotate and transport resin. Linear motor 1 57 provides power to drive encapsulation tube 78 to move left and right. Linear motor 2 71 provides power to drive encapsulation tube 78 to move back and forth. Hydraulic cylinder 75 provides power to drive encapsulation tube 78 to move up and down. Motor 3 54, linear motor 1 57, linear motor 2 71 and hydraulic cylinder 75 work together to drive encapsulation tube 78 closer to the power source and encapsulate resin with the power source. At the same time, vibrator 06 is turned on, providing vibration to distribute resin evenly inside the power source and improve the encapsulation effect.
[0039] The motor 25, multiple vacuum gauges 26, magnet 32, box door 34, vacuum pump 41, motor 42, multiple solenoid valves 44, motor 54, linear motor 57, linear motor 71, hydraulic cylinder 75, and vibrator 06 of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0040] The main functions achieved by this utility model are: by setting up a mobile packaging device 05, resin is injected into the power supply at different positions and heights, improving the machine's applicability; and by setting up a mobile packaging device 05, resin is directionally transported by an auger 52, improving the conveying efficiency and packaging speed; it solves the existing technical problems that existing machines can only inject resin into materials at fixed positions, resulting in poor machine applicability, and that existing machines transport resin by air pressure difference, resulting in low conveying efficiency and low packaging speed.
[0041] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A high-voltage power supply resin vacuum encapsulation device, comprising a body (01); characterized in that, It also includes a resin mixing device (02), a vacuum chamber (03), a vacuum pumping device (04), a mobile packaging device (05), and a vibrating rod (06). The resin mixing device (02) and the vacuum chamber (03) are both mounted on the machine body (01). The vacuum pumping device (04) is mounted on the machine body (01), the resin mixing device (02), and the vacuum chamber (03). The mobile packaging device (05) is mounted on the machine body (01) and the vacuum chamber (03). The vibrating rod (06) is mounted on the mobile packaging device (05). The machine body (01) provides support. The resin mixing device (02) mixes the resin. The vacuum chamber (03) places the power supply. The vacuum pumping device (04) provides a vacuum to the resin mixing device (02) and the vacuum chamber (03). The mobile packaging device (05) packages the resin to the power supply. The vibrating rod (06) vibrates the resin to improve the packaging uniformity.
2. The high-voltage power supply resin vacuum encapsulation device as described in claim 1, characterized in that, The fuselage (01) includes multiple support bases (11), bracket one (12), bracket two (13), bracket three (14) and bracket four (15). Bracket one (12) is installed on the top of multiple support bases (11), and bracket two (13), bracket three (14) and bracket four (15) are all installed on the top of bracket one (12).
3. The high-voltage power supply resin vacuum encapsulation equipment as described in claim 2, characterized in that, The resin mixing device (02) includes multiple mixing tanks (21), multiple first-stage tank covers (22), a first-stage pipe (23), a first-stage reducer (24), a first-stage motor (25), multiple vacuum gauges (26), multiple second-stage pipes (27), and multiple second-stage tank covers (28). One mixing tank (21) is installed on the top of the second-stage support (13), one first-stage tank cover (22) is installed on the top of the mixing tank (21), one end of the first-stage pipe (23) is connected to the bottom of the first mixing tank (21), and the first-stage reducer (24) is fixedly installed at the bottom of the first mixing tank (21), with the top of the first-stage reducer (24) passing through the first mixing tank. (21) A stirrer is provided for rotation. Motor 1 (25) is fixedly installed at the bottom of reducer 1 (24). Motor 1 (25) provides power to the stirrer through reducer 1 (24). Multiple pipes 2 (27) are installed on the top of the first bucket cover 1 (22). The remaining multiple mixing buckets (21) are installed on the top of multiple pipes 2 (27). The remaining multiple bucket covers 1 (22) are installed on the top of the remaining multiple mixing buckets (21). Multiple vacuum gauges (26) are installed on the top of multiple bucket covers 1 (22). Multiple bucket covers 2 (28) are screwed onto the top of the upper multiple bucket covers 1 (22).
4. The high-voltage power supply resin vacuum encapsulation device as described in claim 3, characterized in that, The vacuum chamber (03) includes a chamber body (31), a magnet (32), a hinge (33), a door (34), a magnet (35), and a handle (36). The chamber body (31) is installed on the top of the bracket (14). The front end of the chamber body (31) is provided with a mounting groove, the side end of the chamber body (31) is provided with an exhaust port, and the top end of the chamber body (31) is provided with a feed port. The magnet (32) is fixedly installed in the mounting groove of the chamber body (31). The hinge (33) is fixedly installed at the front end of the chamber body (31). The door (34) is rotatably installed on the hinge (33). The rear end of the door (34) is provided with a mounting groove, the magnet (35) is fixedly installed in the mounting groove of the door (34), and the handle (36) is fixedly installed at the front end of the door (34).
5. The high-voltage power supply resin vacuum encapsulation device as described in claim 4, characterized in that, The vacuum pumping device (04) includes a vacuum pump (41), a second motor (42), a third pipe (43), and multiple solenoid valves (44). The vacuum pump (41) is fixedly installed on the top of the first bracket (12). The second motor (42) is fixedly installed on the side of the vacuum pump (41) and provides power to the vacuum pump (41). The third pipe (43) is installed on the top of the vacuum pump (41), the top of the multiple first barrel covers (22), and the exhaust port of the box (31). The multiple solenoid valves (44) are all installed on the third pipe (43), and the installation positions of the multiple third pipes (43) are close to the multiple first barrel covers (22) and the box (31), respectively.
6. The high-voltage power supply resin vacuum encapsulation device as described in claim 5, characterized in that, The mobile packaging device (05) includes a conveyor cylinder (51), an auger (52), a second reducer (53), a third motor (54), a fourth pipe (55), multiple fifth supports (56), a first linear motor (57), two sixth supports (58), a first optical bar (59), a first slider (60), a second linear motor (71), a seventh support (72), a second optical bar (73), a second slider (74), a hydraulic cylinder (75), an eighth support (76), a ninth support (77), and a packaging tube (78). The conveyor cylinder (51) is fixedly installed. The first pipe (23) is installed at the top of the support (15), and the other end of the pipe (23) is installed on the side of the conveyor (51). The auger (52) is rotatably installed inside the conveyor (51). The second reducer (53) is fixedly installed at the rear end of the conveyor (51) and is rotatably connected between the conveyor (51) and the auger (52). The third motor (54) is fixedly installed at the rear end of the second reducer (53) and provides power to the auger (52) through the second reducer (53). One end of the pipe (55) is installed with At the front end of the conveyor cylinder (51), multiple brackets five (56) are installed inside the top of the housing (31). Linear motor one (57) and two brackets six (58) are respectively installed at the bottom of multiple brackets five (56). Light bar one (59) is installed on the two brackets six (58). Slider one (60) is slidably installed on light bar one (59). Linear motor two (71) and bracket seven (72) are both installed on linear motor one (57) and slider one (60). Light bar two (73) is installed on bracket seven (72). Slider two (59) is installed on the two brackets six (58). 74) Sliding installation on light bar two (73), hydraulic cylinder (75) installed on linear motor two (71) and slider two (74), bracket eight (76) fixedly installed on the side of hydraulic cylinder (75), bracket nine (77) installed on the bottom of hydraulic cylinder (75), and the other end of pipe four (55) passes through the feed port of box (31) and bracket eight (76) installed on the top of bracket nine (77), and sealing tube (78) fixedly installed on the bottom of bracket nine (77), and sealing tube (78) and pipe four (55) are connected.
7. The high-voltage power supply resin vacuum encapsulation device as described in claim 6, characterized in that, The vibrating rod (06) is installed at the bottom of the bracket nine (77).
Citation Information
Patent Citations
High-voltage power supply resin vacuum packaging equipment
CN219768886U