Canning apparatus for water softener cartridges

CN118929548BActive Publication Date: 2026-09-04HUA YING LUN TONG ZHI PIN NING BO YOU XIAN GONG SI
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Patent Information

Application Number
CN202411219316.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2026-09-04
Estimated Expiration
2044-09-02

AI Technical Summary

Technical Problem

在将树脂灌装在罐体1时,需要先将中心管4设置有过滤桶的一端从罐体1的罐口竖直放入,直至过滤桶的底端与罐体1的底部中心抵触,此时中心管4的上端与罐体1的罐口上端持平(如图12图13),接着将树脂投入到罐体1内,使得中心管4的周围具有一层厚度均匀的树脂层,而由于罐体1的罐口小,在倒入树脂时,树脂容易进入中心管4内,投放树脂不便,因此本申请人在实际生产过程中研发出一种新的技术方案,以解决上述技术问题

Benefits of technology

[0015] Preferably, the bottom of the filling box is provided with a weighing plate located between the first side plate and the second side plate, the pick-up and put-down plate is located above the weighing plate, and the tank inside the filling box is located at the top of the weighing plate.

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Abstract

The application discloses a canning equipment for a filter core of a water softener, and relates to the technical field of canning equipment. The technical scheme is as follows: the canning equipment comprises a filling box used for vertically placing a can body and a storage mechanism arranged on the filling box; a telescopic discharging pipe is arranged on the storage mechanism; a flow guide piece is detachably connected to one end of the discharging pipe away from the storage mechanism; the flow guide piece is detachably connected to a can opening of the can body; and the flow guide piece is used for plugging a center pipe in the can body and guiding the material in the discharging pipe into the can body.
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Description

Technical Field

[0001] This invention relates to the field of bottling equipment technology, specifically bottling equipment for water softener filter cartridges. Background Technology

[0002] Water softeners primarily remove calcium and magnesium ions from water through ion exchange resin in the filter cartridge, thereby reducing water hardness.

[0003] The water softener's filter cartridge includes a central tube 4, a resin-filled tank 1, and a filter cartridge located within the resin in the tank and mounted on the central tube 4. When filling the tank 1 with resin, the end of the central tube 4 containing the filter cartridge must first be vertically inserted into the tank 1 through the opening until the bottom of the filter cartridge touches the center of the bottom of the tank 1. At this point, the upper end of the central tube 4 is flush with the upper end of the tank 1's opening (e.g., ...). Figure 12 and Figure 13 Then, the resin is poured into the tank 1, so that there is a resin layer of uniform thickness around the central tube 4. However, because the opening of the tank 1 is small, the resin can easily enter the central tube 4 when it is poured in, making it inconvenient to add the resin. Therefore, the applicant has developed a new technical solution in the actual production process to solve the above technical problems. Summary of the Invention

[0004] To address the aforementioned technical shortcomings, the purpose of this invention is to provide a filling device for water softener filter cartridges, which has the advantages of reducing resin entry into the central tube and facilitating resin filling into the tank.

[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: This invention provides a filling device for a water softener filter element, including a filling box for vertically placing the tank and a storage mechanism disposed on the filling box. The storage mechanism is provided with a retractable discharge pipe, and a guide component is detachably connected to the end of the discharge pipe away from the storage mechanism. The guide component is detachably connected to the tank opening of the tank and is used to block the central pipe inside the tank and guide the material in the discharge pipe into the tank.

[0006] By adopting the above technical solution, during use, the tank is placed inside the filling box, and then the guide component is installed on the tank. At this time, the guide component will block the top of the central tube inside the tank. Then, the discharge pipe is connected to the guide component. Then, the resin stored in the storage mechanism is discharged from the discharge pipe into the guide component through the storage mechanism. Then, the resin in the guide component will be discharged into the tank from the guide component. When the resin enters the tank from the guide component, because the guide component blocks the top of the central tube, the resin will not enter the central tube, which makes it easy to fill the resin into the tank. It is simple and convenient to use.

[0007] Preferably, the flow guide includes a closed barrel and a threaded cylinder threadedly connected to the tank opening. A mounting cylinder is coaxially arranged inside the threaded cylinder, with its bottom end extending outside the threaded cylinder. A hollow disc is coaxially arranged at the top of the mounting cylinder, and the mounting cylinder communicates with the disc. A flow guide tube is arranged at the top of the disc, with its bottom end passing through the disc and located inside the mounting cylinder. At this point, the bottom end of the flow guide tube passes through the end of the mounting cylinder that communicates with the disc. The closed barrel is coaxially located within the flow guide tube, with its opening facing downwards. The top end of the central tube is located within the closed barrel. The outer wall of the closed barrel is connected to the inner wall of the flow guide tube via a connecting plate. The top end of the flow guide tube is detachably connected to the discharge pipe.

[0008] Preferably, the storage mechanism includes a storage box disposed on one side of the outer wall of the filling box and a top plate horizontally disposed above the opposite sides inside the filling box. The discharge pipe is disposed on the top plate, and the top end of the discharge pipe passes through the top plate and is provided with a suction pipe. The end of the suction pipe away from the discharge pipe passes through the filling box and extends into the storage box through the box opening. One side of the disc is provided with a suction pipe communicating with the disc, and the end of the suction pipe away from the disc is detachably connected to a connecting pipe. The end of the connecting pipe away from the suction pipe is provided with a flexible hose, and the end of the flexible hose away from the connecting pipe passes through the box wall of the filling box and is provided with a vacuum pump located outside the filling box. The exhaust port of the vacuum pump is connected to an exhaust pipe, and the exhaust pipe is provided with a first solenoid valve. The suction pipe is provided with a second solenoid valve. The inner diameter of the mounting cylinder is larger than the outer diameter of the guide pipe, and there is a gap between the mounting cylinder and the guide pipe.

[0009] Preferably, the bottom end of the mounting cylinder and the guide pipe are connected by a sealing ring, and the sealing ring is in communication with the guide pipe. The bottom end of the sealing cylinder passes through the sealing ring and extends vertically to the outside of the guide pipe. A retaining ring is coaxially provided at the top end of the sealing ring. The bottom end of the mounting cylinder is located inside the retaining ring, and the inner diameter of the retaining ring is larger than the outer diameter of the mounting cylinder. At this time, there is a gap between the mounting cylinder and the retaining ring. Several connecting holes are opened on the outer wall of the mounting cylinder, and each connecting hole is evenly distributed along the circumference of the mounting cylinder. Each of the connecting holes is located inside the retaining ring. An extension cylinder is coaxially provided at the bottom end of the sealing ring, and the extension cylinder is in communication with the guide pipe.

[0010] Preferably, the discharge pipe includes a fixed pipe disposed on the top plate and a movable pipe vertically sleeved on the fixed pipe. The movable pipe is located below the top plate, and the bottom end of the movable pipe is connected to an extension pipe. A sealing ring that abuts against the outer wall of the fixed pipe is embedded on the inner wall of the movable pipe. The extraction pipe is connected to the fixed pipe, and the top end of the guide pipe is detachably connected to the bottom end of the extension pipe.

[0011] Preferably, a support for placing multiple cans is provided on one side of the filling box, and rollers are provided at the four corners of the bottom of the support. The filling box is provided with a transfer device for transferring one of the cans on the support to the filling box.

[0012] Preferably, the bottom surface of the can is a bowl-shaped arc surface. The transfer component includes a semi-circular pick-and-place plate and a first side plate and a second side plate disposed at the bottom of the filling box. The pick-and-place plate is horizontally located between the first side plate and the second side plate, and a semi-circular groove is coaxially provided at the top of the pick-and-place plate. A semi-circular connecting groove is coaxially provided at the bottom of the groove. The wall surface of the connecting groove is an arc surface that mates with the bottom surface of the can, and the arc surface of the connecting groove faces the axis of the connecting groove. A semi-circular annular first sliding groove is coaxially provided on the inner wall of the groove, and a semi-circular annular second sliding groove is coaxially provided on the arc surface of the connecting groove. The first sliding groove and the second sliding groove are connected, and both the first sliding groove and the second sliding groove are connected to each other. The two ends of one side of the pick-and-place plate are connected. The first slide groove and the second slide groove form a slide. Two opposing first arc-shaped plates are slidably connected in the first slide groove along the arc direction of the pick-and-place plate, and the inner sides of the two first arc-shaped plates are flush with the inner wall of the groove. Two opposing second arc-shaped plates are slidably connected in the second slide groove along the arc direction of the pick-and-place plate, and the inner sides of the two second arc-shaped plates are arc-shaped surfaces that mate with the bottom end face of the tank. The first arc-shaped plates and the second arc-shaped plates form an arc-shaped sliding plate. The pick-and-place plate is provided with a pusher for simultaneously pushing the two sliding plates to move away from or towards each other. A power member is provided between the first side plate and the second side plate for driving the pick-and-place plate to move horizontally and vertically.

[0013] Preferably, the power component includes sliding grooves horizontally arranged on the sides of the first and second side plates, with sliding plates horizontally slidably connected in both sliding grooves. The two sliding plates are connected by a support plate. A U-shaped suspension plate is provided on the arc-shaped surface of the outer side of the pick-and-place plate, and a horizontal plate is provided at the top of the suspension plate. The horizontal plate is located directly below the support plate, and an electric cylinder for pushing the horizontal plate to move up and down is provided on the support plate. Two opposing circular grooves are opened at the top of the support plate, and two opposing sliding columns are vertically provided at the top of the horizontal plate. The tops of the two sliding columns pass through the two circular grooves respectively. The electric cylinder is located between the two sliding columns. A lead screw is rotatably connected between the opposite sides of one of the sliding grooves, and one end of the lead screw passes through the sliding plate and is threadedly connected to the sliding plate. At this time, the lead screw is horizontally arranged. A drive motor for driving the lead screw to rotate is provided on the side of the filling box away from the opening of the filling box.

[0014] Preferably, the pushing component includes a rotating motor disposed inside the suspension plate, and one end of the rotating shaft of the rotating motor passes through the pick-up and put-down plate and is provided with a turntable located in the slide rail. The turntable is provided with a plurality of first protruding teeth, and each first protruding tooth is evenly distributed along the circumference of the turntable. The turntable is located between two sliding plates. Each of the two sliding plates is provided with an arc-shaped rod at one end near the turntable, and the two arc-shaped rods are vertically opposite each other. The turntable is located between the two arc-shaped rods. Each of the two arc-shaped rods is provided with a plurality of second protruding teeth that mesh with the first protruding teeth on the side of each other that is close to each other, and each second protruding tooth is evenly distributed along the arc direction of the arc-shaped rod. Each of the two sliding plates is provided with a slot for inserting the arc-shaped rod at one end near the turntable, and the two slots are vertically opposite each other. The two skateboards are the first skateboard and the second skateboard, and the two curved rods are the first curved rod and the second curved rod. The first curved rod is set on the first skateboard, and the second curved rod is set on the second skateboard. The end of the first curved rod away from the first skateboard is located in a slot on the second skateboard, and the end of the second curved rod away from the second skateboard is located in a slot on the first skateboard.

[0015] Preferably, the bottom of the filling box is provided with a weighing plate located between the first side plate and the second side plate, the pick-up and put-down plate is located above the weighing plate, and the tank inside the filling box is located at the top of the weighing plate.

[0016] The beneficial effects of this invention are as follows: In use, the tank is placed inside the filling box, and then the guide component is installed on the tank. At this time, the guide component will block the top of the central tube inside the tank. Then, the discharge pipe is connected to the guide component. Then, the resin stored in the storage mechanism is discharged from the discharge pipe into the guide component through the storage mechanism. Then, the resin in the guide component will be discharged into the tank from the guide component. When the resin enters the tank from the guide component, because the guide component blocks the top of the central tube, the resin will not enter the central tube, which makes it easy to fill the resin into the tank. It is simple and convenient to use. Attached Figure Description

[0017] 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 these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of the structure of this embodiment; Figure 2 This is a schematic diagram illustrating the structure of the sliding groove in this embodiment; Figure 3 for Figure 2 Enlarged structural diagram of section A in the middle; Figure 4 This is a schematic diagram illustrating the structure of the exhaust pipe in this embodiment; Figure 5 This is a schematic diagram illustrating the structure of the support plate in this embodiment; Figure 6 This is a schematic diagram illustrating the structure of the extension tube in this embodiment; Figure 7 for Figure 2 Enlarged structural diagram of section B in the middle; Figure 8 This is a schematic diagram illustrating the structure of the suspension plate in this embodiment; Figure 9 This is a schematic diagram illustrating the structure of the pick-and-place plate in this embodiment; Figure 10 This is a structural schematic diagram illustrating the second arc-shaped plate in this embodiment; Figure 11 This is a schematic diagram of a structure in which two skateboards are separated from each other in a slide, and one end of the skateboard moves out of the slide, forming an open ring with the take-up board and the two skateboards; Figure 12 This is a schematic diagram illustrating the structure of the tank in this embodiment; Figure 13 This is a schematic diagram illustrating the structure of the central tube in this embodiment.

[0019] Explanation of reference numerals in the attached figures: In the diagram: 1. Tank; 2. Filling box; 3. Discharge pipe; 4. Central pipe; 5. Sealed tank; 6. Threaded cylinder; 7. Mounting cylinder; 8. Disc; 9. Guide pipe; 10. Connecting plate; 12. Storage tank; 13. Top plate; 14. Extraction pipe; 15. Extraction pipe; 16. Connecting pipe; 17. Hose; 18. Vacuum pump; 19. Exhaust pipe; 20. First solenoid valve; 21. Second solenoid valve; 22. Sealing ring; 23. Retaining ring; 24. Connecting hole; 25. Extension cylinder; 26. Fixed pipe; 27. Moving pipe; 28. Extension pipe; 29. ​​Sealing ring; 30. Support; 31. Roller 32. Wheel; 33. Pick-up and drop-off plate; 34. First side plate; 35. Second side plate; 36. Groove; 37. Connecting groove; 38. First sliding groove; 39. Second sliding groove; 40. Slide; 41. First arc-shaped plate; 42. Second arc-shaped plate; 43. Slide plate; 44. Sliding groove; 45. Support plate; 46. Suspension plate; 47. Horizontal plate; 48. Electric cylinder; 49. Circular groove; 50. Sliding column; 51. Lead screw; 52. Drive motor; 53. Rotary motor; 54. Turntable; 55. First convex tooth; 56. Arc-shaped rod; 57. Second convex tooth; 58. Slot; 59. Weighing plate. Detailed Implementation

[0020] 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 some embodiments of the present invention, and not all 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.

[0021] A bottling device for water softener filter cartridges, such as Figure 1 and Figure 2 The container includes a filling box 2 for vertically placing the tank 1 and a storage mechanism set on the filling box 2. The storage mechanism is provided with a retractable discharge pipe 3, and a guide is detachably connected to one end of the discharge pipe 3 away from the storage mechanism. The guide is detachably connected to the opening of the tank 1. The guide is used to block the central pipe 4 inside the tank 1 and guide the material in the discharge pipe 3 into the tank 1.

[0022] like Figure 1 and Figure 2 When in use, place the tank 1 inside the filling box 2, and then install the guide component on the tank 1. At this time, the guide component will block the top of the central tube 4 inside the tank 1. Then, connect the discharge pipe 3 to the guide component. Then, the resin stored in the storage mechanism is discharged from the discharge pipe 3 into the guide component through the storage mechanism. Then, the resin in the guide component will be discharged into the tank 1 from the guide component. When the resin enters the tank 1 from the guide component, the resin will not enter the central tube 4 because the guide component blocks the top of the central tube 4. This makes it easy to fill the resin into the tank 1. It is simple and convenient to use.

[0023] like Figure 1 and Figure 2 and Figure 3 The flow guide includes a closed barrel 5 and a threaded cylinder 6 threadedly connected to the opening of the tank body 1. A mounting cylinder 7 is coaxially provided inside the threaded cylinder 6, and the bottom end of the mounting cylinder 7 extends outside the threaded cylinder 6. A hollow disc 8 is coaxially provided at the top end of the mounting cylinder 7, and the mounting cylinder 7 communicates with the disc 8. A flow guide pipe 9 is provided at the top end of the disc 8, and the bottom end of the flow guide pipe 9 passes through the disc 8 and is located inside the mounting cylinder 7. At this time, the bottom end of the flow guide pipe 9 passes through the end of the mounting cylinder 7 that communicates with the disc 8. The closed barrel 5 is coaxially located in the flow guide pipe 9, and the opening of the closed barrel 5 faces downward. The top end of the central tube 4 is located in the closed barrel 5. The outer wall of the closed barrel 5 and the inner wall of the flow guide pipe 9 are connected by a connecting plate 10. The top end of the flow guide pipe 9 is detachably connected to the discharge pipe 3.

[0024] like Figure 1 and Figure 2 and Figure 3The storage mechanism stores the resin in the discharge pipe 3, which then enters the guide pipe 9 and finally the tank 1. When the resin enters the tank 1 from the guide pipe 9, the top of the central pipe 4 is located in the closed barrel 5, so the resin entering the central pipe 4 is reduced by passing through the closed barrel 5. The top of the closed barrel 5 is conical, which reduces the resin from staying at the top of the closed barrel 5. It is simple and convenient to use.

[0025] like Figure 1 and Figure 2 and Figure 3 and Figure 4 The storage mechanism includes a storage box 12 disposed on one side of the outer wall of the filling box 2 and a top plate 13 horizontally disposed above the opposite sides inside the filling box 2. The discharge pipe 3 is disposed on the top plate 13, and the top end of the discharge pipe 3 passes through the top plate 13 and is provided with a suction pipe 14. The end of the suction pipe 14 away from the discharge pipe 3 passes through the filling box 2 and extends into the storage box 12 through the box opening. A suction pipe 15 communicating with the disc 8 is provided on one side of the disc 8, and the end of the suction pipe 15 away from the disc 8 is provided with a suction pipe 15. A detachable connecting pipe 16 is provided. The end of the connecting pipe 16 away from the suction pipe 15 is provided with a flexible hose 17. The end of the flexible hose 17 away from the connecting pipe 16 passes through the wall of the filling box 2 and is provided with a vacuum pump 18 located outside the filling box 2. The exhaust port of the vacuum pump 18 is connected to an exhaust pipe 19, and a first solenoid valve 20 is provided on the exhaust pipe 19. A second solenoid valve 21 is provided on the material extraction pipe 14. The inner diameter of the mounting cylinder 7 is larger than the outer diameter of the guide pipe 9. At this time, there is a gap between the mounting cylinder 7 and the guide pipe 9.

[0026] like Figure 1 and Figure 2 and Figure 3 and Figure 4 When the vacuum pump 18 is turned on and the second solenoid valve 21 is closed, the air in the tank 1 will enter the disc 8 from between the mounting cylinder 7 and the guide pipe 9, and then pass through the suction pipe 15, the connecting pipe 16, and the hose 17 in sequence, entering the exhaust pipe 19 from the exhaust port of the vacuum pump 18, and then being discharged from the exhaust pipe 19. At this time, the operation of the vacuum pump 18 will create a negative pressure in the tank 1. After the vacuum pump 18 has been working for a period of time, the vacuum pump 18 will stop working and the first solenoid valve 20 will be closed. Then the second solenoid valve 21 will be opened. At this time, the negative pressure in the tank 1 will allow the resin in the storage tank 12 to pass through the suction pipe 14 and the discharge pipe 3 in sequence, entering the guide pipe 9, and then entering the tank 1 from the guide pipe 9. There is no need to manually pour the resin into the discharge pipe 3. Repeat the above process to fill the tank 1 with resin. It is simple and convenient to use.

[0027] like Figure 6The bottom end of the mounting cylinder 7 is connected to the bottom end of the guide pipe 9 via a sealing ring 22, and the sealing ring 22 communicates with the guide pipe 9. The bottom end of the sealing cylinder 5 passes through the sealing ring 22 and extends vertically to the outside of the guide pipe 9. A retaining ring 23 is coaxially provided at the top end of the sealing ring 22. The bottom end of the mounting cylinder 7 is located inside the retaining ring 23, and the inner diameter of the retaining ring 23 is larger than the outer diameter of the mounting cylinder 7. At this time, there is a gap between the mounting cylinder 7 and the retaining ring 23. Several communicating holes 24 are opened on the outer wall of the mounting cylinder 7, and each communicating hole 24 is evenly distributed along the circumference of the mounting cylinder 7. The cloth, each of the connecting holes 24 is located inside the retaining ring 23, and the bottom end of the closing ring 22 is coaxially provided with an extension cylinder 25, and the extension cylinder 25 is connected to the guide pipe 9. The purpose of this setting is that the first solenoid valve 20 and the second solenoid valve 21 can always be in the open state. At this time, when the vacuum pump 18 is working, a negative pressure is formed in the tank 1. At this time, the resin in the storage tank 12 can be sucked into the tank 1 in sequence through the suction pipe 14, the discharge pipe 3, the guide pipe 9, and the extension cylinder 25 through the negative pressure in the tank 1. At this time, the vacuum pump 18 can continue to work. Because the bottom ends of the mounting cylinder 7 and the guide pipe 9 are connected by a sealing ring 22, when the vacuum pump 18 is working, the air in the tank 1 will bypass the baffle ring 23 and enter the space between the mounting cylinder 7 and the guide pipe 9 through the various connecting holes 24, and then enter the disc 8. At this time, the cooperation between the sealing ring 22 and the baffle ring 23 and the extension cylinder 25 and the various connecting holes 24 can reduce the occurrence of resin entering the tank 1 from the extension cylinder 25 being sucked into the space between the mounting cylinder 7 and the guide pipe 9 and then entering the disc 8 when the vacuum pump 18 is working continuously. It is simple and convenient to use.

[0028] like Figure 2 and Figure 5 and Figure 7 The discharge pipe 3 includes a fixed pipe 26 set on the top plate 13 and a movable pipe 27 vertically sleeved on the fixed pipe 26. The movable pipe 27 is located below the top plate 13. The bottom end of the movable pipe 27 is connected to an extension pipe 28. A sealing ring 29 is embedded on the inner wall of the movable pipe 27 and abuts against the outer wall of the fixed pipe 26. The extraction pipe 14 is connected to the fixed pipe 26. The top end of the guide pipe 9 is detachably connected to the bottom end of the extension pipe 28. The purpose of this setting is that after the tank 1 is placed at the bottom of the filling box 2 and the threaded cylinder 6 is threaded to the opening of the tank 1, the movable pipe 27 is pulled down until the bottom end of the extension pipe 28 on the movable pipe 27 contacts the guide pipe 9. Then the extension pipe 28 and the guide pipe 9 are connected. The extension pipe 28 and the guide pipe 9 can be connected by a flange (not shown in the figure), which is simple and convenient to use.

[0029] like Figure 1A support 30 for placing multiple cans 1 is provided on one side of the filling box 2. Rollers 31 are provided at the four corners of the bottom of the support 30. The filling box 2 is provided with a transfer device for transferring one of the cans 1 on the support 30 into the filling box 2. The purpose of this setting is to move the support 30 to the opening of the filling box 2 by means of the rollers 31, so that one of the cans 1 on the support 30 corresponds to the transfer device on the filling box 2. Then, the can 1 on the support 30 can be transferred into the filling box 2 by means of the transfer device. After the cans 1 in the filling box 2 are filled with resin, the cans 1 in the filling box 2 can be transferred back to the support 30 by means of the transfer device. There is no need to manually move the cans 1, which saves manpower and is simple and convenient to use.

[0030] like Figure 1 and Figure 8 and Figure 9 and Figure 10 The bottom surface of the tank body 1 is a bowl-shaped arc surface. The transfer component includes a semi-circular pick-and-place plate 32 and a first side plate 33 and a second side plate 34 disposed at the bottom of the filling box 2. The pick-and-place plate 32 is horizontally located between the first side plate 33 and the second side plate 34, and a semi-circular groove 35 is coaxially provided at the top of the pick-and-place plate 32. A semi-circular connecting groove 36 is coaxially provided at the bottom of the groove 35. The wall surface of the connecting groove 36 is an arc surface that mates with the bottom surface of the tank body 1, and the arc surface on the connecting groove 36 faces the axis of the connecting groove 36. A semi-circular annular first sliding groove 37 is coaxially provided on the inner wall of the groove 35, and a semi-circular annular second sliding groove 38 is coaxially provided on the arc surface of the connecting groove 36. The first sliding groove 37 and the second sliding groove 38 are connected, and both the first sliding groove 37 and the second sliding groove 38 are connected to each other. One end of the pick-and-place plate 32 is connected. The first slide groove 37 and the second slide groove 38 form a slide 39. Two opposing first arc-shaped plates 40 are slidably connected in the first slide groove 37 along the arc direction of the pick-and-place plate 32, and the inner side surfaces of the two first arc-shaped plates 40 are flush with the inner wall of the groove 35. Two opposing second arc-shaped plates 41 are slidably connected in the second slide groove 38 along the arc direction of the pick-and-place plate 32, and the inner side surfaces of the two second arc-shaped plates 41 are arc-shaped surfaces that mate with the bottom end surface of the tank body 1. The first arc-shaped plates 40 and the second arc-shaped plates 41 form an arc-shaped sliding plate 42. The pick-and-place plate 32 is provided with a pusher for simultaneously pushing the two sliding plates 42 to move away from or towards each other. A power member is provided between the first side plate 33 and the second side plate 34 for driving the pick-and-place plate 32 to move horizontally and vertically.

[0031] like Figure 1 and Figure 8 and Figure 9 and Figure 10The support 30 is moved to the opening of the filling box 2 via the rollers 31, aligning one of the cans 1 on the support 30 with the pick-and-place plate 32. Then, the power component drives the pick-and-place plate 32 horizontally towards the opening of the filling box 2 until it is positioned below the can 1 on the support 30. At this point, the pick-and-place plate 32 and the can 1 are coaxial. Then, the pushing component simultaneously pushes the two sliding plates 42 away from each other. The two sliding plates 42 then extend the pick-and-place plate 32 along its arc direction. One end of each sliding plate 42 is now outside the slide rail 39. When the sliding plates 42 reach the appropriate position, the pick-and-place plate 32 and the two sliding plates 42 form an open ring (e.g., ...). Figure 11 Then, the power component drives the pick-and-place plate 32 to move vertically upward. At this time, the bowl-shaped bottom of the tank 1 will sit in the ring formed by the pick-and-place plate 32 and the two sliding plates 42. At this time, the arc surfaces of the connecting groove 36 and the second arc plate 41 will both contact the bowl-shaped arc surface of the bottom of the tank 1. The inner walls of the groove 35 and the first arc plate 40 will both contact the vertical wall of the tank 1. Then, the power component continues to drive the pick-and-place plate 32 to move vertically upward. At this time, the tank 1 on the support 30 can be lifted by the pick-and-place plate 32, the two first arc plates 40 and the second arc plate 41. Then, the power component drives the pick-and-place plate 32 to move horizontally into the filling box 2. At this time, one of the tanks 1 on the support 30 can be transferred into the filling box 2. When the tank 1 is transferred into the filling box 2 by the transfer component and corresponds to the discharge pipe 3; The power component drives the pick-and-place plate 32 to move vertically downwards until the can 1 is placed at the bottom of the filling box 2. Then, the power component continues to drive the pick-and-place plate 32 to move vertically downwards, so that the connecting groove 36 and the arc surface on the second arc plate 41 are separated from the can 1, and the groove 35 and the inner wall of the first arc plate 40 are separated from the can 1. Then, the pushing component simultaneously pushes the two sliding plates 42 closer to each other (moving them into the pick-and-place plate 32) until both sliding plates 42 have moved back into the slide rail 39 (as shown). Figure 10 It is simple and convenient to use.

[0032] like Figure 4 and Figure 5 and Figure 8 and Figure 9 and Figure 10The power component includes sliding grooves 43 horizontally arranged on the sides of the first side plate 33 and the second side plate 34, close to each other. Sliding plates 44 are horizontally slidably connected within each of the two sliding grooves 43. The two sliding plates 44 are connected by a support plate 45. A U-shaped suspension plate 46 is provided on the arc-shaped surface of the outer side of the pick-and-place plate 32, and a horizontal plate 47 is horizontally provided at the top of the suspension plate 46. The horizontal plate 47 is located directly below the support plate 45, and an electric cylinder 48 is provided on the support plate 45 for pushing the horizontal plate 47 up and down. Two opposing circular grooves 49 are provided at the top. Two opposing sliding columns 50 are vertically provided at the top of the horizontal plate 47, and the tops of the two sliding columns 50 pass through the two circular grooves 49 respectively. An electric cylinder 48 is located between the two sliding columns 50. A lead screw 51 is rotatably connected between the opposite sides of one of the sliding grooves 43, and one end of the lead screw 51 passes through the sliding plate 44 and is threadedly connected to the sliding plate 44. At this time, the lead screw 51 is set horizontally. A drive motor 52 for driving the lead screw 51 to rotate is provided on the side of the filling box 2 away from the opening of the filling box 2.

[0033] like Figure 4 and Figure 5 and Figure 8 and Figure 9 and Figure 10 When it is necessary to move the pick-up and place plate 32, simply turn on the drive motor 52. The rotating shaft of the drive motor 52 drives the lead screw 51 to rotate. Since one end of the lead screw 51 passes through the sliding plate 44 and is threadedly connected to the sliding plate 44, when the lead screw 51 rotates, it can drive the sliding plate 44 to slide horizontally in the sliding groove 43. At this time, the support plate 45, the suspension plate 46, the horizontal plate 47, and the electric cylinder 48 will move horizontally with the sliding plate 44. When it is necessary to move the pick-up and place plate 32 up and down, simply turn on the electric cylinder 48. At this time, the piston rod of the electric cylinder 48 will drive the suspension plate 46 to move up and down through the horizontal plate 47. At this time, the pick-up and place plate 32 will move up and down with the suspension plate 46. It is simple and convenient to use.

[0034] like Figure 10The pushing component includes a rotating motor 53 disposed inside the suspension plate 46, and one end of the rotating shaft of the rotating motor 53 passes through the pick-up and put-down plate 32 and is provided with a turntable 54 located in the slide rail 39. The turntable 54 is provided with a plurality of first protrusions 55, and each first protrusion 55 is evenly distributed along the circumference of the turntable 54. The turntable 54 is located between two sliding plates 42. Each of the two sliding plates 42 is provided with an arc-shaped rod 56 at one end near the turntable 54, and the two arc-shaped rods 56 are vertically opposite each other. The turntable 54 is located between the two arc-shaped rods 56. Each of the two arc-shaped rods 56 is provided with a plurality of second protrusions 57 that mesh with the first protrusions 55 on the side of each other that is close to each other, and each second protrusion 57 is evenly distributed along the arc direction of the arc-shaped rod 56. Each of the two sliding plates 42 is provided with a slot 58 for inserting the arc-shaped rod 56 at one end near the turntable 54, and the two slots 58 are vertically opposite each other. The two skateboards 42 are the first skateboard 42 and the second skateboard 42, and the two curved rods 56 are the first curved rod 56 and the second curved rod 56, respectively. The first curved rod 56 is set on the first skateboard 42, and the second curved rod is set on the second skateboard 42. The end of the first curved rod 56 away from the first skateboard 42 is located in the slot 58 on the second skateboard 42, and the end of the second curved rod 56 away from the second skateboard 42 is located in the slot 58 on the first skateboard 42.

[0035] like Figure 10 When it is necessary to push the two slide plates 42 away from each other at the same time, simply turn on the rotating motor 53. The rotating shaft of the rotating motor 53 drives the turntable 54 to rotate. At this time, because the first tooth 55 on the turntable 54 meshes with the second tooth 57 on the two arc rods 56, when the turntable 54 rotates, through the cooperation of the first tooth 55 on the turntable 54 and the second tooth 57 on the two arc rods 56, the two arc rods 56 can be pushed to drive the two slide plates 42 away from each other respectively. At this time, the two slide plates 42 move away from the turntable 54, one end of the two slide plates 42 moves out of the slide rail 39, and when the two slide plates 42 move closer to each other and move into the slide rail 39, the two slide plates 42 approach the turntable 54. It is simple and convenient to use.

[0036] like Figure 1 The bottom of the filling box 2 is provided with a weighing plate 59 located between the first side plate 33 and the second side plate 34. The pick-and-place plate 32 is located above the weighing plate 59, and the tank 1 inside the filling box 2 is located at the top of the weighing plate 59. The purpose of this arrangement is to place the tank 1 on the weighing plate 59, so that the filling status of the resin in the tank 1 can be easily understood through the weighing plate 59. The bottom of the pick-and-place plate 32 will not contact the weighing plate 59, making it simple and convenient to use.

[0037] Weighing plate 59 may be the weighing plate in a quantitative feeding device for coated seeds with application number CN202322317829.1, which will not be described in detail here.

[0038] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this invention and their equivalents, this invention also intends to include these modifications and variations.

Claims

1. A bottling equipment for water softener filter cartridges, characterized in that, It includes a filling box (2) for vertically placing the tank (1) and a storage mechanism set on the filling box (2). The storage mechanism is provided with a retractable discharge pipe (3), and a guide is detachably connected to one end of the discharge pipe (3) away from the storage mechanism. The guide is detachably connected to the opening of the tank (1). The guide is used to block the central pipe (4) inside the tank (1) and guide the material in the discharge pipe (3) into the tank (1). The flow guide includes a closed barrel (5) and a threaded cylinder (6) threadedly connected to the opening of the tank body (1). The threaded cylinder (6) is coaxially provided with an installation cylinder (7), and the bottom end of the installation cylinder (7) extends to the outside of the threaded cylinder (6). The top end of the installation cylinder (7) is coaxially provided with an internally hollow disc (8), and the installation cylinder (7) communicates with the disc (8). The top end of the disc (8) is provided with a flow guide pipe (9), and the bottom end of the flow guide pipe (9) passes through the disc (8) and is located inside the installation cylinder (7). At this time, the bottom end of the flow guide pipe (9) passes through the end of the installation cylinder (7) that communicates with the disc (8). The closed barrel (5) is coaxially located in the flow guide pipe (9), and the opening of the closed barrel (5) faces downward. The top end of the central tube (4) is located in the closed barrel (5). The storage mechanism includes a storage box (12) disposed on one side of the outer wall of the filling box (2) and a top plate (13) horizontally disposed above the opposite sides inside the filling box (2). The discharge pipe (3) is disposed on the top plate (13), and the top end of the discharge pipe (3) passes through the top plate (13) and is provided with a suction pipe (14). The end of the suction pipe (14) away from the discharge pipe (3) passes through the filling box (2) and extends into the storage box (12) through the box opening of the storage box (12). One side of the disc (8) is provided with an air extraction pipe (15) communicating with the disc (8), and the end of the air extraction pipe (15) away from the disc (8) is provided with an air extraction pipe (15). A detachable connecting pipe (16) is provided. The end of the connecting pipe (16) away from the suction pipe (15) is provided with a hose (17), and the end of the hose (17) away from the connecting pipe (16) passes through the wall of the filling box (2) and is provided with a vacuum pump (18) located outside the filling box (2). The exhaust port of the vacuum pump (18) is connected to an exhaust pipe (19), and a first solenoid valve (20) is provided on the exhaust pipe (19). A second solenoid valve (21) is provided on the material extraction pipe (14). The inner diameter of the mounting cylinder (7) is larger than the outer diameter of the guide pipe (9). At this time, there is a gap between the mounting cylinder (7) and the guide pipe (9). The bottom end of the mounting cylinder (7) and the guide pipe (9) are connected by a closing ring (22), and the closing ring (22) is connected to the guide pipe (9). The bottom end of the sealing cylinder (5) passes through the closing ring (22) and extends vertically to the outside of the guide pipe (9). The top end of the closing ring (22) is coaxially provided with a retaining ring (23). The bottom end of the mounting cylinder (7) is located inside the retaining ring (23), and the inner diameter of the retaining ring (23) is larger than the outer diameter of the mounting cylinder (7). At this time, there is a gap between the mounting cylinder (7) and the retaining ring (23). Several connecting holes (24) are opened on the outer wall of the mounting cylinder (7), and each connecting hole (24) is evenly distributed along the circumference of the mounting cylinder (7). Each connecting hole (24) is located inside the retaining ring (23). The bottom end of the closing ring (22) is coaxially provided with an extension cylinder (25), and the extension cylinder (25) is connected to the guide pipe (9).

2. The bottling equipment for the water softener filter element as described in claim 1, characterized in that, The outer wall of the closed barrel (5) is connected to the inner wall of the guide pipe (9) by a connecting plate (10), and the top end of the guide pipe (9) is detachably connected to the discharge pipe (3).

3. The bottling equipment for the water softener filter element as described in claim 1, characterized in that, The discharge pipe (3) includes a fixed pipe (26) set on the top plate (13) and a movable pipe (27) vertically sleeved on the fixed pipe (26). The movable pipe (27) is located below the top plate (13). The bottom end of the movable pipe (27) is connected to an extension pipe (28). A sealing ring (29) that abuts against the outer wall of the fixed pipe (26) is embedded on the inner wall of the movable pipe (27). The extraction pipe (14) is connected to the fixed pipe (26). The top end of the guide pipe (9) is detachably connected to the bottom end of the extension pipe (28).

4. The bottling equipment for the water softener filter element as described in claim 1, characterized in that, A support (30) for placing multiple cans (1) is provided on one side of the filling box (2), and rollers (31) are provided at the four corners of the bottom end of the support (30). The filling box (2) is provided with a transfer device for transferring one of the cans (1) on the support (30) to the filling box (2).

5. The filling equipment for the water softener filter element as described in claim 4, characterized in that, The bottom surface of the tank (1) is a bowl-shaped arc surface. The transfer component includes a semi-circular pick-and-place plate (32) and a first side plate (33) and a second side plate (34) disposed at the bottom of the filling box (2). The pick-and-place plate (32) is horizontally located between the first side plate (33) and the second side plate (34), and a semi-circular groove (35) is coaxially provided at the top of the pick-and-place plate (32). A semi-circular connecting groove (36) is coaxially provided at the bottom of the groove (35). The wall surface of the connecting groove (36) is an arc-shaped surface that mates with the bottom end face of the tank body (1), and the arc-shaped surface of the connecting groove (36) faces the axis of the connecting groove (36). A semi-circular annular first sliding groove (37) is coaxially provided on the inner wall of the groove (35), and a semi-circular annular second sliding groove (38) is coaxially provided on the arc-shaped surface of the connecting groove (36). The first sliding groove (37) and the second sliding groove (38) are connected, and both the first sliding groove (37) and the second sliding groove (38) are The first slide groove (37) and the second slide groove (38) are connected to the two ends of one side of the pick-up and place plate (32). The first slide groove (37) has two opposing first arc plates (40) slidably connected along the arc direction of the pick-up and place plate (32), and the inner side surfaces of the two first arc plates (40) are flush with the inner wall of the groove (35). The second slide groove (38) has two opposing second arc plates (41) slidably connected along the arc direction of the pick-up and place plate (32), and the inner side surfaces of the two second arc plates (41) are arc surfaces that cooperate with the bottom end surface of the tank (1). The first arc plate (40) and the second arc plate (41) form an arc-shaped sliding plate (42). The pick-up and place plate (32) is provided with a pusher for simultaneously pushing the two sliding plates (42) to move away from or closer to each other. The first side plate (33) and the second side plate (34) are provided with a power member for driving the pick-up and place plate (32) to move horizontally and vertically.

6. The filling equipment for the water softener filter element as described in claim 5, characterized in that, The power component includes sliding grooves (43) horizontally arranged on the first side plate (33) and the second side plate (34) close to each other, and sliding plates (44) are horizontally slidably connected in both sliding grooves (43). The two sliding plates (44) are connected by a support plate (45). A U-shaped suspension plate (46) is provided on the arc-shaped surface on the outer side of the pick-up and put-down plate (32), and a horizontal plate (47) is horizontally provided at the top of the suspension plate (46). The horizontal plate (47) is located directly below the support plate (45), and an electric cylinder (48) is provided on the support plate (45) for pushing the horizontal plate (47) up and down. Two opposing circular grooves (49) are opened at the top. Two opposing sliding columns (50) are vertically provided at the top of the horizontal plate (47). The tops of the two sliding columns (50) pass through the two circular grooves (49) respectively. The electric cylinder (48) is located between the two sliding columns (50). A lead screw (51) is rotatably connected between the opposite sides of one of the sliding grooves (43). One end of the lead screw (51) passes through the sliding plate (44) and is threadedly connected to the sliding plate (44). At this time, the lead screw (51) is set horizontally. A drive motor (52) for driving the lead screw (51) to rotate is provided on the side of the filling box (2) away from the opening of the filling box (2).

7. The filling equipment for the water softener filter element as described in claim 6, characterized in that, The pushing component includes a rotating motor (53) disposed inside the suspension plate (46), and one end of the rotating shaft of the rotating motor (53) passes through the pick-up and put-down plate (32) and is provided with a turntable (54) located in the slide rail (39). The turntable (54) is provided with a plurality of first protrusions (55), and each first protrusion (55) is evenly distributed along the circumference of the turntable (54). The turntable (54) is located between two sliding plates (42), and each of the two sliding plates (42) is provided with an arc-shaped rod (5) at one end near the turntable (54). 6), and the two arc-shaped rods (56) are facing each other vertically, the turntable (54) is located between the two arc-shaped rods (56), and the two arc-shaped rods (56) are provided with a number of second protruding teeth (57) that mesh with the first protruding teeth (55) on the side that is close to each other, and each second protruding tooth (57) is evenly distributed along the arc direction of the arc-shaped rod (56), and the two slide plates (42) are provided with slots (58) for the arc-shaped rods (56) to be inserted at the end near the turntable (54), and the two slots (58) are facing each other vertically; Two skateboards (42) are the first skateboard (42) and the second skateboard (42) respectively. Two curved rods (56) are the first curved rod (56) and the second curved rod (56) respectively. The first curved rod (56) is set on the first skateboard (42), and the second curved rod is set on the second skateboard (42). The end of the first curved rod (56) away from the first skateboard (42) is located in the slot (58) on the second skateboard (42), and the end of the second curved rod (56) away from the second skateboard (42) is located in the slot (58) on the first skateboard (42).

8. The filling equipment for the water softener filter element as described in claim 6, characterized in that, The bottom of the filling box (2) is provided with a weighing plate (59) located between the first side plate (33) and the second side plate (34), the pick-up and put-down plate (32) is located above the weighing plate (59), and the tank (1) inside the filling box (2) is located at the top of the weighing plate (59).

Citation Information

Patent Citations

  • Quantitative discharging device for coated seeds

    CN220844565U

  • Negative-pressure filling machine capable of realizing quantitative filling and used for processing and producing children ointment

    CN112849550A