A sucking and moving device for button cell batteries

By designing a button-type battery picking and moving device with a hexagonal base and an adjustable suction rod assembly, the problems of time-consuming manual battery removal and insufficient adaptability of magnetic devices are solved, achieving efficient and stable battery picking and moving, and improving production efficiency and battery storage neatness.

CN115818240BActive Publication Date: 2026-04-07JINTAN CHAOCHUANG BATTERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the existing technology, manual removal of button cells during the production process is time-consuming and labor-intensive, and existing magnet devices cannot adapt to button cells of different shapes and diameters, resulting in low efficiency and problems such as cell detachment.

Method used

A button cell battery suction and moving device was designed, which adopts a hexagonal base and an adjustable suction rod assembly, combined with a stepper motor drive, to adapt to button cells of different diameters and placements. It can suction batteries on the same plane through multiple suction rod assemblies, is equipped with a detachable suction tray to accommodate different sizes, and includes a movable tray for temporary battery storage.

Benefits of technology

It improves the efficiency and applicability of button cell battery pickup and movement, ensuring stable pickup and movement of batteries in different configurations and diameters, reducing detachment, and improving production efficiency and the neatness of battery storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of suction mobile devices of button cell, belong to button cell production equipment technical field.It includes U-shaped handle, and the U-shaped two ends of U-shaped handle are respectively fixedly provided with left fixed disc and right fixed disc, and step motor is fixedly embedded in left fixed disc, and coaxially provided with adjusting shaft on the output shaft of step motor, and the U-shaped opening of U-shaped handle is movably provided with hexagonal body seat, and hexagonal body seat is fixedly sleeved on the outside of adjusting shaft, and U-shaped fixed card is arranged on one face of hexagonal body seat, and U-shaped fixed card is movably clamped on the outside of U-shaped handle, and the U-shaped two ends of U-shaped fixed card are movably inserted in hexagonal body seat, and mounting groove group is arranged on the remaining five faces of hexagonal body seat, and suction rod assembly is movably arranged on mounting groove group.The application has the advantages of being convenient for suction and moving button cell with different diameters, and can adapt to various placement forms.
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Description

Technical Field

[0001] This invention relates to the field of button cell production equipment technology, and more specifically to a button cell suction and movement device. Background Technology

[0002] In the production process of button batteries, it is often necessary to remove the button batteries from the storage box before testing or repackaging. Currently, this is often done manually, which undoubtedly increases labor costs, reduces production efficiency, and ultimately affects production benefits.

[0003] Existing technologies also use magnets for picking up the coin cells. However, when the layout of the coin cells inside the battery storage box varies—for example, the coin cells are arranged in an array or in a line—the same magnet cannot be used to retrieve the coin cells. Furthermore, when the coin cells have different diameters, using the same magnet can easily cause them to fall out during retrieval or movement; or the magnet may not accurately pick up the coin cells in the correct positions. Summary of the Invention

[0004] To address the aforementioned technical shortcomings, the purpose of this invention is to provide a button cell battery suction and movement device that facilitates the suction and movement of button cells of different diameters and can adapt to various placement configurations of button cells.

[0005] To solve the above technical problems, the present invention adopts the following technical solution: The present invention provides a button cell battery suction and moving device, including a U-shaped handle, with a left fixed plate and a right fixed plate fixedly installed at the two ends of the U-shape of the U-shaped handle, respectively. A stepper motor is fixedly embedded in the left fixed plate, and an adjusting shaft is fixedly and coaxially installed on the output shaft of the stepper motor. The end of the adjusting shaft away from the stepper motor is rotatably installed on the right fixed plate. A hexagonal seat is movably installed in the U-shaped opening of the U-shaped handle, and the hexagonal seat is fixedly sleeved outside the adjusting shaft. A U-shaped fixing clip is provided on one surface of the hexagonal seat, and the U-shaped fixing clip is movably locked outside the U-shaped handle. Both ends of the U-shaped fixing clip are movably inserted into the hexagonal seat. The remaining five surfaces of the hexagonal seat are provided with mounting grooves, and suction rod assemblies are movably installed on the mounting grooves. The five suction rod assemblies are sequentially and hinged in parallel. A movable tray assembly is movably installed inside the hexagonal seat.

[0006] Preferably, the suction rod assembly includes a left rod and a right rod arranged in parallel and spaced apart. A connecting rod is fixedly provided at one end of the left rod and one end of the right rod. The left rod, the right rod, and the connecting rod are distributed in a U-shape. Sliding grooves are provided on the inner walls of the left rod and the right rod, and a plurality of suction rod mounting seats are slidably arranged between the two sliding grooves. A suction rod is provided on the end face of the suction rod mounting seat away from the hexagonal seat. A snap-fit ​​rod is connected to the end face of the suction rod mounting seat facing the hexagonal seat by a connecting bolt. A plurality of left snap-fit ​​slots and a plurality of right snap-fit ​​slots are respectively provided on the end faces of the left rod and the right rod facing the hexagonal seat. The two ends of the snap-fit ​​rod are movably snapped into the left snap-fit ​​slots and the right snap-fit ​​slots at corresponding positions. The left rod and the right rod on two adjacent suction rod assemblies are hinged together. As needed, a corresponding number of suction rod mounting seats can be installed between the two sliding grooves through the snap-fit ​​rods to facilitate the suction and movement of button batteries.

[0007] Preferably, the mounting slot assembly includes two mounting slots arranged parallel to each other on the same surface of the hexagonal base, and two mounting rods corresponding one-to-one with the mounting slots are arranged between the left and right rods. The mounting rods are respectively movably inserted into the mounting slots at their corresponding positions, which facilitates the installation or removal of the suction rod assembly on the mounting slot assembly of the hexagonal base.

[0008] Preferably, the suction rod includes a rod body that is fixedly inserted into the end face of the suction rod mounting base away from the hexagonal base. A suction plate one is fixedly provided at the end of the rod body away from the suction rod mounting base. A circular magnet is embedded in the center of the suction plate one. Suction plate two and suction plate three are movably sleeved on the outside of suction plate one in sequence. Suction plate one, suction plate two and suction plate three are provided with a plurality of arc-shaped limiting plate slots along the circumferential direction. Arc-shaped limiting plates of a matching shape are movably inserted into the arc-shaped limiting plate slots, so as to select the use of suction plate one alone, or the use of suction plate one and suction plate two at the same time, or the installation and use of suction plate one, suction plate two and suction plate three at the same time, depending on the diameter of the button battery.

[0009] Preferably, both suction cup one and suction cup two have external threads on their outer circumferential walls, and both suction cup two and suction cup three have annular structures. Both suction cup two and suction cup three have internal threads on their inner circumferential walls, and suction cup two is threaded to suction cup one, and suction cup three is threaded to suction cup two. The thickness of suction cup one, suction cup two, and suction cup three is the same. The rod, circular magnet, suction cup one, suction cup two, and suction cup three are coaxial, which facilitates the disassembly and installation of suction cup two and suction cup three according to the different diameters of the button batteries.

[0010] Preferably, the interior of the hexagonal base is provided with a movable tray storage slot along its length. The movable tray assembly includes a movable tray that is movably pulled out and disposed within the movable tray storage slot. The movable tray has a box-like structure with an open top. A storage slot is provided on the inner wall of the movable tray. An adjusting threaded rod is threadedly connected to the center of the storage slot. The two ends of the adjusting threaded rod are located inside and outside the movable tray, respectively. An adjusting push plate is fixedly installed at the end of the adjusting threaded rod located inside the movable tray. A return spring is sleeved on the outside of the adjusting threaded rod. The two ends of the return spring are fixedly connected to the adjusting push plate and the storage slot, respectively. The thickness of the storage slot is equal to or greater than the thickness of the adjusting push plate, which facilitates the temporary placement of the button batteries after they have been moved on the movable tray for storage. The position of the adjusting push plate can also be adjusted according to the diameter of the button batteries to ensure that the button batteries are placed neatly.

[0011] Preferably, spring bellows are symmetrically arranged at both ends of the adjusting threaded rod, and the two ends of the spring bellows are fixedly connected to the adjusting push plate and the receiving groove, which helps to maintain stability when adjusting the position of the adjusting push plate.

[0012] Preferably, the U-shaped fixing card is also provided with symmetrical handles on both sides, and the U-shaped fixing card and the handles are on the same surface of the hexagonal base, which makes it convenient for the operator to hold the hexagonal base to pick up the movable button battery.

[0013] The beneficial effects of this invention are as follows:

[0014] 1. The present invention provides five suction rod assemblies on the five faces of a hexagonal base. On the one hand, the hexagonal base can be rotated by a stepper motor, so that the five suction rod assemblies can sequentially perform the suction operation of button batteries. On the other hand, the five suction rod assemblies are all on the same plane, which facilitates the simultaneous suction of button batteries arranged in an array, thereby improving the versatility of the button battery suction and moving device.

[0015] 2. The present invention, through the movable connection of suction plate one, suction plate two, and suction plate three, facilitates the selection of using suction plate one alone, or using suction plate one and suction plate two simultaneously, or using suction plate one, suction plate two, and suction plate three simultaneously, depending on the different diameters of the button batteries, thereby improving the applicability of suction and movement of button batteries.

[0016] 3. The movable tray storage slot inside the hexagonal base makes it easy to temporarily place the collected button batteries on the movable tray for storage; the position of the push plate inside the movable tray can also be adjusted according to the diameter of the button batteries to ensure that the button batteries are placed neatly. 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 a button cell battery suction and movement device provided in an embodiment of the present invention.

[0019] Figure 2 This is a schematic diagram of the suction rod assembly structure of a suction and moving device for a button battery provided in an embodiment of the present invention.

[0020] Figure 3 This is a schematic diagram showing the position of the latching rod in a button battery suction and moving device provided in an embodiment of the present invention.

[0021] Figure 4 This is a schematic diagram of the structure when the five suction rod assemblies of the present invention are located on the same plane.

[0022] Figure 5 This is a schematic diagram of the moving tray assembly structure of a button battery suction and moving device provided in an embodiment of the present invention.

[0023] Figure 6 This is a schematic diagram of the suction rod assembly structure of a suction and moving device for a button battery provided in an embodiment of the present invention.

[0024] Figure 7 This is a schematic diagram of the suction rod structure of a suction and moving device for a button battery provided in an embodiment of the present invention.

[0025] Explanation of reference numerals in the attached drawings: 1. U-shaped handle; 11. Left fixed plate; 12. Right fixed plate; 13. Stepper motor; 14. Adjusting shaft; 15. U-shaped fixing clip; 2. Hexagonal base; 21. Mounting slot assembly; 211. Mounting slot; 212. Mounting rod; 3. Suction rod assembly; 31. Left rod; 311. Left slot; 32. Right rod; 321. Right slot; 33. Connecting rod; 34. Slide groove; 35. Suction rod mounting base; 351. Connecting bolt 36. Suction rod; 361. Rod body; 362. Suction tray one; 3621. Circular magnet; 363. Suction tray two; 364. Suction tray three; 365. Arc-shaped limiting plate slot; 366. Arc-shaped limiting plate; 37. Snap-fit ​​rod; 4. Moving tray assembly; 41. Moving tray; 42. Storage slot; 43. Adjusting threaded rod; 44. Adjusting push plate; 45. Return spring; 46. Spring bellows; 5. Moving tray storage slot; 6. Handle. Detailed Implementation

[0026] 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.

[0027] like Figures 1 to 7 As shown, the present invention provides a device for picking up and moving a button cell battery, including a U-shaped handle 1. A left fixed plate 11 and a right fixed plate 12 are fixedly disposed at the two ends of the U-shape of the handle 1. A stepper motor 13 is fixedly embedded in the left fixed plate 11. An adjusting shaft 14 is coaxially disposed on the output shaft of the stepper motor 13. The end of the adjusting shaft 14 away from the stepper motor 13 is rotatably disposed on the right fixed plate 12. A hexagonal seat 2 is movably disposed within the U-shaped opening of the U-shaped handle 1. 2. A U-shaped fixing clip 15 is provided on one side of the hexagonal base 2, which is fixedly sleeved on the outside of the adjusting shaft 14. The U-shaped fixing clip 15 is movably locked on the outside of the U-shaped handle 1, and both ends of the U-shaped fixing clip 15 are movably inserted into the hexagonal base 2. The remaining five sides of the hexagonal base 2 are provided with mounting grooves 21, and suction rod assemblies 3 are movably installed on the mounting grooves 21. The five suction rod assemblies 3 are sequentially and hinged in parallel. A movable tray assembly 4 is movably installed inside the hexagonal base 2.

[0028] The suction rod assembly 3 includes a left rod 31 and a right rod 32 arranged parallel to each other. A connecting rod 33 is fixedly installed at one end of the left rod 31 and one end of the right rod 32. The left rod 31, the right rod 32, and the connecting rod 33 are distributed in a U-shape. Sliding grooves 34 are provided on the opposing inner walls of the left rod 31 and the right rod 32. A plurality of suction rod mounting seats 35 are slidably arranged between the two sliding grooves 34. A suction rod 36 is provided on the end face of the suction rod mounting seat 35 away from the hexagonal base 2. A snap-fit ​​rod 37 is connected to the end face of the suction rod mounting seat 35 facing the hexagonal base 2 by a connecting bolt 351. A plurality of left snap-fit ​​slots 311 and a plurality of right snap-fit ​​slots 321 are respectively provided on the end faces of the left rod 31 and the right rod 32 facing the hexagonal base 2, for snap-fit. The two ends of the rod 37 are respectively movably locked in the left slot 311 and the right slot 321 at corresponding positions. The left rod 31 and the right rod 32 on two adjacent suction rod assemblies 3 are hinged together. As needed, a corresponding number of suction rod mounting seats 35 can be installed between the two sliding grooves 34 through the locking rod 37 to facilitate the suction and movement of button batteries. The mounting groove group 21 includes two mounting grooves 211 arranged parallel and spaced on the same surface of the hexagonal base 2. There are two mounting rods 212 between the left rod 31 and the right rod 32 that correspond one-to-one with the mounting grooves 211. The mounting rods 212 are respectively movably inserted into the mounting grooves 211 at corresponding positions to facilitate the installation or removal of the suction rod assembly 3 from the mounting groove group 21 on the hexagonal base 2.

[0029] The suction rod 36 includes a rod body 361 fixedly extending into the end face of the suction rod mounting base 35 away from the hexagonal base 2. A suction plate 362 is fixedly mounted at the end of the rod body 361 away from the suction rod mounting base 35. A circular magnet 3621 is embedded at the center of the suction plate 362. Suction plates 363 and 364 are sequentially and movably fitted around the suction plate 362. Several arc-shaped limiting plate slots 365 are provided along the circumferential direction on each of the suction plates 362, 363, and 364. Arc-shaped limiting plates 366 of matching shapes are movably inserted into each of the arc-shaped limiting plate slots 365, facilitating the selection of using only suction plate 362 or both suction plates 362 and 364 depending on the diameter of the button cell battery. 3. Simultaneous use; or simultaneous installation and use of suction cups 362, 363, and 364. Suction cups 362 and 363 have external threads on their outer circumferential walls. Suction cups 363 and 364 are both annular structures, with internal threads on their inner circumferential walls. Suction cups 363 and 364 are connected by threads to each other. Suction cups 362, 363, and 364 have the same thickness. The rod 361, circular magnet 3621, suction cups 362, 363, and 364 are coaxial, facilitating adaptation to different button cell battery diameters. The suction trays 363 and 364 are disassembled and installed. A movable tray storage slot 5 is provided along the length of the interior of the hexagonal base 2. The movable tray assembly 4 includes a movable tray 41 that is movably pulled out and installed within the movable tray storage slot 5. The movable tray 41 is a box-shaped structure with an open top. A storage slot 42 is provided on the inner wall of the movable tray 41. An adjusting threaded rod 43 is threadedly connected to the center of the storage slot 42. The two ends of the adjusting threaded rod 43 are located inside and outside the movable tray 41, respectively. An adjusting push plate 44 is fixedly installed at the end of the adjusting threaded rod 43 inside the movable tray 41. A return spring 45 is sleeved on the outside of the adjusting threaded rod 43. The two ends of the return spring 45 are fixedly connected to the adjusting push plate 44 and the storage slot 42, respectively. The thickness of the storage slot 42 is equal to or greater than the thickness of the adjusting push plate 44, which facilitates the temporary placement of the moved button batteries on the moving tray 41 for storage. The position of the adjusting push plate 44 can also be adjusted according to the diameter of the button batteries to ensure that the button batteries are placed neatly. The two ends of the adjusting threaded rod 43 are symmetrically provided with spring bellows 46, and the two ends of the spring bellows 46 are fixedly connected to the adjusting push plate 44 and the storage slot 42 respectively, which helps to keep the position of the adjusting push plate 44 stable. The U-shaped fixing clip 15 is also symmetrically provided with handles 6 on both sides, and the U-shaped fixing clip 15 and the handles 6 are on the same surface of the hexagonal base 2, which makes it easy for the operator to hold the handles 6 with both hands at the same time, thus facilitating the picking up and moving of button batteries from the hexagonal base 2.

[0030] The working principle of this invention is as follows: When the button cell battery needs to be removed from the battery storage box during the production process, firstly, five suction rod assemblies 3, which are hinged end to end, are inserted into the corresponding mounting slots 211 on each surface of the hexagonal base 2 through mounting rods 212 (two mounting rods 212 on each suction rod assembly 3 corresponding to the mounting slots 211). (To improve the fixing effect of the mounting rods 212, bolts or screws can also be used to connect the mounting rods 212 to the mounting slots 211.)

[0031] The number of suction rod mounting seats 35 between the left rod 31 and the right rod 32 can be installed according to the number of button batteries arranged in the battery storage box. The suction rod mounting seats 35 corresponding to the number of button batteries can be slidably installed between the sliding grooves 34 of the left rod 31 and the right rod 32, so that the suction rod mounting seats 35 are located between the left slot 311 and the right slot 321 at the corresponding positions. The snap-fit ​​rod 37 is connected to the suction rod mounting seat 35 by the connecting bolt 351. At this time, the two ends of the snap-fit ​​rod 37 are respectively snapped into the left slot 311 and the right slot 321 at the corresponding positions, thus fixing the suction rod mounting seat 35 between the left rod 31 and the right rod 32.

[0032] Secondly, depending on the diameter of the button cell battery, you can choose to use suction cup one 362 alone (in this case, suction cup two 363 and suction cup three 364 do not need to be installed); insert the arc-shaped limiting plate 366 into the corresponding arc-shaped limiting plate slot 365 on suction cup one 362, ensuring that the arc-shaped openings of the arc-shaped limiting plate 366 all face the circular magnet 3621; or use suction cup one 362 and suction cup two 363 simultaneously, threading suction cup two 363 to the outside of suction cup one 362 (in this case, the diameter of the button cell battery is larger than the diameter of the button cell battery when using suction cup one 362 alone, and suction cup three 364 does not need to be installed); insert the arc-shaped limiting plate 366 into the corresponding arc-shaped limiting plate slot 365 on suction cup two 363, ensuring that the arc-shaped openings of the arc-shaped limiting plate 366 all face the circular magnet 3621; or use suction cup one 362. Suction tray 2 363 and suction tray 364 are installed and used simultaneously. At this time, suction tray 2 363 and suction tray 364 need to be threaded onto the outside of suction tray 1 362 in sequence. Then, the arc-shaped limiting plate 366 is inserted into the corresponding arc-shaped limiting plate slot 365 on suction tray 364, so that the arc-shaped openings of the arc-shaped limiting plate 366 face the circular magnet 3621. When the circular magnet 3621 picks up the button battery, it can keep the button battery in the arc-shaped openings of the two arc-shaped limiting plates 366, accurately pick up the button battery corresponding to the position of the circular magnet 3621, and also help the button battery not fall off when moving. The circular magnet 3621 can also be an electromagnet, which makes it easy to control the presence or absence of magnetism (this is existing technology, so it will not be described in detail here), and makes it convenient to put down the picked-up button batteries in one go.

[0033] Finally, by holding the U-shaped handle 1, place the button battery suction and moving device on the corresponding position of the button battery in the battery storage box, and the button battery can be picked up by the circular magnet 3621.

[0034] When picking up button batteries, the suction rod assembly 3 on one side of the hexagonal base 2 can be used alone; alternatively, the U-shaped fixing clip 15 can be omitted (the installation of the U-shaped fixing clip 15 can improve the stability between the U-shaped handle 1 and the hexagonal base 2 when the stepper motor 13 does not need to be started). After one of the suction rod assemblies 3 picks up a button battery, the entire button battery suction and moving device is lifted, and the adjusting shaft 14 is driven to rotate under the action of the stepper motor 13, which in turn drives the hexagonal base 2 to rotate. This causes the suction rod assemblies 3 on the other sides of the hexagonal base 2 to rotate sequentially to correspond to the positions of the battery storage boxes, and the button batteries in the battery storage boxes can be picked up sequentially.

[0035] When the button batteries in the battery storage box are arranged in an array, the five suction rod assemblies 3 located in the middle position can be installed on the hexagonal base 2 (the other four suction rod assemblies 3 are not installed on the hexagonal base 2, such as...). Figure 4 (as described above), and ensure that all five suction rod assemblies 3 are on the same plane (a fixed rod can be used to pass through the connecting rods 33 on the five suction rod assemblies 3 in sequence, which helps to improve the firmness of the connection of the five suction rod assemblies 3). At this time, the U-shaped handle 1 can be held and the suction and moving device of this button battery can be placed at the position corresponding to the button battery in the battery storage box, and the button battery can be sucked up by the circular magnet 3621.

[0036] When there is no temporary place for the button batteries after they have been collected, the movable tray 41 in the movable tray storage slot 5 can be taken out, so that the collected button batteries can be temporarily placed in the movable tray 41 for storage. Alternatively, depending on the diameter of the button batteries, the position of the adjusting push plate 44 in the movable tray 41 can be adjusted (i.e., the distance between the adjusting push plate 44 and the storage slot 42 can be adjusted, so that the button batteries can be placed between the adjusting push plate 44 and the side wall of the movable tray 41 away from the end of the storage slot 42), which helps to ensure the neatness of the single row of button batteries after placement.

[0037] 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 device for picking up and moving button batteries, characterized in that, The device includes a U-shaped handle (1), with a left fixed plate (11) and a right fixed plate (12) fixedly installed at the two ends of the U-shape. A stepper motor (13) is fixedly embedded in the left fixed plate (11), and an adjusting shaft (14) is fixedly and coaxially installed on the output shaft of the stepper motor (13). The end of the adjusting shaft (14) away from the stepper motor (13) is rotatably installed on the right fixed plate (12). A hexagonal seat (2) is movably installed in the U-shaped opening of the U-shaped handle (1), and the hexagonal seat (2) is fixedly sleeved on the outside of the adjusting shaft (14). A U-shaped fixing clip (15) is installed on one surface of the hexagonal seat (2), and the U-shaped fixing clip (15) is movably locked on the outside of the U-shaped handle (1). 5) Both ends of the U-shape are movably inserted into the hexagonal base (2). The remaining five surfaces of the hexagonal base (2) are provided with mounting slots (21). The mounting slots (21) are movably provided with suction rod assemblies (3). The five suction rod assemblies (3) are sequentially hinged in parallel. The hexagonal base (2) is movably provided with a movable tray assembly (4). By providing five suction rod assemblies (3) on the five surfaces of the hexagonal base (2), on the one hand, the hexagonal base (2) can be rotated under the action of the stepper motor (13), so that the five suction rod assemblies (3) can sequentially perform the suction operation of button batteries; on the other hand, the five suction rod assemblies (3) can be on the same plane, which is convenient for suctioning button batteries that are distributed in an array at one time.

2. The button cell battery suction and movement device as described in claim 1, characterized in that, The suction rod assembly (3) includes a left rod (31) and a right rod (32) arranged in parallel intervals. A connecting rod (33) is fixedly provided at one end of the left rod (31) and one end of the right rod (32). The left rod (31), the right rod (32) and the connecting rod (33) are distributed in a U-shape. Slide grooves (34) are provided on the opposing inner walls of the left rod (31) and the right rod (32). Several suction rod mounting seats (35) are slidably arranged between the two slide grooves (34). Suction rods are provided on the end face of the suction rod mounting seat (35) away from the hexagonal seat (2). 36) The suction rod mounting base (35) is connected to the end face of the hexagonal base (2) by connecting bolts (351) with a snap-fit ​​rod (37). The left rod (31) and the right rod (32) are respectively provided with a number of left snap-fit ​​slots (311) and a number of right snap-fit ​​slots (321) on the end face of the hexagonal base (2). The two ends of the snap-fit ​​rod (37) are respectively movably snapped into the left snap-fit ​​slots (311) and right snap-fit ​​slots (321) at the corresponding positions. The left rods (31) and right rods (32) on two adjacent suction rod assemblies (3) are hinged together.

3. The button cell battery suction and movement device as described in claim 2, characterized in that, The mounting slot assembly (21) includes two mounting slots (211) arranged parallel to each other on the same surface of the hexagonal base (2). There are two mounting rods (212) between the left rod (31) and the right rod (32) that correspond one-to-one with the mounting slots (211). The mounting rods (212) are respectively movably inserted into the mounting slots (211) at the corresponding positions.

4. The button cell battery suction and movement device as described in claim 2, characterized in that, The suction rod (36) includes a rod body (361) that is fixedly inserted into the end face of the suction rod mounting base (35) away from the hexagonal base (2). A suction plate (362) is fixedly provided at one end of the rod body (361) away from the suction rod mounting base (35). A circular magnet (3621) is embedded in the center of the suction plate (362). A suction plate (363) and a suction plate (364) are movably sleeved on the outside of the suction plate (362). Several arc-shaped limiting plate slots (365) are provided along the circumferential direction on the suction plate (362), the suction plate (363) and the suction plate (364), and an arc-shaped limiting plate (366) of the same shape is movably inserted into the arc-shaped limiting plate slots (365).

5. The button cell battery suction and movement device as described in claim 4, characterized in that, External threads are provided on the outer circumferential walls of suction plate one (362) and suction plate two (363). Suction plate two (363) and suction plate three (364) are both annular structures. Internal threads are provided on the inner circumferential walls of suction plate two (363) and suction plate three (364). Suction plate two (363) and suction plate one (362) are connected by threads, and suction plate three (364) and suction plate two (363) are connected by threads. Suction plate one (362), suction plate two (363) and suction plate three (364) have the same thickness. Rod body (361), circular magnet (3621), suction plate one (362), suction plate two (363) and suction plate three (364) are coaxial.

6. The button cell battery suction and moving device as described in claim 1, characterized in that, The interior of the hexagonal base (2) is provided with a movable tray storage groove (5) along the length direction. The movable tray assembly (4) includes a movable tray (41) that is movably pulled out and placed in the movable tray storage groove (5). The movable tray (41) is a box structure with an open top surface. A storage groove (42) is provided on the inner wall of the movable tray (41). An adjusting threaded rod (43) is threadedly connected at the center of the storage groove (42). The two ends of the adjusting threaded rod (43) are located inside and outside the movable tray (41) respectively. An adjusting push plate (44) is fixedly provided at one end of the adjusting threaded rod (43) inside the movable tray (41). A return spring (45) is sleeved on the outside of the adjusting threaded rod (43). The two ends of the return spring (45) are fixedly connected to the adjusting push plate (44) and the storage groove (42) respectively. The thickness of the storage groove (42) is equal to or greater than the thickness of the adjusting push plate (44).

7. The button cell battery suction and movement device as described in claim 6, characterized in that, The two ends of the adjusting threaded rod (43) are symmetrically provided with spring bellows (46), and the two ends of the spring bellows (46) are fixedly connected to the adjusting push plate (44) and the storage groove (42) respectively.

8. The button cell battery suction and movement device as described in claim 1, characterized in that, The U-shaped fixing clip (15) is also symmetrically provided with handles (6) on both sides, and the U-shaped fixing clip (15) and the handles (6) are both on the same surface of the hexagonal base (2).

Citation Information

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