An automatic sorting, feeding and packaging device for shaft parts

By combining the hot-melt sealing of the sealing rollers with the congestion detection components, the problems of uneven sealing and vertical placement in the packaging device for shaft parts are solved, enabling fast and safe packaging and transfer of shaft parts.

CN120621793BActive Publication Date: 2025-10-28CHINA MACHINE KAIBO SURFACE TECHNOLOGY (JIANGSU) CO LTD
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Patent Information

Application Number
CN202511127334.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-10-28
Estimated Expiration
2045-08-13

AI Technical Summary

Technical Problem

Existing packaging devices for shaft parts are difficult to achieve rolling heat sealing packaging and are not convenient for restricting the vertical placement of long shaft workpieces, resulting in low packaging efficiency, uneven oil adhesion, and easy damage to the packaging film.

Method used

The sealing rollers drive the separators and side sealing heating plates for heat-melting sealing. Combined with congestion detection components and axial transfer components, the shaft parts are placed vertically. The rotating sealing rollers roll and squeeze out the oil. With the help of horizontal placement indicators and buzzer alarms, automatic sorting and safe transfer are achieved.

Benefits of technology

It enables rapid and uniform packaging of shaft parts, reduces the damage rate of packaging films, improves packaging efficiency and safety, and ensures the protection of shaft parts during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an automatic sorting, feeding, and packaging device for shaft parts, relating to the field of parts packaging technology. It includes a packaging sealing component with a compression sealing part for adapting to shaft parts; a sequential feeding component for discharging shaft parts; a congestion detection component to prevent packaging discharge congestion; and a horizontal placement indicator. The use of an axial transfer component in conjunction with the horizontal placement indicator protects the safety of shaft parts during actual transport, and restricts the need for workers to place shaft parts vertically for transport. This solves the problem that current shaft parts packaging devices are inconvenient for rolling heat-sealing packaging and also inconvenient for workers to restrict vertical placement when transporting long shaft parts.
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Description

Technical Field

[0001] This invention relates to the field of parts packaging technology, specifically to an automatic sorting, feeding, and packaging device for shaft-type parts. Background Technology

[0002] Professional packaging of shaft parts is a crucial step in ensuring product quality and transportation safety. Shaft parts are susceptible to deformation or surface damage during transportation due to collisions and compression. For example, bearing balls may fail due to repeated impacts with the inner ring caused by bumps. Shaft parts are also coated with oil to prevent rust before leaving the factory. Currently, the main packaging equipment for shaft parts is vacuum packaging machines or traditional continuous packaging machines. Vacuum packaging machines typically require bagging parts in batches before vacuum sealing, making it difficult to guarantee packaging efficiency. Traditional continuous packaging machines result in larger gaps between the packaging bag and the parts, hindering the adhesion of oil to the part surface. Furthermore, oil on the parts can affect the sealing quality of traditional packaging machines, easily causing leakage. They are also unsuitable for rolling heat sealing and restrict workers from vertically placing long shaft parts during transport, as horizontal stacking can easily cause the lower layers of packaging to be crushed and damaged.

[0003] Therefore, we propose an automatic sorting, feeding, and packaging device for shaft-type parts. Summary of the Invention

[0004] The purpose of this invention is to provide an automatic sorting, feeding, and packaging device for shaft parts, so as to solve the problems mentioned in the background art that the current shaft parts packaging devices are not convenient for rolling heat sealing packaging, and also do not restrict workers from vertically placing long shaft workpieces during transportation.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an automatic sorting, feeding, and packaging device for shaft parts, comprising a packaging sealing component, wherein a compression sealing part is installed on the packaging sealing component, the compression sealing part being adapted to the shaft parts; a sequential feeding component is installed on the packaging sealing component; the sequential feeding component is used to feed the shaft parts.

[0006] The packaging seal is equipped with a congestion detection device; the congestion detection device is used to prevent congestion during packaging material discharge.

[0007] The packaging seal is equipped with a horizontal indicator; the horizontal indicator is used to indicate the status of shaft parts; the packaging seal is equipped with an axial transfer component; the axial transfer component is used to prevent the shaft parts from being transferred laterally.

[0008] The packaging sealing component includes: a packaging mounting frame, on which two exhaust drive wheels are rotatably mounted; each of the two exhaust drive wheels has a raised structure at both ends; and the outer side of the exhaust drive wheels is provided with a rubber coating.

[0009] Preferably, two discharge motors are fixedly installed on the packaging mounting frame, and the output shafts of the two discharge motors pass through the packaging mounting frame respectively; the output shafts of the two discharge motors are fixedly installed at the ends of the discharge drive wheels respectively; a discharge guide plate is fixedly installed on the packaging mounting frame; the discharge guide plate has an inclined structure.

[0010] Preferably, the extrusion sealing section includes: sealing rollers; two sealing rollers are rotatably mounted on the packaging mounting frame, and each sealing roller has a groove; the two sealing rollers are used to convey shaft-like parts; a ring of separating sealing heating plates is fixedly embedded on each of the two sealing rollers, and the ring of separating sealing heating plates is located at the intervals of the grooves on the sealing rollers; two side sealing heating plates are fixedly mounted on the sealing rollers, and the two side sealing heating plates are respectively connected to the two ends of the ring of separating sealing heating plates; a sealing motor is fixedly mounted on the packaging mounting frame, and the output shafts of the two sealing motors pass through the packaging mounting frame; the output shafts of the two sealing motors are respectively fixedly connected to the ends of the two sealing rollers.

[0011] Preferably, the sequential material feeding component includes: a material feeding mounting shell, which is fixedly mounted on the packaging mounting frame by bolts; a through groove is provided on the material feeding mounting shell; a row of shaft-like parts are placed inside the material feeding mounting shell; four packaging motors are fixedly mounted on the material feeding mounting shell, and the output shafts of the four packaging motors pass through the material feeding mounting shell respectively; packaging feed rollers are fixedly mounted on the output shafts of the four packaging motors, and two packaging feed rollers on the same side are used to clamp and adhere the horizontally placed reminder piece; the material feeding mounting shell is located between two sealing rollers.

[0012] Preferably, the congestion detection component includes: an inclined panel, which is rotatably mounted on a packaging mounting frame; the inclined panel is installed at an angle; a detection mounting plate is fixedly mounted on the packaging mounting frame, and the distance between the end of the inclined panel and the discharge guide plate is greater than the diameter of the shaft-like part.

[0013] Preferably, the congestion detection component further includes: a positioning switch, which is fixedly mounted on the detection mounting plate; the positioning switch is located above the inclined panel; the inclined panel is used to rotate upward to press the positioning switch; the positioning switch is electrically connected to the partition sealing heating plate, the side sealing heating plate, and the sealing motor.

[0014] Preferably, the congestion detection component further includes: an anti-accidental contact spring, which has a V-shaped structure; one end of the anti-accidental contact spring is fixedly mounted on the inclined panel; the other end of the anti-accidental contact spring is fixedly mounted on the detection mounting plate.

[0015] Preferably, the horizontally positioned indicator includes: an indicator rod, the length of which is less than the length of the groove on the sealing roller; two packaging films are fixedly mounted on the indicator rod, and the two packaging films pass through two discharge drive wheels and two sealing rollers respectively; the two discharge drive wheels and two sealing rollers respectively press and adhere the two packaging films; the two packaging films pass between two packaging feed rollers on the same side respectively; the packaging feed rollers are used to limit the conveying speed of the packaging films; the discharge mounting shell is located between the two packaging films; and a buzzer is fixedly mounted at the end of the indicator rod.

[0016] Preferably, the horizontally positioned indicator further includes: a pressing iron column, wherein the pressing iron column is slidably sleeved inside the indicator rod, and an iron column switch is fixedly installed inside the indicator rod; the end of the pressing iron column is used to press and fit against the iron column switch; and the iron column switch is electrically connected to a buzzer.

[0017] Preferably, the axial transfer component includes: a transfer box, in which a magnet is fixedly installed; the transfer box is slidably inserted into a packaging mounting frame; the transfer box is provided with two handles; the interior of the transfer box is used to vertically place packaged shaft parts; the magnet aligns with the coiled indicator rod; the magnet is used to magnetically attract and press down the iron column; the transfer box has a cylindrical structure.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] This invention employs two sealing rollers to drive a separating sealing heating plate and a side sealing heating plate in a rotating packaging process. The grooves on the sealing rollers limit the packaging area and, during packaging, also limit the package size, preventing excessive packaging that could cause excessive grease from the shaft parts to adhere to the packaging film, affecting the amount of oil adhering to the part's surface. This ensures a proper fit between the packaging film and the shaft parts, and also makes packaging faster. The rotatable sealing rollers allow for real-time rolling and extrusion of the adhering oil, ensuring a heat-sealing effect. Furthermore, this structure enables continuous sealing, facilitating the subsequent direct rolling up and packaging of the shaft parts.

[0020] The use of axial transfer components in conjunction with horizontal warning components can protect the safety of shaft parts during actual transfer operations. It can remind workers to place shaft parts vertically for transfer, avoiding the excessive pressure on the outer packaging film of lower-layer shaft parts when placed horizontally in traditional square transfer boxes. Combined with edge compression of some shaft parts and shaking during transfer, the packaging film is easily damaged. This structure, by placing shaft parts vertically, avoids excessive pressure on the packaging film. Simultaneously, with the iron pillar switch, an automatic alarm is triggered if horizontal placement occurs, further alerting workers, improving transfer standardization, and further reducing the packaging film damage rate. Furthermore, when placed vertically, the heat-sealed edge of the packaging film is also at the end of the shaft part, providing additional cushioning and protection, optimizing the protection of shaft parts during production. It also prevents bending deformation of shaft parts caused by horizontal placement during prolonged transfer and storage.

[0021] Using congestion detection devices can achieve automatic control for congestion protection, automatic power-off shutdown, and automatic control to prevent continuous emission after congestion, making it safer and more convenient for staff to directly roll up and transfer shaft parts. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of an automatic sorting, feeding, and packaging device for shaft-type parts according to the present invention;

[0023] Figure 2 This is a schematic diagram of the bottom structure of an automatic sorting, feeding, and packaging device for shaft-type parts according to the present invention.

[0024] Figure 3 This is a cross-sectional view of the internal structure of an automatic sorting, feeding, and packaging device for shaft-type parts according to the present invention.

[0025] Figure 4 This is a schematic diagram of the packaging sealing component of the present invention;

[0026] Figure 5 This is a schematic diagram of the extrusion sealing part structure of the present invention;

[0027] Figure 6 This is a schematic diagram of the sequential material arrangement structure of the present invention;

[0028] Figure 7 This is a schematic diagram of the congestion detection component of the present invention;

[0029] Figure 8 For the present invention Figure 3 Enlarged view of the structure of region B in the middle;

[0030] Figure 9This is a schematic diagram of the horizontally positioned prompting element of the present invention;

[0031] Figure 10 This is a schematic diagram showing the position of the pressing iron column in this invention;

[0032] Figure 11 This is a schematic diagram of the axial transfer component of the present invention.

[0033] In the diagram: 1. Packaging sealing component; 101. Packaging mounting frame; 102. Discharge drive wheel; 103. Discharge motor; 104. Discharge guide plate; 2. Extrusion sealing section; 201. Sealing roller; 2011. Separating sealing heating plate; 2012. Side sealing heating plate; 202. Sealing motor; 3. Sequential material discharge component; 301. Discharge mounting shell; 302. Packaging motor; 303. Packaging feed roller; 4. Congestion detection component; 401. Slanted panel; 402. Detection mounting plate; 403. Position switch; 404. Anti-accidental contact spring; 5. Horizontal indicator component; 501. Indicator rod; 502. Packaging film; 503. Buzzer; 504. Downward pressure iron column; 505. Iron column switch; 6. Axial transfer component; 601. Transfer box; 602. Magnet. Detailed Implementation

[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0035] Example 1: Please refer to Figures 1 to 11 As shown:

[0036] This invention provides a technical solution: an automatic sorting and feeding packaging device for shaft parts, comprising a packaging sealing component 1, a compression sealing part 2 installed on the packaging sealing component 1 for adapting to shaft parts; a sequential discharge component 3 installed on the packaging sealing component 1 for discharging shaft parts; a congestion detection component 4 installed on the packaging sealing component 1 for preventing packaging discharge congestion; a horizontal indicator component 5 installed on the packaging sealing component 1 for indicating the status of shaft parts; and an axial transfer component 6 installed on the packaging sealing component 1 for preventing lateral transfer of shaft parts. The packaging sealing component 1 includes a packaging mounting frame 101 and discharge drive wheels 102, with two discharge drive wheels 102 rotatably mounted on the packaging mounting frame 101; each of the two discharge drive wheels 102 has a protruding structure at both ends; and the outer side of the discharge drive wheels 102 is coated with a rubber coating.

[0037] The packaging sealing component 1 further includes: a discharge motor 103 and a discharge guide plate 104. Two discharge motors 103 are fixedly mounted on the packaging mounting frame 101, and the output shafts of the two discharge motors 103 pass through the packaging mounting frame 101 respectively; the output shafts of the two discharge motors 103 are fixedly mounted at the ends of the discharge drive wheel 102 respectively; the discharge guide plate 104 is fixedly mounted on the packaging mounting frame 101; the discharge guide plate 104 has a sloping structure; the compression sealing part 2 includes: a sealing roller 201, a separator... The sealing heating plate 2011, the side sealing heating plate 2012, and the sealing motor 202 are included. Two sealing rollers 201 are rotatably mounted on the packaging mounting frame 101, and each of the two sealing rollers 201 has a groove. The two sealing rollers 201 are used to convey shaft-like parts. A ring of separating sealing heating plates 2011 is fixedly embedded in each of the two sealing rollers 201, and the ring of separating sealing heating plates 2011 is located at the intervals of the grooves on the sealing rollers 201. The sealing rollers 201 are fixedly mounted with... The packaging assembly includes two side-sealing heating plates 2012, each connected to one end of a ring of separating sealing heating plates 2011. A sealing motor 202 is fixedly mounted on the packaging mounting frame 101, with the output shafts of both motors passing through the frame. The output shafts of the two motors are fixedly connected to the ends of two sealing rollers 201. The sequential feeding component 3 includes a feeding mounting shell 301, a packaging motor 302, and a packaging feed roller 303. The discharge mounting shell 301 is fixedly mounted on the packaging mounting frame 101 by bolts; the discharge mounting shell 301 has a through groove; a row of shaft-like parts are placed inside the discharge mounting shell 301; four packaging motors 302 are fixedly mounted on the discharge mounting shell 301, and the output shafts of the four packaging motors 302 pass through the discharge mounting shell 301 respectively; packaging feed rollers 303 are fixedly mounted on the output shafts of the four packaging motors 302, and two packaging feed rollers 303 on the same side are used to clamp and adhere the horizontally placed reminder piece 5;The feeding housing 301 is located between two sealing rollers 201. The extrusion sealing section 2 enables automatic control of conveying shaft parts one by one for heat-sealing packaging. Simultaneously, this structure, in conjunction with the sequential feeding component 3, enables automatic sorting and storage of shaft parts, facilitating continuous packaging. This structure utilizes the two sealing rollers 201 to drive the rotating separating sealing heating plate 2011 and the side sealing heating plate 2012 for packaging. The grooves on the sealing rollers 201 limit the packaging area and size, preventing excessive packaging that could lead to excessive grease adhesion on the packaging film 502, affecting the oil adhesion on the part surface. This ensures proper fit between the packaging film 502 and the shaft parts, and also speeds up packaging. Furthermore, this structure uses a rolling bonding method for heat-sealing the packaging film 502, avoiding the traditional sealing method of directly bonding two heating structures moving inwards. In this type of sealing, if any residual oil remains on the inner sealing area of ​​the packaging film 502, it will affect the heat-sealing process. This structure utilizes a rotatable sealing roller 201 to achieve real-time rolling extrusion of the attached oil, ensuring the heat-sealing effect. Simultaneously, this structure enables continuous sealing, facilitating the subsequent direct winding and packaging of shaft parts. Operation is simple and convenient. When packaging shaft parts, a row of shaft parts is placed inside the discharge mounting shell 301. As the bottom shaft part falls between the two packaging films 502, it is also positioned between the two sealing rollers 201. The sealing motor 202 drives the sealing rollers 201 to rotate, utilizing the grooves on the sealing rollers 201 to individually lower the shaft parts. At this time, the separating sealing heating plate 2011 and the side sealing heating plate 2012 are also moved, achieving heat-sealing of the outer side of the shaft parts. Furthermore, the sealing process involves rolling and extrusion, preventing oil accumulation at the sealing point. ;

[0038] The congestion detection component 4 includes: a sloping panel 401 and a detection mounting plate 402. The sloping panel 401 is rotatably mounted on the packaging mounting frame 101; the sloping panel 401 is installed at an angle; the detection mounting plate 402 is fixedly mounted on the packaging mounting frame 101, and the distance between the end of the sloping panel 401 and the discharge guide plate 104 is greater than the diameter of the shaft part; the congestion detection component 4 also includes: a position switch 403, which is fixedly mounted on the detection mounting plate 402; the position switch 403 is located above the sloping panel 401; the sloping panel 401 is used to rotate upward to press the position switch 403; the position switch 403 is electrically connected to the separating sealing heating plate 2011, the side sealing heating plate 2012, and the sealing motor 202; the congestion detection component 4 also includes: an anti-accidental contact spring 404, which has a V-shaped structure; the end of the anti-accidental contact spring 404 is fixedly mounted on the sloping panel 401; the anti-accidental contact spring 404... 4. The other end is fixedly installed on the detection mounting plate 402. The congestion detection component 4 can realize automatic control for congestion protection, automatic control for power-off shutdown, and automatic control to avoid continuous discharge after congestion, which is safer. It also makes it easier for staff to directly roll up shaft parts for transfer and other work. The structure is simple and reasonable, and the operation is simple and convenient. If shaft parts are discharged above the discharge guide plate 104 and are not rolled up in time, congestion is likely to occur on the discharge guide plate 104. As the sealing roller 201 continues to discharge shaft parts, the shaft parts will squeeze the inclined plate 401, which will drive the inclined plate 401 to move up and squeeze the position switch 403. Once the position switch 403 is squeezed, it can control the power outage of the separating sealing heating plate 2011, the side sealing heating plate 2012 and the sealing motor 202, stop heating and conveying, and prompt the staff to make timely adjustments.

[0039] The horizontally positioned indicator 5 includes an indicator rod 501, packaging films 502, and a buzzer 503. The length of the indicator rod 501 is less than the length of the groove on the sealing roller 201. Two packaging films 502 are fixedly mounted on the indicator rod 501, and the two packaging films 502 pass through the two discharge drive wheels 102 and the two sealing rollers 201 respectively. The two discharge drive wheels 102 and the two sealing rollers 201 respectively press and adhere the two packaging films 502. The two packaging films 502 pass between the two packaging feed rollers 303 on the same side. The packaging feed rollers 303 are used to limit the conveying speed of the packaging films 502. The discharge mounting shell 301 is located between the two packaging films 502. A buzzer is fixedly mounted at the end of the indicator rod 501. Device 503; The horizontally positioned prompting component 5 also includes: a pressing iron column 504 and an iron column switch 505, the pressing iron column 504 is slidably sleeved inside the prompting rod 501, and the iron column switch 505 is fixedly installed inside the prompting rod 501; the end of the pressing iron column 504 is used to press and adhere to the iron column switch 505; the iron column switch 505 is electrically connected to the buzzer 503; The axial transport component 6 includes: a transport box 601 and a magnet 602, the magnet 602 is fixedly installed inside the transport box 601; the transport box 601 is slidably inserted into the packaging mounting frame 101; the transport box 601 is provided with two handles; the transport box 601 is used to vertically place packaged shaft parts; the magnet 602 aligns with the wound-up prompting rod 501; the magnet 602 is used to magnetically attract the pressing iron column 504.The transfer box 601 has a cylindrical structure and uses an axial transfer component 6 in conjunction with a horizontal warning component 5 to protect the safety of shaft parts during actual transfer. It restricts and prompts workers to place shaft parts vertically for transfer, avoiding the excessive pressure on the outer packaging film 502 of the lower-layer shaft parts when placed horizontally in a traditional square transfer box. Combined with edge compression of some shaft parts and shaking during transfer, the packaging film 502 is easily damaged. This structure utilizes vertical placement of shaft parts to prevent excessive pressure on the packaging film 502. Simultaneously, with the iron pillar switch 505, an automatic alarm is triggered if the shaft parts are placed horizontally, further alerting workers. The structure is simple to operate, improves the standardization of worker transfer, and further reduces the damage rate of the packaging film 502. As the packaging film 502 is squeezed and the sealing part 2 quickly heat-seales, a buzzer 503 continuously sounds during the process, prompting workers to promptly roll up the packaged shaft parts. After the packaging film 502 is heat-sealed, the packaged shaft parts can be rolled up. After being rolled and packaged, the shaft parts are vertically inserted into the transfer box 601. At this time, the indicator rod 501 will approach the magnet 602. The magnet 602 magnetically attracts and presses down the iron column 504, which in turn presses down the switch 505, thus controlling the buzzer 503 to cut off the power and stop the buzzer, ensuring that the shaft parts are placed and transferred vertically. At the same time, when placed vertically, the heat-sealed edge of the packaging film 502 will also be at the end of the shaft parts, further assisting in padding and protection, and further assisting in the buffering effect. The width of the packaging film 502 can be appropriately increased. The indicator rod 501 can be reused. After the transfer is completed, when each shaft part needs to be separated, the packaging film 502 can be cut directly with a utility knife. Similarly, the indicator rod 501 can be cut off directly. The indicator rod 501 can then be glued back to the end of the new packaging film 502. The operation is simple and convenient. The buzzer alarm alerts the staff, optimizing the protection of shaft parts during the production process, and also avoiding bending deformation of shaft parts when placed horizontally during long transfer and storage periods. ;

[0040] The working principle of this embodiment is as follows: First, the packaging film 502 is passed through two discharge drive wheels 102 and two sealing rollers 201. Simultaneously, two pieces of packaging film 502 pass between two packaging feed rollers 303 on the same side. A row of shaft-like parts is placed inside the discharge mounting shell 301. As the bottommost shaft-like part falls between the two packaging films 502, it is also positioned between the two sealing rollers 201. At this point, the sealing motor 202 drives the sealing rollers 201 to rotate, thus utilizing the grooves on the sealing rollers 201 to individually lower the shaft-like parts. The time-separated sealing heating plate 2011 and the side sealing heating plate 2012 are also moved to achieve heat-sealing of the outer side of the shaft parts. The sealing process involves rolling and extrusion, preventing oil accumulation at the sealing point. Simultaneously, the discharge motor 103 drives the discharge drive wheel 102 to rotate, causing the sealed packaging film 502 to move downwards and be discharged. At the same time, the packaging motor 302 can drive the packaging feed roller 303 to rotate in real time, limiting the speed and tension of the packaging film 502 on the same side to prevent it from loosening. The ends of the two packaging films 502 can be... Temporary winding and placement can be achieved using an external winding roller or placement box to prevent them from falling to the ground. As the packaged shaft parts are discharged through the discharge guide plate 104, a person manually holds the indicator rod 501 to wind up the packaged shaft parts and packaging film 502 together for subsequent transfer. However, if the shaft parts are not wound up in time after being discharged from the discharge guide plate 104, they can easily become congested. As the sealing roller 201 continues to discharge shaft parts, the congested shaft parts will press against the inclined plate 401, causing the inclined plate 401 to move upwards and press into place. When switch 403 is pressed, it can control the power outage of the partition sealing heating plate 2011, the side sealing heating plate 2012 and the sealing motor 202, pausing heating and conveying. This can prompt the staff to make timely adjustments, making it more suitable for processing needs that require collection and transfer. After the packaged shaft parts are promptly removed, the inclined panel 401 will no longer be blocked under the pressure of the anti-accidental contact spring 404, allowing it to reset in time and maintain normal power supply to the partition sealing heating plate 2011, the side sealing heating plate 2012 and the sealing motor 202.

[0041] After the packaging film 502 is heat-sealed, the packaged shaft parts can be vertically inserted into the transfer box 601. The indicator rod 501 is in the middle after the packaging film 502 is rolled up. At this time, the indicator rod 501 will be aligned and close to the magnet 602. The magnet 602 magnetically attracts and presses down the iron column 504. Pressing down the iron column switch 505 will control the buzzer 503 to be de-energized and stop the buzzer, ensuring that the shaft parts are placed and transferred vertically. The indicator rod 501 can be reused. After the transfer is completed, when it is necessary to separate each shaft part, simply cut the packaging film 502 with a utility knife. Similarly, the indicator rod 501 can be cut off directly. Afterwards, the indicator rod 501 can be glued back to the end of the new packaging film 502.

[0042] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic sorting, feeding, and packaging device for shaft-type parts, comprising a packaging sealing component (1), wherein a compression sealing part (2) is installed on the packaging sealing component (1), characterized in that: The extrusion sealing part (2) is used to adapt to shaft parts; the packaging sealing part (1) is equipped with a sequential feeding part (3); the sequential feeding part (3) is used to discharge shaft parts; A congestion detection device (4) is installed on the packaging seal (1); the congestion detection device (4) is used to prevent packaging material discharge congestion; A horizontal indicator (5) is installed on the packaging seal (1); the horizontal indicator (5) is used to indicate the status of shaft parts; an axial transfer component (6) is installed on the packaging seal (1). The axial transfer component (6) is used to prevent the lateral transfer of shaft-type parts; The packaging sealing component (1) includes: a packaging mounting frame (101), on which two discharge drive wheels (102) are rotatably mounted; the two discharge drive wheels (102) have protruding structures at both ends; and the outer side of the discharge drive wheels (102) is provided with a rubber coating; The extrusion sealing part (2) includes: sealing rollers (201), and two sealing rollers (201) are rotatably mounted on the packaging mounting frame (101). The sequential material feeding component (3) includes: a material feeding mounting shell (301), which is fixedly mounted on the packaging mounting frame (101) by bolts; a through groove is provided on the material feeding mounting shell (301); a row of shaft-like parts are placed inside the material feeding mounting shell (301); and four packaging motors (302) are fixedly mounted on the material feeding mounting shell (301). Packaging feed rollers (303) are fixedly mounted on the output shafts of the four packaging motors (302); The horizontally positioned indicator (5) includes: an indicator rod (501), the length of which is less than the length of the groove provided on the sealing roller (201); two packaging films (502) are fixedly installed on the indicator rod (501), and the two packaging films (502) pass through two discharge drive wheels (102) and two sealing rollers (201) respectively; the two discharge drive wheels (102) and two sealing rollers (201) respectively squeeze and adhere the two packaging films (502); the two packaging films (502) pass between two packaging feed rollers (303) on the same side respectively; the packaging feed rollers (303) are used to limit the conveying speed of the packaging films (502); the discharge mounting shell (301) is located between the two packaging films (502); a buzzer (503) is fixedly installed at the end of the indicator rod (501). The horizontally positioned indicator (5) further includes: a pressing iron column (504), the pressing iron column (504) is slidably sleeved inside the indicator rod (501), and an iron column switch (505) is fixedly installed inside the indicator rod (501); the end of the pressing iron column (504) is used to press and fit the iron column switch (505); the iron column switch (505) is electrically connected to a buzzer (503); The axial transfer component (6) includes: a transfer box (601), in which a magnet (602) is fixedly installed; the transfer box (601) is slidably inserted into the packaging mounting frame (101); the transfer box (601) is provided with two handles; the transfer box (601) is used to vertically place packaged shaft parts; the magnet (602) aligns with the coiled indicator rod (501); the magnet (602) is used to magnetically attract and press down the iron column (504); the transfer box (601) has a cylindrical structure.

2. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 1, characterized in that: Two discharge motors (103) are fixedly installed on the packaging mounting frame (101), and the output shafts of the two discharge motors (103) pass through the packaging mounting frame (101) respectively; the output shafts of the two discharge motors (103) are fixedly installed at the ends of the discharge drive wheel (102) respectively; a discharge guide plate (104) is fixedly installed on the packaging mounting frame (101); the discharge guide plate (104) is a sloping structure.

3. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 2, characterized in that: Two sealing rollers (201) are each provided with a groove; the two sealing rollers (201) are used to convey shaft parts; a ring of dividing sealing heating plates (2011) is fixedly embedded on each of the two sealing rollers (201), and the ring of dividing sealing heating plates (2011) is located at the interval of the ring of grooves on the sealing rollers (201); two side sealing heating plates (2012) are fixedly installed on the sealing rollers (201), and the two side sealing heating plates (2012) are respectively connected to the two ends of the ring of dividing sealing heating plates (2011); a sealing motor (202) is fixedly installed on the packaging mounting frame (101), and the output shafts of the two sealing motors (202) pass through the packaging mounting frame (101); the output shafts of the two sealing motors (202) are respectively fixedly connected to the ends of the two sealing rollers (201).

4. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 3, characterized in that: The output shafts of the four packaging motors (302) pass through the discharge mounting shell (301); the two packaging feed rollers (303) on the same side are used to clamp and attach the horizontally placed reminder piece (5); the discharge mounting shell (301) is located between the two sealing rollers (201).

5. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 3, characterized in that: The congestion detection component (4) includes: a sloping panel (401), which is rotatably mounted on a packaging mounting frame (101); the sloping panel (401) is installed at an angle; a detection mounting plate (402) is fixedly mounted on the packaging mounting frame (101), and the distance between the end of the sloping panel (401) and the discharge guide plate (104) is greater than the diameter of the shaft part.

6. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 5, characterized in that: The congestion detection component (4) further includes: a positioning switch (403), which is fixedly installed on the detection mounting plate (402); the positioning switch (403) is located above the inclined panel (401); the inclined panel (401) is used to rotate upward to press the positioning switch (403); the positioning switch (403) is electrically connected to the partition sealing heating plate (2011), the side sealing heating plate (2012) and the sealing motor (202).

7. The automatic sorting, feeding, and packaging device for shaft-type parts according to claim 6, characterized in that: The congestion detection component (4) further includes: an anti-accidental contact spring (404), which has a V-shaped structure; one end of the anti-accidental contact spring (404) is fixedly installed on the inclined panel (401); the other end of the anti-accidental contact spring (404) is fixedly installed on the detection mounting plate (402).

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