Intelligent suspension conveying device for spring production and conveying method

The smart hanging transport device adjusts suspension height and direction for springs, automating the transport process to meet user demands and improve efficiency.

CN120308539APending Publication Date: 2025-07-15KUNSHAN ZEQIAO PRECISION HARDWARE SPRING CO LTD
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Patent Information

Application Number
CN202510689447.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-27
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

The existing intelligent suspension conveyor cannot adjust the suspension height and direction, and cannot meet the actual needs of different scenarios and venues.

Method used

An intelligent suspension conveyor device including a suspension mechanism, a lower support mechanism and a material carrier mechanism is designed. Through the adjustment component and motor drive, the suspension height and direction are adjusted, and the material loading and unloading are realized through the pick-up and discharge mechanism.

Benefits of technology

It realizes flexible adjustment of suspension conveying height and direction, improves conveying efficiency, simplifies operating procedures, reduces human intervention, and improves overall conveying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent suspension conveying device for spring production and a conveying method. The intelligent suspension conveying device comprises a top ring, a lower supporting mechanism arranged at the bottom of the top ring and used for suspension supporting, a suspension mechanism arranged on the inner side wall of the top ring and used for suspension conveying and a loading mechanism matched with the lower supporting mechanism and matched with the suspension mechanism; through the arrangement of the suspension mechanism, the lower supporting mechanism and the material carrying mechanism, the advantage that the required suspension conveying height can be adjusted before suspension conveying of springs is achieved, direct and alternate feeding and conveying operation are conducted after adjustment, follow-up operation is assisted in the conveying process, and the conveying efficiency is improved. By means of the technical scheme, materials can rotate to adjust the direction in a rotating adjusting mode, so that the direction of a spring in suspension can be completed in the conveying process, the actual requirements of people are met, the suspension mechanism can be used for power output operation, and then the material carrying mechanism is driven to complete circulating and continuous suspension conveying operation.
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Description

Technical Field

[0001] The present invention relates to the technical field of spring conveying, and particularly relates to an intelligent suspension conveying device and a conveying method for spring production. Background Art

[0002] A spring is a mechanical part that utilizes elasticity. A part made of elastic material deforms under an external force and returns to its original shape after the external force is removed. It is generally made of metal material. When a spring needs to be conveyed from one end to the other by a conveying device during the production process for subsequent operations, different conveying devices need to be selected according to requirements during the conveying process. Generally, the suspension conveying method, that is, an intelligent suspension conveyor, is used for the conveying operation.

[0003] The existing intelligent suspension conveying device still has the following deficiencies. The spring in the actual conveying process is in a suspended state, and the height required for suspension cannot be adjusted for different scenarios and the height of the actual site, and the required direction cannot be adjusted during the conveying process, thus unable to meet the actual needs of people. Summary of the Invention

[0004] The purpose of the present invention is to provide an intelligent suspension conveying device and a conveying method for spring production, which have the ability to adjust the suspension height position required for suspension conveying, and can also adjust the direction during suspension conveying according to requirements, meeting the actual needs of people for spring suspension conveying, so as to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: An intelligent suspension conveying device and a conveying method for spring production, including a top ring: A lower support mechanism arranged at the bottom of the top ring for hanging and supporting. A suspension mechanism for hanging and conveying and a loading mechanism adapted to the suspension mechanism are arranged on the inner side wall of the top ring; The lower support mechanism includes: A mounting frame fixed on the inner side wall of the top ring. One end of the mounting frame is fixed with a toothed plate for adapting to the loading mechanism, and a support component for bearing during conveying is arranged at the bottom of the top ring; The loading mechanism includes: A gear meshing on the outside of the toothed plate for converting the direction of the material. A rolling component adapted to the support component is arranged above the gear, and an adjusting component for adjusting the feeding height is arranged below the gear; The suspension mechanism includes: A motor for power output during hanging and feeding. A fixing component for installing the motor is arranged inside the top ring. Below the fixing component, a rotating component connected to the output shaft of the motor and a transfer component adapted to the rotating component are arranged.

[0006] Exemplarily, the fixing component includes: A carrier plate for supporting the motor and a reinforcing plate for reinforcing the carrier plate, with the outer end of the reinforcing plate fixed to the top ring.

[0007] Exemplarily, the rotating component includes: A vertical pipe fixed to the inner side wall of the carrier plate and a shaft rod rotatably connected to the vertical pipe, with a belt body and a pulley adapted to the belt body installed on the outer side of one side of the shaft rod.

[0008] Exemplarily, the transfer component includes: A sprocket fixed to the bottom end of the shaft rod and a conveyor chain driven by the sprocket for suspending and conveying materials.

[0009] Exemplarily, the support component includes: A vertical plate installed at the bottom of the top ring and a track adapted to the rolling component for supporting the rolling component when it moves.

[0010] Exemplarily, the rolling component includes: A roller rollingly connected to the top surface of the track and a bracket for rotatably supporting the roller, with a base installed at the bottom of the bracket and a connecting seat for rotatably connecting to the adjusting component.

[0011] Exemplarily, the adjusting component includes: A connecting pipe rotatably connected inside the connecting seat and for fixing the gear, with a positioning groove and a positioning block adapted to the positioning groove provided on the outer side of the connecting pipe; A spring body is fixed to the top of the inner cavity of the connecting pipe, and a plugging rod for supporting the positioning block is installed at the bottom of the spring body.

[0012] Exemplarily, material loading and unloading mechanisms for taking and placing materials are provided at both ends of the top ring, and the material loading and unloading mechanisms include: A feeding component for discharging materials before material conveying and a discharging component for taking materials.

[0013] Exemplarily, the feeding component includes: A bottom plate for stable support is fixed to both ends of the top ring through a fixing frame, and a second electric push rod and a feeding seat for pushing materials are installed at the top of one end of the bottom plate; The discharging component includes: A first electric push rod and a material taking seat for discharging materials are installed at the top of the other end of the bottom plate. A fixing plate and a shock absorber for buffering materials are also fixed to the top of the other end of the bottom plate. A material receiving plate for receiving materials and a baffle strip for blocking materials are installed at the top of the shock absorber. A guiding rack for inclined material guiding is installed between the material receiving plate and the material taking seat.

[0014] A conveying method includes the following steps: S1. Conveyor height adjustment: First, push the feeding rod upward to drive the positioning block to move upward inside the positioning groove, and simultaneously compress the spring body again until it can no longer move upward. Then, rotate the feeding rod counterclockwise to drive the positioning block synchronously. At this time, it is in a position where it can slide up and down. Slowly release the driving force as required. When adjusted to the required position, then rotate clockwise until it is in a position where positioning can be achieved. After the adjustment is completed, wait for feeding the material. S2. Spring feeding: Place the spring on the top of the feeding seat through an external device, and then use the second electric push rod to push it upward until it reaches the height where it can be inserted into the conveying pipe. When the feeding rod passes above the feeding seat, it will directly insert into the inside of the spring. At this time, the second electric push rod drives the feeding seat to move downward, and then the spring is driven for conveying. S3. Suspension conveying: During the operation of the conveying work, first, the motor drives the connected shaft to rotate, further driving the corresponding sprocket to rotate. Synchronously, the belt body is used to cause the driving pulley to drive the driven pulley to rotate, and it meshes with the conveying chain, driving the conveying chain to rotate in a cycle for conveying. Further, it drives the roller, the bracket, and the spring inserted at the bottom to move together. When the roller is driven, it will slide on the upper surface of the track to adjust the direction during the displacement process. S4. Direction adjustment: During the above-mentioned movement process, the driven gear will move and mesh with the connecting rack, causing it to rotate. When the meshing is disengaged, the direction adjustment is completed, and then it continues to be conveyed until it reaches the discharging position. S5. Discharging: When it is about to be above the material receiving seat, directly use the first electric push rod to push the material receiving seat upward and block the spring through the vertical plate at one end of the material receiving seat. Until the spring is inside the material receiving seat, it will roll to one side along the slope of the inner wall of the material receiving seat until it reaches the top of the receiving plate, and then the discharging operation is completed.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Through the settings among the suspension mechanism, the lower support mechanism, and the material loading mechanism, the present invention has the advantage of being able to adjust the required suspension conveying height before the spring is suspended for conveying. And after the adjustment, it can directly insert and feed and carry out the conveying operation. And during the conveying process, for assisting subsequent operations, the direction of the material can be adjusted by rotation to complete the direction of the spring during suspension during the conveying process to meet the actual needs of people. The suspension mechanism can be used as a power output operation, and then drive the material loading mechanism to complete the cyclic and continuous suspension conveying operation. At this time, the material loading mechanism can be stably moved by connecting with the suspension mechanism and cooperating with the lower support mechanism to drive the spring to move synchronously. During the adjustment, the height required for suspension is adjusted by the extension and contraction of the components in the material loading mechanism. The lower support mechanism and the material loading mechanism can not only be adapted to roll with each other, but also complete the direction adjustment operation of the spring during the suspension conveying process by meshing.

[0016] 2. Through the setting of the loading and unloading mechanism of the present invention, the advantages of loading before the spring suspension transportation and unloading after being transported to the required position are realized. This process is simple to operate and can be achieved without manual operation. Therefore, the efficiency during the adjustable transportation can be improved, manual loading and unloading can be reduced, and the time of this step can be shortened. The lifting loading operation is completed according to the loading component in the loading and unloading mechanism, and the unloading operation is completed by the unloading component after being transported to the required position. During this process, the operation is simple and the loading and unloading speed is fast, which can improve the efficiency of the overall suspension transportation.

[0017] Other features and advantages of the present invention will be described in the following specification, and, in part, will be obvious from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention can be realized and obtained through the structures pointed out in the specification and the drawings. Brief Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of the present invention; Figure 2 It is a schematic structural diagram of the top ring of the present invention; Figure 3 It is a schematic structural diagram of the track of the present invention; Figure 4 It is a schematic structural diagram of the belt body of the present invention; Figure 5 It is a partial schematic structural diagram of the conveying chain of the present invention; Figure 6 It is a schematic structural diagram of the positioning block of the present invention; Figure 7 It is a schematic structural diagram of the unloading mechanism of the present invention; Figure 8 It is a schematic structural diagram of the shock absorber of the present invention; Figure 9 It is a schematic structural diagram of the feeding seat of the present invention.

[0019] In the figure: 1. Top ring; 2. Suspension mechanism; 21. Carrier plate; 22. Vertical pipe; 23. Shaft rod; 24. Sprocket; 25. Motor; 26. Pulley; 27. Belt body; 28. Conveying chain; 29. Reinforcing plate; 3. Lower support mechanism; 31. Vertical plate; 32. Track; 33. Mounting frame; 34. Toothed plate; 4. Loading mechanism; 41. Roller; 42. Bracket; 43. Base; 44. Connecting seat; 45. Gear; 46. Connecting pipe; 47. Positioning groove; 48. Spring body; 49. Inserting rod; 410. Positioning block; 5. Loading and unloading mechanism; 51. Fixed frame; 52. First electric push rod; 53. Loading seat; 54. Guide frame; 55. Receiving plate; 56. Baffle strip; 57. Fixed plate; 58. Shock absorber; 59. Second electric push rod; 510. Feeding seat; 511. Bottom plate. Detailed implementation mode

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] The present invention provides an intelligent suspension conveying device and a conveying method for spring production, including a top ring 1: A lower support mechanism 3 arranged at the bottom of the top ring 1 for hanging and supporting, a hanging mechanism 2 for hanging and conveying is arranged on the inner side wall of the top ring 1, and a material loading mechanism 4 adapted to the hanging mechanism 2; The lower support mechanism 3 includes: A mounting frame 33 fixed on the inner side wall of the top ring 1, a toothed plate 34 for adapting to the material loading mechanism 4 is fixed at one end of the mounting frame 33, and a support component for bearing during conveying is arranged at the bottom of the top ring 1; The material loading mechanism 4 includes: A gear 45 meshed outside the toothed plate 34 for converting the direction of the material, a rolling component adapted to the support component is arranged above the gear 45, and an adjusting component for adjusting the feeding height is arranged below the gear 45; The hanging mechanism 2 includes: A motor 25 for power output during hanging and feeding, a fixing component for installing the motor 25 is arranged inside the top ring 1, a rotating component connected to the output shaft of the motor 25 and a transfer component adapted to the rotating component are arranged below the fixing component.

[0022] Preferably; As Figure 4 shown, the fixing component includes: A carrier plate 21 for supporting the motor 25 and a reinforcing plate 29 for strengthening the carrier plate 21, and the outer end of the reinforcing plate 29 is fixed to the top ring 1.

[0023] Both ends of the reinforcing plate 29 are fixed to the carrier plate 21, so as to achieve the effect of strengthening and supporting; Furthermore; As Figure 4 shown, the rotating component includes: A vertical pipe 22 fixed to the inner side wall of the carrier plate 21 and a shaft rod 23 rotatably connected to the vertical pipe 22, a belt body 27 is installed outside one side of the shaft rod 23, and a pulley 26 adapted to the belt body 27.

[0024] The vertical pipe 22 is rotatably connected to the shaft rod 23 through a bearing, and the vertical pipe 22 is fixed to the carrier plate 21 to facilitate the stability during the rotation process.

[0025] Furthermore; As Figure 4 shown, the transfer component includes: A sprocket wheel 24 fixed to the bottom end of the shaft rod 23 and a conveyor chain 28 driven by the sprocket wheel 24 to realize the suspended transportation of materials.

[0026] The sprocket wheel 24 and the conveyor chain 28 are adapted to each other, so that the conveyor chain 28 can be driven to convey when the sprocket wheel 24 rotates.

[0027] Among them; As Figure 3 shown, the support component includes: A vertical plate 31 installed at the bottom of the top ring 1 and a track 32 adapted to the rolling component to support the rolling component when it moves.

[0028] The track 32 is used to support the roller 41 and at the same time adapt to the roller 41 to roll on its top surface.

[0029] It is worth noting that; As Figure 6 shown, the rolling component includes: A roller 41 rolling-connected to the top surface of the track 32 and a bracket 42 for rotatably supporting the roller 41. A base 43 and a connecting seat 44 for rotatably connecting the adjusting component are installed at the bottom of the bracket 42.

[0030] The rolling and the conveying work during the rolling process are realized to ensure the stability during the suspended transportation. At the same time, the base 43 and the connecting pipe 46 can be rotatably connected through a damping rotating shaft to avoid small-range self-rotation during the transportation process.

[0031] Among them; As Figure 6 shown, the adjusting component includes: A connecting pipe 46 rotatably connected to the inside of the connecting seat 44 and used to fix the gear 45. A positioning groove 47 and a positioning block 410 adapted to the positioning groove 47 are arranged on the outer side of the connecting pipe 46; A spring body 48 is fixed to the top of the inner cavity of the connecting pipe 46, and a plugging rod 49 for supporting the positioning block 410 is installed at the bottom of the spring body 48.

[0032] The sliding adaptation between the positioning groove 47 and the positioning block 410 can be adjusted to extend downward when needed, and then can be adjusted to contract from bottom to top; The bottom end of the spring body 48 and the top end of the positioning block 410 can be rotatably connected through a bearing seat, and it can be connected by damping rotation, so that the rotation operation can only be carried out when an external force is applied.

[0033] In addition; As shown Figure 7 in the figure, at both ends of the top ring 1, there are pick-and-place mechanisms 5 for picking and placing materials. The pick-and-place mechanism 5 includes: a feeding component for discharging materials before conveying and a discharging component for picking materials.

[0034] It facilitates the feeding before conveying and the discharging operation after conveying.

[0035] Finally; As shown Figure 8 and 9 in the figure, the feeding component includes: The bottom plate 511 for stable support is fixed to both ends of the top ring 1 through the fixing frame 51. At the top of one end of the bottom plate 511, there are a second electric push rod 59 and a feeding seat 510 for pushing materials; The discharging component includes: A first electric push rod 52 and a picking seat 53 for discharging are installed at the top of the other end of the bottom plate 511. At the top of the other end of the bottom plate 511, there is also a fixed plate 57 and a shock absorber 58 for buffering the materials. At the top of the shock absorber 58, there is a receiving plate 55 for receiving materials and a baffle strip 56 for blocking the materials. Between the receiving plate 55 and the picking seat 53, there is a guiding frame 54 for inclined material guiding.

[0036] When the first electric push rod 52 pushes the picking seat 53 upward, it can drive the material to move upward for receiving, and when it retracts, the discharging operation is completed; When the second electric push rod 59 pushes the feeding seat 510 upward, it drives the material to move upward synchronously, so as to facilitate the feeding operation; The cooperation of the shock absorber 58 and the receiving plate 55 realizes the bearing of the spring rolling down and conducts shock absorption and buffering operations.

[0037] During the production process of the spring and when it is conveyed by the intelligent suspension conveying equipment, it is fed to the top of the feeding seat 510 through an external mechanical device or a feeding device, and then moves upward until the spring can be inserted and picked by the inserting rod 49. Then, wait for the approaching of the inserting rod 49. The motor 25 works and drives the shaft rod 23 key-connected thereto to rotate, synchronously driving the pulley 26 and the sprocket 24 on its outer side to rotate. According to the transmission of the belt body 27, another group of sprockets 24 rotates, completing the power output during the suspension conveying. And the sprocket 24 at the opposite end will be driven by the conveying chain 28 to rotate synchronously, thereby realizing the power output operation during the suspension conveying; When the sprocket 24 moves, it synchronously drives the base 43 connected to its outer side to move together. At this time, the base 43 drives the roller 41 to move through the bracket 42, and at the same time, the roller 41 rolls on the top surface of the track 32, thereby realizing the stability during the suspension conveying; The required suspension height can be pre-adjusted before conveying. First, Figure 5 As shown in Figure 5 , it is in the highest suspension state. When the suspension height needs to be lowered, first push up the feeding rod 49 and compress the spring body 48 so that the positioning block 410 is driven to move upward, and then rotate counterclockwise until it cannot rotate. Then slowly release the thrust, and drive it to move downward to the required position according to the elastic thrust, and then rotate clockwise to the position where it can be positioned and locked. At this time, the adjustment of the required suspension height is completed; Then, as described above, the driven feeding rod 49 will directly insert into the spring waiting to be conveyed and drive it for conveying. The feeding seat 510 at the bottom is synchronously driven to retract by the second electric push rod 59. During the conveying process, the gear 45 will pass through the toothed plate 34 and mesh with it. At this time, under the drive of the meshing connection, the connecting pipe 46 will drive the components and the spring below to rotate together until the opposite position of rotation. Synchronously, during the continuous movement, the meshing state between the two is released, and the conveying continues; When it is conveyed to the discharging position, the first electric push rod 52 will synchronously push the material taking seat 53 upward, and one end of the material taking seat 53 will block the spring. One end of the material taking seat 53 has no obstruction, while the other end has a baffle plate. Therefore, the material blocking operation can be realized until the spring is blocked and falls into the material taking seat 53, and then rolls onto the top surface of the receiving plate 55 along the arc slope of the material taking seat 53 and the fixedly connected material guiding frame 54 to complete the discharging operation; There is gravity when it rolls downward, and this gravity will be transmitted to the shock absorber 58 through the receiving plate 55, and the shock absorber 58 is used to complete the buffer and shock absorption operation during the fall. Therefore, the spring rolling down can be protected, which is beneficial for subsequent external equipment to directly take the material. Repeat this process; After discharging, according to the meshing of another group of gears 45 and toothed plate 34, the feeding rod 49 is driven to rotate to the original required material taking direction.

[0038] A conveying method includes the following steps: S1. Conveying height adjustment: First, push up the feeding rod 49 and drive the positioning block 410 to move upward inside the positioning groove 47, and synchronously compress the spring body 48 again until it cannot move upward. Then rotate the feeding rod 49 counterclockwise to drive the positioning block 410 synchronously. At this time, it is in a position where it can slide up and down. Slowly release the driving force as required. When adjusted to the required position, then rotate clockwise until it is in a position where positioning can be achieved. After the adjustment is completed, wait for feeding the material; S2. When feeding the spring, place the spring on the top of the feeding seat 510 through external equipment, and then push it upward by the second electric push rod 59 until it reaches the height where it can be inserted into the conveying pipe. When the feeding rod 49 passes above the feeding seat 510, it will directly insert into the inside of the spring. At this time, the second electric push rod 59 drives the feeding seat 510 to move downward, and then the spring is driven for conveying; S3. When suspended and conveyed, during the conveying operation, the motor 25 needs to drive the connected shaft rod 23 to rotate first, further driving the corresponding sprocket 24 to rotate. Synchronously, the belt body 27 causes the driving pulley 26 to drive the driven pulley 26 to rotate, and engages with the conveying chain 28, driving the conveying chain 28 to rotate cyclically for conveying. Further, it drives the roller 41, the bracket 42, and the spring inserted at the bottom thereof to move together. When the roller 41 is driven, it will slide on the upper surface of the track 32 to adjust the direction during the displacement process. S4. Direction adjustment. During the above movement, the driven gear 45 will move and engage with the connecting toothed plate 34 to make it rotate. When the engagement is disengaged, the direction adjustment is completed, and then it continues to be conveyed until it reaches the blanking position. S5. Blanking. When it is about to be above the blanking seat 53, the first electric push rod 52 directly pushes the blanking seat 53 upward and blocks the spring through the vertical plate at one end of the blanking seat 53. Until the spring is inside the blanking seat 53, it rolls to one side along the slope of the inner wall of the blanking seat 53 until it is on the top of the receiving plate 55, then the blanking operation can be completed.

[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An intelligent suspension conveying device for spring production, characterized in that, Including a top ring (1): A lower support mechanism (3) provided at the bottom of the top ring (1) for hanging and supporting, a hanging mechanism (2) for hanging and conveying is provided on the inner side wall of the top ring (1), and a loading mechanism (4) adapted to the hanging mechanism (2); The lower support mechanism (3) includes: A mounting frame (33) fixed to the inner side wall of the top ring (1), a toothed plate (34) for adapting to the loading mechanism (4) is fixed at one end of the mounting frame (33), and a support assembly for carrying during conveying is provided at the bottom of the top ring (1); The loading mechanism (4) includes: A gear (45) meshing outside the toothed plate (34) for changing the direction of the material, a rolling assembly adapted to the support assembly is provided above the gear (45), and an adjustment assembly for adjusting the feeding height is provided below the gear (45); The hanging mechanism (2) includes: A motor (25) for power output during hanging and feeding, a fixing assembly for mounting the motor (25) is provided inside the top ring (1), a rotating assembly connected to the output shaft of the motor (25) and a transfer assembly adapted to the rotating assembly are provided below the fixing assembly.

2. The intelligent suspension conveying device for spring production according to claim 1, characterized in that: The fixing assembly includes: A carrier plate (21) for supporting the motor (25) and a reinforcing plate (29) for strengthening the carrier plate (21), the outer end of the reinforcing plate (29) is fixed to the top ring (1).

3. An intelligent suspension conveying device for spring production according to claim 2, characterized in that: The rotating assembly includes: A vertical pipe (22) fixed to the inner side wall of the carrier plate (21) and a shaft rod (23) rotatably connected to the vertical pipe (22), a belt body (27) and a pulley (26) adapted to the belt body (27) are installed on the outer side of one side of the shaft rod (23).

4. An intelligent suspension conveying device for spring production according to claim 3, characterized in that: The transfer assembly includes: A sprocket (24) fixed to the bottom end of the shaft rod (23) and a conveyor chain (28) driven by the sprocket (24) to achieve hanging and conveying of the material.

5. An intelligent suspension conveying device for spring production according to claim 1, characterized in that: The support assembly includes: A vertical plate (31) installed at the bottom of the top ring (1) and a track (32) adapted to the rolling assembly to support the rolling assembly during movement.

6. An intelligent suspension conveying device for spring production according to claim 1, characterized in that: The rolling assembly includes: A roller (41) rolling on the top surface of the track (32) and a bracket (42) for rotatably supporting the roller (41), a base (43) is installed at the bottom of the bracket (42), and a connecting seat (44) for rotatably connecting the adjustment assembly is provided.

7. An intelligent suspension conveying device for spring production according to claim 6, characterized in that: The adjustment assembly includes: A connecting pipe (46) rotatably connected inside the connecting seat (44) and for fixing the gear (45), a positioning groove (47) and a positioning block (410) adapted to the positioning groove (47) are provided on the outer side of the connecting pipe (46); A spring body (48) is fixed to the top of the inner cavity of the connecting pipe (46), and an insertion rod (49) for supporting the positioning block (410) is installed at the bottom of the spring body (48).

8. An intelligent suspension conveying device for spring production according to claim 1, characterized in that: Material taking and placing mechanisms (5) for taking and placing materials are provided at both ends of the top ring (1), and the material taking and placing mechanisms (5) include: A feeding component for discharging materials before conveying the materials and a discharging component for taking materials.

9. An intelligent suspension conveying device for spring production according to claim 8, characterized in that: The feeding component includes: The bottom plate (511) for stable support is fixed to both ends of the top ring (1) through the fixing frame (51). At the top of one end of the bottom plate (511), a second electric push rod (59) and a feeding seat (510) for pushing materials are installed. The blanking assembly includes: A first electric push rod (52) and a material taking seat (53) for blanking, which are installed at the top of the other end of the bottom plate (511). At the top of the other end of the bottom plate (511), a fixing plate (57) and a shock absorber (58) for buffering materials are also fixed. At the top of the shock absorber (58), a receiving plate (55) for receiving materials and a baffle strip (56) for blocking materials are installed. A guiding frame (54) for inclined material guiding is installed between the receiving plate (55) and the material taking seat (53).

10. A conveying method, applied to the spring suspension conveying device according to any one of claims 1-9, characterized in that, It includes the following steps: S1. Conveyor height adjustment: First, push the inserting rod (49) upward to drive the positioning block (410) to move upward inside the positioning groove (47), and simultaneously compress the spring body (48) again until it cannot move upward. Then, rotate the inserting rod (49) counterclockwise to drive the positioning block (410) synchronously. At this time, it is in a position where it can slide up and down. Slowly release the driving force as required. When adjusted to the required position, then rotate clockwise until it is in a position where positioning can be achieved. After the adjustment is completed, wait for material feeding. S2. Spring feeding: Place the spring on the top of the feeding seat (510) through an external device, and then push it upward by the second electric push rod (59) until it reaches the height where it can be inserted into the conveying pipe. When the inserting rod (49) passes above the feeding seat (510), it will directly insert into the inside of the spring. At this time, the second electric push rod (59) drives the feeding seat (510) to move downward, and then the spring is driven for conveying. S3. Suspension conveying: During the conveying operation, first, the motor (25) drives the connected shaft rod (23) to rotate, further driving the corresponding sprocket (24) to rotate. Synchronously, the belt body (27) causes the driving pulley (26) to drive the driven pulley (26) to rotate, and meshes with the conveying chain (28), driving the conveying chain (28) to rotate in a cycle for conveying. Further, it drives the roller (41), the bracket (42), and the spring inserted at the bottom to move together. When the roller (41) is driven, it will slide on the upper surface of the track (32) to adjust the direction during the displacement process. S4. Direction adjustment: During the above movement, the driven gear (45) will move and mesh with the connecting rack (34) to make it rotate. When disengaged from the meshing, the direction adjustment is completed, and then it continues to be conveyed until it reaches the blanking position. S5. Blanking: When it is about to be above the material taking seat (53), directly push the material taking seat (53) upward by the first electric push rod (52), and block the spring with the vertical plate at one end of the material taking seat (53). Until the spring is inside the material taking seat (53), it will roll to one side along the slope of the inner wall of the material taking seat (53) until it is on the top of the receiving plate (55), then the blanking operation is completed.

Citation Information

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