Feeding device for resin hose production

By setting up maintenance and anti-blocking mechanisms in the resin hose production and loading device, the production interruption caused by the spiral transport passage is solved, and the continuous and efficient production of the loading process is achieved.

CN120190938AInactive Publication Date: 2025-06-24YANSHAN UNIV
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Patent Information

Application Number
CN202510670502.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-06-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the production of resin hoses, the spiral transportation and feeding method can easily lead to blockage of transportation channels, requiring disassembly and assembly and maintenance, resulting in interruption of production and affecting efficiency.

Method used

A feeding device for the production of resin hose is designed, and a spiral transport and loading method is adopted, and a maintenance mechanism and an anti-blocking mechanism are set up in the device to facilitate maintenance of the spiral transport passage and prevent blockage.

Benefits of technology

Through convenient maintenance and anti-blocking measures, the downtime caused by blockage in production is avoided, and the continuity and production efficiency of the loading process are ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a feeding device for resin hose production. The feeding device comprises a rack, a machining device is arranged at the bottom of one end of the rack, a maintenance mechanism is arranged at one end of the top of the rack, a conveying mechanism is rotationally installed on the rack, the conveying mechanism comprises a rotary table rotationally installed on the rack, and two conveying shafts are rotationally installed on the rotary table; a conveying surrounding mechanism is arranged at one end of the rack and used for surrounding the conveying shafts to form a conveying channel. The conveying and surrounding mechanism comprises two conveying and surrounding cylinders, and a discharging part is arranged at one end of each conveying and surrounding cylinder; an anti-blocking mechanism is arranged at the discharging part; a spiral conveying feeding mode is adopted, a spiral conveying channel can be conveniently maintained, and production continuity is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of resin hose production feeding, and particularly relates to a feeding device for resin hose production. Background Art

[0002] Resin hoses are hoses made of synthetic resin materials and are widely used in multiple fields. Their characteristics include being lightweight, flexible, corrosion-resistant, and heat-resistant, etc. In the production operation of resin hoses, feeding is a crucial link. There are various current feeding methods, including pump transportation feeding, belt feeding, and screw conveyor feeding. Screw conveyor feeding is a commonly used feeding method, but there will also be some problems. For example, the inside of the screw transportation channel becomes blocked. At this time, disassembly and maintenance are required, which will cause the production to be interrupted and greatly reduce the production efficiency. Based on this, the present invention proposes a feeding device that uses the screw transportation feeding method, which is convenient for maintaining the screw transportation channel and is beneficial to the continuity of production. Summary of the Invention

[0003] In response to the above technical problems, the present invention adopts the screw transportation feeding method, which is convenient for maintaining the screw transportation channel and is beneficial to the continuity of production.

[0004] The usage scheme of the present invention is as follows: A feeding device for resin hose production includes a frame. At the bottom of one end of the frame, there is processing equipment. At one end of the top of the frame, there is a maintenance mechanism. A transmission mechanism is rotatably installed on the frame. The transmission mechanism includes a turntable rotatably installed on the frame, and two conveying shafts are rotatably installed on the turntable. At one end of the frame, there is a transmission surrounding mechanism for surrounding the conveying shafts to form a transmission channel. The transmission surrounding mechanism includes two transmission surrounding cylinders. At one end of the transmission surrounding cylinder, there is a discharge part. A blockage prevention mechanism is provided at the discharge part.

[0005] Further, a feeding cylinder is provided on the frame. A docking part is connected to the feeding cylinder, and a docking electric cylinder is provided on the frame. The docking electric cylinder is used to control the movement of the docking part. The docking part is connected to the transmission surrounding cylinder on the transmission surrounding mechanism for feeding.

[0006] Further, the transmission surrounding mechanism includes a surrounding electric cylinder provided on the frame. An installation table is provided on the telescopic rod of the surrounding electric cylinder. A second motor and a second screw rod are provided on the installation table. The second motor is used to drive the second screw rod. The two transmission surrounding cylinders are slidably arranged on the installation table, and the transmission surrounding cylinder and the second screw rod form a screw pair. At one end of the transmission surrounding cylinder, there is a feeding port. The docking part is connected to the feeding port for feeding.

[0007] Further, a splicing part is provided at one end of the transmission surrounding cylinder, and a cooperation electric cylinder is provided at one end of the frame. A cooperation cylinder is provided on the telescopic rod of the cooperation electric cylinder. The two transmission surrounding cylinders are docked, and the cooperation cylinder cooperates with the splicing part.

[0008] Further, the anti-blocking mechanism includes an anti-blocking driving motor arranged at one end of the frame. A belt structure is arranged on the output shaft of the anti-blocking driving motor. An extension electric cylinder is rotatably installed on the frame and is driven by the belt structure on the output shaft of the anti-blocking driving motor. A rotating frame is arranged on the telescopic rod of the extension electric cylinder, and the rotating frame extends into the inside of the discharging part.

[0009] Further, a turning motor is arranged on the top of the frame. The turning motor is used to drive a turntable. A driving motor is arranged on the turntable. A belt structure is arranged on the output shaft of the driving motor. A driving control electric cylinder is rotatably installed on the turntable. Matching parts are arranged on the telescopic rods at both ends of the driving control electric cylinder. A matching table is arranged at the end of the conveying shaft, and the matching table cooperates with the matching parts to achieve driving.

[0010] Further, the maintenance mechanism includes a first motor, a first lead screw, and a first sliding seat arranged on the frame. The first motor is used to drive the first lead screw. The first sliding seat is slidably installed on the frame, and the first lead screw and the first sliding seat form a screw pair.

[0011] Further, the maintenance mechanism further includes a maintenance electric cylinder arranged on the first sliding seat. A maintenance motor is arranged on the telescopic rod of the maintenance electric cylinder, and a cleaning part is arranged on the output shaft of the maintenance motor.

[0012] The beneficial effects of the present invention compared with the prior art are as follows: (1) When the material drops, the anti-blocking driving motor works, and the extension electric cylinder rotates, that is, the rotating frame rotates inside the discharging part, which can stir the material to prevent blockage; (2) When it is necessary to maintain the conveying shaft and the inner side of the transmission surrounding cylinder, or when a blockage occurs, the second motor can work, and the second lead screw rotates, that is, the transmission surrounding cylinder moves separately, so that the conveying shaft inside the transmission surrounding cylinder is exposed. Then, the height of the installation table is controlled by the surrounding electric cylinder, so that the transmission surrounding cylinder moves above the conveying shaft. By the work of the turning motor, the turntable rotates, that is, the two conveying shafts are swapped positions, and the non-working conveying shaft can be maintained externally, that is, the sundries attached to the surface are cleaned; (3) The maintenance electric cylinder controls the position of the cleaning part. By the work of the maintenance motor, the cleaning part performs a cleaning treatment on the surface of the conveying shaft. The cooperation between the matching part and the matching table can be controlled by the driving control electric cylinder, so that the conveying shaft to be cleaned and maintained rotates. The linear movement of the first sliding seat combined with the rotation of the conveying shaft itself realizes a spiral movement form, and the cleaning treatment can be carried out along the spiral path on the conveying shaft; (4) After swapping positions, the conveying shaft is surrounded by the transmission surrounding cylinder again, and the cooperation cylinder is controlled to move by the cooperation electric cylinder, that is, the cooperation cylinder cooperates with the splicing part at the end of the transmission surrounding cylinder, and then the transmission operation can be carried out to ensure the continuity of feeding. Description of the Drawings

[0013] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0014] Figure 2 This is a schematic diagram of the installation structure at the top of the frame of the present invention.

[0015] Figure 3 This is a schematic diagram of the installation structure of the transmission enclosure cylinder of the present invention.

[0016] Figure 4 This is a schematic diagram of the installation structure of the drive control electric cylinder of the present invention.

[0017] Figure 5 This is a schematic diagram of the structure of the conveying shaft of the present invention.

[0018] Figure 6 This is a schematic diagram of the installation structure of the anti-blocking mechanism of the present invention.

[0019] Figure 7 This is a schematic diagram of the end structure of the transmission enclosure cylinder of the present invention.

[0020] Reference numerals: 1-frame; 2-first motor; 3-first lead screw; 4-first slide; 5-maintenance electric cylinder; 6-maintenance motor; 7-cleaning part; 8-rotation motor; 9-feeding cylinder; 10-processing equipment; 12-docking part; 13-docking electric cylinder; 14-enclosing electric cylinder; 15-installation table; 16-rotating table; 17-second lead screw; 18-second motor; 19-transmission enclosure cylinder; 20-drive motor; 21-conveying shaft; 22-drive control electric cylinder; 23-mating part; 24-mating table; 25-mating electric cylinder; 26-mating cylinder; 27-extension electric cylinder; 28-anti-blocking drive motor; 29-rotating frame; 30-splicing part; 31-discharge part. Detailed implementation manners

[0021] In order to more clearly illustrate the specific implementation manners of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific implementation manners or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0022] Example: As Figures 1 to 7 shown, a feeding device for resin hose production includes a frame 1. A processing device 10 is provided at the bottom of one end of the frame 1. A maintenance mechanism is provided at one end of the top of the frame 1. The maintenance mechanism includes a first motor 2, a first lead screw 3, and a first slide 4 provided on the frame 1. The first motor 2 is used to drive the first lead screw 3. The first slide 4 is slidably installed on the frame 1, and the first lead screw 3 and the first slide 4 form a screw pair. The maintenance mechanism further includes a maintenance electric cylinder 5 provided on the first slide 4. A maintenance motor 6 is provided on the telescopic rod of the maintenance electric cylinder 5, and a cleaning part 7 is provided on the output shaft of the maintenance motor 6.

[0023] A transmission mechanism is rotatably installed on the frame 1. The transmission mechanism includes a turntable 16 rotatably installed on the frame 1, and two conveying shafts 21 are rotatably installed on the turntable 16. At one end of the frame 1, a transmission enclosing mechanism is provided for enclosing the conveying shafts 21 to form a transmission channel. The transmission enclosing mechanism includes two transmission enclosing cylinders 19, and a discharge part 31 is provided at one end of the transmission enclosing cylinder 19. An anti-blocking mechanism is provided at the discharge part 31.

[0024] A feeding cylinder 9 is provided on the frame 1. A docking part 12 is communicated with the feeding cylinder 9, and a docking electric cylinder 13 is provided on the frame 1. The docking electric cylinder 13 is used to control the movement of the docking part 12. The docking part 12 is communicated with the transmission enclosing cylinder 19 on the transmission enclosing mechanism for feeding. The transmission enclosing mechanism includes an enclosing electric cylinder 14 provided on the frame 1. An installation table 15 is provided on the telescopic rod of the enclosing electric cylinder 14. A second motor 18 and a second lead screw 17 are provided on the installation table 15. The second motor 18 is used to drive the second lead screw 17. The two transmission enclosing cylinders 19 are slidably arranged on the installation table 15, and the transmission enclosing cylinder 19 and the second lead screw 17 form a screw pair. A feeding port is provided at one end of the transmission enclosing cylinder 19. The docking part 12 is communicated with the feeding port for feeding. A splicing part 30 is provided at one end of the transmission enclosing cylinder 19, and a matching electric cylinder 25 is provided at one end of the frame 1. A matching cylinder 26 is provided on the telescopic rod of the matching electric cylinder 25. The two transmission enclosing cylinders 19 are docked, and the matching cylinder 26 cooperates with the splicing part 30.

[0025] The anti-blocking mechanism includes an anti-blocking driving motor 28 provided at one end of the frame 1. A belt structure is provided on the output shaft of the anti-blocking driving motor 28. An extending electric cylinder 27 is rotatably installed on the frame 1. The extending electric cylinder 27 is driven by the belt structure on the output shaft of the anti-blocking driving motor 28. A rotating frame 29 is provided on the telescopic rod of the extending electric cylinder 27, and the rotating frame 29 extends into the discharge part 31.

[0026] A turning motor 8 is provided at the top of the frame 1. The turning motor 8 is used to drive the turntable 16. A driving motor 20 is provided on the turntable 16. A belt structure is provided on the output shaft of the driving motor 20, and a driving control electric cylinder 22 is rotatably installed on the turntable 16. Matching parts 23 are provided on the telescopic rods at both ends of the driving control electric cylinder 22. A matching table 24 is provided at the end of the conveying shaft 21. The matching table 24 cooperates with the matching parts 23 to achieve driving.

[0027] The working principle is as follows: Materials are put into the feeding cylinder 9. That is, the docking cylinder 13 is controlled to dock the docking part 12 with the feeding port on the transmission surrounding cylinder 19, and the materials enter the transmission surrounding cylinder 19 for transportation. By the operation of the driving motor 20, that is, driving the control cylinder 22 to rotate, the control cylinder 22 controls the mating parts 23 on both ends of the telescopic rods to cooperate with the mating table 24, realizing the driving of the conveying shaft 21. The conveying shaft 21 located inside the transmission surrounding cylinder 19 can convey the materials, and the materials fall into the processing equipment 10 at the discharging part 31 for processing.

[0028] Specifically, when the materials fall, by the operation of the anti-blocking driving motor 28, the extension cylinder 27 rotates, that is, the rotating frame 29 rotates inside the discharging part 31, which can stir the materials to prevent blockage.

[0029] When the conveying shaft 21 and the inner side of the transmission surrounding cylinder 19 need to be maintained, or when a blockage occurs, the motor two 18 can be operated, and the lead screw two 17 rotates, that is, the transmission surrounding cylinder 19 moves separately, so that the conveying shaft 21 inside the transmission surrounding cylinder 19 is exposed. Then, the height of the mounting table 15 is controlled by the surrounding cylinder 14, so that the transmission surrounding cylinder 19 moves above the conveying shaft 21. By the operation of the rotation motor 8, the turntable 16 rotates, that is, the two conveying shafts 21 are swapped. The non-working conveying shaft 21 can be maintained externally, that is, the sundries attached to the surface are cleaned. Specifically, by the operation of the motor one 2, the lead screw one 3 rotates, the sliding seat one 4 moves, and the maintenance cylinder 5 controls the position of the cleaning part 7. By the operation of the maintenance motor 6, the cleaning part 7 performs a cleaning process on the surface of the conveying shaft 21. The cooperation between the mating part 23 and the mating table 24 can be controlled by the driving control cylinder 22, so that the conveying shaft 21 to be cleaned and maintained rotates. The linear movement of the sliding seat one 4 combined with the rotation of the conveying shaft 21 realizes a spiral movement form, and the cleaning process can be carried out along the spiral path on the conveying shaft 21.

[0030] After swapping positions, the transmission surrounding cylinder 19 surrounds the conveying shaft 21 again, and the cooperation cylinder 25 is controlled to move the cooperation cylinder 26, that is, the cooperation cylinder 26 cooperates with the splicing part 30 at the end of the transmission surrounding cylinder 19, and then the transmission operation can be carried out to ensure the continuity of feeding.

Claims

1. A feeding device for resin hose production, comprising a frame (1), and a processing device (10) is arranged at the bottom of one end of the frame (1), characterized in that: A maintenance mechanism is provided at one end of the top of the frame (1). A transmission mechanism is rotatably installed on the frame (1). The transmission mechanism includes a turntable (16) rotatably installed on the frame (1), and two conveying shafts (21) are rotatably installed on the turntable (16); a transmission surrounding mechanism is provided at one end of the frame (1) for surrounding the conveying shafts (21) to form a transmission channel; the transmission surrounding mechanism includes two transmission surrounding cylinders (19), and a discharge part (31) is provided at one end of the transmission surrounding cylinder (19); an anti-blocking mechanism is provided at the discharge part (31).

2. The feeding device for resin hose production according to claim 1, characterized in that: A feeding cylinder (9) is provided on the frame (1). A docking part (12) is communicated with the feeding cylinder (9), and a docking electric cylinder (13) is provided on the frame (1). The docking electric cylinder (13) is used to control the movement of the docking part (12). The docking part (12) is communicated with the transmission surrounding cylinder (19) on the transmission surrounding mechanism for feeding.

3. The feeding device for resin hose production according to claim 2, characterized in that: The transmission surrounding mechanism includes a surrounding electric cylinder (14) provided on the frame (1). An installation table (15) is provided on the telescopic rod of the surrounding electric cylinder (14). A second motor (18) and a second lead screw (17) are provided on the installation table (15). The second motor (18) is used to drive the second lead screw (17); the two transmission surrounding cylinders (19) are slidably arranged on the installation table (15), and the transmission surrounding cylinder (19) and the second lead screw (17) form a screw pair. A feeding port is provided at one end of the transmission surrounding cylinder (19), and the docking part (12) is communicated with the feeding port for feeding.

4. The feeding device for resin hose production according to claim 3, characterized in that: A splicing part (30) is provided at one end of the transmission surrounding cylinder (19), and a matching electric cylinder (25) is provided at one end of the frame (1). A matching cylinder (26) is provided on the telescopic rod of the matching electric cylinder (25). The two transmission surrounding cylinders (19) are docked, and the matching cylinder (26) cooperates with the splicing part (30).

5. The feeding device for resin hose production according to claim 1, wherein: The anti-blocking mechanism includes an anti-blocking driving motor (28) provided at one end of the frame (1). A belt structure is provided on the output shaft of the anti-blocking driving motor (28). An extension electric cylinder (27) is rotatably installed on the frame (1). The extension electric cylinder (27) is driven by the belt structure on the output shaft of the anti-blocking driving motor (28); a rotating frame (29) is provided on the telescopic rod of the extension electric cylinder (27), and the rotating frame (29) extends into the discharge part (31).

6. The feeding device for resin hose production according to claim 1, characterized in that: A turning motor (8) is provided at the top of the frame (1). The turning motor (8) is used to drive the turntable (16). A driving motor (20) is provided on the turntable (16). A belt structure is provided on the output shaft of the driving motor (20). A driving control electric cylinder (22) is rotatably installed on the turntable (16). Matching parts (23) are provided on the telescopic rods at both ends of the driving control electric cylinder (22). A matching table (24) is provided at the end of the conveying shaft (21). The matching table (24) cooperates with the matching parts (23) to achieve driving.

7. The feeding device for resin hose production according to claim 1, characterized in that: The maintenance mechanism includes a first motor (2), a first lead screw (3) and a first sliding seat (4) provided on the frame (1). The first motor (2) is used to drive the first lead screw (3). The first sliding seat (4) is slidably installed on the frame (1), and the first lead screw (3) and the first sliding seat (4) form a screw pair.

8. The feeding device for resin hose production according to claim 7, characterized in that: The maintenance mechanism further includes a maintenance electric cylinder (5) arranged on the first sliding seat (4). A maintenance motor (6) is arranged on the telescopic rod of the maintenance electric cylinder (5), and a cleaning part (7) is arranged on the output shaft of the maintenance motor (6).