Card punching machine chain transmission steel belt heat seal welding device

Through the design of the heat sealing and welding device for chain transmission of steel belt of the punch-in machine, the problem of welding width affected by electrodes when the nylon film is large is solved, and efficient cylindrical casing sealing and welding is achieved, reducing costs and raw material losses.

CN223290340UActive Publication Date: 2025-09-02BEIJING DONGHANG PRECISION MASCH MFG CO LTD
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Patent Information

Application Number
CN202422749089.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-02
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

In the prior art, when the nylon sheet film forming process is large, the welding width is affected by the electrode, resulting in low yield, needle hole material leakage and disinfection bag expansion, which increases cost and raw material loss.

Method used

The heat sealing and welding device of the steel belt chain drive is adopted, including connecting components, transmission components, sealing and welding components and driving components. The cylindrical casing is heat-closed and welded through the belt transmission and heating mechanism of the steel belt to adjust the distance and angle between the steel belt and the casing to ensure the sealing and welding effect.

Benefits of technology

When the nylon film is large, efficient welding sealing effect is achieved, avoiding needle hole material leakage and disinfection bag swelling, reducing cost and raw material loss, and not affecting the appearance of welding sealing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223290340U_ABST
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Abstract

The utility model relates to a card punching machine chain transmission steel belt heat seal welding device which comprises a connecting assembly, a transmission assembly, a seal welding assembly and a driving assembly, the seal welding assembly comprises a heating mechanism, a steel belt and a belt wheel, the steel belt is arranged on the belt wheel in a sleeved mode to form belt transmission, the heating mechanism is used for heating the steel belt, and the driving assembly is used for driving the steel belt to rotate. The connecting assembly is used for adjusting the distance and the angle between the steel belt and a cylindrical casing rolled by a flaky nylon casing, the driving assembly is used for driving the belt wheel to rotate through the transmission assembly, and the steel belt is used for carrying out heat seal welding on the cylindrical casing. By adopting the chain transmission steel belt heat seal welding device for the punch-card machine, the condition that the welding width is influenced by an electrode can be avoided, and a cylindrical casing can be well sealed and welded under the condition that the size of a nylon film is larger and the weight of a product is increased.
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Description

Technical Field

[0001] The utility model belongs to the field of food processing and packaging, and particularly relates to a heat sealing welding device for a chain transmission steel belt of a clipping machine. Background Art

[0002] Currently, most nylon sheet film forming processes in the food industry are sheet electrode heat sealing and welding. The welding width is affected by the electrode and is usually only one millimeter wide. When the nylon film size is large and the product weight increases, the thin welding position of this technology can no longer meet the requirements of a high yield rate. Pinhole leakage occurs in the formed cylindrical casing, and the bag bulges during disinfection, which greatly increases the cost and raw material loss. Widening the electrode will cause the welding position to melt and deform at high temperature, and the appearance will be distorted.

[0003] Therefore, a heat sealing device suitable for larger nylon membrane sizes is needed. Utility Model Content

[0004] In view of the defects in the prior art, the purpose of the utility model is to provide a clipping machine chain drive steel belt heat sealing welding device to heat seal products with larger nylon film sizes.

[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is: a clip machine chain drive steel belt heat sealing welding device, including: a connecting component, a transmission component, a sealing welding component and a driving component, the sealing welding component includes a heating mechanism, a steel belt and a pulley, the steel belt is sleeved on the pulley to form a belt transmission, the heating mechanism is used to heat the steel belt, the connecting component is used to adjust the distance and angle between the steel belt and the cylindrical casing rolled into a sheet nylon casing, the driving component is used to drive the pulley to rotate through the transmission component, and the steel belt is used to heat seal the cylindrical casing.

[0006] Furthermore, the sealing and welding assembly also includes a pulley cover, which is connected to the transmission assembly. The steel belt is exposed from the pulley cover. The heating mechanism is located between the steel belt and the pulley and is in contact with the steel belt.

[0007] Furthermore, the heating mechanism includes a heating block and a heating connection seat, the heating connection seat is connected to the transmission assembly, the heating block is connected to the heating connection seat, and is in contact with the steel strip.

[0008] Furthermore, the heating mechanism also includes an isolation cover and a heating baffle, the isolation cover is connected to the side wall of the heating block close to the pulley cover, the heating block is located in the isolation cover, and the heating baffle is connected to the side of the isolation cover away from the pulley cover.

[0009] Furthermore, the transmission assembly includes a connecting vertical plate, a transmission shaft, a transmission bearing and a transmission bearing seat. The transmission bearing seat is connected to the connecting vertical plate. The transmission shaft passes through the transmission bearing seat and is rotatably connected to the transmission bearing seat through the transmission bearing. One end of the transmission shaft is plugged into the pulley, and the end away from the pulley is transmission-connected to the drive assembly.

[0010] Furthermore, the drive assembly includes a motor, a drive sprocket, a transmission sprocket and a chain. The drive sprocket is connected to the output end of the motor. The transmission sprocket and the drive sprocket are both engaged with the chain to form a chain drive. The end of the transmission shaft away from the pulley is connected to the transmission sprocket.

[0011] Furthermore, the transmission shaft and the transmission sprocket are connected in a limiting manner via a spacer ring.

[0012] Furthermore, the connecting assembly includes a top plate, a connecting block, a screw rod, a slider, a rotating block and a cylinder. The top plate is connected to other components. There are two connecting blocks, and the two connecting blocks are connected to opposite sides of the top plate. The screw rod passes through the slider and is threaded with the slider, and its two ends are respectively rotatably connected to the two connecting blocks. The rotating block is rotatably connected to the end of the slider away from the top plate. The transmission assembly, the sealing assembly and the drive assembly are all connected to the rotating block. The cylinder is used to drive the rotating block to rotate relative to the slider.

[0013] Furthermore, a guide rail is provided between the two connecting blocks. The guide rail passes through the slider and has two ends respectively connected to the two connecting blocks, so as to provide guidance for the transmission between the screw rod and the slider.

[0014] Furthermore, there are two guide rails, and the two guide rails are located on both sides of the screw rod.

[0015] The effect of the utility model is that: by heat-sealing the cylindrical casing in the form of a steel belt, the situation where the welding width is affected by the electrode can be avoided. When the nylon film size is large and the product weight is increased, the cylindrical casing can also be sealed well without pinhole leakage and sterilization bag bulging, thereby reducing costs and raw material losses and not affecting the appearance of the seal. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural diagram of a heat sealing welding device for a chain-driven steel belt of a clipping machine;

[0017] Figure 2 yes Figure 1 Schematic diagram of the explosion structure;

[0018] Figure 3 yes Figure 1Schematic diagram of the exploded structure of the connecting component;

[0019] Figure 4 yes Figure 1 Schematic diagram of the exploded structure of the transmission assembly;

[0020] Figure 5 yes Figure 1 Schematic diagram of the explosion structure of the middle sealing welding component;

[0021] Figure 6 yes Figure 1 Schematic diagram of the exploded structure of the mid-drive assembly;

[0022] Figure 7 This is a schematic diagram of the product structure of cylindrical casing welding;

[0023] Description of reference numerals:

[0024] 1. Connecting assembly; 2. Transmission assembly; 3. Sealing assembly; 4. Drive assembly; 11. Top plate; 12. Connecting block; 13. Guide rail; 14. Screw rod; 15. Slider; 16. Rotating block; 17. Cylinder; 18. Knob; 19. Cylinder fixing plate; 21. Connecting vertical plate; 22. Transmission shaft; 23. Transmission bearing; 24. Transmission bearing seat; 31. Steel belt; 32. Pulley; 33. Pulley cover; 34. Heating block; 35. Heating connecting seat; 36. Isolation cover; 37. Heating baffle; 41. Motor; 42. Drive sprocket; 43. Transmission sprocket; 44. Chain; 45. Spacer ring; 46. Motor connecting seat; 47. Chain cover; 102. Sealing top plate; 104. Copper sleeve; 107. Fisheye bearing; 108. Tightening nut; 109. Baffle; 151. Rotating shaft; 161. Inner sleeve. DETAILED DESCRIPTION

[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0026] like Figure 1-7 As shown, the utility model proposes a clipping machine chain drive steel belt heat sealing welding device including a connecting component 1, a transmission component 2, a sealing welding component 3 and a driving component 4. The sealing welding component 3 includes a heating mechanism, a steel belt 31 and a pulley 32. The steel belt 31 is sleeved on the pulley 32 to form a belt transmission. The heating mechanism is used to heat the steel belt 31. The connecting component 1 is used to adjust the distance and angle between the steel belt 31 and the cylindrical casing rolled into a sheet nylon casing. The driving component 4 is used to drive the pulley 32 to rotate through the transmission component 2. The steel belt 31 is used to heat seal the cylindrical casing.

[0027] It can be understood that the heating mechanism first heats the steel belt 31 to a predetermined temperature. When the sheet nylon casing is rolled into a cylindrical casing, it is transmitted to the clipping machine chain drive steel belt heat sealing device. The position of the clipping machine chain drive steel belt heat sealing device is fine-tuned by the connecting component 1, so that the steel belt 31 is attached to the position where the cylindrical casing needs to be sealed, and the driving component 4 drives the pulley 32 to rotate through the transmission component 2, thereby driving the steel belt 31 to move along with the cylindrical casing transmission, thereby continuously heat sealing the cylindrical casing.

[0028] It can be understood that by heat-sealing the steel strip 31 , a better sealing effect can be achieved even when the nylon film size is large, compared with the traditional situation where the welding width is affected by the electrode.

[0029] It should be noted that the moving speed of the steel belt 31 is consistent with the transmission speed of the tubular casing, so as to avoid the tubular casing being involved in the heat sealing process.

[0030] Furthermore, the sealing welding assembly also includes a pulley cover 33 , which is connected to the transmission assembly 1 , and the steel belt 31 is exposed outside the pulley cover 33 . The heating mechanism is located between the steel belt 31 and the pulley 32 and is in contact with the steel belt 31 .

[0031] In this embodiment, the pulley cover 33 has at least two side openings, and the steel belt 31 is exposed from one side of the opening, thereby contacting with the tubular casing to achieve heat sealing. The transmission component 2 enters the pulley cover 33 from the other side and is connected to the pulley 32 for transmission, thereby driving the pulley 32 to rotate, that is, driving the steel belt 31 on the pulley 32 to move.

[0032] In this embodiment, there are two pulleys 32, and a belt drive is formed between the two pulleys 32 and the steel belt 31, thereby driving the steel belt 31. In some embodiments, the number of pulleys 32 can be any number, as long as the pulleys 32 can drive the steel belt 31 to move, and the movement speed is consistent with the conveying speed of the tubular casing.

[0033] Furthermore, the heating mechanism includes a heating block 34 and a heating connection seat 35 . The heating connection seat 35 is connected to the transmission assembly 2 . The heating block 34 is connected to the heating connection seat 35 and contacts the steel belt 31 .

[0034] Furthermore, the heating mechanism also includes an isolation cover 36 and a heating baffle 37. The isolation cover 36 is connected to the side wall of the heating block 34 close to the pulley cover 33. The heating block 34 is located in the isolation cover 36. The heating baffle 37 is connected to the side of the isolation cover 36 away from the pulley cover 33.

[0035] It can be understood that the heating connecting seat 35 plays the role of fixed support for the heating block 34, and the isolation cover 36 and the heating baffle 37 are used to prevent the heat of the heating block 34 from spreading to places other than the steel belt 31, such as preventing the heating block 34 from heating other components such as the pulley cover 33 and the pulley 32.

[0036] It is understandable that the isolation cover 36 can be of any structure and material, as long as it can prevent the heating block 34 from heating components other than the steel strip 31 .

[0037] In this embodiment, the isolation cover 36 and the heating baffle 37 are respectively connected to opposite sides of the heating block 34 and then assembled onto the heating connection base 35 .

[0038] Furthermore, the transmission assembly 2 includes a connecting vertical plate 21, a transmission shaft 22, a transmission bearing 23 and a transmission bearing seat 24. The transmission bearing seat 24 is connected to the connecting vertical plate 21. The transmission shaft 22 passes through the transmission bearing seat 24 and is rotatably connected to the transmission bearing seat 24 through the transmission bearing 23. One end of the transmission shaft 22 is plugged into the pulley 32, and the end away from the pulley 32 is transmission-connected to the drive assembly 4.

[0039] It can be understood that the connecting plate 21 is located between the sealing assembly 3 and the driving assembly 4, and the driving assembly 4 drives the transmission shaft 22 to rotate, thereby driving the pulley 32 to rotate, and then the belt drive is used to realize the movement of the steel belt 31.

[0040] In this embodiment, the pulley cover 33 is connected to the connecting vertical plate 21 of the transmission assembly 2 .

[0041] Furthermore, the drive assembly 4 includes a motor 41, a drive sprocket 42, a transmission sprocket 43 and a chain 44. The drive sprocket 42 is connected to the output end of the motor 41. The transmission sprocket 43 and the drive sprocket 42 are both engaged with the chain 44 to form a chain drive. The end of the drive shaft 22 away from the pulley 32 is connected to the transmission sprocket 43.

[0042] It can be understood that the motor 41 provides power to drive the drive sprocket 42 to rotate, and uses the chain 44 to drive the transmission sprocket 43 to rotate. The transmission sprocket 43 drives the transmission shaft 22 to rotate, thereby driving the pulley 32 to rotate, achieving the effect of driving the steel belt 31 to move.

[0043] In this embodiment, the number of the transmission shaft 22 and the driving sprocket 42 is the same as that of the pulley 32, that is, two. The two transmission sprockets 43 and the one driving sprocket 42 are distributed in a triangle to support the chain and are respectively engaged with the chain 44 to form a chain drive.

[0044] Furthermore, the transmission shaft 22 and the transmission sprocket 43 are connected in a limiting manner via a spacer ring 45 .

[0045] Furthermore, the driving assembly 4 also includes a motor connecting seat 45 , and the motor 41 is connected to the motor connecting seat 45 .

[0046] It is understandable that the motor connection seat 46 can be set at any place as long as it can fix the motor 41 so that the motor 41 can drive the driving sprocket 42 to rotate.

[0047] Furthermore, the driving assembly 4 further includes a chain cover 47 , which is disposed on the periphery of the chain 44 .

[0048] Furthermore, the connecting assembly 1 includes a top plate 11, a connecting block 12, a screw rod 14, a slider 15, a rotating block 16 and a cylinder 17. The top plate 11 is connected to other components. There are two connecting blocks 12. The two connecting blocks 12 are connected to opposite sides of the top plate 11. The screw rod 14 passes through the slider 15 and is threaded with the slider 15, and the two ends are respectively rotatably connected to the two connecting blocks 12. The rotating block 16 is rotatably connected to the end of the slider 15 away from the top plate 11. The transmission assembly 2, the sealing assembly 3 and the drive assembly 4 are all connected to the rotating block 16. The cylinder 17 is used to drive the rotating block 16 to rotate relative to the slider 15.

[0049] It can be understood that the rotation of the screw 14 drives the slider 15 to move via a threaded transmission, which in turn drives the rotating block 16 below the slider 15 to move, ultimately driving the transmission assembly 2, the sealing assembly 3, and the drive assembly 4 to move along the axis of the screw 14, thereby adjusting the distance between the steel band 31 and the tubular casing. The cylinder 17 drives the rotating block 16 to rotate relative to the slider 15, thereby driving the transmission assembly 2, the sealing assembly 3, and the drive assembly 4 to rotate together, thereby adjusting the angle between the steel band 31 and the tubular casing.

[0050] Furthermore, a guide rail 13 is provided between the two connecting blocks 12 . The guide rail 13 passes through the slider 15 and has two ends connected to the two connecting blocks 12 respectively, so as to provide guidance for the transmission between the screw rod 14 and the slider 15 .

[0051] In this embodiment, there are two guide rails 13 , and the two guide rails 13 are located on both sides of the screw rod 14 .

[0052] Furthermore, one end of the screw rod 14 passes through the connecting block 12 and is connected to a knob 18 .

[0053] It can be understood that by applying a rotational force to the knob 18 , the screw rod 14 can be driven to rotate.

[0054] In this embodiment, the knob 18 is connected to the screw rod via the nut 108 .

[0055] In this embodiment, both ends of the screw rod 14 are rotatably connected to the connecting block 12 via copper sleeves 104 .

[0056] In this embodiment, the two connection blocks 12 are connected to the top plate 11 by sealing the top plate 102 .

[0057] In this embodiment, a first rotating hole is provided on the rotating block 16, and an inner sleeve 161 is provided in the first rotating hole. A rotating groove is provided at one end of the slider 15 close to the rotating block 16, and a second rotating hole is provided on the inner wall of the rotating groove. A rotating shaft 151 is inserted into the second rotating hole, and the rotating shaft 151 rotates in conjunction with the inner sleeve 161 to realize the rotating connection between the rotating block 16 and the slider 15.

[0058] Furthermore, the connecting assembly 1 further includes a cylinder fixing plate 19 , the cylinder fixing plate 19 is connected to the slider 15 , and the cylinder 17 is connected to the cylinder fixing plate 19 .

[0059] In this embodiment, the cylinder fixing plate 19 is connected to the slider 15 through the baffle 109 .

[0060] It can be understood that after the cylinder 17 is connected to the cylinder fixing plate 19, its output end can be connected to any one or more of the turn block 16, the transmission assembly 2, the sealing assembly 3 and the drive assembly 4 to form a transmission, so that the cylinder 17 can drive the turn block 16, the transmission assembly 2, the sealing assembly 3 and the drive assembly 4 to rotate relative to the slider 15, that is, it can adjust the angle between the steel belt 31 and the cylindrical casing.

[0061] In this embodiment, the output end of the cylinder 17 is connected to the drive assembly 4 through a fisheye bearing 107 .

[0062] The working principle of the present invention is as follows: first, the steel belt 31 is heated by the heating block 34 so that the steel belt 31 reaches a temperature that can be heat-sealed and welded. When the tubular casing is transported to the welding device by other transport mechanisms, the distance and angle between the steel belt 31 and the tubular casing are adjusted by twisting the knob 18 and controlling the air cylinder 17 until the steel belt 31 and the tubular casing are parallel and fit together. At this time, the steel belt 31 heat-seals the gap on the tubular casing. At the same time, the motor 41 drives the driving sprocket 42 to rotate, and drives the transmission sprocket 43 to rotate through the chain 44, thereby driving the transmission shaft 22 to rotate, and the transmission shaft 22 drives the pulley 32 to rotate, and finally achieves the effect that the pulley 32 drives the steel belt 31 to move along with the transmission of the tubular casing, completing the continuous heat-sealing and welding of the tubular casing.

[0063] It can be seen from the above embodiments that the utility model can avoid the situation where the welding width is affected by the electrode by heat-sealing the cylindrical casing in the form of a steel belt. When the nylon film size is large and the product weight is increased, the cylindrical casing can also be well sealed without pinhole leakage or bulging of the bag during disinfection, thereby reducing costs and raw material losses and not affecting the appearance of the seal.

[0064] The present invention is not limited to the embodiments described in the specific implementation manner. Those skilled in the art may derive other implementation manners based on the technical solution of the present invention, which also fall within the scope of technical innovation of the present invention.

Claims

1. A heat sealing welding device for a chain drive steel belt of a clipping machine, characterized in that: include: A connecting assembly, a transmission assembly, a sealing assembly and a driving assembly. The sealing assembly includes a heating mechanism, a steel belt and a pulley. The steel belt is sleeved on the pulley to form a belt transmission. The heating mechanism is used to heat the steel belt. The connecting assembly is used to adjust the distance and angle between the steel belt and the cylindrical casing rolled into a sheet nylon casing. The driving assembly is used to drive the pulley to rotate through the transmission assembly. The steel belt is used to heat-seal the cylindrical casing.

2. A heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 1, characterized in that: The sealing welding assembly further includes a pulley cover connected to the transmission assembly, the steel belt is exposed from the pulley cover, and the heating mechanism is located between the steel belt and the pulley and in contact with the steel belt.

3. A heat sealing welding device for a chain drive steel belt of a clipping machine as claimed in claim 2, characterized in that: The heating mechanism includes a heating block and a heating connection seat, the heating connection seat is connected to the transmission component, the heating block is connected to the heating connection seat and is in contact with the steel strip.

4. A heat sealing welding device for a chain drive steel belt of a clipping machine as claimed in claim 3, characterized in that: The heating mechanism also includes an isolation cover and a heating baffle, the isolation cover is connected to the side wall of the heating block close to the pulley cover, the heating block is located in the isolation cover, and the heating baffle is connected to the side of the isolation cover away from the pulley cover.

5. The heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 1, characterized in that: The transmission assembly includes a connecting vertical plate, a transmission shaft, a transmission bearing and a transmission bearing seat. The transmission bearing seat is connected to the connecting vertical plate. The transmission shaft passes through the transmission bearing seat and is rotatably connected to the transmission bearing seat through the transmission bearing. One end of the transmission shaft is plugged into the pulley, and the end away from the pulley is transmission-connected to the drive assembly.

6. A heat sealing welding device for a chain drive steel belt of a clipping machine as claimed in claim 5, characterized in that: The driving assembly includes a motor, a driving sprocket, a transmission sprocket and a chain. The driving sprocket is connected to the output end of the motor. The transmission sprocket and the driving sprocket are both engaged with the chain to form a chain drive. The end of the transmission shaft away from the pulley is connected to the transmission sprocket.

7. A heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 6, characterized in that: The transmission shaft and the transmission sprocket are connected in a limiting manner via a spacer ring.

8. The heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 1, characterized in that: The connecting assembly includes a top plate, a connecting block, a screw rod, a slider, a rotating block and a cylinder. The top plate is connected to other components. There are two connecting blocks, and the two connecting blocks are connected to opposite sides of the top plate. The screw rod passes through the slider and is threaded with the slider, and its two ends are respectively rotatably connected to the two connecting blocks. The rotating block is rotatably connected to the end of the slider away from the top plate. The transmission assembly, the sealing assembly and the driving assembly are all connected to the rotating block. The cylinder is used to drive the rotating block to rotate relative to the slider.

9. A heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 8, characterized in that: A guide rail is provided between the two connecting blocks. The guide rail passes through the slider and has two ends respectively connected to the two connecting blocks, so as to provide guidance for the transmission between the screw rod and the slider.

10. A heat sealing welding device for a chain drive steel belt of a clipping machine according to claim 9, characterized in that: There are two guide rails, and the two guide rails are located on both sides of the screw rod.