Auxiliary conveying device of bottle-making machine

The bottle-making machine auxiliary transport device addresses low efficiency and high energy costs by using a combination of stretch rods, fixed heads, and positioning boards to stabilize and efficiently handle multiple workpieces, enhancing system performance.

CN223102038UActive Publication Date: 2025-07-15CANGZHOU XINGCHEN GLASS PROD
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Patent Information

Application Number
CN202422300766.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-15
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The existing bottle making machine auxiliary conveyor can only clamp one workpiece in a single time, resulting in low working efficiency and low cost-effective energy use, increasing production costs.

Method used

The combination design of telescopic rod, fixing head, telescopic cylinder, cylinder fixing parts, suction head, adsorption assembly connection port and positioning plate is adopted to achieve stable adsorption and transportation of multiple workpieces, and high-efficiency air flow transmission is achieved through pneumatic pipe connections. Combined with the structure of the calibration rod, fixing port, groove, calibration seat and positioning disk, it ensures accurate positioning and stable support.

Benefits of technology

It improves the stability and efficiency of material adsorption and transportation, reduces the impact of vibration and displacement, enhances structural rigidity and stability, simplifies component installation and maintenance, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223102038U_ABST
Patent Text Reader

Abstract

The utility model discloses a bottle-making machine auxiliary conveying device which comprises a conveying device body, a telescopic rod is arranged on the front side inside the conveying device body, a fixing head is arranged at the bottom of the telescopic rod, a telescopic air cylinder is arranged at the bottom of the fixing head, and an air cylinder fixing piece is arranged at the top of the telescopic air cylinder. Suction heads are arranged on the left side and the right side of the bottom of the telescopic air cylinder correspondingly, air cylinder connecting openings are formed in the side face of the telescopic air cylinder in an array mode, adsorption assembly connecting openings are formed in the side faces of the suction heads, and the conveying device body is connected with the air cylinder connecting openings and the adsorption assembly connecting openings through pneumatic pipes. According to the device, materials are allowed to be adsorbed and conveyed at different heights and positions, more stable and efficient material adsorption can be achieved through the two adsorption heads under control of the telescopic air cylinder, the problem of uneven adsorption possibly caused by the single-side adsorption head is solved, and meanwhile the conveying efficiency of the device is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field related to bottle making machines, and particularly relates to an auxiliary conveying device for bottle making machines. Background Technique

[0002] An auxiliary conveying device for bottle making machines is a device used to convey materials, products or components from one production process or position to another. It is mainly used in industrial production lines to help improve production efficiency and automation level.

[0003] However, during the working process of the existing auxiliary conveying device for bottle making machines, the device can only clamp one workpiece at a time, which not only results in slow working efficiency of the machine, but also has a low energy - to - performance ratio in energy use, increasing production costs. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an auxiliary conveying device for bottle making machines to solve the problems in the above - mentioned background technique that during the working process of the existing auxiliary conveying device for bottle making machines, the device can only clamp one workpiece at a time, which not only results in slow working efficiency of the machine, but also has a low energy - to - performance ratio in energy use, increasing production costs.

[0005] To achieve the above purpose, the utility model provides the following technical solution: an auxiliary conveying device for bottle making machines, including a main body of the conveying device;

[0006] A connecting plate is arranged at the bottom position of the main body of the conveying device. A transmission cavity is arranged at the bottom position of the connecting plate. A base is arranged at the bottom position of the transmission cavity. The base is fixedly connected with an operating table. A first joint is arranged at the top position of the main body of the conveying device. A transmission line outer sleeve is arranged above the first joint. A second joint is arranged at the end position of the transmission line outer sleeve. The second joint is fixedly connected with the main body of the conveying device;

[0007] A telescopic rod is arranged at the front - side position inside the main body of the conveying device. A fixed head is arranged at the bottom position of the telescopic rod. A telescopic cylinder is arranged at the bottom position of the fixed head.

[0008] Preferably, a cylinder fixing part is arranged at the top position of the telescopic cylinder. The cylinder fixing part is fixedly connected with the fixed head. Suction heads are respectively arranged at the left and right sides at the bottom of the telescopic cylinder.

[0009] Preferably, cylinder connection ports are arranged in an array at the side position of the telescopic cylinder. An adsorption component connection port is arranged at the side position of the suction head. The main body of the conveying device is connected with the cylinder connection ports and the adsorption component connection ports through pneumatic pipes.

[0010] Preferably, two process rods are respectively arranged at the left and right positions at the bottom of the telescopic cylinder. A positioning plate is arranged at the bottom of the process rod. A suction head can be arranged at the bottom of the positioning plate. A reinforcing plate is arranged at the middle position of the positioning plate.

[0011] Preferably, a calibration rod can be arranged at the bottom of the positioning plate. A fixing port is arranged at the top of the calibration rod. A groove is arranged at the side position of the fixing port. The calibration rod is nested and connected with the positioning plate through the fixing port.

[0012] Preferably, a calibration seat is arranged at the bottom of the calibration rod. A fixing seat is arranged at the bottom of the calibration seat. A positioning disk is arranged at the bottom of the fixing seat. The positioning disk is made of rubber material.

[0013] Preferably, rotating shafts are respectively arranged on the left and right sides of the connecting plate. The connecting plate is rotationally connected with the transmission cavity and the main body of the conveying device through the rotating shafts. The auxiliary conveying device of the bottle making machine is powered by an external power supply.

[0014] Compared with the prior art, the utility model provides an auxiliary conveying device for a bottle making machine, which has the following beneficial effects:

[0015] 1. Through the settings of the telescopic rod, fixed head, telescopic cylinder, cylinder fixing part, fixed head, suction head, adsorption component connection port, pneumatic pipe connection and positioning plate, the combination of the telescopic rod and the telescopic cylinder allows the adsorption and conveying of materials at different heights and positions. Under the control of the telescopic cylinder, the two suction heads can achieve more stable and efficient material adsorption, reducing the uneven adsorption problem that may be caused by a single-sided suction head. By controlling the position of the positioning plate through the process rod, the material can be accurately positioned. The connection between the cylinder fixing part and the fixed head provides strong structural support, ensuring the stable operation of the telescopic cylinder and the suction head, reducing the influence of vibration and displacement on the equipment performance. The reinforcing plate arranged in the middle of the positioning plate increases the rigidity and stability of the overall structure, preventing the positioning plate from deforming during the working process. The pneumatic pipe connects the cylinder connection port and the adsorption component connection port, realizing the efficient air flow transmission of the pneumatic system, improving the response speed and stability of the pneumatic components, and thus improving the working efficiency of the entire conveying system.

[0016] 2. Through the settings of the calibration rod, fixed port, slot, calibration seat and positioning disk, the calibration rod is connected to the slot of the positioning plate through the fixed port, enabling accurate calibration and positioning. This structure provides a stable fixing method, ensuring the accuracy and repeatability of calibration. The combination of the calibration seat and the fixed seat provides a firm support, keeping the calibration rod stable during the calibration process. The positioning disk is made of rubber material to ensure the fixed position of the calibration seat. The design of the slot and the fixed port makes it convenient to install and disassemble the calibration rod. The nested connection method simplifies the installation process of the components, facilitating maintenance and adjustment. Brief Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of the present utility model.

[0018] Figure 2 It is a schematic structural diagram of the telescopic cylinder in the present utility model.

[0019] Figure 3 It is a schematic structural diagram of the device positioning in the present utility model.

[0020] Figure 4 It is a schematic structural diagram of the positioning disk in the present utility model.

[0021] Figure 5 It is a schematic structural diagram of the calibration rod in the present utility model.

[0022] In the figure: 1, transmission cavity; 2, first joint; 3, transmission line outer sheath; 4, rotating shaft; 5, connecting plate; 6, second joint; 7, telescopic rod; 8, fixed head; 9, pneumatic tube; 10, conveying device main body; 11, base; 12, telescopic cylinder; 13, positioning plate; 14, adsorption component connection port; 15, suction head; 16, reinforcing plate; 17, cylinder connection port; 18, cylinder fixing part; 19, process rod; 20, calibration rod; 21, calibration seat; 22, fixed seat; 23, positioning disk; 24, fixed port; 25, slot. Detailed Description of the Preferred Embodiment

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0024] The present utility model provides a Figures 1-5 shown bottle-making machine auxiliary conveying device, including a conveying device main body 10;

[0025] At the bottom position of the main body 10 of the conveying device, a connecting plate 5 is provided. At the bottom position of the connecting plate 5, a transmission cavity 1 is provided. At the bottom position of the transmission cavity 1, a base 11 is provided. The base 11 is fixedly connected to the operating table. At the top position of the main body 10 of the conveying device, a first connector 2 is provided. Above the first connector 2, a transmission line outer sleeve 3 is provided. At the end position of the transmission line outer sleeve 3, a second connector 6 is provided. The second connector 6 is fixedly connected to the main body 10 of the conveying device;

[0026] At the front side position inside the main body 10 of the conveying device, a telescopic rod 7 is provided. At the bottom position of the telescopic rod 7, a fixed head 8 is provided. At the bottom position of the fixed head 8, a telescopic cylinder 12 is provided.

[0027] At the top position of the telescopic cylinder 12, a cylinder fixing part 18 is provided. The cylinder fixing part 18 is fixedly connected to the fixed head 8. At the left and right sides of the bottom of the telescopic cylinder 12, suction heads 15 are respectively provided.

[0028] At the side position of the telescopic cylinder 12, cylinder connection ports 17 are arranged in an array. At the side position of the suction head 15, an adsorption component connection port 14 is provided. The main body 10 of the conveying device is connected to the cylinder connection ports 17 and the adsorption component connection port 14 through a pneumatic tube 9.

[0029] At the left and right sides of the bottom of the telescopic cylinder 12, two process rods 19 are respectively provided. At the bottom position of the process rod 19, a positioning plate 13 is provided. At the bottom position of the positioning plate 13, a suction head 15 can be provided. At the middle position of the positioning plate 13, a reinforcing plate 16 is provided.

[0030] At the bottom position of the positioning plate 13, a calibration rod 20 can be provided. At the top position of the calibration rod 20, a fixing port 24 is provided. At the side position of the fixing port 24, a groove 25 is provided. The calibration rod 20 is nestedly connected to the positioning plate 13 through the fixing port 24.

[0031] At the bottom position of the calibration rod 20, a calibration seat 21 is provided. At the bottom position of the calibration seat, a fixing seat 22 is provided. At the bottom position of the fixing seat 22, a positioning disk 23 is provided. The positioning disk 23 is made of rubber material.

[0032] On the left and right sides of the connecting plate 5, rotating shafts 4 are respectively provided. The connecting plate 5 is rotationally connected to the transmission cavity 1 and the main body 10 of the conveying device through the rotating shafts 4. The auxiliary conveying device of the bottle making machine is powered by an external power supply.

[0033] In this embodiment, the specific implementation steps of an auxiliary conveying device for a bottle-making machine are as follows: Check whether the pneumatic tube 9 is correctly connected to ensure the normal operation of pneumatic components such as the telescopic cylinder 12, the cylinder connection port 17, and the adsorption component connection port 14. Adjust the length of the telescopic rod 7 according to the production requirements to make the position of the fixed head 8 appropriate. Configure the telescopic cylinder 12 to ensure its normal operation under the support of the cylinder fixing member 18, and set the air pressure of the cylinder reasonably. Start the transmission cavity 1 to make the base 11 rotate through the rotating shaft 4 and the connecting plate 5, thereby driving the operation of the conveying device main body 10. Check the operation of the conveying device main body 10, confirm the normal connection of the transmission line outer sleeve 3 and the second joint 6, and ensure the smooth operation of the conveying line. Start the telescopic cylinder 12 to drive the telescopic movement of the telescopic rod 7 through the pneumatic system. The suction head 15 starts to work under the control of the telescopic cylinder. The suction head 15 adsorbs and conveys materials according to the control of the set pneumatic tube 9 system to ensure that the materials are correctly adsorbed and conveyed to the designated position. Use the process rod 19 and the positioning plate 13 to position the materials to ensure the stable position of the materials during the conveying process. Regularly check each component of the equipment to ensure the normal operation of all connections, transmissions, and pneumatic systems. Clean the suction head 15 and other components that come into contact with the materials to prevent the influence of material residues on the equipment. Conduct necessary lubrication and maintenance on the equipment to ensure its long-term stable operation.

[0034] As Figures 1-3 shown, a telescopic rod 7 is provided at the front side position inside the conveying device main body 10. A fixed head 8 is provided at the bottom position of the telescopic rod 7. A telescopic cylinder 12 is provided at the bottom position of the fixed head 8. A cylinder fixing member 18 is provided at the top position of the telescopic cylinder 12. The cylinder fixing member 18 is fixedly connected to the fixed head 8. Suction heads 15 are respectively provided at the left and right bottom positions of the telescopic cylinder 12. Cylinder connection ports 17 are arranged in an array at the side position of the telescopic cylinder 12. An adsorption component connection port 14 is provided at the side position of the suction head 15. The conveying device main body 10 is connected to the cylinder connection port 17 and the adsorption component connection port 14 through a pneumatic tube 9. Two process rods 19 are respectively provided at the left and right bottom positions of the telescopic cylinder 12. A positioning plate 13 is provided at the bottom position of the process rod 19. The suction head 15 can be provided at the bottom position of the positioning plate 13. A reinforcing plate 16 is provided at the middle position of the positioning plate 13.

[0035] Preferably, the combination of the telescopic rod 7 and the telescopic cylinder 12 allows the adsorption and transportation of materials at different heights and positions. Under the control of the telescopic cylinder, the two suction heads can achieve more stable and efficient material adsorption, reducing the problem of uneven adsorption that may be caused by the single-sided suction head. The position of the positioning plate is controlled by the process rod, so the material can be accurately positioned. The connection between the cylinder fixing part 18 and the fixed head 8 provides strong structural support to ensure the stable operation of the telescopic cylinder and the suction head, and reduces the impact of vibration and displacement on the performance of the equipment. The reinforcement plate 16 arranged in the middle of the positioning plate 13 increases the rigidity and stability of the overall structure, so that the positioning plate will not be deformed during operation. The pneumatic tube 9 connects the cylinder connection port 17 and the adsorption component connection port 14, realizing efficient airflow transmission of the pneumatic system, improving the response speed and stability of the pneumatic components, and thus improving the working efficiency of the entire conveying system.

[0036] like Figures 3-5 As shown, a calibration rod 20 can be arranged at the bottom position of the positioning plate 13, a fixing opening 24 is arranged at the top position of the calibration rod 20, an embedding groove 25 is arranged at the side position of the fixing opening 24, the calibration rod 20 is nested and connected with the positioning plate 13 through the fixing opening 24, a calibration seat 21 is arranged at the bottom position of the calibration rod 20, a fixing seat 22 is arranged at the bottom position of the calibration seat, a positioning plate 23 is arranged at the bottom position of the fixing seat 22, and the positioning plate 23 is made of rubber material.

[0037] Preferably, the calibration rod 20 is connected to the embedding groove 25 of the positioning plate 13 through the fixing port 24, and can be accurately calibrated and positioned. This structure provides a stable fixing method to ensure the accuracy and repeatability of the calibration. The combination of the calibration seat 21 and the fixing seat 22 provides a firm support to keep the calibration rod 20 stable during the calibration process. The positioning plate 23 is made of rubber material to ensure that the position of the calibration seat 21 is fixed. The design of the embedding groove 25 and the fixing port 24 makes it easy to install and disassemble the calibration rod 20. The nested connection method simplifies the installation process of the components and facilitates maintenance and adjustment.

[0038] like Figures 1-5 As shown, the left and right sides of the connecting plate 5 are respectively provided with rotating shafts 4, the connecting plate 5 is rotatably connected with the transmission cavity 1 and the conveying device body 10 through the rotating shafts 4, and the bottle making machine auxiliary conveying device is powered by an external power supply.

[0039] Optionally, the rotating connection of the shaft 4 allows relative rotation between the connecting plate 5, the transmission chamber 1 and the conveying device body 10. This design allows each part to be adjusted and positioned relatively independently to adapt to different working requirements and environmental changes. The shaft 4 can effectively share the stress between the various components, reduce the mechanical burden and stress concentration caused by the fixed connection, and thus extend the service life of the equipment.

[0040] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An auxiliary conveying device for a bottle-making machine, comprising a conveying device main body (10); A connecting plate (5) is provided at the bottom of the conveying device main body (10), a transmission cavity (1) is provided at the bottom of the connecting plate (5), a base (11) is provided at the bottom of the transmission cavity (1), the base (11) is fixedly connected to the operating table, a first joint (2) is provided at the top of the conveying device main body (10), a transmission line outer sleeve (3) is provided above the first joint (2), a second joint (6) is provided at the end of the transmission line outer sleeve (3), and the second joint (6) is fixedly connected to the conveying device main body (10); It is characterized in that: A telescopic rod (7) is provided at the front side inside the conveying device main body (10), a fixed head (8) is provided at the bottom of the telescopic rod (7), and a telescopic cylinder (12) is provided at the bottom of the fixed head (8).

2. The auxiliary conveying device for a bottle-making machine according to claim 1, wherein: A cylinder fixing member (18) is provided at the top of the telescopic cylinder (12), the cylinder fixing member (18) is fixedly connected to the fixed head (8), and suction heads (15) are respectively provided at the left and right sides at the bottom of the telescopic cylinder (12).

3. The auxiliary conveying device for a bottle-making machine according to claim 2, characterized in that: Cylinder connection ports (17) are arranged in an array at the side of the telescopic cylinder (12), an adsorption component connection port (14) is provided at the side of the suction head (15), and the conveying device main body (10) is connected to the cylinder connection port (17) and the adsorption component connection port (14) through a pneumatic tube (9).

4. The auxiliary conveying device of a bottle-making machine according to claim 3, characterized in that: Two process rods (19) are respectively provided at the left and right sides at the bottom of the telescopic cylinder (12), a positioning plate (13) is provided at the bottom of the process rod (19), a suction head (15) can be provided at the bottom of the positioning plate (13), and a reinforcing plate (16) is provided at the middle position of the positioning plate (13).

5. The auxiliary conveying device for a bottle-making machine according to claim 4, characterized in that: A calibration rod (20) can be provided at the bottom of the positioning plate (13), a fixing port (24) is provided at the top of the calibration rod (20), a groove (25) is provided at the side of the fixing port (24), and the calibration rod (20) is nestedly connected to the positioning plate (13) through the fixing port (24).

6. The auxiliary conveying device of a bottle-making machine according to claim 5, characterized in that: A calibration seat (21) is provided at the bottom of the calibration rod (20), a fixing seat (22) is provided at the bottom of the calibration seat, and a positioning disk (23) is provided at the bottom of the fixing seat (22), and the positioning disk (23) is made of rubber material.

7. The auxiliary conveying device of a bottle-making machine according to claim 1, wherein: Rotating shafts (4) are respectively provided at the left and right sides of the connecting plate (5), the connecting plate (5) is rotatably connected to the transmission cavity (1) and the conveying device main body (10) through the rotating shafts (4), and the auxiliary conveying device for the bottle-making machine is powered by an external power supply.