Sliding base for ground source heat pump pipe automatic packaging device

By designing a sliding base for an automatic packaging device for ground source heat pump pipes, the device utilizes the tilting and lifting power of components to achieve automatic alignment and stacking of pipes, solving the problem of low efficiency in traditional manual alignment and stacking, and improving production efficiency and quality.

CN223751215UActive Publication Date: 2026-01-02SICHUAN CHUANJIE BUILDING MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202520204723.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-02
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

In the process of packaging pipes, the traditional method relies on manual alignment and stacking, which results in high labor consumption and reduced production efficiency.

Method used

An automatic packaging device for ground source heat pump pipes is adopted, which uses a sliding base, a base plate, a protective side plate, a central shaft, a support base, an extension rod, a lifting shaft, a transmission rod and other components to achieve automatic alignment and stacking of pipes through tilting and lifting power components, reducing manual operation.

Benefits of technology

It enables automatic alignment and stacking of pipes, saving manpower, improving production efficiency, reducing friction and rolling risks, and ensuring packaging quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pipeline packaging, and discloses a sliding base for an automatic packaging device for ground source heat pump pipes. According to the device, the placing bottom plate and the protective side plates connected with the side surfaces of the placing bottom plate are used for placing pipes together. A bearing assembly is formed by a middle shaft and a supporting base which are connected to the bottom surface of the containing bottom plate, and an extension rod, a lifting shaft and a transmission rod which are connected to the side surface of the containing bottom plate serve as transmission assemblies and are used for transmitting lifting power generated by lifting power assemblies such as a traction sleeve, a threaded shaft, a lifting servo motor and a lifting device shell to the containing bottom plate. When the pipe is kept inclined, the aligning plate connected with the connecting U-shaped frame and the connecting shaft is used as an aligning part, the gravity generated by inclination is utilized, so that the pipe placed in the pipe slides and is aligned after being in contact with the aligning plate, and the production efficiency of the link is greatly improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of pipeline packaging, in particular to a sliding base for a ground source heat pump pipe automatic packaging device. BACKGROUND

[0002] The pipe automatic packaging device is a device for automatically packaging pipes, which can improve packaging efficiency, reduce labor cost, and ensure packaging quality. It generally includes counting and feeding, alignment and stacking, bundling, bagging and sealing, conveying and unloading, etc.

[0003] A sliding base for a ground source heat pump pipe automatic packaging device is disclosed in publication No. CN208412570U, which includes a body, a groove is opened at the top of the body, three of the four sides of the groove are embedded in the body, and one side is connected to the side of the body and forms an entrance; two sides beside the entrance in the groove are each provided with a sliding rail, a sliding block is arranged in the groove, and the contact between the sliding block and the sliding rail is provided with a pattern matching the sliding rail to enable the sliding block to move along the sliding rail of the groove. The sliding base for a ground source heat pump pipe automatic packaging device is convenient to use, the floor plate is pushed by the cylinder, moves outward, and workers can easily place multiple pipes in the four bottom centering shafts, package them together, and also weld them, greatly reducing labor costs, ensuring the appearance of the package, and improving work efficiency.

[0004] However, in actual use, it is found that: before packaging, in order to facilitate packaging, the pipes need to be aligned and stacked, which is usually done on the base. However, in the process of alignment and stacking, the traditional method is still manual, and then it is realized by cooperating with the packaging machine. Although automation is realized, this step still relies on manual work, so the consumption of manpower is still huge. For production, this method will reduce the continuous working ability of workers and greatly reduce the production efficiency. Therefore, how to replace manual work with mechanical devices in this step. INVENTION CONTENTS

[0005] The purpose of the present application is to solve the problem of replacing manual work with mechanical devices to realize alignment and stacking, and to provide a sliding base for a ground source heat pump pipe automatic packaging device.

[0006] The technical solution adopted in this application is as follows: a sliding base for an automatic packaging device for ground source heat pump pipes, wherein multiple protective side plates are fixedly connected to the side surface of the placement base plate, a central shaft is inserted into one end of the placement base plate relative to the protective side plates, multiple support bases are inserted into the side surface of the central shaft, multiple extension rods are fixedly connected to the side surface of the placement base plate, a lifting shaft is inserted into the side surface of the extension rods, a transmission rod is connected to the side surface of the lifting shaft, a traction sleeve is fixedly connected to one end of the transmission rod relative to the lifting shaft, a threaded shaft is inserted into the side surface of the traction sleeve, a lifting servo motor is connected to the side surface of the threaded shaft, a lifting device housing is connected to the side surface of the lifting servo motor, a connecting U-shaped frame is fixedly connected to one end of the placement base plate relative to the protective side plates, a connecting shaft is inserted into one end of the connecting U-shaped frame relative to the placement base plate, and an alignment plate is inserted into the side surface of the connecting shaft.

[0007] By employing the above technical solution, the operator places the pipes to be aligned and stacked on the base plate and protective side plates. The base plate, supported by a central shaft and a base, can be tilted at a certain angle. An extension rod, lifting shaft, and transmission rod are used as transmission components to transfer the lifting power generated by the traction sleeve, threaded shaft, lifting servo motor, and lifting device housing to the base plate. While the base plate is tilted, an alignment plate connected by a U-shaped frame and a connecting shaft acts as an alignment component. The gravity generated by the tilt causes the internally placed pipes to slide, and the alignment plate aligns the pipe ends. After alignment, the lifting power component returns the base plate to a horizontal position. Using this component, operators can align multiple pipes, then stack them flat for bundling. This method eliminates the need for manual searching and alignment in traditional methods, greatly saving manpower and significantly improving production efficiency in this stage.

[0008] The base plate serves as the placement surface for the pipes. It is mainly made of metal to reduce friction between the pipes and the base plate. Secondly, protective side plates are used as protective components to prevent the pipes from rolling off the base plate.

[0009] The central shaft and support base, as supporting components, are mainly placed at the center line of the placement base plate. This allows the entire placement base plate to tilt to a certain degree when one end is raised, causing the pipes placed on the base plate to slide towards one end. At this point, the pipes can be aligned using the connecting U-shaped frame and the alignment plate connected by the connecting shaft at the other end.

[0010] And the extension rod connected to one end of the alignment plate as an extension connecting component, the lifting shaft connected to it can rotate relative to the extension rod, facilitating the lifting operation, and the transmission rod connected to the lifting shaft as a transmission component is used to connect with the traction sleeve, and the traction sleeve is lifted by interacting with the threaded shaft driven by the lifting servo motor. The lifting device shell gives the entire power component a relatively stable operating environment.

[0011] In a preferred embodiment, the side surface of the alignment plate is inserted with a plurality of connecting shafts, and the connecting shafts are rotatably inserted with the clamping strips on one side surface of the alignment plate.

[0012] By adopting the above technical scheme, the clamping strips inserted on the connecting shafts as clamping stable components can rotate relative to the connecting shafts. The clamping strips as clamping rods have a certain slot on one end, which is used to clamp another component.

[0013] In a preferred embodiment, the clamping strip is connected with a clamping bolt on one side surface of the connecting shaft, and the clamping strip is fixedly connected with a handle on one side surface of the connecting shaft.

[0014] By adopting the above technical scheme, the clamping between the slot on the clamping strip and the clamping bolt can be formed, which can keep the alignment plate stable after turning over. When alignment is needed, the alignment plate can bear the weight pressure of the pipe material sliding down. At the same time, after alignment or when the next operation is implemented, the handle can be used to remove the clamping between the clamping strip and the clamping bolt.

[0015] In a preferred embodiment, the side surface of the placement bottom plate is fixedly connected with a receiving transition plate.

[0016] By adopting the above technical scheme, the receiving transition plate is used as a transition component for placing the pipe material conveyed by the conveyor belt on the placement bottom plate.

[0017] In a preferred embodiment, the receiving transition plate is connected with a transmission belt on one side surface of the placement bottom plate.

[0018] By adopting the above technical scheme, the transmission belt is used as a transmission device for conveying the pipe material to the placement bottom plate.

[0019] In a preferred embodiment, the bottom surface of the transmission belt is fixedly connected with a base placement table.

[0020] By adopting the above technical scheme, the base placement table is used as a bearing component of the entire device.

[0021] In a preferred embodiment, the base placement table is connected with a storage box on one side surface of the transmission belt.

[0022] By adopting the technical scheme, the storage box is used as a component for storing the bundled pipe materials.

[0023] In a preferred embodiment, the inner side surface of the storage box is provided with a protective pad.

[0024] By adopting the technical scheme, the protective pad plays a protective role for the pipe materials, reducing the bruising of the pipe materials when falling into the storage box, and reducing the product value.

[0025] In summary, due to the adoption of the technical scheme, the application has the following beneficial effects:

[0026] In the application, the placement bottom plate is used as a placement plane for the pipe materials, which is mainly made of metal to reduce friction with the pipe materials, and the protective side plate is used as a protective component to prevent the pipe materials from rolling on the placement bottom plate.

[0027] The central shaft and the support base are used as support components and are mainly placed at the centerline position of the placement bottom plate, so that when one end is lifted upward, the placement bottom plate can have a certain inclination, and the pipe materials placed on the placement bottom plate will slide towards one end. At this time, the alignment plate connected by the other end of the U-shaped bracket and the connecting shaft can align the pipe materials.

[0028] The extension rod connected to one end of the alignment plate is used as an extension connection component, the lifting shaft connected thereto can rotate relative to the extension rod, facilitating lifting operation, and the transmission rod connected to the lifting shaft is used as a transmission component to connect with the traction sleeve. The traction sleeve is lifted by interacting with the threaded shaft driven by the lifting servo motor. The lifting device housing provides a relatively stable operating environment for the entire power component. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a three-dimensional structure schematic diagram of the overall device of the application;

[0030] Figure 2 It is a detail schematic diagram of the central shaft in the application;

[0031] Figure 3 It is a detail schematic diagram of the alignment plate in the application;

[0032] Figure 4 It is a detail schematic diagram of the protective pad in the application;

[0033] Figure 5 It is a cross-sectional schematic diagram of the lifting device housing in the application.

[0034] Marked in the figure: 1, the placement of the base plate; 2, the protective side plate; 3, the center axis; 4, the support base; 5, the extension rod; 6, the lifting shaft; 7, the transmission rod; 8, the traction sleeve; 9, the threaded shaft; 10, the lifting servo motor; 11, the lifting device housing; 12, the link U-shaped frame; 13, the connecting shaft; 14, the alignment plate; 15, the link shaft; 16, the lapping strip; 17, the lapping bolt; 18, the handle; 19, the receiving transition plate; 20, the transmission belt; 21, the base placement table; 22, the storage box; 23, the protective pad. DETAILED DESCRIPTION

[0035] To make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0036] Reference Figures 1-5 ,

[0037] Embodiment: A sliding base for a ground source heat pump pipe automatic packaging device, a plurality of protective side plates 2 are fixedly connected to the side surface of the placement base plate 1, a center axis 3 is inserted into the side surface of one end of the placement base plate 1 opposite the protective side plates 2, a plurality of support bases 4 are inserted into the side surface of the center axis 3, a plurality of extension rods 5 are fixedly connected to the side surface of the placement base plate 1, a lifting shaft 6 is inserted into the side surface of the extension rod 5, a transmission rod 7 is connected to the side surface of the lifting shaft 6, a traction sleeve 8 is fixedly connected to the side surface of one end of the transmission rod 7 opposite the lifting shaft 6, a threaded shaft 9 is inserted into the side surface of the traction sleeve 8, a lifting servo motor 10 is connected to the side surface of the threaded shaft 9, a lifting device housing 11 is connected to the side surface of the lifting servo motor 10, a link U-shaped frame 12 is fixedly connected to the side surface of one end of the placement base plate 1 opposite the protective side plates 2, a connecting shaft 13 is inserted into the side surface of one end of the link U-shaped frame 12 opposite the placement base plate 1, and an alignment plate 14 is inserted into the side surface of the connecting shaft 13.

[0038] The operator places the pipe to be aligned on the placing base plate 1 and the protective side plate 2. The load-bearing assembly composed of the middle shaft 3 and the support base 4 allows the placing base plate 1 to be flipped and tilted at a certain angle. The extension rod 5, the lifting shaft 6, and the transmission rod 7 are used as the transmission assembly to conduct the lifting power generated by the lifting power assembly, including the traction sleeve 8, the threaded shaft 9, the lifting servo motor 10, and the lifting device housing 11, to the placing base plate 1, so that the placing base plate 1 can be kept tilted. The alignment plate 14 connected to the extension rod 5 and the lifting shaft 6 is used as the alignment component. The gravity generated by the tilt allows the pipe placed inside to slide, and the alignment plate 14 is used to align the pipe opening. The lifting power assembly is used to restore the placing base plate 1 to the horizontal position after alignment. Through the above components, the operator can align multiple pipes and then stack them horizontally for the bundling process. This method eliminates the need for manual searching and alignment in the traditional way, greatly saving manpower and improving the production efficiency of this link.

[0039] The placing base plate 1 is used as the placing plane for the pipe, which is mainly made of metal to reduce friction with the pipe. The protective side plate 2 is used as the protective component to prevent the pipe from rolling off the placing base plate 1.

[0040] The middle shaft 3 and the support base 4 are used as the support component and are placed at the center line of the placing base plate 1. When one end is lifted, the placing base plate 1 can be tilted, and the pipe placed on the placing base plate 1 will slide towards one end. The alignment plate 14 connected to the extension rod 5 and the lifting shaft 6 can be used to align the pipe.

[0041] The extension rod 5 connected to one end of the alignment plate 14 is used as the extension component, and the lifting shaft 6 connected to the extension rod 5 can rotate relative to the extension rod 5 to facilitate lifting. The transmission rod 7 connected to the lifting shaft 6 is used as the transmission component to connect with the traction sleeve 8. The traction sleeve 8 is lifted and lowered by interacting with the threaded shaft 9 driven by the lifting servo motor 10. The lifting device housing 11 provides a stable operating environment for the power component.

[0042] The alignment plate 14 has multiple engagement shafts 15 inserted into the side surface, and the engagement shafts 15 have the lapping strips 16 inserted into the side surface of one end of the alignment plate 14. The engagement shafts 15 and the lapping strips 16 are used as the lapping components, and the lapping strips 16 can rotate relative to the engagement shafts 15. The lapping strips 16 are used as the lapping rods, and one end has a slot to connect with other components.

[0043] The end side surface of the lapping strip 16 relative to the joint shaft 15 is connected with a lapping bolt 17, and the end side surface of the lapping strip 16 relative to the joint shaft 15 is fixedly connected with a handle 18. The lapping between the slot on the lapping strip 16 and the lapping bolt 17 can keep the alignment plate 14 stable after turning over. When alignment is needed, the alignment plate 14 can bear the weight pressure of the pipe material sliding down. At the same time after alignment or when the next operation is implemented, the handle 18 can remove the lapping between the lapping strip 16 and the lapping bolt 17.

[0044] The side surface of the placement bottom plate 1 is fixedly connected with a receiving transition plate 19. The receiving transition plate 19 is used to place the pipe material conveyed by the conveyor belt on the transition component on the placement bottom plate 1.

[0045] The end side surface of the receiving transition plate 19 relative to the placement bottom plate 1 is connected with a transmission belt 20. The transmission belt 20 is used as a transmission device to convey the pipe material to the placement bottom plate 1.

[0046] The bottom surface of the transmission belt 20 is fixedly connected with a base placement table 21. The base placement table 21 is used as a bearing component of the entire device.

[0047] The end side surface of the base placement table 21 relative to the transmission belt 20 is connected with a storage box 22. The storage box 22 is used as a component to store the stacked pipe material after bundling.

[0048] The inner side surface of the storage box 22 is provided with a protective pad 23. The protective pad 23 plays a protective role for the pipe material, reduces the bruising of the pipe material when falling into the storage box 22, and reduces the product value.

[0049] The implementation principle of the sliding base of the ground source heat pump pipe automatic packaging device embodiment of the application is as follows: an operator places the pipes to be aligned and stacked on the placing base plate 1 and the protective side plate 2. The load-bearing assembly composed of the middle shaft 3 and the support base 4 enables the placing base plate 1 to be flipped and tilted at a certain angle. The extension rod 5, the lifting shaft 6, and the transmission rod 7 are used as the transmission assembly to conduct the lifting power generated by the power assembly, such as the traction sleeve 8, the threaded shaft 9, the lifting servo motor 10, and the lifting device housing 11, to the placing base plate 1, so that the placing base plate 1 is kept tilted. The alignment plate 14 connected to the connecting shaft 13 through the connecting U-shaped frame 12 is used as the alignment component. The gravity generated by the tilt enables the pipes placed inside to slide, and then the alignment plate 14 aligns the pipe openings. The lifting power assembly is used to restore the placing base plate 1 to the horizontal position after alignment. Through the above-mentioned components, the operator can align multiple pipes and then stack them horizontally to wait for the bundling process. This method eliminates the manual searching and aligning process in the traditional way, greatly saves manpower, and greatly improves the production efficiency of this link.

[0050] The placing base plate 1 is used as the placing plane of the pipes and is mainly made of metal to reduce friction with the pipes. The protective side plate 2 is used as the protective component to prevent the pipes from rolling off the placing base plate 1.

[0051] The middle shaft 3 and the support base 4 are used as the support component and are mainly placed at the centerline position of the placing base plate 1. In this way, when one end is lifted, the placing base plate 1 can be tilted at a certain angle, and the pipes placed on the placing base plate 1 will slide towards one end. At this time, the alignment plate 14 connected to the connecting shaft 13 through the connecting U-shaped frame 12 can align the pipes.

[0052] The extension rod 5 connected to one end of the alignment plate 14 is used as the extension connecting component. The lifting shaft 6 connected to the extension rod 5 can rotate relative to the extension rod 5 to facilitate lifting operation. The transmission rod 7 connected to the lifting shaft 6 is used as the transmission component to connect with the traction sleeve 8. The traction sleeve 8 is lifted and lowered through the interaction with the threaded shaft 9 driven by the lifting servo motor 10. The lifting device housing 11 provides a relatively stable operating environment for the entire power component.

[0053] The above embodiments are only used to illustrate the technical solutions of the application, but not to limit them. Although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can modify the technical solutions recorded in the foregoing embodiments or make equivalent replacements for some technical features without departing from the spirit and scope of the technical solutions of the embodiments of the application.

Claims

1. A sliding base for an automatic ground source heat pump pipe packaging device, comprising a placing base plate (1), characterized in that: The side surface of the placing bottom plate (1) is fixedly connected with a plurality of protective side plates (2), one end of the side surface of the placing bottom plate (1) is inserted with a middle shaft (3), the side surface of the middle shaft (3) is inserted with a plurality of supporting bases (4), the side surface of the placing bottom plate (1) is fixedly connected with a plurality of extension rods (5), the side surface of the extension rod (5) is inserted with a lifting shaft (6), the side surface of the lifting shaft (6) is connected with a transmission rod (7), one end of the side surface of the transmission rod (7) is fixedly connected with a traction sleeve (8) relative to the lifting shaft (6), the side surface of the traction sleeve (8) is inserted with a threaded shaft (9), the side surface of the threaded shaft (9) is connected with a lifting servo motor (10), the side surface of the lifting servo motor (10) is connected with a lifting device housing (11), one end of the side surface of the placing bottom plate (1) is fixedly connected with a connecting U-shaped frame (12) relative to the protective side plate (2), the connecting U-shaped frame (12) is inserted with a connecting shaft (13) relative to one end of the side surface of the placing bottom plate (1), and the side surface of the connecting shaft (13) is inserted with an alignment plate (14).

2. The sliding base for a ground-source heat pump pipe automatic packaging device according to claim 1, characterized in that: The side surface of the alignment plate (14) is inserted with a plurality of connecting shafts (15), and the connecting shaft (15) is rotatably inserted with a lap strip (16) relative to one end of the side surface of the alignment plate (14).

3. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 2, characterized in that: The lap strip (16) is connected with a lap bolt (17) relative to one end of the side surface of the connecting shaft (15), and the lap strip (16) is fixedly connected with a handle (18) relative to one end of the side surface of the connecting shaft (15).

4. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 1, characterized in that: The side surface of the placing bottom plate (1) is fixedly connected with a receiving transition plate (19).

5. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 4, characterized in that: One end of the side surface of the receiving transition plate (19) is connected with a transmission belt (20) relative to the placing bottom plate (1).

6. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 5, characterized in that: The bottom surface of the transmission belt (20) is fixedly connected with a base placing table (21).

7. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 6, characterized in that: One end of the side surface of the base placing table (21) is connected with a storage box (22) relative to the transmission belt (20).

8. The sliding base for a ground source heat pump pipe automatic packaging device according to claim 7, characterized in that: The inside surface of the storage box (22) is provided with a protective pad (23).

Citation Information

Patent Citations

  • Earth source heat pump tubular product sliding bottom for automatic packing device

    CN208412570U