Integrated pipe tool pulling and transporting device

The integrated pipe and tool transport device solves the problem of low efficiency in traditional pipe transportation, achieving efficient and safe transport of pipes and tools, and is suitable for various scenarios such as construction and decoration.

CN223590741UActive Publication Date: 2025-11-25SINOHYDRO BUREAU 6 CO LTD
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Patent Information

Application Number
CN202423117652.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-25
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Traditional pipe transportation methods are inefficient, difficult to secure, and cannot carry miscellaneous tools at the same time, increasing transportation complexity and cost, and lacking ease of operation and safety.

Method used

An integrated pipe and tool transport device was designed, including a thrust structure, a carriage structure, and a running structure. It adopts a modular design, integrating pipe transport and tool storage functions, and uses components such as anti-slip handle sleeves and rolling shafts to improve stability and safety.

Benefits of technology

It improved transportation efficiency, enabled the orderly storage of pipes and tools, reduced the risk of damage and loss, enhanced the convenience and safety of operation, and reduced safety hazards during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an integrated pipe tool pulling and transporting device which comprises a thrust structure, a carriage structure and a running structure, the thrust structure is arranged on one side of the end of the carriage structure, and the running structure is arranged at the bottom of the carriage structure; the carriage structure comprises a movable carriage, a fixed carriage, a movable carriage slot and a fixed plate, the movable carriage and the fixed carriage are movably connected through the movable carriage slot, and the fixed plate is arranged at the bottom of the fixed carriage. The device combines the pipe transportation function and the tool storage function, flexibility and high efficiency are achieved through modular design, and the device is suitable for various application scenes such as building, decoration and manufacturing; through the integrated design, the conveying functions of the pipes and the tools are integrated in one device, and the problem that multiple tools need to be carried in a traditional mode is solved. Meanwhile, due to the flexibility of the carriage structure, the device can easily cope with pipes and tools of different shapes and sizes, and the transportation efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to transportation tool technical field especially relates to a kind of integrated pipe tool pull device. BACKGROUND

[0002] In industrial production, construction and daily life, pipe and tool are indispensable materials and equipment. However, the traditional pipe transportation mode often has problems such as low efficiency, inconvenient management, etc. For example, pipe is usually transported by handcart or flat car, but these tools are difficult to effectively fix the pipe during transportation, which can easily cause the pipe to slip or damage. At the same time, for the scene that needs to carry scattered tools at the same time, the traditional transportation tool is difficult to meet the demand, and often needs additional tool box or bag to load, which increases the complexity and cost of transportation.

[0003] In addition, with the rapid development of industrialization and urbanization, the requirements for transportation tools are also getting higher and higher. Modern transportation tools not only need to have basic carrying and transportation functions, but also need to consider the convenience of operation, safety and environmental adaptability. Therefore, seeking an integrated pull device that can efficiently transport pipes and facilitate the management of pipe tools has become a problem to be solved. SUMMARY

[0004] To solve the above technical problems, the utility model provides an integrated pipe tool pull device, which comprises a thrust structure, a carriage structure and a running structure, the thrust structure is arranged on one side of the end of the carriage structure, and the running structure is arranged on the bottom of the carriage structure.

[0005] Further, the running structure comprises a rolling shaft, both ends of the rolling shaft are provided with wheels, the fixed plate is provided with a shaft hole, and the rolling shaft penetrates the shaft hole to make the running structure and the carriage structure movably connected.

[0006] Further, the thrust structure comprises a handle anti-skid sleeve and a force transmission crank, and the handle anti-skid sleeve is arranged at the end of the force transmission crank.

[0007] The utility model discloses a pipe material and tool integrated transport device, which combines the functions of pipe material transportation and tool storage, and realizes flexibility and high efficiency through modular design, and is suitable for various application scenarios such as construction, decoration and manufacturing. The utility model has the following advantages: improving transportation efficiency: through integrated design, the transportation functions of pipe material and tools are integrated in one device, avoiding the problem of needing to carry multiple tools in the traditional way. At the same time, the flexibility of the carriage structure enables the device to easily handle pipe materials and tools of different shapes and sizes, improving transportation efficiency. Facilitating tool management: the design of the mobile carriage enables the orderly storage and quick access of sporadic tools, avoiding the problem of tool scattering and loss. At the same time, the closed carriage space can also effectively prevent dust and debris from entering, keeping the tools clean and intact. Enhancing safety: the design of the handle anti-slip sleeve and rolling shaft takes into account safety factors, ensuring the stability and safety of the operator during use. In addition, the shock-absorbing effect of the wheels also reduces the safety hazards during transportation.

[0008] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 A structural diagram of an integrated pipe material tool transport device provided by the utility model.

[0010] Figure 2 An exploded view of the carriage structure of the integrated pipe material tool transport device provided by the utility model.

[0011] Figure 3 A structural diagram of the running structure of the integrated pipe material tool transport device provided by the utility model.

[0012] Among them, 1-push structure, 2-carriage structure, 3-running structure, 11-handle anti-slip sleeve, 12-force transmission crank, 21-carriage, 22-fixed carriage, 23-mobile carriage slot, 24-fixed plate, 31-rolling shaft, 32-wheel, 241-shaft hole. DETAILED DESCRIPTION

[0013] Referring to Figure 1 A structural diagram of an integrated pipe material tool transport device provided by the utility model.

[0014] Referring to Figure 2 An exploded view of the carriage structure of the integrated pipe material tool transport device provided by the utility model.

[0015] The utility model provides an integrated pipe tool pull and transport device, including push structure 1, carriage structure 2 and running structure 3, push structure 1 is arranged in the end side of carriage structure 2, and running structure 3 is arranged in the bottom of carriage structure 2, and carriage structure 2 includes mobile carriage 21, fixed carriage 22, mobile carriage slot 23 and fixed plate 24, mobile carriage 21 and fixed carriage 22 are movably connected through mobile carriage slot 23, that is, mobile carriage 21 can be easily installed or removed through mobile carriage slot 23 to adapt to different transport requirements, wherein when not installing mobile carriage 21, the device can be used to carry steel pipes and other strip-shaped objects, and when installing mobile carriage 21, the device can be used as a closed carriage to store scattered tools, effectively preventing scattering and loss and improving the efficiency of tool management, and fixed plate 24 is arranged in the bottom of fixed carriage 22.

[0016] participate Figure 3 The utility model provides an integrated pipe tool pull and transport device, including push structure 1, carriage structure 2 and running structure 3, push structure 1 is arranged in the end side of carriage structure 2, and running structure 3 is arranged in the bottom of carriage structure 2, and carriage structure 2 includes mobile carriage 21, fixed carriage 22, mobile carriage slot 23 and fixed plate 24, mobile carriage 21 and fixed carriage 22 are movably connected through mobile carriage slot 23, that is, mobile carriage 21 can be easily installed or removed through mobile carriage slot 23 to adapt to different transport requirements, wherein when not installing mobile carriage 21, the device can be used to carry steel pipes and other strip-shaped objects, and when installing mobile carriage 21, the device can be used as a closed carriage to store scattered tools, effectively preventing scattering and loss and improving the efficiency of tool management, and fixed plate 24 is arranged in the bottom of fixed carriage 22.

[0017] Further, the running structure 3 includes a rolling shaft 31, both ends of the rolling shaft 31 are provided with wheels 32, the fixed plate 24 is provided with an axle hole 241, and the rolling shaft 31 penetrates through the axle hole 241 so that the running structure 3 is movably connected with the carriage structure 2. The rolling shaft 31 and the wheels 32 are used in cooperation to ensure the smooth running of the device on various grounds and the stability and reliability of the whole system. The fixed plate 24 not only plays a role in fixing and connecting, but also transmits human power to the whole device through linkage with the rolling shaft 31, so as to realize smooth movement and steering control. This design makes the power transmission more direct and efficient, reduces the operation difficulty, and improves the user experience.

[0018] Further, the push structure 1 includes a handle anti-slip sleeve 11 and a force transmission crank 12, and the handle anti-slip sleeve 11 is arranged at the end of the force transmission crank 12. The handle anti-slip sleeve 11 has an anti-slip function to ensure the safety of operation, and the force transmission crank 12 can be designed into a shape easy to operate, such as an ergonomic shape of an adult, to reduce the power consumption in the operation process.

[0019] In the use process, the following steps can be used to complete the pull and transport work to realize the use of different functions. The steps include:

[0020] Step one, installation and debugging of the push structure

[0021] S1: first, install the handle anti-slip sleeve 11 at a proper position of the force transmission crank 12 to ensure that the handle anti-slip sleeve 11 is firmly and closely combined with the force transmission crank 12, so as to improve the stability and safety of holding.

[0022] S2: Check the connection between the force transmission crank 12 and the carriage structure 2 to ensure a firm connection to smoothly transmit force during pushing and pulling.

[0023] S3: After installation, perform a pushing and pulling test to check the anti-slip effect of the handle anti-slip sleeve 11 and the force transmission efficiency of the force transmission crank 12, ensuring that the pushing structure meets the use requirements.

[0024] Step two, assembly and adjustment of the carriage structure

[0025] S1: Place the fixed carriage 22 in the pre-set position to ensure stability and prevent shaking.

[0026] S2: Install the rolling shaft 31, ensuring smooth rotation to support and drive the movement of the entire carriage structure.

[0027] S3: Decide whether to install the moving carriage 21 based on the need. If you need to transport scattered tools, insert the moving carriage 21 into the moving carriage slot 23 and ensure it is tightly connected to the fixed carriage 22 to form a closed carriage. If you only need to transport steel pipes and other strip-shaped objects, you do not need to install the moving carriage 21.

[0028] S4: After installation, adjust the size and shape of the carriage structure according to actual needs to ensure that it can accommodate and securely fix the transported objects.

[0029] Step three, installation and inspection of the running structure

[0030] S1: Install the wheels 32 at both ends of the rolling shaft 31 to ensure stable installation and smooth rotation.

[0031] S2: Check the wheels 32 to ensure effective braking when needed to ensure safety during transportation.

[0032] S3: After installation, perform a rotation test on the wheels 32 to check for smoothness and observe for any abnormal noise or vibration.

[0033] Step four, overall debugging and testing

[0034] S1: After completing the installation and debugging of each component, perform overall debugging of the integrated pipe tool pulling and transporting device. Check the firmness and reliability of the connection between each component and whether each system can work cooperatively.

[0035] S2: Perform actual transportation testing to simulate the transportation process of objects of different weights and shapes, and observe the transportation efficiency and stability of the device. At the same time, pay attention to checking the contact between the wheels 32 and the ground to ensure stable driving on uneven roads.

[0036] S3: Based on the test results, make necessary adjustments and optimizations to the device to improve its performance and reliability.

[0037] The present application has not disclosed the common knowledge or conventional technical means in the technical field. The specification and examples are only considered as exemplary, and the true scope and spirit of the present application are indicated by the following claims.

[0038] It should be understood that the present application is not limited to the precise construction that has been described above and illustrated in the accompanying drawings, and that various modifications and changes can be made without departing from the scope thereof. The scope of the present application is limited only by the claims that follow.

Claims

1. An integrated pipe tool puller apparatus, comprising: The utility model relates to a kind of push-pull vehicle, including thrust structure (1), carriage structure (2) and operation structure (3), the thrust structure (1) is arranged in the end side of the carriage structure (2), the operation structure (3) is arranged in the bottom of the carriage structure (2);The carriage structure (2) includes mobile carriage (21), fixed carriage (22), mobile carriage slot (23) and fixed plate (24), the mobile carriage (21) and the fixed carriage (22) are movably connected by the mobile carriage slot (23), the fixed plate (24) is arranged in the bottom of the fixed carriage (22).

2. An integrated pipe handling and pulling apparatus as defined in claim 1, wherein, The operation structure (3) includes rolling shaft (31), both ends of the rolling shaft (31) are provided with wheel (32), the fixed plate (24) is provided with shaft hole (241), the rolling shaft (31) penetrates the shaft hole (241) so that the operation structure (3) is movably connected with the carriage structure (2).

3. An integrated pipe handling and pulling apparatus as defined in claim 1, wherein, The thrust structure (1) includes handle anti-skid sleeve (11) and force transmission crank (12), the handle anti-skid sleeve (11) is arranged in the end of the force transmission crank (12).