A borehole apparatus support assembly

CN224801294UActive Publication Date: 2026-09-25GUANGZHOU DINGYI ENVIRONMENTAL ART ENG CO LTD
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Patent Information

Application Number
CN202521925897.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-09-25
Estimated Expiration
2035-09-08

AI Technical Summary

Technical Problem

[0004]然而传统探洞设备多采用焊接钢结构或单一框架支撑,存在安装复杂、灵活性差、难以适应多样化场景的问题,如焊接结构需现场施工且难以调整,无法快速搭建或改造;单一框架仅能满足简单直线通道,无法实现异形、多层立体的复杂设计,因此提出一种探洞设备支撑组件

Benefits of technology

本实用新型通过设置有调节件,使得支撑组件能够通过外套管和滑动管的配合快速适应不同高度、不同形状的探洞管道和安装场景,降低了安装难度,从而大幅度减少定制化成本与施工周期,在使用过程中,可调节设计允许安装人员根据实际荷载、受力方向调整支撑高度,确保管道各部位受力均匀,可针对性调整对应支撑组件,避免结构变形引发安全隐患,后续新增分支管道、延伸通道时,仅需调节现有调节件高度,即可对接新模块,为设备长期升级提供便利,支撑组件整体结构呈倒 Y 形再配合斜角连接件,能够有效分散和承受来自各个方向的荷载,增强支撑力度,提升支撑组件的整体稳定性,降低设备在使用过程中因结构问题引发安全事故的风险,支撑管和调节件两端均使用冲床压扁的设计更加便于螺栓拧紧固定,增强了连接部位的强度和稳定性。

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Abstract

The utility model discloses a kind of cave exploration equipment support assemblies, it is related to cave exploration equipment field, including adjusting part, the adjusting part one end is fixedly installed with angle code by bolt.The utility model is provided with adjusting part, so that support assembly can be adapted to different height, different shape cave exploration pipeline and installation scene by the cooperation of outer sleeve pipe and sliding tube, reduce installation difficulty, to substantially reduce customization cost and construction period, in use process, corresponding support assembly can be adjusted specifically, avoid structural deformation to cause security risk, when subsequent new pipeline passage, only need to adjust the height of existing adjusting part, new module can be docked, provide convenience for equipment long-term upgrade, support assembly overall structure is inverted Y shape again cooperation with bevel connector, can effectively disperse and bear load from all directions, enhance support degree, improve the overall stability of support assembly, reduce the risk of safety accident caused by structural problem in use process of equipment.
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Description

Technical Field

[0001] This utility model relates to the field of cave exploration equipment, specifically a support component for cave exploration equipment. Background Technology

[0002] Cave exploration equipment is a type of equipment that combines fun exploration with physical exercise. Based on a prefabricated or modular pipe structure, it cleverly splices together various three-dimensional tunnels through pipe modules, telescopic pipes and other components. Whether in large amusement parks, indoor shopping mall venues or outdoor family parks, it can become a popular attraction for visitors due to its flexible design and safety guarantee.

[0003] Currently, the demand for caving equipment is growing in the market. To meet the requirements of structural stability, flexibility and safety, caving equipment technology is constantly developing. Support components are the core part to ensure the stable operation of the equipment, including components such as frames, connectors and metal pipes. These components work together to not only improve the safety and durability of caving equipment, but also give it diverse customization capabilities to adapt to different site and theme requirements.

[0004] However, traditional caving equipment mostly uses welded steel structures or single frame supports, which have problems such as complex installation, poor flexibility, and difficulty in adapting to diverse scenarios. For example, welded structures require on-site construction and are difficult to adjust, making them impossible to build or modify quickly; single frames can only meet the needs of simple straight channels and cannot realize complex designs such as irregular shapes and multi-layered structures. Therefore, a caving equipment support component is proposed. Summary of the Invention

[0005] Therefore, the purpose of this utility model is to provide a support component for a cave exploration device to solve the technical problem.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a support assembly for a cave exploration device, comprising an adjusting component, one end of which is fixedly mounted with an angle bracket by bolts for fixing the cave exploration pipe, and the other end of which is fixedly mounted with a support pipe, the other end of which is fixedly mounted with an angled connector, and the support pipe is fixedly mounted to the ground by the angled connector; The adjusting component includes an outer tube and a sliding tube. The end of the outer tube is fixedly connected to the corner bracket, and the end of the sliding tube is fixedly connected to the end of the support tube. The sliding tube is slidably installed at the end of the outer tube. The outer wall of the sliding tube has a fixing hole for adjusting the height of the adjusting component.

[0007] By adopting the above technical solution, the overall structure of the support component is inverted Y-shaped and combined with the angled connectors, which can effectively distribute and bear the loads from all directions, enhance the support strength, improve the overall stability of the support component, and reduce the risk of safety accidents caused by structural problems during equipment use. The setting of the adjustment component allows the support component to quickly adapt to different heights and shapes of exploratory pipes and installation scenarios through the cooperation of the outer sleeve and the sliding tube, reducing the installation difficulty and thus significantly reducing customization costs and construction cycle.

[0008] Furthermore, multiple sets of fixing holes are equally spaced on the outer wall of the sliding tube to align with the through holes on the outer wall of the outer sleeve.

[0009] By adopting the above technical solution, during use, installers can adjust the support height according to the actual load and force direction to ensure that the force is evenly distributed in all parts of the pipeline.

[0010] Furthermore, two sets of support tubes are fixedly installed at the end of the adjusting member, and the two sets of support tubes are designed to be installed in a cross manner to enhance the support strength.

[0011] By adopting the above technical solution, when the cross structure is subjected to lateral thrust, the two support pipes restrain each other. Through the decomposition and transmission of force, the risk of deformation due to single-point stress is reduced, making the overall structure more resistant to overturning. Furthermore, the multi-angle stress characteristics of the cross support enable it to better cope with different installation scenarios.

[0012] Furthermore, a rigid flange is fixedly installed on the outer wall of the exploratory pipe, and the exploratory pipe and the corner bracket are connected to each other through the rigid flange.

[0013] By adopting the above technical solution, the rigid flange can evenly transmit the weight of the exploratory pipe and the external load to the angle bracket and support assembly, which greatly enhances the connection strength between the exploratory pipe and the support assembly.

[0014] Furthermore, both ends of the adjusting component and the support tube are flattened and punched for bolt tightening and fixing.

[0015] By adopting the above technical solution, the design of flattening both ends of the support tube and the adjusting component with a punch press makes it easier to tighten and fix the bolts, thus enhancing the strength and stability of the connection.

[0016] Furthermore, the outer diameter of the sliding tube is smaller than the inner diameter of the outer tube, and the sliding tube and the outer tube are fixed together by bolts and fixing holes.

[0017] By adopting the above technical solution and using the nested design of the sliding tube and the outer tube, the staff can freely adjust the height of the outer tube according to the installation height requirements of the tunnel exploration pipeline and tighten it through the fixing hole, thereby realizing the flexible adjustment of the support components of the tunnel exploration equipment.

[0018] In summary, the present invention has the following main advantages: This invention, by incorporating adjustable components, allows the support assembly to quickly adapt to different heights and shapes of exploratory pipes and installation scenarios through the cooperation of the outer sleeve and sliding tube. This reduces installation difficulty and significantly decreases customization costs and construction time. During use, the adjustable design allows installers to adjust the support height according to the actual load and force direction, ensuring uniform stress on all parts of the pipe. Targeted adjustments to the corresponding support components prevent structural deformation that could lead to safety hazards. When adding branch pipes or extension channels, only the height of the existing adjustable components needs to be adjusted to connect the new module, facilitating long-term equipment upgrades. The overall structure of the support assembly is inverted Y-shaped, combined with angled connectors, effectively distributing and bearing loads from all directions, enhancing support strength, improving the overall stability of the support assembly, and reducing the risk of safety accidents caused by structural problems during equipment use. The design of using a punch press to flatten both ends of the support tube and adjustable components makes it easier to tighten bolts, enhancing the strength and stability of the connection. Attached Figure Description

[0019] Figure 1 This is a schematic diagram showing the installation of this utility model and the tunneling pipeline. Figure 2 This is a three-dimensional structural diagram of the entire utility model; Figure 3 This is an exploded view of the entire utility model.

[0020] In the diagram: 1. Exploration pipe; 11. Rigid flange; 2. Support pipe; 21. Angled connector; 3. Adjusting component; 31. Angle bracket; 32. Outer sleeve; 33. Sliding pipe; 331. Fixing hole. Detailed Implementation

[0021] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0022] The embodiments of this utility model will be described below based on its overall structure.

[0023] Example 1: A support component for a cave exploration device, such as Figure 1-3As shown, the system includes an adjusting component 3. One end of the adjusting component 3 is fixedly mounted with an angle bracket 31 by bolts to fix the exploratory pipe 1. The other end of the adjusting component 3 is fixedly mounted with a support pipe 2. The other end of the support pipe 2 is fixedly mounted with an angled connector 21. The support pipe 2 is fixedly mounted to the ground by the angled connector 21. At this time, the overall structure of the support assembly is inverted Y-shaped. With the addition of the angled connector 21, it can effectively distribute and bear the load from all directions, enhance the support strength, improve the overall stability of the support assembly, and reduce the risk of safety accidents caused by structural problems during the use of the equipment. The adjusting component 3 includes an outer sleeve 32 and a sliding tube 33, which enables the support assembly to quickly adapt to different heights and shapes of the exploratory pipe 1 and installation scenarios through the cooperation of the outer sleeve 32 and the sliding tube 33, reducing the installation difficulty and thus significantly reducing customization costs and construction cycle. The end of the outer sleeve 32 is fixedly connected to the corner bracket 31, and the end of the sliding tube 33 is fixedly connected to the end of the support tube 2. The sliding tube 33 is slidably installed at the end of the outer sleeve 32, and a fixing hole 331 is opened on the outer wall of the sliding tube 33 for adjusting the height of the adjusting component 3.

[0024] Please see Figure 1-3 Multiple sets of fixing holes 331 are equally spaced on the outer wall of the sliding tube 33 to align with the through holes on the outer wall of the outer sleeve 32. During use, the installer can adjust the support height according to the actual load and force direction to ensure that the force is evenly distributed in all parts of the pipeline.

[0025] Please see Figure 1-3 Two sets of support pipes 2 are fixedly installed at the end of the adjusting component 3, and the two sets of support pipes 2 are designed to be installed in a cross manner to enhance the support strength. When the cross structure is subjected to lateral thrust, the two support pipes 2 restrain each other. Through the decomposition and transmission of force, the risk of deformation under single-point force is reduced, making the overall structure more resistant to overturning. In addition, the multi-angle force characteristics of the cross support enable it to better cope with different installation scenarios.

[0026] Please see Figure 1-3 A rigid flange 11 is fixedly installed on the outer wall of the exploratory pipe 1, and the exploratory pipe 1 and the corner bracket 31 are connected to each other through the rigid flange 11. The rigid flange 11 can evenly transmit the weight of the exploratory pipe 1 and the external load to the corner bracket 31 and the support assembly, which greatly enhances the connection strength between the exploratory pipe 1 and the support assembly.

[0027] Please see Figure 1-3 Both ends of the adjusting component 3 and the support tube 2 are flattened and punched for bolt tightening and fixing. The design of flattening both ends of the support tube 2 and the adjusting component 3 by punching makes it easier to tighten and fix the bolts, and enhances the strength and stability of the connection.

[0028] Please see Figure 1-3The outer diameter of the sliding tube 33 is smaller than the inner diameter of the outer tube 32, and the sliding tube 33 and the outer tube 32 are fixed together by bolts and fixing holes 331. Through the nested design of the sliding tube 33 and the outer tube 32, the staff can freely adjust the height of the outer tube 32 according to the installation height requirements of the tunneling pipe 1 and tighten it through the fixing holes 331 to realize the flexible adjustment of the tunneling equipment support components.

[0029] The working principle of this utility model is as follows: When the workers install the support components, they need to first fix the two sets of angled connectors 21 firmly on the ground with bolts. The angled connectors 21 provide a good force angle and distribute the pressure. Then, one end of the two sets of support tubes 2 is fixed to the two sets of angled connectors 21 with bolts. At this time, the through holes at the other ends of the two sets of support tubes 2 are aligned. The adjusting component 3 is kept upright so that the through hole at the end of the sliding tube 33 is aligned with the through hole of the two sets of support tubes 2. The adjusting component 3 and the support tube 2 are fixed together with bolts. At this time, the support assembly presents an inverted Y shape, which enhances the structural stability and improves the reliability of the support assembly. Then, adjust the height of the adjusting component 3 according to the required support height of the tunnel pipe 1, slide the outer sleeve 32 upward, and keep it still when it slides to a suitable height. Use bolts to pass through the through hole on the outer wall of the outer sleeve 32 and insert them into the fixing hole 331 on the outer wall of the sliding tube 33 and tighten them. After the adjusting component 3 is fixed with bolts on both sides, fix the top of the adjusting component 3 and the rigid flange 11 of the tunnel pipe 1 to the angle bracket 31 with bolts to achieve the function of fixing the tunnel pipe 1. Following the steps outlined above, support components were installed at multiple points along the exploratory pipeline 1 to ensure safety during subsequent use.

[0030] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. A support assembly for a cave exploration device, comprising an adjusting component (3), characterized in that: One end of the adjusting component (3) is fixedly installed with an angle bracket (31) by bolts to fix the exploratory pipe (1), and the other end of the adjusting component (3) is fixedly installed with a support pipe (2). The other end of the support pipe (2) is fixedly installed with an angled connector (21), and the support pipe (2) and the ground are fixedly installed by the angled connector (21). The adjusting component (3) includes an outer tube (32) and a sliding tube (33). The end of the outer tube (32) is fixedly connected to the corner bracket (31), and the end of the sliding tube (33) is fixedly connected to the end of the support tube (2). The sliding tube (33) is slidably installed at the end of the outer tube (32). The outer wall of the sliding tube (33) is provided with a fixing hole (331) for adjusting the height of the adjusting component (3).

2. The cave exploration equipment support assembly according to claim 1, characterized in that: The fixing holes (331) are provided in multiple sets at equal intervals on the outer wall of the sliding tube (33) for alignment with the through holes provided on the outer wall of the outer tube (32).

3. The cave exploration equipment support assembly according to claim 1, characterized in that: The support tube (2) has two sets fixedly installed at the end of the adjusting member (3), and the two sets of support tubes (2) are designed to be installed in a cross manner to enhance the support strength.

4. The cave exploration equipment support assembly according to claim 1, characterized in that: The outer wall of the exploratory pipe (1) is fixedly installed with a rigid flange (11), and the exploratory pipe (1) and the corner bracket (31) are connected to each other through the rigid flange (11).

5. The cave exploration equipment support assembly according to claim 1, characterized in that: Both ends of the adjusting component (3) and the support tube (2) are flattened and punched for bolt tightening and fixing.

6. The cave exploration equipment support assembly according to claim 1, characterized in that: The outer diameter of the sliding tube (33) is smaller than the inner diameter of the outer tube (32), and the sliding tube (33) and the outer tube (32) are fixed together by bolts and fixing holes (331).