A mounting structure for a gas monitoring sensor

CN224708034UActive Publication Date: 2026-09-01GUIZHOU XINCHUANGYUAN TECH DEV CO LTD
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Patent Information

Application Number
CN202522074325.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-01
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0003]目前,气体监测传感器在吊装场景下的安装方式较为传统,通常情况下,气体监测传感器需要安装在两个吊杆之间,而传感器与吊杆之间大多采用螺栓连接的方式,这种传统的安装方式在实际操作过程中存在诸多弊端:从安装便捷性方面来看,在安装过程中,操作人员需要借助扳手等工具来旋拧螺栓,以实现传感器与吊杆的固定连接,这一过程不仅需要准备相应的工具,而且在旋拧螺栓时,操作人员必须一直用手将传感器稳稳托举,防止传感器在螺栓未拧紧前掉落损坏,特别是在高处进行安装作业时,操作人员需要同时兼顾工具的使用和传感器的托举,操作难度大,不仅耗费大量的体力,还容易导致安装失误,增加了安装的风险和难度;在安装效率方面,由于需要花费较多时间在螺栓的旋拧和传感器的托举上,导致整个安装过程耗时较长,安装效率不高;从后期维护的角度考虑,当气体监测传感器出现损坏需要更换时,同样需要使用工具拆卸螺栓,并且要再次托举传感器,降低后续的维护便捷性,为此本实用新型提出一种气体监测传感器的安装结构

Benefits of technology

[0016]与现有技术相比,本实用新型的有益效果是:本气体监测传感器的安装结构,通过创新设计的搭接块和搭接座以及插销式快速限位结构,实现了气体监测传感器在两个吊杆之间的快速稳定安装,在安装过程中,操作人员无需再使用扳手等工具旋拧螺栓,也无需一直用手托举传感器,只需将传感器通过搭接块与吊杆上的搭接座进行简单搭接,再利用插销式快速限位结构即可快速完成固定,大大提高了安装的便捷性和效率,同时当后续传感器出现损坏需要更换时,操作人员能够快速、轻松地完成拆卸操作,无需复杂的工具和繁琐的步骤,提升了后期维护的便捷性。

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Abstract

This utility model discloses an installation structure for a gas monitoring sensor, including two overlapping blocks fixed to the two sides of the main body of the gas monitoring sensor, with limiting holes through the overlapping blocks; two overlapping seats fixed to the inner sides of two booms, with grooves for the overlapping blocks to enter; and a pin-type quick-stopping structure set on the overlapping seats. This gas monitoring sensor installation structure, through the innovative design of the overlapping blocks, overlapping seats, and pin-type quick-stopping structure, achieves rapid and stable installation of the gas monitoring sensor between two booms. During installation, operators no longer need to use wrenches or other tools to tighten bolts, nor do they need to constantly hold the sensor by hand. They only need to simply overlap the sensor with the overlapping seats on the booms via the overlapping blocks, and then quickly fix it using the pin-type quick-stopping structure, greatly improving the convenience and efficiency of installation.
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Description

Technical Field

[0001] This utility model belongs to the field of gas sensor assembly technology, specifically relating to an installation structure for a gas monitoring sensor. Background Technology

[0002] Gas monitoring sensors play a crucial role in many fields such as industrial production, environmental monitoring, and smart homes. They can detect the concentration of various gases in the environment in real time and accurately, providing key data support for ensuring production safety, controlling environmental quality, and realizing intelligent management. Therefore, the installation quality and convenience of gas monitoring sensors directly affect the stable operation of the entire monitoring system and the efficiency of subsequent maintenance.

[0003] Currently, the installation method for gas monitoring sensors in hoisting scenarios is relatively traditional. Typically, the gas monitoring sensor needs to be installed between two booms, and the sensor and boom are mostly connected by bolts. This traditional installation method has several drawbacks in actual operation: From the perspective of installation convenience, during the installation process, operators need to use tools such as wrenches to tighten the bolts to secure the sensor to the boom. This process not only requires the preparation of the appropriate tools, but also requires the operator to constantly hold the sensor firmly by hand while tightening the bolts to prevent it from falling and being damaged before the bolts are tightened. Especially... When performing installation work at heights, operators need to simultaneously manage the use of tools and the lifting of sensors, which is difficult, physically demanding, and prone to installation errors, increasing the risk and difficulty of installation. In terms of installation efficiency, the time spent on tightening bolts and lifting sensors makes the entire installation process time-consuming and inefficient. From a maintenance perspective, when the gas monitoring sensor is damaged and needs replacement, tools must be used to remove the bolts, and the sensor must be lifted again, reducing the convenience of subsequent maintenance. Therefore, this invention proposes an installation structure for a gas monitoring sensor. Utility Model Content

[0004] The purpose of this invention is to provide an installation structure for a gas monitoring sensor to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an installation structure for a gas monitoring sensor, comprising...

[0006] Two overlapping blocks are fixed on both sides of the gas monitoring sensor body, and limit holes are opened through the overlapping blocks;

[0007] And two overlapping seats are fixed to the inner sides of the two hangers respectively, and the overlapping seats are provided with grooves for the overlapping blocks to enter;

[0008] And a pin-type quick-release structure set on the lap joint.

[0009] Preferably, the pin-type quick-release structure includes an inner sliding groove inside the lap joint, an inner sliding seat slidably installed in the inner sliding groove, a movable rod fixed to the front surface of the inner sliding seat and extending through to the front surface of the lap joint, a movable push plate fixed to the front surface of the movable rod, and a limiting pin fixed to the rear surface of the movable push plate and positioned corresponding to the limiting hole. The front surface of the lap joint is provided with a pin hole through which the limiting pin passes.

[0010] Preferably, the front surface of the lap joint is further provided with a movable hole communicating with the inner sliding groove, and the movable hole is adapted to the movable rod.

[0011] Preferably, the pin-type quick-stop structure further includes an inner locking structure, which is disposed between the inner slide and the inner slide groove.

[0012] Preferably, the inner locking structure includes a side groove formed on the inner wall of one side of the inner slide, a spring and a semi-circular telescopic locking block installed in the side groove, and a side locking groove formed on the side of the inner slide and corresponding to the front end of the semi-circular telescopic locking block.

[0013] Preferably, the rear end of the semi-circular telescopic block is movably mounted in the side groove by a spring, and the front end of the semi-circular telescopic block pops out into the inner sliding groove.

[0014] Preferably, one end of the spring is fixed to the inner wall of the side groove, and the other end of the spring is fixed to the rear end of the semi-circular telescopic block.

[0015] Preferably, a strip-shaped notch is provided on both sides of the movable push plate.

[0016] Compared with the prior art, the beneficial effects of this utility model are as follows: The installation structure of this gas monitoring sensor, through the innovative design of the overlapping block and overlapping seat, as well as the pin-type quick-limiting structure, enables the rapid and stable installation of the gas monitoring sensor between two booms. During the installation process, the operator no longer needs to use wrenches or other tools to tighten bolts, nor does he / she need to hold the sensor by hand. He / she only needs to simply overlap the sensor with the overlapping seat on the boom through the overlapping block, and then use the pin-type quick-limiting structure to quickly complete the fixation, which greatly improves the convenience and efficiency of installation. At the same time, when the sensor is damaged and needs to be replaced, the operator can quickly and easily complete the disassembly operation without complicated tools and cumbersome steps, which improves the convenience of later maintenance. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2This is a structural schematic diagram from another perspective of the present invention;

[0019] Figure 3 This utility model Figure 1 A magnified view of a portion of region A in the middle;

[0020] Figure 4 This is a top sectional view of the lap joint of this utility model;

[0021] In the diagram: 1. Overlap block; 11. Limiting hole; 2. Overlap seat; 21. Overlap groove; 31. Movable push plate; 32. Limiting pin; 33. Movable rod; 34. Pin hole; 35. Inner slide groove; 36. Inner slide seat; 371. Side groove; 372. Spring; 373. Semi-circular telescopic block; 374. Side slot; 4. Hanging rod; 5. Gas monitoring sensor body. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example

[0024] Please see Figures 1 to 4 This is an embodiment of the present utility model, which provides the following technical solution: an installation structure for a gas monitoring sensor, including...

[0025] Two overlapping blocks 1 are welded and fixed to the two sides of the gas monitoring sensor body 5, and limit holes 11 are opened through the overlapping blocks 1;

[0026] Two overlapping seats 2 are welded and fixed to the inner sides of the two hanging rods 4 respectively, and the overlapping seats 2 are provided with grooves 21 for the overlapping blocks 1 to enter. When the gas monitoring sensor body 5 needs to be installed between the two hanging rods 4, the overlapping blocks 1 can be pushed into the grooves 21 from top to bottom, and the gas monitoring sensor body 5 can be directly hung between the two hanging rods 4. This eliminates the need for the operator to hold the gas monitoring sensor body 5 with their hands during the installation process, improving the ease of installation. Finally, the pin-type quick limit structure is used for stable limiting, resulting in high installation efficiency and guaranteed stability.

[0027] And a pin-type quick-release structure set on the lap joint 2.

[0028] In this embodiment, preferably, the pin-type quick-release structure includes an inner groove 35 inside the overlapping seat 2, an inner slide seat 36 slidably installed in the inner groove 35, a movable rod 33 welded and fixed to the front surface of the inner slide seat 36 with its front end extending to the front surface of the overlapping seat 2, a movable push plate 31 fixed to the front surface of the movable rod 33, and a limiting pin 32 welded and fixed to the rear surface of the movable push plate 31 with its position corresponding to the limiting hole 11. The front surface of the overlapping seat 2 has a pin hole 34 for the limiting pin 32 to pass through, so that after the operator hangs the overlapping block 1 into the groove 21, the operator can push the movable push plate 31 towards the overlapping seat 2, so that the end of the limiting pin 32 is inserted into the limiting hole 11, thereby quickly and stably limiting the overlapping block 1 and the gas monitoring sensor body 5, improving installation efficiency.

[0029] In this embodiment, preferably, the front surface of the lap joint 2 is also provided with an movable hole that communicates with the inner sliding groove 35, and the movable hole is adapted to the movable rod 33 to allow the movable rod 33 to pass through smoothly and be pushed subsequently.

[0030] In this embodiment, preferably, the pin-type quick-closing structure further includes an inner locking structure. The inner locking structure is disposed between the inner slide 36 and the inner slide groove 35, and is used to lock and limit the inner slide 36 after the operator pushes the movable push plate 31, ensuring that the end of the limiting pin 32 is stably locked in the limiting hole 11 during subsequent use, thus ensuring the installation stability of the gas monitoring sensor body 5. The inner locking structure includes a side groove 371 opened on one side of the inner wall of the inner slide groove 35, a spring 372 installed in the side groove 371, and a semi-circular telescopic latch. Block 373 and side slot 374 are provided on the side of the inner slide block 36 and correspond to the front end of the semi-circular telescopic block 373. The rear end of the semi-circular telescopic block 373 is movably installed in the side slot 371 by the spring 372, and the front end of the semi-circular telescopic block 373 pops out into the inner slide groove 35. When the operator pushes the movable push plate 31 to make the inner slide block 36 slide back to the rear end of the inner slide groove 35, the front end of the semi-circular telescopic block 373 will be pushed into the side slot 374 by the spring 372, so as to realize the locking and limiting of the inner slide block 36.

[0031] In this embodiment, preferably, one end of the spring 372 is fixed to the inner wall of the side groove 371, and the other end of the spring 372 is fixed to the rear end of the semi-circular telescopic block 373.

[0032] In this embodiment, preferably, a strip-shaped opening is provided on both sides of the movable push plate 31, which can facilitate the subsequent operation of pushing the movable push plate 31 back and forth.

[0033] In summary, in actual use, this installation structure involves first hanging the gas monitoring sensor body 5 from top to bottom on the two overlapping seats 2, so that the overlapping block 1 enters the overlapping groove 21. At this time, the limiting hole 11 will align with the pin hole 34, allowing the gas monitoring sensor body 5 to be directly hung between the two hanging rods 4 via the overlapping block 1 and the overlapping seat 2. This frees the operator's hands during installation, eliminating the need for the operator to constantly lift the gas monitoring sensor body 5, thus improving installation convenience. Then, the movable push plate 31 is pushed towards the front surface of the overlapping seat 2, causing the inner slide 36 to slide inward into the groove 3. The rear end of 5 slides, causing the inner slide block 36 to contact the arc-shaped surface of the front end of the semi-circular telescopic block 373, and the front end of the semi-circular telescopic block 373 is gradually squeezed into the side groove 371, allowing the inner slide block 36 to slide smoothly backward until the movable push plate 31 is attached to the front surface of the overlapping seat 2, and the end of the limiting pin 32 is inserted into the limiting hole 11, which can quickly achieve stable limiting of the overlapping block 1. At the same time, the inner slide block 36 is pushed to the rear end of the inner slide groove 35. At this time, the front end of the semi-circular telescopic block 373 will be pushed by the spring 372 and locked into the side groove 371. Within the groove 374, the inner slide 36, movable rod 33, movable push plate 31, and limiting pin 32 can be engaged and limited, ensuring that the end of the limiting pin 32 is stably engaged within the limiting hole 11 during subsequent use. This ensures the limiting stability of the overlapping block 1 and the stable installation of the gas monitoring sensor body 5. The entire installation process is quick and convenient, eliminating the need for operators to continuously lift the gas monitoring sensor body 5 by hand, and requiring no external tools. The installation of the gas monitoring sensor body 5 can be completed by hand, significantly improving installation efficiency. This also facilitates the disassembly and maintenance of the gas monitoring sensor body 5 in case of damage. When it is necessary to remove the gas monitoring sensor body 5, simply pull the two movable push plates 31 forward forcefully so that the end of the limiting pin 32 moves out of the limiting hole 11, which can quickly release the limiting of the overlapping block 1 and the gas monitoring sensor body 5. At this time, the gas monitoring sensor body 5 can be moved up so that the overlapping block 1 moves out of the overlapping groove 21, and the gas monitoring sensor body 5 can be quickly removed, which facilitates the disassembly and maintenance of the gas monitoring sensor body 5 in case of damage.

[0034] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An installation structure for a gas monitoring sensor, characterized in that: include Two overlapping blocks (1) are fixed on both sides of the gas monitoring sensor body (5), and limit holes (11) are opened through the overlapping blocks (1); And two overlapping seats (2) are fixed on the inner side of the two hanging rods (4), and the overlapping seats (2) are provided with a groove (21) for the overlapping block (1) to enter; And a pin-type quick-release structure set on the lap joint (2).

2. The mounting structure of a gas monitoring sensor according to claim 1, characterized in that: The pin-type quick-release structure includes an inner slide groove (35) inside the overlapping seat (2), an inner slide block (36) slidably installed in the inner slide groove (35), a movable rod (33) fixed to the front surface of the inner slide block (36) and extending through to the front surface of the overlapping seat (2), a movable push plate (31) fixed to the front surface of the movable rod (33), and a limiting pin (32) fixed to the rear surface of the movable push plate (31) and positioned corresponding to the limiting hole (11). The front surface of the overlapping seat (2) is provided with a pin hole (34) through which the limiting pin (32) passes.

3. The mounting structure of a gas monitoring sensor according to claim 2, characterized in that: The front surface of the lap joint (2) is also provided with a movable hole that communicates with the inner sliding groove (35), and the movable hole is adapted to the movable rod (33).

4. The mounting structure of a gas monitoring sensor according to claim 2, characterized in that: The pin-type quick-release structure also includes an inner locking structure, which is disposed between the inner slide (36) and the inner slide groove (35).

5. The mounting structure of a gas monitoring sensor according to claim 4, characterized in that: The inner locking structure includes a side groove (371) opened on the inner wall of one side of the inner slide groove (35), a spring (372) and a semi-circular telescopic locking block (373) installed in the side groove (371), and a side locking groove (374) opened on the side of the inner slide (36) and corresponding to the front end of the semi-circular telescopic locking block (373).

6. The mounting structure of a gas monitoring sensor according to claim 5, characterized in that: The rear end of the semi-circular telescopic block (373) is movably mounted in the side groove (371) by a spring (372), and the front end of the semi-circular telescopic block (373) pops out into the inner slide groove (35).

7. The mounting structure of a gas monitoring sensor according to claim 6, characterized in that: One end of the spring (372) is fixed to the inner wall of the side groove (371), and the other end of the spring (372) is fixed to the rear end of the semi-circular telescopic block (373).

8. The mounting structure of a gas monitoring sensor according to claim 2, characterized in that: The movable push plate (31) has a strip-shaped opening on both sides of its surface.