Meteorological wind pole lodging auxiliary support

The meteorological mast pole auxiliary support structure addresses safety and efficiency issues in manual mast operation by using an electric hydraulic system for controlled tilting and stabilization, reducing manual effort and hazards.

CN223104270UActive Publication Date: 2025-07-15LESHAN METEOROLOGICAL BUREAU
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Patent Information

Application Number
CN202422284814.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-15
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

In the prior art, the downturning operation of meteorological wind rods relies on manual methods, which poses safety hazards and low work efficiency, affecting the safety and working intensity of maintenance personnel.

Method used

A meteorological wind rod lodging auxiliary bracket is designed, including a lodging auxiliary component set and a disassembled stabilization component set. The electric hydraulic push rod and telescopic stabilization cable are used to realize the automatic lodging and erecting of the wind rod, and operate through wireless remote control or wire-controlled devices to improve safety and efficiency.

Benefits of technology

It reduces the working intensity of maintenance personnel, avoids safety hazards caused by manual operation, and improves the safety and efficiency of wind rod equipment maintenance and verification.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of meteorological equipment, in particular to a meteorological wind pole lodging assisting support which comprises a lodging assisting device component set, the lodging assisting device component set comprises a base plate piece, an upper plate is arranged at the bottom of the base plate piece, a lower floor is arranged at the bottom of the upper plate, and a stand column, an inclined supporting rod and a supporting triangular plate are arranged between the upper plate and the lower floor. According to the meteorological wind rod, regular maintenance, upgrading and repair of equipment on the meteorological wind rod become easy, the working intensity of maintenance personnel is reduced, and potential safety hazards existing when the maintenance personnel lay down the wind rod in the modes of hand pushing, shoulder carrying, pulling and the like are avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of meteorological equipment, in particular to an auxiliary bracket for the lodging of a meteorological wind pole. Background Art

[0002] The wind pole of a meteorological station is an important equipment installation support structure for building various meteorological environment monitoring stations. It usually adopts a collapsible design. The lifting operation of the wind pole has long troubled grass-roots maintenance personnel. Every year, when maintaining and calibrating the wind direction and wind speed equipment, the wind pole needs to be laid down, and this process basically depends on maintenance personnel to complete it by means of hand-pushing, shoulder-carrying, pulling, etc. There are great safety hazards in the operation. This traditional manual method not only increases the work intensity, but also poses a potential threat to the personal safety of maintenance personnel. It is urgently necessary to improve to enhance safety and work efficiency. Content of the Utility Model

[0003] In order to overcome the above technical problems, the purpose of the utility model is to provide an auxiliary bracket for the lodging of a meteorological wind pole, so as to solve the problems of lack of safety and low work efficiency in the current manual laying down of the meteorological wind pole for maintenance operations as mentioned in the above background art.

[0004] To achieve the above purpose, the utility model provides the following technical solutions:

[0005] An auxiliary bracket for the lodging of a meteorological wind pole, including a wind pole member. An lodging auxiliary device component group is arranged outside the wind pole member. The lodging auxiliary device component group is used to control the lodging of the wind pole member. The lodging auxiliary device component group includes a backing plate member. The bottom of the backing plate member is provided with an upper plate. The bottom of the upper plate is provided with a lower floor plate. A column, a diagonal brace rod and a supporting triangular plate are arranged between the upper plate and the lower floor plate. An electric hydraulic push rod is arranged on the lower floor plate. One end of the electric hydraulic push rod is provided with a supporting clamp one and a supporting clamp two. A positioning triangular plate is arranged on the lower floor plate. A detachable stabilizing component group is arranged on the side of the lodging auxiliary device component group. The detachable stabilizing component group is used to improve the stability when the wind pole member is erected.

[0006] Preferably: A long bolt is arranged on one side of the backing plate member, and the long bolt passes through the backing plate member, the upper plate and the positioning triangular plate for connection. The other side of the backing plate member is connected to the upper plate through a rotating shaft. The bottom of the backing plate member is in contact with the upper plate.

[0007] Preferably: The supporting triangular plate, the column and the diagonal brace rod are connected between the upper plate and the lower floor plate. The lower floor plate is connected to the ground through bolts.

[0008] Preferably: one end of the electric hydraulic push rod is connected to the lower floor through a rotating shaft, and the other end of the electric hydraulic push rod is connected to support clamp 1 and support clamp 2 through a rotating shaft, and support clamp 1 and support clamp 2 are connected to the wind rod member through bolts.

[0009] Preferably: the easily disassembled stabilizing component group comprises a telescopic stabilizing cable, one end of which is provided with an embedded block, a sleeve shell and a pull plate, the interior of the sleeve shell is provided with a limit plug, and the exterior of the limit plug is provided with a spring member and a side pull handle.

[0010] Preferably, two groups of easily disassembled stabilizing component groups are provided, and the two groups of easily disassembled stabilizing component groups are symmetrically distributed on both sides of the supporting clamp, one end of the telescopic stabilizing cable is connected to the upper plate, and the other end of the telescopic stabilizing cable is connected to the embedded block.

[0011] Preferably: the embedded block contacts the sleeve shell through a sliding groove, the pull plate is connected to the embedded block, the sleeve shell is connected to support the second clamp, the limit plug passes through the embedded block and the sleeve shell through a through hole, the spring member is sleeved outside the limit plug, the spring member is connected between the sleeve shell and the limit plug, and the side pull handle is connected to the limit plug.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] 1. A meteorological wind pole lodging auxiliary bracket is provided with a lodging auxiliary component group. When the wind direction and wind speed equipment are maintained and calibrated every year, the wind pole needs to be laid down, and this process basically relies on maintenance personnel to complete it by hand pushing, shoulder carrying, pulling, etc. There are great safety hazards in the operation. This traditional manual method not only increases the work intensity, but also poses a potential threat to the personal safety of maintenance personnel. It is urgently needed to improve safety and work efficiency. In the corresponding designed lodging auxiliary component group, when the wind pole needs to be laid down, the pad, upper plate and positioning triangle plate are removed. The extension bolts connected between them are then controlled to shrink the electric hydraulic push rod, thereby pulling the support hoop 1 and the support hoop 2 to move, so that the wind pole member rotates and falls. When falling, the pad member rotates through the rotating shaft. When the wind pole member falls, the maintenance personnel can maintain the meteorological equipment installed on the wind pole member. The design of this lodging auxiliary device component group makes it easy to regularly maintain, upgrade and repair the equipment on the meteorological wind pole, reduces the work intensity of the maintenance personnel, and avoids the safety hazards when the maintenance personnel lower the wind pole by pushing, carrying on the shoulder, pulling, etc.

[0014] 2. This meteorological wind pole lodging auxiliary support is provided with a detachable stabilizing component group. When the lodging auxiliary device component group controls the wind pole member to fall down, first pull the side pull handle on the side of the casing to move the side pull handle in the direction away from the limit plug, thereby driving the limit plug to be pulled out of the hole of the embedded block. At this time, the spring member accumulates force and stretches, and then the embedded block can be pulled up to remove the embedded block from the sliding groove of the casing. At this time, the telescopic stabilizing cable releases the connection between the upper plate and the supporting clamp 2, thereby controlling the lodging auxiliary device. The component assembly allows the wind pole component to fall over. After controlling the falling over auxiliary device component assembly to erect the wind pole component, pull the side handle, and then let the embedded block pass through the slide groove and put it into the casing, and then release the pull of the opposite side handle. The limit plug will be inserted into the casing and the embedded block through the hole, thereby completing the connection between the embedded block and the telescopic stabilizing cable. At this time, the telescopic stabilizing cable is connected between the upper plate and the wind pole component, which plays a role in strengthening the stability of the wind pole component, and the connection and release adjustment are quick and simple, and will not affect the use of the falling over auxiliary device component assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 It is a schematic structural diagram of the overall side view of the utility model;

[0017] Figure 3 It is a structural schematic diagram of the overall bottom of the utility model;

[0018] Figure 4 It is a structural schematic diagram of the easily disassembled stabilizing component assembly of the utility model;

[0019] Figure 5 It is a schematic cross-sectional structure diagram of the easily disassembled stabilizing component assembly of the utility model.

[0020] In the figure: 01, wind rod member; 02, lodging auxiliary device component group; 21, pad member; 22, upper plate; 23, lower floor; 24, column; 25, diagonal support rod; 26, supporting triangle plate; 27, electric hydraulic push rod; 28, supporting clamp 1; 29, supporting clamp 2; 210, positioning triangle plate; 03, easy-to-disassemble stabilizing component group; 31, telescopic stabilizing cable; 32, embedded block; 33, sleeve; 34, pull plate; 35, limit plug; 36, spring member; 37, side pull handle. DETAILED DESCRIPTION

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0022] Please refer to Figures 1-5 , an embodiment provided by the present invention: a meteorological wind pole falling auxiliary bracket, including a wind pole member 01, an external falling auxiliary device component group 02 is provided on the wind pole member 01, and the falling auxiliary device component group 02 is used to control the falling of the wind pole member 01. The falling auxiliary device component group 02 includes a backing plate member 21, an upper plate 22 is provided at the bottom of the backing plate member 21, a lower floor plate 23 is provided at the bottom of the upper plate 22, a column 24, a diagonal brace 25 and a support triangular plate 26 are provided between the upper plate 22 and the lower floor plate 23, and an electric hydraulic push rod 27 is provided on the lower floor plate 23. One end of the electric hydraulic push rod 27 is provided with a support clamp 28 and a support clamp 29, and a positioning triangular plate 210 is provided on the lower floor plate 23; a detachable stability component group 03 is provided on the side of the falling auxiliary device component group 02, and the detachable stability component group 03 is used to improve the stability of the wind pole member 01 when it is erected.

[0023] A long bolt is provided in the backing plate member 21, and the long bolt passes through the backing plate member 21, the upper plate 22 and the positioning triangular plate 210 for connection, and the bottom of the backing plate member 21 is in contact with the upper plate 22. The support triangular plate 26, the column 24 and the diagonal brace 25 are connected between the upper plate 22 and the lower floor plate 23, and the lower floor plate 23 is connected to the ground by bolts. One end of the electric hydraulic push rod 27 is connected to the lower floor plate 23 through a rotating shaft, and the other end of the electric hydraulic push rod 27 is connected to the support clamp 28 and the support clamp 29 through a rotating shaft. The support clamp 28 and the support clamp 29 are connected to the wind pole member 01 by bolts. The electric hydraulic push rod 27 is electrically connected to an external power supply, and the electric hydraulic push rod 27 is connected to an external controller. The external controller includes but is not limited to a wire control or radio frequency circuit wireless remote control device. By controlling the wire control or radio frequency circuit wireless remote control device, the telescopic movement of the electric hydraulic push rod 27 can be adjusted, and thus the position of the wind pole member 01 can be controlled. The electric hydraulic push rod 27 used is a prior art, and its principle is to control the forward and reverse rotation of the motor, output bidirectional pressure, with stable performance, high integration, suitable for both high and low altitude stations, and having a bidirectional self-locking function, widely applicable to various micro hydraulic machines, such as electric hydraulic platforms, electric dump trucks, ship hydraulic systems and automotive hydraulic control systems.

[0024] The detachable and stable component group 03 includes a telescopic stabilizing cable 31. One end of the telescopic stabilizing cable 31 is provided with an embedded block 32, a sleeve 33, and a pulling plate 34. Inside the sleeve 33, there is a limit insert 35. Outside the limit insert 35, there are a spring member 36 and a side pulling handle 37. There are two sets of detachable and stable component groups 03, and the two sets of detachable and stable component groups 03 are symmetrically distributed on both sides of the support hoop one 28. One end of the telescopic stabilizing cable 31 is connected to the upper plate 22, and the other end of the telescopic stabilizing cable 31 is connected to the embedded block 32. The embedded block 32 contacts the sleeve 33 through a chute. The pulling plate 34 is connected to the embedded block 32. The sleeve 33 is connected to the support hoop two 29. The limit insert 35 passes through the embedded block 32 and the sleeve 33 through a through hole. The spring member 36 is sleeved outside the limit insert 35, and the spring member 36 is connected between the sleeve 33 and the limit insert 35. The side pulling handle 37 is connected to the limit insert 35.

[0025] Working principle: When using the lodging assistor component group 02 to control the lodging of the wind rod 01, the maintenance personnel use a wire control or radio frequency circuit wireless remote control device to control the electro-hydraulic push rod at a safe distance of more than 5 meters behind the wind rod 01 obliquely. Every year when maintaining and calibrating the wind direction and wind speed equipment, the wind rod needs to be laid down, and this process basically depends on the maintenance personnel to complete it by means of manual pushing, shoulder carrying, pulling, etc. There are relatively large potential safety hazards in the operation. This traditional manual method not only increases the work intensity but also poses a potential threat to the personal safety of the maintenance personnel. There is an urgent need for improvement to enhance safety and work efficiency. In the corresponding designed lodging assistor component group 02, when the wind rod 01 needs to be laid down, the extended bolts connecting the backing plate part 21, the upper plate 22, and the positioning triangular plate 210 are removed, and then the electro-hydraulic push rod 27 is controlled to contract, thereby pulling the support hoop one 28 and the support hoop two 29 to move, causing the wind rod 01 to rotate and lodge. Specifically, the wind rod 01 and the electro-hydraulic push rod 27 are balanced and moved in parallel by the support of the support hoop one 28 and the support hoop two 29 as two force arms, so as to achieve the purpose of lodging the meteorological wind rod. When lodging, the backing plate part 21 rotates through the rotating shaft. After the wind rod 01 has lodged, the maintenance personnel can maintain the meteorological equipment installed on the wind rod 01. The design of this lodging assistor component group 02 makes it easy to regularly maintain, upgrade, and repair the equipment on the meteorological wind rod, reduces the work intensity of the maintenance personnel, and also avoids the safety hazards existing when the maintenance personnel lay down the wind rod by means of manual pushing, shoulder carrying, pulling, etc. When the lodging assistor component group 02 controls the wind rod 01 to lodge, first pull the side pull handle 37 on the side of the sleeve 33, so that the side pull handle 37 moves away from the limit insert 35, thereby driving the limit insert 35 to be pulled out from the hole of the embedded block 32. At this time, the spring part 36 is stretched by the accumulated force, and then the embedded block 32 can be pulled up to remove the embedded block 32 from the chute of the sleeve 33. At this time, the telescopic stabilizing cable 31 releases the connection between the upper plate 22 and the support hoop two 29, and then the lodging assistor component group 02 can be controlled to make the wind rod 01 lodge. After controlling the lodging assistor component group 02 to make the wind rod 01 stand up, by pulling the side pull handle 37, then putting the embedded block 32 into the sleeve 33 through the chute, and then releasing the pull on the side pull handle 37, the limit insert 35 will be inserted into the sleeve 33 and the embedded block 32 through the hole, thereby completing the connection between the embedded block 32 and the telescopic stabilizing cable 31. At this time, the telescopic stabilizing cable 31 is connected between the upper plate 22 and the wind rod 01, playing a role in strengthening the stability of the wind rod 01, and the connection and disconnection adjustment are fast and simple, without affecting the use of the lodging assistor component group 02.

[0026] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. A meteorological wind pole toppling assistance bracket, comprising a wind pole member (01), characterized in that: A toppling assistance device component group (02) is arranged outside the wind pole member (01), and the toppling assistance device component group (02) is used to control the toppling of the wind pole member (01). The toppling assistance device component group (02) includes a backing plate member (21). A top plate (22) is arranged at the bottom of the backing plate member (21). A lower floor plate (23) is arranged at the bottom of the top plate (22). A vertical column (24), a diagonal brace (25) and a support triangular plate (26) are arranged between the top plate (22) and the lower floor plate (23). An electric hydraulic push rod (27) is arranged on the lower floor plate (23). A support hoop one (28) and a support hoop two (29) are arranged at one end of the electric hydraulic push rod (27). A positioning triangular plate (210) is arranged on the lower floor plate (23); A detachable stability component group (03) is arranged on the side of the toppling assistance device component group (02), and the detachable stability component group (03) is used to improve the stability of the wind pole member (01) when it is erected.

2. The meteorological wind pole lodging assistance bracket according to claim 1, characterized in that: A long bolt is arranged on one side of the backing plate member (21), and the long bolt passes through the backing plate member (21), the top plate (22) and the positioning triangular plate (210) for connection. The other side of the backing plate member (21) is connected to the top plate (22) through a rotating shaft, and the bottom of the backing plate member (21) is in contact with the top plate (22).

3. The weather vane pole falling - down auxiliary support according to claim 1, characterized in that: The support triangular plate (26), the vertical column (24) and the diagonal brace (25) are connected between the top plate (22) and the lower floor plate (23), and the lower floor plate (23) is connected to the ground through bolts.

4. The meteorological wind pole lodging auxiliary bracket according to claim 1, characterized in that: One end of the electric hydraulic push rod (27) is connected to the lower floor plate (23) through a rotating shaft. The other end of the electric hydraulic push rod (27) is connected to the support hoop one (28) and the support hoop two (29) through a rotating shaft. The support hoop one (28) and the support hoop two (29) are connected to the wind pole member (01) through bolts.

5. The meteorological wind mast lodging auxiliary support according to claim 1, characterized in that: The detachable stability component group (03) includes a telescopic stability cable (31). An inlaid block (32), a sleeve (33) and a pulling plate (34) are arranged at one end of the telescopic stability cable (31). A limit insert (35) is arranged inside the sleeve (33). A spring member (36) and a side pulling handle (37) are arranged outside the limit insert (35).

6. The meteorological wind pole lodging auxiliary bracket according to claim 5, characterized in that: Two groups of the detachable stability component group (03) are arranged, and the two groups of the detachable stability component group (03) are symmetrically distributed on both sides of the support hoop one (28). One end of the telescopic stability cable (31) is connected to the top plate (22), and the other end of the telescopic stability cable (31) is connected to the inlaid block (32).

7. An auxiliary support for preventing a meteorological wind pole from falling down according to claim 5, characterized in that: The embedded block (32) is in contact with the sliding groove and the sleeve (33). The pulling plate (34) is connected to the embedded block (32). The sleeve (33) is connected to the supporting hoop two (29). The limiting insert (35) passes through the embedded block (32) and the sleeve (33) through the through hole. The spring member (36) is sleeved outside the limiting insert (35). The spring member (36) is connected between the sleeve (33) and the limiting insert (35). The side pulling handle (37) is connected to the limiting insert (35).