Safety platform for surveying and mapping operation

By designing an X-shaped lifting frame and limit protection components on the surveying platform, the problem of existing platforms being unable to effectively prevent falls and collisions was solved, thus achieving safety protection for operators and improving the efficiency and accuracy of surveying operations.

CN223892394UActive Publication Date: 2026-02-10SHAOGUAN WATER CONSERVANCY HYDRO POWER RECONNAISSANCE DESIGN INST
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Patent Information

Application Number
CN202423050263.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2026-02-10
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

Most existing surveying and mapping platforms only have a single layer of protective railing, which cannot effectively prevent operators from falling or colliding in complex outdoor environments, thus affecting the efficiency and accuracy of surveying and mapping operations.

Method used

A safety platform including an X-shaped lifting frame, platform enclosure, and limit protection components was designed. By moving and fixing the X-shaped lifting frame, combined with the adjustment of the limit protection components, a multi-layer protection structure is provided to prevent operators from falling and colliding.

Benefits of technology

It effectively prevents operators from being injured by accidental falls and collisions during surveying operations, provides a safe working environment, and improves the efficiency and accuracy of surveying operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of safety platforms, in particular to a safety platform for surveying and mapping operation, which comprises an X-shaped lifting frame, a platform fence and a limiting protection component, a platform fence for an operator to stand is fixedly installed at the upper end of the X-shaped lifting frame, and a limiting protection assembly which can slide and is used for adjusting according to the body shape condition of the operator and conducting limiting protection operation on the operator is arranged above the platform fence. The X-shaped lifting frame descends, an operator can conveniently enter the platform fence, then the limiting protection assembly is adjusted according to the standing position of the operator and the body shape condition of the operator, limiting protection operation is conducted on the operator, and finally the operator can conduct surveying and mapping. The device can effectively prevent a surveying and mapping operator from being hurt due to accidental falling, collision and the like in the operation process, and provides a relatively safe working environment for the operator, so that the operation efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of safety platform technology, and in particular to a safety platform for surveying operations. Background Technology

[0002] Surveying is a general term for measurement and drawing. It involves measuring, collecting, processing, analyzing, expressing, and utilizing natural, economic, and social elements on the Earth's surface or in a specific area through certain technical means and methods. Surveying operation safety platforms are designed for complex environments such as power grid infrastructure construction. They are used to carry surveying instruments and operators for surveying. Their structural design typically considers stability, adjustability, and ease of use.

[0003] Most existing platforms only have a single layer of protective railing to protect operators. Since surveying operations are often carried out outdoors, especially in complex or dangerous environments such as mountains, water, and high altitudes, without appropriate protective structures, operators may face safety risks such as falls and collisions, which will lead to inconvenience in operation and affect the efficiency and accuracy of surveying operations.

[0004] Therefore, since most of the existing platforms only have a single layer of protective railing to protect operators, and since surveying operations are often carried out outdoors, operators may face safety risks such as falls and collisions, which will affect the efficiency and accuracy of surveying operations. A safety platform for surveying operations can be designed, with protective structures added to the platform to improve the safety of operators during operation. Utility Model Content

[0005] To overcome the problem that most existing platforms only have a single layer of protective railing to protect operators, since surveying operations often need to be carried out outdoors, operators may face safety risks such as falls and collisions, which affects the efficiency and accuracy of surveying operations.

[0006] The technical solution of this utility model is as follows: a safety platform for surveying operations, including an X-shaped lifting frame, a platform enclosure, and a limit protection component; a platform enclosure for operators to stand on is fixedly installed on the upper end of the X-shaped lifting frame; a limit protection component is provided above the platform enclosure, which can slide and be adjusted according to the operator's body shape to limit and protect them; an anti-slip pad is placed on the bottom inner side of the platform enclosure; multiple sets of U-shaped frames are symmetrically installed laterally on both sides of the inner wall of the platform enclosure; the limit protection component includes an arc-shaped limit plate, which is symmetrically arranged laterally; a threaded rod is provided below the arc-shaped limit plate; a rectangular threaded sleeve is fitted outside the threaded rod; a first rectangular telescopic sleeve is installed on the upper end of the rectangular threaded sleeve; a first rectangular telescopic plate is fitted inside the first rectangular telescopic sleeve; a second cylinder is installed on the upper end of the first rectangular telescopic plate; a second rectangular telescopic sleeve is fixedly installed on one side of the upper end of the first rectangular telescopic plate; a second rectangular telescopic plate is fitted inside the second rectangular telescopic sleeve and fixedly connected to the arc-shaped limit plate; positioning pins are symmetrically provided on both sides of the connection between the second rectangular telescopic plate and the second rectangular telescopic sleeve; and an arc-shaped soft pad is installed on the inner side of the arc-shaped limit plate.

[0007] Preferably, the X-shaped lifting frame is first moved to the position to be surveyed, then the position of the X-shaped lifting frame is fixed, and then the X-shaped lifting frame is lowered to facilitate the operator to enter the platform enclosure. Then, the limit protection component is adjusted according to the operator's standing position and body size and performs limit protection operation. Finally, the operator can carry out the survey.

[0008] Preferably, multiple sets of pulleys are symmetrically installed laterally on both sides of the lower end of the X-shaped lifting frame, and the pulleys are equipped with drive motors. Multiple sets of L-shaped telescopic sleeves are symmetrically installed laterally on both sides of the lower part of the X-shaped lifting frame.

[0009] Preferably, the upper end of the L-shaped telescopic sleeve is equipped with a first cylinder, and a rectangular telescopic column is fitted inside the L-shaped telescopic sleeve. A support base is fixedly installed at the lower end of the rectangular telescopic column.

[0010] Preferably, an operation panel is fixedly installed on the upper part of one end of the platform enclosure, and rectangular sliding grooves are opened on both sides of the upper edge of the platform enclosure. Connecting pivots are installed on both sides of the platform enclosure away from the operation panel, and opening and closing plates are symmetrically arranged longitudinally on the platform enclosure away from the operation panel.

[0011] Preferably, the hinged plate is rotatably connected to the platform enclosure via a connecting shaft. A handle is installed on the side of the hinged plate away from the platform enclosure. Insertion holes are provided at the connection points of the two sets of hinged plates. A U-shaped limiting rod is provided at the connection points of the two sets of hinged plates. The U-shaped limiting rod is positioned and connected to the two sets of hinged plates via the insertion holes.

[0012] Preferably, the threaded rod is arranged laterally along the rectangular slide groove, and a rotating motor is installed at one end of the threaded rod.

[0013] Preferably, multiple sets of positioning holes are symmetrically opened on both sides of the second rectangular telescopic plate, and the positioning pin passes through the second rectangular telescopic sleeve and is positioned and connected to the second rectangular telescopic plate through the positioning holes.

[0014] The beneficial effects of this utility model are as follows: First, the X-shaped lifting frame is moved to the position to be surveyed, then the position of the X-shaped lifting frame is fixed. Next, the X-shaped lifting frame is lowered to facilitate the operator's entry into the platform enclosure. Then, the limit protection component is adjusted according to the operator's standing position and body size to perform limit protection operation. Finally, the operator can carry out surveying. By adding a protective structure, it can effectively prevent the surveying operator from being injured by accidental falls, collisions, etc. during the operation, providing the operator with a relatively safe working environment. As a result, the operator can perform various operations more conveniently, thereby improving work efficiency. Attached Figure Description

[0015] Figure 1 The diagram shown is a schematic representation of the overall structure of the security platform of this utility model.

[0016] Figure 2 The diagram shown is a schematic representation of the X-shaped lifting frame structure of the safety platform of this utility model.

[0017] Figure 3 The diagram shown is a schematic representation of the platform enclosure structure of the safety platform of this utility model.

[0018] Figure 4 The diagram shown is a schematic representation of the arc-shaped limiting plate structure of the safety platform of this utility model.

[0019] Explanation of reference numerals in the attached drawings: 1. X-shaped lifting frame; 2. Platform enclosure; 101. Pulley; 102. L-shaped telescopic sleeve; 103. First cylinder; 104. Rectangular telescopic column; 105. Support base; 201. Operation panel; 202. Anti-slip mat; 203. Rectangular slide groove; 204. Connecting shaft; 205. Opening and closing plate; 206. Handle; 207. Insertion hole; 208. U-shaped limit rod; 209. U-shaped frame; 301. Arc-shaped limit plate; 302. Threaded rod; 303. Rotating motor; 304. Rectangular threaded sleeve; 305. First rectangular telescopic sleeve; 306. First rectangular telescopic plate; 307. Second cylinder; 308. Second rectangular telescopic sleeve; 309. Positioning pin; 310. Second rectangular telescopic plate; 311. Positioning hole; 312. Arc-shaped soft pad. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Please see Figures 1-4This utility model provides an embodiment of a safety platform for surveying operations, including an X-shaped lifting frame 1, a platform enclosure 2, and a limit protection component. The upper end of the X-shaped lifting frame 1 is fixedly installed with the platform enclosure 2 for the operator to stand on. Above the platform enclosure 2 is a sliding limit protection component that can be adjusted according to the operator's body shape and provides limit protection. An anti-slip pad 202 is placed on the bottom inner side of the platform enclosure 2. Multiple sets of U-shaped frames 209 are symmetrically installed laterally on both sides of the inner wall of the platform enclosure 2. The limit protection component includes an arc-shaped limit plate 301, which is symmetrically arranged laterally. A threaded rod 302 is provided below the arc-shaped limit plate 301. A rectangular threaded sleeve 304 is fitted on the outside of the threaded rod 302. A first rectangular telescopic sleeve 305 is installed on the upper end of the rectangular threaded sleeve 304. A first rectangular telescopic plate 306 is fitted inside the first rectangular telescopic sleeve 305. A second cylinder 307 is installed on the upper end of the first rectangular telescopic plate 306. A second rectangular telescopic sleeve 308 is fixedly installed on one side of the upper end of the first rectangular telescopic plate 306. A second rectangular telescopic plate 310, which is fixedly connected to the arc-shaped limiting plate 301, is fitted inside the second rectangular telescopic sleeve 308. Positioning pins 309 are symmetrically provided on both sides of the connection between the second rectangular telescopic plate 310 and the second rectangular telescopic sleeve 308. An arc-shaped soft pad 312 is installed on the inner side of the arc-shaped limiting plate 301.

[0022] Please see Figure 2 In this embodiment, multiple sets of pulleys 101 are symmetrically installed laterally on both sides of the lower end of the X-shaped lifting frame 1. Each pulley 101 has a drive motor inside. Multiple sets of L-shaped telescopic sleeves 102 are symmetrically installed laterally on both sides of the lower part of the X-shaped lifting frame 1. When surveying is required, the pulleys 101 drive the X-shaped lifting frame 1 to move along a predetermined route through the drive motor. A first cylinder 103 is installed on the upper end of the L-shaped telescopic sleeve 102. A rectangular telescopic column 104 is fitted inside the L-shaped telescopic sleeve 102. A support base 105 is fixedly installed on the lower end of the rectangular telescopic column 104. When the X-shaped lifting frame 1 moves to a suitable position, the drive motor is stopped. According to the geographical conditions of the stopping position, the rectangular telescopic column 104 drives the support base 105 to move downward along the L-shaped telescopic sleeve 102 through the drive of the first cylinder 103 until the support base 105 touches the ground, thus fixing the position of the X-shaped lifting frame 1.

[0023] Please see Figure 3In this embodiment, an operation panel 201 is fixedly installed on the upper part of one end of the platform enclosure 2. Rectangular grooves 203 are provided on both sides of the upper edge of the platform enclosure 2. Connecting pivots 204 are installed on both sides of the platform enclosure 2 at the end away from the operation panel 201. Opening and closing plates 205 are symmetrically arranged longitudinally at the end of the platform enclosure 2 away from the operation panel 201. The rectangular grooves 203 facilitate lateral adjustment of the limit protection components. Due to the flexibility of the safety platform, the opening and closing plates 205 are rotatably connected to the platform enclosure 2 via the connecting pivots 204. A handle is installed on the side of the opening and closing plate 205 away from the platform enclosure 2. Handle 206, both sets of opening and closing plates 205 are provided with insertion holes 207, and the two sets of opening and closing plates 205 are provided with U-shaped limiting rods 208. The U-shaped limiting rods 208 are positioned and connected to the two sets of opening and closing plates 205 through the insertion holes 207. The X-shaped lifting frame 1 moves downward. Then the operator pulls handle 206, so that the opening and closing plates 205 are rotated and opened through the connecting shaft 204 and the platform enclosure 2, making it convenient for the operator to enter the platform enclosure 2. Then the opening and closing plates 205 are closed, the U-shaped limiting rods 208 are picked up, and they are positioned and connected to the two sets of opening and closing plates 205 through the insertion holes 207.

[0024] Please see Figure 4 In this embodiment, the threaded rod 302 is arranged laterally along the rectangular slide groove 203. A rotary motor 303 is installed at one end of the threaded rod 302. When the operator stands up, according to their position, the threaded rod 302 is rotated by the rotary motor 303 under the control of the operation panel 201. This causes the rectangular threaded sleeve 304 to drive the first rectangular telescopic sleeve 305 to move laterally along the rectangular slide groove 203 to a suitable position. The second rectangular telescopic plate 310 has multiple sets of positioning holes 311 symmetrically opened laterally on both sides. The positioning pin 309 passes through the second rectangular telescopic sleeve 308 and through the positioning holes 311. 11 is positioned and connected to the second rectangular telescopic plate 310. According to the operator's waist thickness, the second rectangular telescopic plate 310 drives the arc-shaped limiting plate 301 to move longitudinally along the second rectangular telescopic sleeve 308 to a suitable position through the adjustment of the positioning pin 309. This allows the arc-shaped soft pad 312 to continuously approach and fit the operator's waist, limiting and fixing the operator's standing position to prevent the operator from shaking due to external forces. After confirming that everything is correct, the positioning pin 309 is picked up and passed through the second rectangular telescopic sleeve 308 and positioned and connected to the second rectangular telescopic plate 310 through the positioning hole 311.

[0025] When working, when surveying is required, the pulley 101 drives the X-shaped lifting frame 1 to move along a predetermined route through the drive motor. When the X-shaped lifting frame 1 moves to a suitable position, the drive motor stops. According to the geographical conditions of the stopping position, the rectangular telescopic column 104 drives the support base 105 to move downward along the L-shaped telescopic sleeve 102 through the drive of the first cylinder 103 until the support base 105 is in contact with the ground, thus fixing the position of the X-shaped lifting frame 1.

[0026] The X-shaped lifting frame 1 moves downward. Then, the operator pulls the handle 206, causing the opening and closing plate 205 to rotate and open through the connecting shaft 204 and the platform enclosure 2, making it easier for the operator to enter the platform enclosure 2. During this process, the anti-slip mat 202 can increase friction and prevent the operator from slipping and falling. Then, the opening and closing plate 205 is closed, and the U-shaped limit rod 208 is picked up and positioned and connected to the two sets of opening and closing plates 205 through the insertion hole 207. Finally, the operator picks up the safety rope on his body and connects it to the U-shaped frame 209 to provide auxiliary protection for the operator.

[0027] Once the operator stands, based on their position, the control panel 201, driven by the rotary motor 303, rotates the threaded rod 302, causing the rectangular threaded sleeve 304 to move the first rectangular telescopic sleeve 305 laterally along the rectangular slide groove 203 to a suitable position. Then, based on the operator's height, the second cylinder 307 drives the first rectangular telescopic plate 306 to move along the first rectangular telescopic sleeve 305 to a suitable height, aligning the arc-shaped limiting plate 301 with the operator's waist. Then, based on the operator's waist thickness, the positioning pin 309 adjusts the second rectangular telescopic plate 310, causing the arc-shaped limiting plate 301 to move longitudinally along the second rectangular telescopic sleeve 308 to a suitable position, causing the arc-shaped soft pad 312 to continuously approach and conform to the operator's waist, thus limiting and fixing the operator's standing position. After confirming that everything is correct, the positioning pin 309 is picked up, passed through the second rectangular telescopic sleeve 308, and positioned and connected to the second rectangular telescopic plate 310 through the positioning hole 311, allowing for measurement and mapping.

[0028] Through the above steps, the X-shaped lifting frame 1 is first moved to the location to be surveyed, and then the position of the X-shaped lifting frame 1 is fixed. Next, the X-shaped lifting frame 1 is lowered to facilitate the operator's entry into the platform enclosure 2. Then, the limit protection component is adjusted according to the operator's standing position and body size to perform limit protection operation. Finally, the operator can carry out surveying. By adding a protective structure, it can effectively prevent the surveying operator from being injured by accidental falls, collisions, etc. during the operation, providing the operator with a relatively safe working environment. As a result, the operator can perform various operations more conveniently, thereby improving work efficiency. This solves the problem that most existing platforms only have a single layer of protective railing to protect the operator. Since surveying operations are often carried out outdoors, the operator may face safety risks such as falls and collisions, which affects the efficiency and accuracy of the surveying operation.

Claims

1. A safety platform for surveying operations, comprising an X-shaped lifting frame (1); characterized in that: It also includes a platform enclosure (2) and a limit protection component; the upper end of the X-shaped lifting frame (1) is fixedly installed with a platform enclosure (2) for the operator to stand on, and a limit protection component that can slide to adjust according to the operator's body shape and limit the operation of the operator is provided above the platform enclosure (2). An anti-slip pad (202) is placed on the bottom of the inner side of the platform enclosure (2), and multiple sets of U-shaped frames (209) are symmetrically installed on both sides of the inner wall of the platform enclosure (2). The limit protection component includes an arc-shaped limit plate (301), which is symmetrically arranged in the horizontal direction. A threaded rod (302) is provided below the arc-shaped limit plate (301), and a rectangular threaded sleeve (304) is fitted on the outside of the threaded rod (302). A first rectangular telescopic sleeve (305) is installed on the upper end of the rectangular threaded sleeve (304). A first rectangular telescopic plate (306) is fitted inside the first rectangular telescopic sleeve (305). A second cylinder (307) is installed on the upper end of the first rectangular telescopic plate (306). A second rectangular telescopic sleeve (308) is fixedly installed on one side of the upper end of the first rectangular telescopic plate (306). A second rectangular telescopic plate (310) is fitted inside the second rectangular telescopic sleeve (308) and fixedly connected to the arc-shaped limiting plate (301). Positioning pins (309) are symmetrically provided on both sides of the connection between the second rectangular telescopic plate (310) and the second rectangular telescopic sleeve (308). An arc-shaped soft pad (312) is installed on the inner side of the arc-shaped limiting plate (301).

2. The safety platform for surveying operations according to claim 1, characterized in that: The X-type lifting frame (1) has multiple sets of pulleys (101) symmetrically installed on both sides of the lower end. The pulleys (101) are equipped with drive motors. The X-type lifting frame (1) has multiple sets of L-shaped telescopic sleeves (102) symmetrically installed on both sides of the lower end.

3. The safety platform for surveying operations according to claim 2, characterized in that: The upper end of the L-shaped telescopic sleeve (102) is equipped with a first cylinder (103), and a rectangular telescopic column (104) is fitted inside the L-shaped telescopic sleeve (102). A support base (105) is fixedly installed at the lower end of the rectangular telescopic column (104).

4. The safety platform for surveying operations according to claim 1, characterized in that: An operation panel (201) is fixedly installed on one end of the platform enclosure (2). A rectangular slide groove (203) is opened on each of the two sides of the upper part of the platform enclosure (2). A connecting shaft (204) is installed on each of the two sides of the platform enclosure (2) away from the operation panel (201). An opening and closing plate (205) is longitudinally symmetrically provided on the platform enclosure (2) away from the operation panel (201).

5. The safety platform for surveying operations according to claim 4, characterized in that: The opening and closing plate (205) is rotatably connected to the platform enclosure (2) via a connecting shaft (204). A handle (206) is installed on the side of the opening and closing plate (205) away from the platform enclosure (2). Insertion holes (207) are provided at the connection points of the two sets of opening and closing plates (205). A U-shaped limiting rod (208) is provided at the connection points of the two sets of opening and closing plates (205). The U-shaped limiting rod (208) is positioned and connected to the two sets of opening and closing plates (205) via the insertion holes (207).

6. The safety platform for surveying operations according to claim 1, characterized in that: The threaded rod (302) is arranged laterally along the rectangular slide (203), and a rotating motor (303) is installed at one end of the threaded rod (302).

7. The safety platform for surveying operations according to claim 1, characterized in that: The second rectangular telescopic plate (310) has multiple sets of positioning holes (311) symmetrically opened on both sides. The positioning pin (309) passes through the second rectangular telescopic sleeve (308) and is positioned and connected to the second rectangular telescopic plate (310) through the positioning holes (311).