Guard rail with monitoring structure

By designing guide chutes and sliding column structures in the protective fence, the monitoring equipment can be lifted and stored, solving the problem of easy damage to the monitoring equipment during transportation, providing protection and stability for the equipment, and is suitable for airport road protection.

CN117605347BActive Publication Date: 2026-05-29SHANDONG HI SPEED QINGDAO DEV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANDONG HI SPEED QINGDAO DEV
Filing Date
2023-10-20
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The monitoring equipment of existing protective fences is easily damaged during transportation because it is directly installed on the fence components, and lacks effective protection.

Method used

A protective fence with a monitoring structure was designed, including a fence body and a fence sub-body. The monitoring equipment can be raised, lowered and stored through guide grooves and sliding column structures. Combined with the unfolding and folding of the stabilizing foot plates, it can be ensured that the equipment can be used normally when unfolded and is stored and protected when folded.

Benefits of technology

It protects the monitoring equipment during transportation, reduces the risk of damage, and provides stability and monitoring coverage in the unfolded state, making it convenient for transportation and storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a protective fence with monitoring structure, relates to the field of protective fence, including: fence body and fence auxiliary body, the top of the fence body is centrally provided with a receiving protection cavity for protection; the front top of the fence body is provided with a guide chute A; the front bottom of the fence body is provided with a guide chute B; the inside of the receiving protection cavity is slidably installed with a lifting slide plate; the top of the lifting slide plate is fixedly installed with a security monitor for monitoring, when the present protective fence is in the retracted state, the security monitor can be automatically received into the inside of the receiving protection cavity, thereby reducing the risk of damage of the security monitor caused by external collision when the protective fence is transported, solving the problem that the protruding monitoring device is easily in contact with the outside when the fence assembly is transported, causing the monitoring device to be damaged, and the protection of the monitoring device is insufficient.
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Description

Technical Field

[0001] This invention relates to the field of protective fencing technology, and in particular to protective fencing with a monitoring structure. Background Technology

[0002] Airport roads are private roads, and access is prohibited for non-staff members. To prevent unauthorized personnel from accidentally trespassing, protective fencing is used to enclose the roads. Furthermore, some protective fencing systems are often equipped with monitoring structures to enhance their protective capabilities. For example, patent application number CN202010900817.X discloses a fencing structure with security monitoring functions, including: a fencing component; a security monitoring component, mounted on the fencing component, including: an infrared sensor, a monitoring camera, and a discharge warning device; a controller, electrically connected to the infrared sensor, the monitoring camera, and the discharge warning device; and a solar panel, mounted on the fencing component, for providing power to the security monitoring component and the controller. This invention discloses a fence structure with security monitoring function, which is an application of a novel off-grid system to a protective fence. Infrared sensors and monitoring cameras can monitor in real time, and the use of solar power is more environmentally friendly. At the same time, when outsiders or animals approach, the discharge warning device discharges and causes electric shock, warning them to stay away from the vicinity of the fence components. However, in the use of similar protective fences, since the monitoring equipment is directly installed on the fence components and protrudes from the fence components, the protruding monitoring equipment is easily collided with the outside environment when the fence components are moved, resulting in damage to the monitoring equipment and insufficient protection for the monitoring equipment. Summary of the Invention

[0003] In view of this, the present invention provides a protective fence with a monitoring structure to solve the problem that, since the monitoring equipment is directly installed on the fence assembly and protrudes from the fence assembly, the protruding monitoring equipment is easily damaged by collisions with the outside world when the fence assembly is moved, resulting in insufficient protection for the monitoring equipment.

[0004] This invention provides a protective fence with a monitoring structure, specifically comprising: a fence body and fence sub-bodies. The fence body has a protective storage cavity at its top center; a guide groove A is formed at the top front side of the fence body; a guide groove B is formed at the bottom front side of the fence body; an insert groove is formed at the top of guide groove B; a lifting slide plate is slidably installed inside the protective storage cavity; the lifting slide plate has a rectangular structure; a security monitor is fixedly installed at the top center of the lifting slide plate; guide sliding posts are slidably installed inside both guide grooves A and B; the guide sliding posts have a cylindrical structure; and two fence sub-bodies are located on the left and right sides of the fence body.

[0005] Furthermore, one end of a restoring spring A is embedded in the top of the two lower guide sliding posts; the other end of the restoring spring A is embedded in the top of the mounting groove; a lifting slide rod is slidably installed on the top of the guide slide groove A; the top end of the lifting slide rod is fixedly connected to the bottom of the lifting slide plate; the bottom end of the lifting slide rod is rotatably connected to the two upper guide sliding posts; trigger plug plates are fixedly installed on the left and right sides of the fence body.

[0006] Furthermore, the top of the trigger plug plate is symmetrically provided with trigger transmission grooves; the trigger transmission grooves are inclined; one end of the protective connecting rod is rotatably installed on the front and rear sides of the fence sub-body; the other end of the protective connecting rod is rotatably connected to the guide sliding column; a protective cover plate for covering the storage and protection cavity is fixedly provided at the top of the fence sub-body; the protective cover plate is rectangular; the protective cover plate is located above the storage and protection cavity; the fence sub-body is provided with trigger plug grooves.

[0007] Furthermore, when the fence sub-body is in a folded and stored state, the trigger plug plate on the fence main body will be inserted into the trigger plug slot; follower racks are slidably installed on the front and rear sides of the fence sub-body; an embedded baffle is fixedly installed on the top of the follower rack; the embedded baffle is a rectangular structure; a restoring spring B is embedded between every two adjacent embedded baffles; a trigger pull column is fixedly installed at the bottom of the follower rack; the trigger pull column is a cylindrical structure; when the fence sub-body is in a folded and stored state, the trigger pull column will be slidably installed inside the trigger transmission groove.

[0008] Furthermore, a folding shaft is rotatably installed at the bottom position on both the front and rear sides of the fence sub-body; the folding shaft has a cylindrical structure; a folding gear is fixedly installed at the center position of the folding shaft; the folding gear meshes with and is connected to the follower rack; a stabilizing foot plate for improving stability is fixedly installed on the outer circumference of the folding shaft; when the fence sub-body is in the folded state, the stabilizing foot plate will be in a vertical state; when the fence sub-body is in the unfolded state, the stabilizing foot plate will be in a horizontal state.

[0009] The protective fence with a monitoring structure provided by this invention has the following beneficial effects:

[0010] I. This protective fence has two forms: a folded state and an unfolded state. When the protective fence is folded, it has a smaller volume, which is convenient for transporting and storing. When the protective fence is unfolded, it increases in length. Therefore, multiple protective fences in the unfolded state can protect the airport road and prevent unauthorized personnel from accidentally entering the airport road, thus playing a protective role.

[0011] II. This protective fence is equipped with a security monitoring device. When the fence is in the extended state, the security monitoring device can automatically rise to a certain height. By rising, the security monitoring device can monitor a large area nearby, allowing it to transmit real-time information about the surrounding road conditions to back-end staff. Furthermore, when the fence is in the retracted state, the security monitoring device can be automatically stored inside the protective cavity, thus reducing the risk of damage to the security monitoring device from external collisions when the fence is being moved.

[0012] 3. The stabilizing feet in this protective fence can unfold along with the fence when it is in the unfolded state, which improves the stability of the protective fence when it is in use. When the protective fence is in the folded state, the stabilizing feet can be folded synchronously with the fence with the cooperation of multiple structures. In this way, the volume of the protective fence is further reduced when the fence is folded. Thus, by setting up the stabilizing feet, the protective fence is both stable and does not increase the difficulty of transporting and storing the fence. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0014] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0015] In the attached diagram:

[0016] Figure 1 This is a schematic diagram of the overall folded structure of an embodiment of the present invention.

[0017] Figure 2 This is a schematic diagram of the overall unfolded structure of an embodiment of the present invention.

[0018] Figure 3 This is a schematic diagram of a half-section of the fence body according to an embodiment of the present invention.

[0019] Figure 4 This is an embodiment of the present invention. Figure 3 Another perspective structural diagram.

[0020] Figure 5 This is a schematic diagram of the fence body and stabilizing foot plate structure according to an embodiment of the present invention.

[0021] Figure 6 This is a schematic diagram of a half-section of the fence sub-body according to an embodiment of the present invention.

[0022] Figure 7 This is a schematic diagram of the stabilizing foot plate and trigger tension column structure according to an embodiment of the present invention.

[0023] Figure 8 This is a schematic diagram of the trigger plug-in board and follower rack structure according to an embodiment of the present invention.

[0024] List of reference numerals

[0025] 1. Fence main body; 101. Storage and protection cavity; 102. Guide slide A; 103. Guide slide B; 104. Mounting slot; 105. Lifting slide plate; 106. Security monitor; 107. Guide sliding column; 108. Restoration spring A; 109. Lifting slide bar; 1010. Trigger plug plate; 1011. Trigger transmission slot; 2. Fence sub-body; 201. Protective connecting rod; 202. Protective cover plate; 203. Trigger plug slot; 204. Follower rack; 205. Mounting baffle; 206. Restoration spring B; 207. Trigger tension column; 208. Folding pivot; 209. Folding gear; 2010. Stabilizing foot plate. Detailed Implementation

[0026] To make the objectives, solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of specific embodiments of the present invention.

[0027] Please refer to Figures 1 to 8 As shown:

[0028] Example 1: This invention provides a protective fence with a monitoring structure, including a fence body 1 and fence sub-body 2. A protective storage cavity 101 for protection is centrally located at the top of the fence body 1. A guide groove A102 is located at the top front side of the fence body 1. A guide groove B103 is located at the bottom front side of the fence body 1. An insert groove 104 is located at the top of the guide groove B103. A lifting slide plate 105 is slidably installed inside the protective storage cavity 101. The lifting slide plate 105 has a rectangular structure. A security monitor 106 for monitoring is fixedly installed at the central top of the lifting slide plate 105. Guide sliding posts 107 are slidably installed inside both guide grooves A102 and B103. The guide sliding posts 107 have a cylindrical structure. Two fence sub-body 2 are located on the left and right sides of the fence body 1.

[0029] By manually pulling the two fence sub-bodies 2 outwards from left to right, one end of the protective connecting rod 201 and the two protective cover plates 202 move outwards relative to each other. This causes the protective cover plates 202 to move away from the position above the storage and protection cavity 101. Simultaneously, the other end of the protective connecting rod 201 causes the four guide sliding columns 107 to rise along guide grooves A102 and B103 respectively. This separates the two fence sub-bodies 2 from the fence main body 1, presenting an unfolded state (see reference). Figure 2 This allows for the enclosure of the airport road by multiple unfolding protective fences. When the two upper guide sliding posts 107 move upward, they will drive the two lifting slides 109 upward, causing the lifting slides 109 to lift the lifting slide plate 105 and the security monitor 106, raising the security monitor 106 to a high position. This makes it easier to put the security monitor 106 into use, allowing it to monitor the area near the road, promptly detect abnormalities, and enable back-end personnel to take action to prevent other personnel from entering the airport road without authorization.

[0030] Example 2: This invention provides a protective fence with a monitoring structure, further comprising: one end of a restoring spring A108 embedded in the top of the two lower guide sliding posts 107; the other end of the restoring spring A108 embedded in the top of the mounting groove 104; a lifting rod 109 slidably mounted on the top of the guide groove A102; the top end of the lifting rod 109 fixedly connected to the bottom of the lifting slide plate 105; the bottom end of the lifting rod 109 rotatably connected to the two upper guide sliding posts 107; and trigger plugs fixedly mounted on the left and right sides of the fence body 1. The top of the trigger insertion plate 1010 is symmetrically provided with trigger transmission grooves 1011; the trigger transmission grooves 1011 are inclined; one end of the protective connecting rod 201 is rotatably installed on the front and rear sides of the fence sub-body 2; the other end of the protective connecting rod 201 is rotatably connected to the guide sliding column 107; a protective cover plate 202 for covering the storage and protection cavity 101 is fixedly provided at the top of the fence sub-body 2; the protective cover plate 202 is rectangular; the protective cover plate 202 is located above the storage and protection cavity 101; a trigger insertion groove 203 is provided on the fence sub-body 2.

[0031] When the unfolded protective fence needs to be folded up, the two fence sub-body 2 is manually squeezed inwards from left to right. This causes the two fence sub-body 2 to move one end of the two protective connecting rods 201 and the two protective cover plates 202 inwards relative to each other. During the movement, the other end of the protective connecting rods 201 will drive the two sets of guide sliding columns 107 to move downwards along the guide slide grooves A102 and B103. During the movement, the upper set of guide sliding columns 107 will drive the lifting slide rod 109 to descend, causing the lifting slide rod 109 to drive the lifting plate 105 and the safety plate 105 to descend. The security monitor 106 moves downwards, allowing it to be lowered and retracted into the storage and protective cavity 101. At this time, the two protective cover plates 202 also engage, covering the top of the storage and protective cavity 101. Thus, after the protective fence is folded, during transport, the storage and protective cavity 101 and the protective cover plates 202 effectively protect the security monitor 106, reducing the likelihood of damage during transport. This achieves the folding and retraction of the protective fence (see reference). Figure 1 ).

[0032] Example 3: This invention provides a protective fence with a monitoring structure, further comprising: when the fence sub-body 2 is in a folded and stored state, a trigger plug plate 1010 on the fence main body 1 will insert into the interior of the trigger plug slot 203; a follower rack 204 is slidably installed on the front and rear sides of the fence sub-body 2; an embedded baffle 205 is fixedly installed on the top of the follower rack 204; the embedded baffle 205 has a rectangular structure; a restoring spring B206 is embedded between every two adjacent embedded baffles 205; a trigger pull column 207 is fixedly installed on the bottom of the follower rack 204; the trigger pull column 207 has a cylindrical structure; when the fence sub-body 2 is in a folded and stored state... In the folded state, the trigger pull column 207 is slidably installed inside the trigger transmission groove 1011; folding shafts 208 are rotatably installed at the bottom positions on both the front and rear sides of the fence sub-body 2; the folding shaft 208 is a cylindrical structure; a folding gear 209 is fixedly installed at the center position of the folding shaft 208; the folding gear 209 is meshed with and connected to the follower rack 204; a stabilizing foot plate 2010 for improving stability is fixedly installed on the outer circumference of the folding shaft 208; when the fence sub-body 2 is in the folded state, the stabilizing foot plate 2010 is in a vertical state; when the fence sub-body 2 is in the unfolded state, the stabilizing foot plate 2010 is in a horizontal state.

[0033] When the fence sub-body 2 is pulled outwards from the left and right, the trigger plug plate 1010 will disengage from the trigger plug slot 203, and the follower rack 204 will move outwards from the right and left under the action of the return spring B206. During the movement, the follower rack 204 will drive the folding gear 209 to rotate, which will drive the folding shaft 208 and the stabilizing foot plate 2010 to rotate, switching the stabilizing foot plate 2010 to a horizontal state. The horizontal state of the stabilizing foot plate 2010 can improve the stability of the protective fence when it is unfolded and used. When the right side is pressed inward, the trigger plug plate 1010 will be inserted into the trigger plug slot 203, and the trigger pull column 207 will slide into the trigger transmission slot 1011. As the fence sub-body 2 continues to move, the trigger pull column 207 will use the inclined structure of the trigger transmission slot 1011 to drive the follower rack 204 to move inward. The follower rack 204 will use the inward movement to cooperate with the folding gear 209 to drive the folding shaft 208 and the stabilizing foot plate 2010 to rotate, so that the stabilizing foot plate 2010 rotates to a numerical state, further reducing the volume of the folded protective fence.

[0034] The folding method of the protective fence: Two fence sub-body 2 are manually squeezed inwards from left to right, causing one end of each of the two protective connecting rods 201 and the two protective cover plates 202 to move inwards relative to each other. During this movement, the other end of the protective connecting rods 201 drives two sets of guide sliding columns 107 to move downwards along guide grooves A102 and B103. During this movement, the upper set of guide sliding columns 107 drives the lifting slide rod 109 to descend, causing the lifting slide plate 105 and the security monitor 106 to move downwards, allowing the security monitor 106 to be lowered and stored inside the storage protective cavity 101. At this time, the two protective cover plates 202 also connect with each other, covering the top of the storage protective cavity 101. Thus, after folding the protective fence, when preparing to transport it, it is folded inwards... The protective cavity 101 and the protective cover plate 202 work together to effectively protect the security monitor 106, reducing the chance of damage to the security monitor 106 during transportation. This allows for the folding and retraction of the protective fence. When the fence sub-body 2 is squeezed inward from both sides, the trigger plug plate 1010 inserts into the trigger plug groove 203, and the trigger pull column 207 slides into the trigger transmission groove 1011. As the fence sub-body 2 continues to move, the trigger pull column 207 uses the inclined structure of the trigger transmission groove 1011 to drive the follower rack 204 to move inward. The follower rack 204 uses its inward movement to cooperate with the folding gear 209 to drive the folding shaft 208 and the stabilizing foot plate 2010 to rotate, causing the stabilizing foot plate 2010 to rotate to a numerical state, further reducing the volume of the folded protective fence.

[0035] The protective fence unfolds as follows: By manually pulling the two fence sub-bodies 2 outwards from left to right, one end of the protective connecting rod 201 and the two protective cover plates 202 move outwards relative to each other. This causes the protective cover plates 202 to move away from the position above the storage and protection cavity 101. Simultaneously, the other end of the protective connecting rod 201 causes the four guide sliding columns 107 to rise along guide grooves A102 and B103 respectively. This separates the two fence sub-bodies 2 from the main fence body 1, presenting an unfolded state. Figure 2 This facilitates the enclosure of the airport road by multiple unfolding protective fences. Furthermore, when the two upper guide sliding posts 107 move upwards, they drive the two lifting rods 109 upwards, causing the lifting rods 109 to lift the lifting slide plate 105 and the security monitor 106, raising the security monitor 106 to a high position for easy operation. This allows the security monitor 106 to monitor the area near the road, enabling timely detection of anomalies and prompt action by back-end personnel to prevent unauthorized access. When the fence sub-body 2 moves outward, the trigger plug plate 1010 will disengage from the trigger plug slot 203, and the follower rack 204 will move outward relative to each other under the action of the return spring B206. During the movement, the follower rack 204 will drive the folding gear 209 to rotate, which will drive the folding shaft 208 and the stabilizing foot plate 2010 to rotate, switching the stabilizing foot plate 2010 to a horizontal state. The horizontal state of the stabilizing foot plate 2010 can improve the stability of the protective fence when it is deployed.

Claims

1. A protective fence with a monitoring structure, including: The fence consists of a main body (1) and a secondary body (2). The main body (1) has a storage and protection cavity (101) at the center of its top. The top of the main body (1) has a guide groove A (102). The bottom of the main body (1) has a guide groove B (103). The top of the guide groove B (103) has an insert groove (104). The main body (101) is characterized by having a rectangular lifting slide plate (105) slidably installed inside the storage and protection cavity (101). A security monitor (106) is fixedly installed at the center of the top of the lifting slide plate (105). Both the guide groove A (102) and the guide groove B (103) have cylindrical guide sliding columns (107) slidably installed inside. The two secondary bodies (2) are located on the left and right sides of the main body (1). One end of a restoring spring A (108) is embedded in the top of the two guide sliding columns (107) located below; the other end of the restoring spring A (108) is embedded in the top of the mounting groove (104); a lifting slide rod (109) is slidably installed on the top of the guide slide groove A (102); the top end of the lifting slide rod (109) is fixedly connected to the bottom of the lifting slide plate (105); the bottom end of the lifting slide rod (109) is rotatably connected to the two guide sliding columns (107) located above; trigger plug plates (1010) are fixedly installed on the left and right sides of the fence body (1); the top of the trigger plug plate (1010) is symmetrically provided with a trigger transmission groove (1011) with an inclined structure; one end of a protective connecting rod (201) is rotatably installed on the front and rear sides of the fence sub-body (2); the other end of the protective connecting rod (201) is rotatably connected to the guide sliding column (107); A rectangular protective cover plate (202) is fixedly installed at the top of the fence sub-body (2); the protective cover plate (202) is located above the storage protection cavity (101); a trigger insertion slot (203) is provided on the fence sub-body (2); when the fence sub-body (2) is in the folded storage state, the trigger insertion plate (1010) on the fence body (1) will be inserted into the trigger insertion slot (203); a follower rack (204) is slidably installed on the front and rear sides of the fence sub-body (2); a rectangular embedded baffle (205) is fixedly installed on the top of the follower rack (204); a restoring spring B (206) is embedded between every two adjacent embedded baffles (205); a cylindrical trigger pull is fixedly installed at the bottom of the follower rack (204). Force column (207); When the fence sub-body (2) is in the folded storage state, the trigger pull column (207) will slide and be installed inside the trigger transmission groove (1011); Folding shaft (208) is rotatably installed at the bottom position on both the front and rear sides of the fence sub-body (2); The folding shaft (208) is a cylindrical structure; Folding gear (209) is fixedly installed at the center position of the folding shaft (208); The folding gear (209) is meshed and connected with the follower rack (204); A stabilizing foot plate (2010) is fixedly installed on the outer circumference of the folding shaft (208); When the fence sub-body (2) is in the folded state, the stabilizing foot plate (2010) will be in the vertical state; When the fence sub-body (2) is in the unfolded state, the stabilizing foot plate (2010) will be in the horizontal state.