Safety protection device for geological disaster control engineering construction

By adopting a detachable connection design for components such as positioning columns, positioning beams, and diagonal braces in the safety protection device, the problems of large size and inconvenient transfer and transportation of existing devices are solved, realizing convenient disassembly and storage, and improving the performance of the support structure.

CN223458715UActive Publication Date: 2025-10-21SICHUAN GEOLOGICAL ENVIRONMENT SURVEY & RES CENT
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Patent Information

Application Number
CN202422909707.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-21
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Existing safety protection devices have a large rigid structure and are complicated and inconvenient to transfer, transport, and load/unload.

Method used

It adopts multiple parallel positioning columns and detachable buffer nets, combined with positioning beams, diagonal braces and cooperating rods to form a detachable triangular rigid support structure. The design of receiving grooves, slots and relief grooves makes it easy to store and unfold.

Benefits of technology

It enables convenient disassembly and storage of safety protection devices, solves the problem of inconvenient transfer, transportation and loading/unloading caused by large size, and improves the performance of the support structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The safety protection device comprises a plurality of positioning columns arranged in parallel, a plurality of positioning beams, a plurality of inclined supporting rods and a plurality of buffer nets, containing grooves are formed in the positioning columns in the length direction, a pair of groove walls of each containing groove are provided with a pair of groove holes in the length direction, and the groove holes are communicated with the positioning columns. A receding groove is formed in the side wall of the bottom end of the positioning column, and a hanging lug is arranged on the side wall of the top end of the positioning column. The positioning beams are slidably inserted into the containing grooves of the corresponding positioning columns, rotating shafts are arranged on the positioning beams in a protruding mode, the two ends of the rotating shafts are in sliding and rotating fit with the two groove holes respectively, and the width of the positioning beams is matched with the width of the receding grooves. One end of each diagonal bar is hinged with the corresponding positioning beam shaft, and the other end is provided with a hook; a buffer net is arranged between any two adjacent positioning columns, and the buffer nets are detachably connected with the positioning columns. The safety protection device can solve the problems that an existing safety protection device is large in rigid structure size and complex and inconvenient to transfer, transfer, load and unload.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of geological disaster control auxiliary tool, concretely relates to a safety protection device for geological disaster control engineering construction. BACKGROUND

[0002] Geological disaster refers to natural disaster caused by geological factors, including landslide, debris flow, mountain collapse, earthquake, volcanic eruption etc., these disasters usually cause great casualties and property losses, among them, the higher frequency is landslide, debris flow and mountain collapse, therefore, effectively preventing and treating this kind of geological disaster is a vital work.

[0003] The safety protection device of the above type geological disaster generally adopts the structure related to buffer net, the control personnel according to the geological survey surmise the possibility of disaster occurrence, and then set up safety protection device in the area with greater possibility, to intercept the sliding mountain stone and soil when disaster occurs, reduce the risk coefficient when the geological disaster of the above type occurs.

[0004] The above existing safety protection device generally also includes relevant rigid support mechanism in order to structure fixation of buffer net, in order to give consideration to the protection area, lead to the volume of whole device is bigger, and it is complicated and inconvenient when shifting, transferring and loading and unloading. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a safety protection device for geological disaster control engineering construction, which can solve the problem of the rigid structure of the existing safety protection device being too large in volume and being complicated and inconvenient when shifting, transferring and loading and unloading.

[0006] The utility model realizes the following technical scheme:

[0007] A kind of safety protection device for geological disaster control engineering construction, including multiple parallelly arranged positioning columns, the bottom end of the positioning column is used to be fixedly connected with ground, the positioning column is opened along length direction in the accommodating groove, a pair of groove wall of the accommodating groove is opened along length direction in a pair of slot holes, the bottom end side wall of the positioning column is opened in the accommodation slot, the top end side wall of the positioning column is equipped with lug;Multiple positioning beams, the positioning beam is one-to-one correspondence with the positioning column, the positioning beam is slidably inserted in the accommodating groove of the corresponding positioning column, the positioning beam is provided with pivot, the both ends of the pivot are slidably and rotatably matched with two slot holes, the width of the positioning beam is matched with the width of the accommodation slot, so that the positioning beam can be rotated to vertical with the corresponding positioning column;Multiple inclined struts, the inclined strut is one-to-one correspondence with the positioning beam, one end of the inclined strut is hinged with the corresponding positioning beam, the other end is provided with hook, the hook can be hung with the corresponding lug, so that the positioning column, the positioning beam and the inclined strut are arranged as a triangle;Multiple buffer nets, one of the buffer nets is arranged between any two adjacent positioning columns, and the buffer net is detachably connected with the positioning column.

[0008] Optionally, the cross section of the positioning beam is a shape, when the positioning beam is rotated to vertical with the corresponding positioning column, the beam groove of the positioning beam is arranged upwards;The inclined strut is arranged in the beam groove of the corresponding positioning beam, and the hook is completely located in the beam groove of the corresponding positioning beam.

[0009] Optionally, the number of the positioning column is 3, and the three positioning columns are arranged in parallel and equidistantly;At least one pair of force coordination rods are hinged on the opposite sides of the inclined strut of the positioning column located at the middle, and the force coordination rod is provided with a force coordination hook at the end away from the inclined strut;The side wall of the inclined strut of the two positioning columns located on both sides is provided with a plurality of hanging rings, and the force coordination hook can be hung with at least one of the hanging rings.

[0010] Optionally, the force coordination rod is two pairs, and the hanging ring is four, when the force coordination rod is hung with the corresponding hanging ring, the four force coordination rods are arranged in X shape.

[0011] Optionally, when the inclined strut is located in the beam groove of the corresponding positioning beam, the force coordination rod is located in the beam groove of the corresponding positioning beam, and the force coordination hook is completely located in the beam groove of the corresponding positioning beam.

[0012] Optionally, the force coordination rod can be rotated to be parallel to the corresponding inclined strut.

[0013] Optionally, the inclined strut and the force coordination rod are both screw telescopic rods.

[0014] Optionally, the beam groove bottom of the positioning beam is spaced apart in length direction by a plurality of embedding holes, and each embedding hole is provided with a positioning pile, and the tail end of the positioning pile is hinged with the positioning beam, so that the positioning pile can be turned to be parallel or perpendicular to the positioning beam, and when the positioning pile is turned to be parallel to the corresponding positioning beam, the positioning pile is completely embedded in the embedding hole.

[0015] Optionally, the tail end of the positioning pile is vertically provided with a push plate, and when the positioning pile is parallel to the corresponding positioning beam, the top of the push plate vertically extends out of the embedding hole.

[0016] Optionally, the side wall of the positioning beam is provided with a hanging plate, the hanging plate is provided with a plurality of hanging holes, the side wall of the buffer net is provided with a plurality of quick mounting hooks, and the quick mounting hooks are detachably hung with the hanging holes.

[0017] Compared with the prior art, the utility model has the following advantages and beneficial effects:

[0018] The utility model provides a kind of safety protection device for geological disaster control engineering construction, by setting up multiple parallel positioning columns and multiple buffer nets, one buffer net is detachably connected between two adjacent positioning columns, to be laid out according to the size of the area to be protected, and by setting up two detachable connection modes, the two can be detached and stored during transfer, the positioning columns can be stacked in parallel in one place, and the buffer net can be folded or rolled up;By setting up receiving grooves, slot holes and displacement grooves on the positioning columns, and setting up positioning beams, and setting up rotating shafts on the positioning beams, the positioning beams can be slidably inserted into the positioning columns, making it easy to store, and when in use, it only needs to be pulled out and then turned perpendicular to the positioning column to form a right-angle rigid support structure, on this basis, by setting up diagonal struts, the rigid support structure is further formed into a triangular structure, further improving the structural performance of the support structure, and when storing, the diagonal struts can be inserted into the receiving grooves. BRIEF DESCRIPTION OF DRAWINGS

[0019] The drawings described herein are used to provide further understanding of the embodiments of the utility model, constitute a part of this application, and do not constitute limitation to the embodiments of the utility model. In the drawings:

[0020] Figure 1 The front view schematic diagram of the safety protection device for geological disaster control engineering construction provided by the embodiments of the utility model (the structure of buffer net is omitted for clear illustration);

[0021] Figure 2The side view sectional view of the safety protection device for geological disaster treatment engineering construction is provided for the embodiments of the present utility model;

[0022] Figure 3 The front view sectional view of the safety protection device for geological disaster treatment engineering construction during installation is provided for the embodiments of the present utility model;

[0023] Figures 4 to 7 The cooperation schematic view of the positioning column and the positioning beam in different states of the safety protection device for geological disaster treatment engineering construction is provided for the embodiments of the present utility model.

[0024] Markings in the drawings and corresponding component names:

[0025] 10-positioning column; 11-receiving groove; 12-groove hole; 13-giving way groove; 14-hanging lug; 20-positioning beam; 21-rotating shaft; 22-embedded hole; 23-positioning pile; 24-pushing plate; 25-hanging plate; 251-hanging hole; 30-inclined support rod; 31-hook; 40-cushion net; 50-cooperation rod; 51-cooperation hook; 52-hanging ring. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the present utility model more clear and obvious, the present utility model is further described in detail below in combination with embodiments and drawings, and the illustrative embodiments and the description thereof of the present utility model are only used for explaining the present utility model, and do not serve as the limitation of the present utility model.

[0027] EMBODIMENT

[0028] Please refer to Figures 1 to 7The embodiment provides a safety protection device for geological disaster treatment engineering construction, which comprises multiple positioning columns 10 arranged in parallel, the bottom end of the positioning column 10 is used for fixed connection with the ground, a containing groove 11 is formed in the positioning column 10 along the length direction, a pair of groove holes 12 are formed in a pair of groove walls of the containing groove 11 along the length direction, a let-in groove 13 is formed in the side wall of the bottom end of the positioning column 10, and a lug 14 is arranged on the top end side wall of the positioning column 10; a second part comprises multiple positioning beams 20, the positioning beam 20 corresponds to the positioning column 10 one by one, the positioning beam 20 is slidably inserted into the containing groove 11 of the corresponding positioning column 10, the positioning beam 20 is provided with a rotating shaft 21, the two ends of the rotating shaft 21 are slidably and rotatably connected with the two groove holes 12 respectively, and the width of the positioning beam 20 is matched with the width of the let-in groove 13, so that the positioning beam 20 can be rotated to be perpendicular to the corresponding positioning column 10; a third part comprises multiple inclined struts 30, the inclined strut 30 corresponds to the positioning beam 20 one by one, one end of the inclined strut 30 is hingedly connected with the corresponding positioning beam 20, the other end is provided with a hook 31, the hook 31 can be hung with the corresponding lug 14, so that the positioning column 10, the positioning beam 20 and the inclined strut 30 are arranged in a triangular shape; a fourth part comprises multiple buffer nets 40, one buffer net 40 is arranged between any two adjacent positioning columns 10, and the buffer net 40 is detachably connected with the positioning column 10.

[0029] The safety protection device for geological disaster treatment engineering construction provided by the embodiment is detachably connected with the buffer net 40 between the two adjacent positioning columns 10, the size of the area to be protected can be adjusted according to the size of the area to be protected, the two parts are detachably connected, so that the two parts can be detached and stored during transportation, the positioning columns 10 can be stacked in parallel at one place, and the buffer net 40 can be folded or rolled; the containing groove 11, the groove hole 12 and the let-in groove 13 are arranged on the positioning column 10, the positioning beam 20 is arranged, the rotating shaft 21 is arranged on the positioning beam 20, the positioning beam 20 can be slidably inserted into the positioning column 10, so that the positioning beam 20 is convenient to store, the positioning beam 20 can be pulled out and rotated to be perpendicular to the positioning column 10 during use, so that a right-angle rigid support structure is formed, on the basis, the inclined strut 30 is arranged, the right-angle rigid support structure is further arranged in a triangular shape, and the structural performance of the support structure is further improved; during storage, the inclined strut 30 can be inserted into the containing groove 11; through the cooperation of the above-mentioned features, the safety protection device for geological disaster treatment engineering construction can solve the problems that the rigid structure of the existing safety protection device is large in size, and the transfer, transportation and loading and unloading are complicated and inconvenient.

[0030] In order to further improve the bending resistance of the positioning beam 20 and at the same time further improve the utilization of the structure, the cross section of the positioning beam 20 is shaped like a Chinese character, when the positioning beam 20 is perpendicular to the corresponding positioning column 10, the beam groove of the positioning beam 20 is arranged upwards; the inclined support rod 30 is arranged in the beam groove of the corresponding positioning beam 20, and the hook 31 is completely located in the beam groove of the corresponding positioning beam 20.

[0031] In order to further support the buffer net 40 in the transverse direction, the number of the positioning columns 10 is three, and the three positioning columns 10 are arranged in parallel and at equal distances; the inclined support rod 30 of the positioning column 10 located in the middle is hinged to at least one pair of cooperative rods 50 on the two sides of the symmetrical axis opposite to each other, and the end of the cooperative rod 50 away from the inclined support rod 30 is provided with a cooperative hook 51; the side wall of the inclined support rod 30 of the two positioning columns 10 located on the two sides is provided with a plurality of hanging rings 52, and the cooperative hook 51 can be hung with at least one hanging ring 52.

[0032] In order to further improve the transverse support performance, the cooperative rod 50 is two pairs, and the hanging ring 52 is four, when the cooperative rod 50 is hung with the corresponding hanging ring 52, the four cooperative rods 50 are arranged in an X shape.

[0033] In order to further facilitate storage, when the inclined support rod 30 is located in the beam groove of the corresponding positioning beam 20, the cooperative rod 50 is located in the beam groove of the corresponding positioning beam 20, and the cooperative hook 51 is completely located in the beam groove of the corresponding positioning beam 20.

[0034] In order to further improve the utilization of the beam groove of the positioning beam 20, the cooperative rod 50 can be turned to be parallel to the corresponding inclined support rod 30.

[0035] In order to facilitate storage and adjustment, the inclined support rod 30 and the cooperative rod 50 are both screw telescopic rods.

[0036] In order to further fix the positioning beam 20 to the ground, the beam groove bottom of the positioning beam 20 is spaced apart in the length direction and has a plurality of embedded holes 22, and each embedded hole 22 is provided with a positioning pile 23, the tail end of the positioning pile 23 is hinged to the positioning beam 20, so that the positioning pile 23 can be turned to be parallel or perpendicular to the positioning beam 20, when the positioning pile 23 is turned to be parallel to the corresponding positioning beam 20, the positioning pile 23 is completely embedded in the embedded hole 22.

[0037] In order to facilitate the positioning pile 23 to be turned to be vertical, the tail end of the positioning pile 23 is vertically provided with a push plate 24, when the positioning pile 23 is parallel to the corresponding positioning beam 20, the top of the push plate 24 vertically extends out of the embedded hole 22.

[0038] In order to further explain the detachable connection structure of the buffer net 40 and the positioning beam 20, the side wall of the positioning beam 20 is provided with a hanging plate 25, the hanging plate 25 is provided with a plurality of hanging holes 251, and the side wall of the buffer net 40 is provided with a plurality of quick-mounting hooks which are detachably hung with the hanging holes 251.

[0039] The above specific embodiments explain the purpose, technical scheme and beneficial effects of the present application in further detail. It should be understood that the above description is only a specific embodiment of the present application and is not used to limit the protection scope of the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A safety protection device for geological disaster control engineering construction, characterized in that, The utility model provides a kind of supporting structure, including: Multiple parallelly arranged positioning columns (10), the bottom end of the positioning column (10) is used to be fixedly connected with ground, the length direction of the positioning column (10) is opened in the receiving slot (11) inside, a pair of slot holes (12) are opened in a pair of slot walls of the receiving slot (11) along length direction, the bottom end side wall of the positioning column (10) is opened in let slot (13), the top end side wall of the positioning column (10) is equipped with lug (14); Multiple positioning beams (20), the positioning beam (20) corresponds with the positioning column (10), the positioning beam (20) is slidably inserted in the receiving slot (11) of the corresponding positioning column (10), the positioning beam (20) is provided with rotating shaft (21), the two ends of the rotating shaft (21) are slidably and rotatably matched with two slot holes (12) respectively, the width of the positioning beam (20) is matched with the width of the let slot (13), so that the positioning beam (20) can be rotated to vertical with the corresponding positioning column (10); Multiple inclined struts (30), the inclined strut (30) corresponds with the positioning beam (20), one end of the inclined strut (30) is hinged with the corresponding positioning beam (20), the other end is equipped with hook (31), the hook (31) can be hung with the corresponding lug (14), so that the positioning column (10), the positioning beam (20) and the inclined strut (30) are arranged as a triangle; Multiple buffer nets (40), one of the buffer nets (40) is arranged between any two adjacent positioning columns (10), and the buffer net (40) is detachably connected with the positioning column (10).

2. The safety protection device for geological disaster control engineering construction according to claim 1, characterized in that, The cross section of the positioning beam (20) is shaped, when the positioning beam (20) is rotated to vertical with the corresponding positioning column (10), the beam groove of the positioning beam (20) is arranged upwards; The inclined strut (30) is arranged in the beam groove of the corresponding positioning beam (20), and the hook (31) is completely located in the beam groove of the corresponding positioning beam (20).

3. The safety protection device for geological disaster control engineering construction according to claim 2, characterized in that, The number of the positioning column (10) is three, and the three positioning columns (10) are arranged in parallel and equidistantly. The inclined strut (30) of the positioning column (10) located in the middle is hingedly connected with at least one pair of cooperative rods (50) on the opposite sides of the two sides, and the end of the cooperative rod (50) away from the inclined strut (30) is provided with a cooperative hook (51). The side wall of the inclined strut (30) of the two positioning columns (10) located on the two sides is provided with a plurality of hanging rings (52), and the cooperative hook (51) can be hung with at least one hanging ring (52).

4. The safety protection device for geological disaster control engineering construction according to claim 3, characterized in that, The cooperative rod (50) is two pairs, and the hanging ring (52) is four, when the cooperative rod (50) is hung with the corresponding hanging ring (52), the four cooperative rods (50) are arranged in X shape.

5. The safety protection device for geological disaster control engineering construction according to claim 4, characterized in that, When the inclined strut (30) is located in the beam groove of the corresponding positioning beam (20), the cooperative rod (50) is located in the beam groove of the corresponding positioning beam (20), and the cooperative hook (51) is completely located in the beam groove of the corresponding positioning beam (20).

6. The safety protection device for geological disaster control engineering construction according to claim 5, characterized in that, The cooperation rod (50) can be turned to be parallel with the corresponding diagonal bracing rod (30).

7. The safety protection device for geological disaster control engineering construction according to claim 6, characterized in that, The diagonal bracing rod (30) and the cooperation rod (50) are both screw telescopic rods.

8. The safety protection device for geological disaster control engineering construction according to claim 2, characterized in that, The beam groove bottom of the positioning beam (20) is spaced apart by multiple embedding holes (22) along the length direction, and each embedding hole (22) is provided with a positioning pile (23), the tail end of the positioning pile (23) is hinged with the positioning beam (20), so that the positioning pile (23) can be turned to be parallel or perpendicular with the positioning beam (20), when the positioning pile (23) is turned to be parallel with the corresponding positioning beam (20), the positioning pile (23) is completely embedded in the embedding hole (22).

9. The safety protection device for geological disaster control engineering construction according to claim 8, characterized in that, The tail end of the positioning pile (23) is vertically provided with a push plate (24), when the positioning pile (23) is parallel with the corresponding positioning beam (20), the top of the push plate (24) vertically extends out of the embedding hole (22). 10.The safety protection device for geological disaster treatment engineering construction of claim 1, characterized in that, The side wall of the positioning beam (20) is provided with a hanging plate (25), the hanging plate (25) is provided with multiple hanging holes (251), the side wall of the buffer net (40) is provided with multiple quick mounting hooks, and the quick mounting hooks are detachably hung with the hanging holes (251).