Video acquisition mechanism for construction engineering management
By integrating photovoltaic modules, batteries, and telescopic cylinders into the video acquisition device, the problems of inconvenient expansion, storage, and power supply of existing devices are solved, enabling convenient video acquisition and continuous power supply, and improving the efficiency and effectiveness of building engineering management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-03-27
AI Technical Summary
Existing video acquisition devices are inconvenient to expand, support, store, and move according to the needs of construction site use. They are also inconvenient to power, and are prone to incomplete acquisition due to power outages at the construction site, affecting the efficiency and effectiveness of monitoring and video acquisition.
A video acquisition mechanism was designed, comprising a mounting base, shock absorption components, telescopic cylinders, a power distribution box, photovoltaic modules, and a storage battery. The mechanism generates electricity through the photovoltaic modules and stores it in the storage battery. Combined with an inverter and a processing module, it achieves self-powered operation. The telescopic cylinders and support structure facilitate expansion and storage, while the wheels and handles facilitate movement and support.
It enables convenient expansion and storage according to on-site needs, avoids power outages affecting data acquisition, improves the efficiency and effectiveness of video acquisition, ensures continuous power supply, and facilitates management and operation.
Smart Images

Figure CN224050102U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of collection auxiliary, specifically is a video collection mechanism for construction engineering management. BACKGROUND
[0002] With the rapid development of the construction industry, modern construction engineering project scale is increasingly huge, structure is increasingly complex, construction period is long and involves numerous participants. Under such circumstances, construction engineering management faces many challenges, and monitoring and management of the construction site become extremely critical; on-site video collection and storage facilitate auxiliary implementation of effective management, which not only guarantees engineering quality, ensures construction safety, but also reasonably controls cost and construction period.
[0003] For this, China application patent number: CN202421459176.9 discloses a video collection mechanism for construction engineering management, comprising a monitoring rod, monitoring heads and mounting plates are arranged on the top and bottom of the monitoring rod respectively, and a base is arranged at the bottom of the mounting plate; anti-collision assemblies are uniformly arranged on the outer side of the monitoring rod; the anti-collision assembly comprises a mounting rod, the mounting rod is provided with a screw connected with the monitoring rod, the mounting rod is provided with a buffer device at the end away from the monitoring rod, and the buffer device is connected with an arc-shaped plate; the arc-shaped plate is provided with an air bag at the end away from the monitoring rod; the air bag is provided with a buffer pad at the end away from the monitoring rod.
[0004] However, the existing video collection device is not convenient for auxiliary expansion support and storage according to the use needs of the construction engineering site, and is not convenient for auxiliary power supply, which may cause power failure at the construction site and incomplete collection, affecting monitoring and video collection efficiency and effect.
[0005] Therefore, in order to solve the above problems, a video collection mechanism for construction engineering management is proposed. UTILITY MODEL CONTENTS
[0006] The utility model aims at providing a video collection mechanism for construction engineering management to solve the problem that the existing video collection device is not convenient for auxiliary expansion support and storage according to the use needs of the construction engineering site, and is not convenient for auxiliary power supply, which may cause power failure at the construction site and incomplete collection, affecting monitoring and video collection efficiency and effect.
[0007] In order to achieve the above object, the utility model provides following technical scheme: A video acquisition mechanism for construction engineering management, including installation bottom storehouse, the installation bottom storehouse top is equipped with damping assembly, and the upper part of damping assembly is covered with upper support frame, the upper support frame surface is fixed with upper roof, and the inside rear side support of upper support frame is equipped with telescopic cylinder, the top support of telescopic cylinder has distribution box, and the inside assembly of distribution box is equipped with data storage component, and the front side assembly of distribution box is equipped with camera component, the outside support of distribution box has photovoltaic module, and the inside front side fixed of upper support frame has battery, and the battery electrical connection has inverter and processing module corresponding with photovoltaic module, and inverter and processing module are electrically connected with the inside of distribution box through data cable.
[0008] As a further further of the scheme, the damping assembly includes a lower shell supported on the surface of the installation bottom storehouse, and an upper shell covered above the lower shell, a damping and spring are arranged around the inside of the lower shell and the upper shell, upper and lower hinges are hinged to the upper hinge seat and the lower hinge seat on the upper and lower parts of the damping and spring, and the upper hinge seat and the lower hinge seat are respectively fixed on the inner top wall of the upper shell and the inner bottom wall of the lower shell.
[0009] As a further further of the scheme, the lower part of the telescopic cylinder is inserted into the inside of the upper roof, a support is supported on the upper part of the upper roof, and the support is sleeved on the outer wall of the telescopic cylinder, a sleeve ring is sleeved on the lower part of the telescopic cylinder, and the two sleeve rings are in contact with the upper and lower surfaces of the upper roof.
[0010] As a further further of the scheme, the photovoltaic module includes a side photovoltaic panel, a support plate is arranged on the side edge of the side photovoltaic panel, a finished product spring telescopic rod is supported between the support plate and the side photovoltaic panel, top hinge seats are hinged on the upper and lower ends of the finished product spring telescopic rod, hinge tongues are fixed on the butt joints of the side photovoltaic panel and the support plate, and bolt shafts are inserted and arranged in the hinge tongues, and the two side photovoltaic panels and the support plates are symmetrically arranged on the two sides of the distribution box and the camera component.
[0011] As a further further of the scheme, the side edge of the support plate close to the distribution box is supported by an inner support frame, and the inner support frame is supported by a reinforcing rib at the bottom, the top of the distribution box is supported by a battery, and the front side of the battery covers the camera component.
[0012] As a further further of the scheme, the data cable is coiled and arranged in the inside of the upper support frame, the data cable is inserted into the inside of the upper roof, corresponding insertion line barrels are fixed on the upper and lower surfaces of the upper roof, outer rubber sleeves are fixed on the upper and lower ends of the insertion line barrels, elastic rings are fixed on the outer ends of the outer rubber sleeves, and the elastic rings are tied on the outside of the data cable.
[0013] As a further further of the scheme, the handle is supported at the rear side of the installation bottom bin, and the moving wheel is supported at the bottom of the installation bottom bin, and the moving wheel side corresponds to be provided with a presser foot, the upper part of the presser foot is fixed with a stud, and the stud is screwed into the corner of the bottom wall of the installation bottom bin, and the surface of the stud is screwed with a nut, and the two groups of nuts are located on the upper and lower of the bottom wall of the installation bottom bin, and the both sides of the installation bottom bin are hingedly provided with side doors.
[0014] Compared with the prior art, the utility model has the advantages that: the utility model is convenient for auxiliary expansion support and storage according to the use needs of the construction engineering site, auxiliary power supply is carried out at the same time, and the incomplete collection caused by power failure of the construction site is not prone to, so that the monitoring and video collection efficiency and effect are improved;
[0015] 1、The utility model discloses a support assembly for power distribution box and camera assembly, and is convenient for expansion and storage according to needs when using and not using, so that operation is more convenient, and can be selected according to needs, and is also convenient for subsequent storage and reduction of carrying, and is convenient for management and use in the construction engineering site.
[0016] 2、The utility model discloses a power distribution box, battery, inverter and processing module and photovoltaic module, and is convenient for power distribution of power distribution box, and photovoltaic module carries out photovoltaic power generation and storage under the cooperation of inverter and processing module and battery, so that operation is more convenient, and is convenient for continuous power supply of the device, does not depend on the power line of construction site, avoids the video collection of camera from being impossible because of the unexpected power failure of site, so that operation is more convenient and efficient, and the convenience and practicality of the video collection mechanism for construction engineering management are improved through the design. DRAWINGS
[0017] Figure 1 It is the structure front view solid schematic diagram when the utility model is used.
[0018] Figure 2 It is the structure front view solid schematic diagram when the utility model is used.
[0019] Figure 3 It is the structure front view solid schematic diagram when the utility model is used.
[0020] Figure 4 It is the structure front view solid schematic diagram when the utility model is used.
[0021] In the figure: 100, installation bottom warehouse; 101, handle; 102, moving wheel; 103, presser foot; 104, stud; 105, nut; 106, side door; 110, damping assembly; 111, lower shell; 112, upper shell; 113, damping resistance and spring; 114, upper hinge seat; 115, lower hinge seat; 120, upper support frame; 121, upper top plate; 130, telescopic cylinder; 131, support; 132, sleeve ring; 140, distribution box; 150, camera assembly; 160, battery; 161, inverter and processing module; 170, photovoltaic assembly; 171, side photovoltaic panel; 172, support plate; 173, finished spring telescopic rod; 174, inner support frame; 175, reinforcing rib; 176, top photovoltaic panel; 177, top hinge seat; 178, hinge tongue; 179, bolt shaft; 180, data cable; 181, plug-in wire cylinder; 182, outer rubber sleeve; 183, elastic ring. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Please refer to Figures 1-4 An embodiment provided by the utility model:
[0024] A video acquisition mechanism for construction engineering management, comprising an installation bottom warehouse 100, the installation bottom warehouse 100 is provided with a damping assembly 110 on the top, and the upper part of the damping assembly 110 is covered with an upper support frame 120, the surface of the upper support frame 120 is fixedly provided with an upper top plate 121, and the rear side inside the upper support frame 120 is supported and assembled with a telescopic cylinder 130, the top of the telescopic cylinder 130 is supported with a distribution box 140, the inside of the distribution box 140 is assembled with a data storage assembly, the front side of the distribution box 140 is assembled with a camera assembly 150, the outside of the distribution box 140 is supported with a photovoltaic assembly 170, the front side inside the upper support frame 120 is fixedly provided with a battery 160, and the battery 160 is electrically connected with an inverter and processing module 161 corresponding to the photovoltaic assembly 170, and the inverter and processing module 161 is electrically connected with the inside of the distribution box 140 through a data cable 180;
[0025] As a more detailed embodiment of the present application, the damping assembly 110 includes a lower shell 111 supported on the surface of the mounting base 100, and an upper shell 112 covers the lower shell 111, a damping spring 113 is arranged around the inside of the lower shell 111 and the upper shell 112, the upper and lower parts of the damping spring 113 are hingedly connected with an upper hinge seat 114 and a lower hinge seat 115, and the upper hinge seat 114 and the lower hinge seat 115 are fixed to the inner top wall of the upper shell 112 and the inner bottom wall of the lower shell 111, respectively. Therefore, during assembly and use, auxiliary damping can be provided according to the needs of use, so that subsequent movement is more convenient and efficient.
[0026] As a more detailed embodiment of the present application, the telescopic cylinder 130 is inserted into the inside of the upper top plate 121, the upper top plate 121 is supported by a support 131, the support 131 is sleeved on the outer wall of the telescopic cylinder 130, the telescopic cylinder 130 is sleeved with a sleeve ring 132, and the two sleeve rings 132 abut against the upper and lower surfaces of the upper top plate 121. Therefore, during assembly and use, auxiliary limiting support can be provided according to the needs of use, so that subsequent operation is more stable.
[0027] As a more detailed embodiment of the present application, the photovoltaic assembly 170 includes a side photovoltaic panel 171, a support plate 172 is arranged on the side of the side photovoltaic panel 171, a finished spring telescopic rod 173 is supported between the support plate 172 and the side photovoltaic panel 171, a top hinge seat 177 is hingedly connected to the upper and lower ends of the finished spring telescopic rod 173, a hinge tongue 178 is fixed to the abutting portion of the side photovoltaic panel 171 and the support plate 172, a bolt shaft 179 is inserted and assembled in the inside of the hinge tongue 178, and the two groups of side photovoltaic panels 171 and support plates 172 are symmetrically arranged on the two sides of the distribution box 140 and the camera assembly 150. Therefore, during assembly and use, auxiliary expansion and folding can be provided according to the needs of use, which is convenient for expansion and folding, and makes subsequent transportation more convenient.
[0028] As a more detailed embodiment of the present application, the support plate 172 is supported by an inner support frame 174 near the side of the distribution box 140, the inner support frame 174 is supported by a reinforcing rib 175 at the bottom, the distribution box 140 is supported by a storage battery 160 at the top, and the storage battery 160 is covered above the camera assembly 150 at the front side. Therefore, during assembly and use, auxiliary support and auxiliary reinforcement can be provided according to the needs of use, which is convenient for covering and maintaining the camera assembly 150, and makes operation more convenient.
[0029] As a more detailed embodiment of the present embodiment, the data cable 180 is coiled and arranged inside the upper frame 120, and the data cable 180 is inserted through the inside of the upper top plate 121, and the upper top plate 121 is fixed with corresponding insertion line cylinders 181, and the upper and lower ends of the insertion line cylinders 181 are fixed with outer rubber sleeves 182, and the outer ends of the outer rubber sleeves 182 are fixed with elastic rings 183, and the elastic rings 183 are tied outside the data cable 180. In this way, during assembly and use, it is convenient to assist in extension and storage according to the needs of use, so that subsequent use is convenient for auxiliary limiting at the insertion of the upper top plate 121, so that the operation is more convenient;
[0030] As a more detailed embodiment of the present embodiment, the mounting bottom bin 100 is supported by a handle 101 at the rear side, and a moving wheel 102 is supported at the bottom of the mounting bottom bin 100, and a pressing foot 103 is provided on the side of the moving wheel 102, a threaded hole is provided on the surface of the threaded hole, and a threaded hole is provided on the surface of the threaded hole. The threaded sleeve 104 is inserted into the threaded hole of the mounting bottom bin 100 at the corner of the bottom wall, and the threaded sleeve 104 is provided with a threaded sleeve 105, and the two groups of threaded sleeves 105 are respectively located on the upper and lower of the mounting bottom bin 100. The side door 106 is hingedly arranged on both sides of the mounting bottom bin 100. In this way, during operation, it is convenient to assist in limiting support and moving according to the needs of use, so that the operation is more convenient.
[0031] Working principle: in operation, under the cooperation of the handle 101 and the moving wheel 102, it is convenient to move, and then under the cooperation of the pressing foot 103 and the threaded hole 104, it is convenient to press the pressing foot 103, which is convenient for limiting support of the mounting bottom bin 100, and is also convenient for upward storage and cooperation with the moving, so that the operation is more convenient. When moving, it is convenient to assist in shock absorption and buffering through the shock absorbing assembly 110, which is convenient for shock absorption and protection of the battery 160, the distribution box 140 and the camera assembly 150 and the telescopic cylinder 130 during movement, avoiding damage due to vibration. Further, under the cooperation of the telescopic cylinder 130, it is convenient to lift and support the distribution box 140 and the camera assembly 150, and to retract and store, so that the expansion and storage are more convenient. Under the cooperation of the finished spring telescopic rod 173, it is convenient to limit the support of the side photovoltaic panel 171 when it is turned over. In this way, it is convenient to cooperate with the top photovoltaic panel 176 to generate electricity and store under the cooperation of the inverter and processing module 161, which is convenient for the battery 160 to assist in power supply and operation of the distribution box 140 and the camera assembly 150 and the telescopic cylinder 130, so that the operation is more convenient. In this way, the device is continuously powered, and the video collection work of the camera assembly 150 is realized. When not in use, as shown in Figure 4 , the telescopic cylinder 130 is retracted, and the side photovoltaic panel 171 is turned over and folded for storage, which is convenient for subsequent transportation and maintenance;
[0032] The shock-absorbing damping and spring 113, the telescopic cylinder 130, the camera assembly 150, the finished spring telescopic rod 173, the side photovoltaic panel 171, the top photovoltaic panel 176, and the battery 160 and the inverter and processing module 161 are basically mature in the market, and corresponding finished products can be purchased according to needs, and the assembly structure and use principle are known to those skilled in the art, so no further description is made herein.
[0033] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any person skilled in the art can easily implement the present application according to the drawings and the above description; however, any equivalent changes, modifications and evolution made by those skilled in the art within the scope of the technical scheme of the present application, using the above disclosed technical content, are equivalent embodiments of the present application; at the same time, any equivalent changes, modifications and evolution made according to the essential technology of the present application to the above embodiments are still within the protection scope of the technical scheme of the present application.
Claims
1. A video acquisition mechanism for construction engineering management, comprising an installation bottom bin (100), characterized in that: The top of the installation bottom warehouse (100) is equipped with a damping assembly (110), and the upper part of the damping assembly (110) is covered with an upper support frame (120), the surface of the upper support frame (120) is fixedly provided with an upper top plate (121), and the rear side inside the upper support frame (120) is supported and equipped with a telescopic cylinder (130), the top of the telescopic cylinder (130) is supported with a distribution box (140), and the inside of the distribution box (140) is equipped with a data storage assembly, and the front side of the distribution box (140) is equipped with a camera assembly (150), the outside of the distribution box (140) is supported with a photovoltaic assembly (170), and the front side inside the upper support frame (120) is fixedly provided with a storage battery (160), and the storage battery (160) is electrically connected with an inverter and a processing module (161) corresponding to the photovoltaic assembly (170), and the inverter and the processing module (161) are electrically connected with the inside of the distribution box (140) through a data cable (180).
2. The video acquisition mechanism for construction engineering management according to claim 1, characterized in that: The damping assembly (110) includes a lower shell (111) supported on the surface of the installation bottom warehouse (100), and an upper shell (112) covers the upper part of the lower shell (111), and the inside of the lower shell (111) and the upper shell (112) is provided with a damping and spring (113) around, the upper part and the lower part of the damping and spring (113) are hinged with an upper hinge seat (114) and a lower hinge seat (115), and the upper hinge seat (114) and the lower hinge seat (115) are fixed on the inner top wall of the upper shell (112) and the inner bottom wall of the lower shell (111) respectively.
3. The video acquisition mechanism for construction engineering management according to claim 1, characterized in that: The lower part of the telescopic cylinder (130) penetrates and is inserted into the inside of the upper top plate (121), the upper top plate (121) is supported with a support (131) on the upper part, and the support (131) is sleeved on the outer wall of the telescopic cylinder (130), the lower part of the telescopic cylinder (130) is sleeved with a sleeve ring (132), and the two sleeve rings (132) are in contact with the upper and lower surfaces of the upper top plate (121).
4. The video collection mechanism for construction engineering management according to claim 1, characterized in that: The photovoltaic assembly (170) includes a side photovoltaic panel (171), the side photovoltaic panel (171) is provided with a support plate (172) on the side, and a finished spring telescopic rod (173) is supported between the support plate (172) and the side photovoltaic panel (171), the upper and lower ends of the finished spring telescopic rod (173) are hinged with a top hinge seat (177), the butt joint of the side photovoltaic panel (171) and the support plate (172) is fixedly provided with a hinge tongue (178), and the inside of the hinge tongue (178) is penetrated and inserted with a bolt shaft (179), and the two groups of side photovoltaic panels (171) and support plates (172) are symmetrically arranged on both sides of the distribution box (140) and the camera assembly (150).
5. The video acquisition mechanism for construction engineering management according to claim 4, characterized in that: The side edge of the support plate (172) close to the distribution box (140) is supported with an inner support frame (174), and the inner support frame (174) is supported with a reinforcing rib (175) at the bottom, the top of the distribution box (140) is supported and equipped with a storage battery (160), and the front side of the storage battery (160) covers above the camera assembly (150).
6. The video acquisition mechanism for construction engineering management according to claim 1, characterized in that: The data cable (180) is bent and coiled inside the upper frame (120), the data cable (180) is inserted through the inside of the upper top plate (121), the upper top plate (121) is fixed with corresponding insertion wire barrels (181) on the top and bottom, the insertion wire barrels (181) are fixed with outer rubber sleeves (182) on the top and bottom, the outer rubber sleeves (182) are fixed with elastic rings (183) on the outer ends, and the elastic rings (183) are tied on the outside of the data cable (180).
7. The video acquisition mechanism for construction engineering management according to claim 1, characterized in that: The mounting bottom bin (100) is supported with a handle (101) on the rear side, and is supported with a moving wheel (102) on the bottom, and the moving wheel (102) is provided with a presser foot (103) on the side edge, the presser foot (103) is fixed with a stud (104) on the upper part, the stud (104) is inserted in the bottom wall corner of the mounting bottom bin (100) in a threaded manner, the stud (104) is threaded with a nut (105) on the surface, and the two groups of nuts (105) are respectively located on the top and bottom of the bottom wall of the mounting bottom bin (100), and the mounting bottom bin (100) is hingedly provided with a side door (106) on both sides.
Citation Information
Patent Citations
Video acquisition mechanism for construction engineering management
CN222526777U