Natural resource survey monitoring data recording device

By designing a natural resource survey monitoring data recording device including a first adjustment component and a second adjustment component, the problem of poor coupling transmission of the adjustment component in the prior art is solved, and flexible adjustment of the height and position of the monitor is realized, which significantly improves the speed and efficiency of monitoring data recording.

CN120213137AInactive Publication Date: 2025-06-27GUANGZHOU QUANCHENG DUOWEI INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510700043.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The coupling transmission between the adjustment components of the existing natural resource survey monitoring data recording device is poor, and it is difficult to achieve diversified adjustment coordination in one action, resulting in less rapidity in monitoring data recording.

Method used

A natural resource survey monitoring data recording device including a first adjustment component and a second adjustment component is designed. The first adjustment assembly drives the first pulley set by a motor to realize rotation of the screw and upward movement of the moving plate, thereby adjusting the height of the monitor. The second adjustment component realizes intermittent rotation of the rotary rod and lateral movement of the sliding plate through the coordination of the connecting shaft and the transmission groove, satisfying the various adjustments of the monitoring position.

Benefits of technology

By optimizing the design of the adjustment components, flexible adjustment of the monitor height and monitoring position is achieved, which significantly improves the rapidity and efficiency of monitoring data recording and meets the needs of efficient monitoring of natural resources.

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Abstract

The invention discloses a natural resource survey monitoring data recording device, which relates to the technical field of natural resource survey monitoring and comprises a bracket, a first adjusting assembly and a second adjusting assembly, according to the invention, a first adjusting assembly, namely a first belt pulley set, is arranged to rotate a screw rod, so that a moving plate and a connecting frame move upwards, a transverse plate is moved upwards indirectly, flexible adjustment of the monitoring heights of an outer side monitor main body, a wind power sensor and a temperature and humidity sensor is realized, and meanwhile, the moving plate moves upwards to drive a connecting shaft connected in the middle so as to adjust the monitoring height of the outer side monitor main body, the wind power sensor and the temperature and humidity sensor. A connecting shaft is matched with a transmission groove formed in the outer portion of a rotating cylinder to indirectly achieve rotation of a rotating rod, so that a moving structure installed in a transmission transverse plate operates in a transmission mode to indirectly achieve lateral adjustment of a wind power sensor and a temperature and humidity sensor, and meanwhile an unfolding structure installed in a sliding plate can automatically unfold and operate. The monitoring position is further adjusted, the adjustability is greatly enhanced, and efficient monitoring and recording of natural resources are met.
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Description

Technical Field

[0001] The present invention relates to the technical field of natural resource investigation and monitoring, and particularly to a data recording device for natural resource investigation and monitoring. Background Art

[0002] Natural resource investigation and monitoring are a series of activities for investigating and monitoring the conditions, change trends, and potential hazards of different natural resources. Natural resource investigation and monitoring mainly include multiple aspects such as atmosphere, vegetation, hydrology, geology, forest, animals and plants, nature reserves, etc. The content of these investigations and monitors not only involves the reserves and conditions of natural resources, but also includes environmental pollution, land use, and natural disasters, etc., all of which play important roles in natural resource investigation and monitoring.

[0003] There is a data recording device for natural resource investigation and monitoring with the application number CN202321705334.X, which includes a monitoring device. The monitoring device includes: a monitor, with a base provided at its bottom; a support device is provided at the bottom of the monitoring device, and the support device includes: an electric telescopic rod provided at the bottom of the base; a chassis provided at the bottom of the electric telescopic rod; a moving component provided at the bottom of the chassis; a rotating component penetrating through the top of the chassis and fixedly connected to the bottom of the electric telescopic rod. This monitoring device realizes the conversion of the orientation of the monitoring instrument through the use of the rotating component, enabling the monitor to change the direction to monitor the natural environment in different orientations at the same monitoring location. At the same time, the electric telescopic rod is used to facilitate the monitoring personnel to adjust the height of the monitor. The entire device can be conveniently moved to a preset monitoring location through the moving component, and the monitoring device is fixed to improve the stability of the device.

[0004] In the above-mentioned existing patent, through the setting of the monitor, the monitoring and recording of natural resource data such as natural air pressure, temperature and humidity, wind force, etc. are realized. At the same time, with the cooperation of the rotating component, the electric telescopic rod and the moving component, the adjustment of the monitoring orientation, height, and position can be realized. However, the adjustment components are independent of each other, and the connection and transmission performance between the components is poor. It is relatively difficult to achieve diverse adjustment cooperation in one action. Furthermore, the above-mentioned existing technology is less efficient in the adjustment speed of the data recording device for monitoring. Summary of the Invention

[0005] The purpose of the present invention is to provide a data recording device for natural resource investigation and monitoring to solve the problems raised in the above background art.

[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a natural resource survey monitoring data recording device, including a bracket, a control box is provided on the front side of the upper end of the bracket, a first adjustment component is installed on the rear side of the upper end of the bracket, the upper end of the first adjustment component is connected to a fixed plate, and the fixed plate is fixedly connected to the rear side of the upper end of the bracket, a second adjustment component is installed on the lower end of the front side of the fixed plate, and the lower end of the second adjustment component is connected to the first adjustment component, the outer side of the second adjustment component is connected to a horizontal plate, a monitoring instrument body is installed on the front side of the horizontal plate, and a control box is provided on one side of the horizontal plate. There is a wind sensor, and a temperature and humidity sensor is provided on the other side of the cross plate. The first adjusting component also includes a connecting plate, which is fixedly mounted on the upper rear end of the bracket, and a motor is installed on the lower end of the connecting plate. The top output end of the motor is connected to the first pulley group, and the front side of the first pulley group is connected to the screw rod. The lower end of the screw rod is connected to a movable plate with external threads, and a connecting frame is fixedly mounted on the rear side of the movable plate. The front side of the connecting frame is connected to the cross plate, and a roller group is installed on the rear side of the connecting frame, and the roller group is connected to the outer side of the guide bar, and the guide bar is fixed to the upper rear end of the bracket.

[0007] Preferably, the second adjustment component includes a connecting shaft, which is installed on the front side of the movable plate, and a roller is installed on the front side of the connecting shaft. A transmission groove is opened on the outside of the roller, and the inside of the transmission groove is connected to the outside of the connecting shaft, the upper end of the roller is connected to the second pulley group, and the front side of the second pulley group is connected to the rotating rod, a moving structure is installed on the outside of the rotating rod, and the moving structure is installed inside the cross plate, an auxiliary wind sensor is provided on one side of the moving structure, and an auxiliary temperature and humidity sensor is provided on the other side of the moving structure.

[0008] Preferably, the movable structure includes a driving wheel, which is rotatably installed inside the cross plate, and the middle part of the driving wheel is connected to the outside of the rotating rod, the outside of the driving wheel is docked with a toothed belt, and the toothed belt is docked with driven wheels on both sides, a moving seat is provided on the outside of the toothed belt, and the outside of the moving seat is locked and docked with a sliding plate, and an unfolding structure is installed inside the sliding plate.

[0009] Preferably, the unfolding structure includes a hollow groove, which is opened inside the sliding plate, and a support arm is rotatably connected inside the hollow groove, the middle part of the support arm is connected to the connecting arm, and one side of the connecting arm is connected to the sliding block, a guide rod is inserted into the sliding block, a damper is connected to the middle part of the sliding block, and a spring is installed at the outer end of the damper.

[0010] Preferably, the roller groups are arranged in pairs along both sides of the rear end of the connecting frame, and the upper and lower roller groups are both connected to the outer side of the guide rail.

[0011] Preferably, the transmission groove is composed of a vertical groove connected to a spiral groove, and the interior of the transmission groove is connected to a connecting shaft installed in the middle of the front side of the movable plate.

[0012] Preferably, vertical grooves are integrally formed inside both the left and right sides of the rotating rod, and the rotating rod is in limit butt joint with the middle part of the driving wheel through the vertical grooves formed on both sides.

[0013] Preferably, the moving seats are symmetrically arranged on the left and right along the outer side of the toothed belt, and one ends of the two moving seats are connected to the outside of the toothed belt.

[0014] Preferably, the sliding plates are installed to slide horizontally on both sides of the upper end of the cross plate, and a wind sensor and a temperature and humidity sensor are respectively butted at the upper ends of the two sliding plates.

[0015] Preferably, the length of the support arm is shorter than the horizontal length of the hollow groove, and an auxiliary wind sensor and an auxiliary temperature and humidity sensor are respectively installed at the rotating butt joint ends of the support arm away from the hollow groove.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] By setting the first adjustment component in the present invention, that is, with the transmission of the first pulley group, the screw can be rotated to make the moving plate externally installed thereon move upward. Thus, the moving plate can drive the connecting frame to indirectly move the cross plate upward. In this way, the monitoring instrument body, the wind sensor and the temperature and humidity sensor installed on the outer side of the cross plate can flexibly adjust the monitoring height. At the same time, when the moving plate moves upward, it can drive the connecting shaft arranged in the middle, so that the connecting shaft cooperates with the transmission groove installed on the outside of the rotating cylinder to indirectly rotate the rotating rod. Thus, the moving structure installed inside the cross plate can be driven to quickly move the two sliding plates laterally, so that the wind sensor and the temperature and humidity sensor can perform lateral adjustment monitoring. At the same time, the unfolding structure installed inside the sliding plate can move outward automatically with the outward movement, so that the monitoring position can be further adjusted, greatly enhancing the adjustability and meeting the efficient monitoring, acquisition and recording of natural resources.

[0018] The setting of the first adjustment component, that is, the motor can rotate the first pulley group. In this way, the screw arranged at the lower end of the front side of the first pulley group can be rotated. As the screw rotates, the moving plate threadedly connected to the outside of the screw can drive the connecting frame fixed at the rear side. In this way, the connecting frame can drive the cross plate arranged at the front side to efficiently and flexibly adjust the monitoring height of the monitoring instrument body, the wind sensor and the temperature and humidity sensor, so as to quickly monitor, acquire and record natural resources at different heights.

[0019] The setting of the roller group and the guide rail strip, that is, when the connecting frame moves upward with the transmission, the docking effect between the roller group arranged in a pair and the corresponding guide rail can be used for moving guidance and boosting cooperation, making the monitoring height adjustment process more flexible and stable.

[0020] The setting of the second adjusting component, that is, when the movable plate moves upward, the connecting shaft installed in the middle of the front side will cooperate with the transmission groove arranged on the outside of the rotating drum, that is, when the connecting shaft moves along the vertical groove inside the transmission groove, the rotating drum will not rotate. When it moves into the spiral groove, the intermittent pushing rotation of the rotating drum can be realized. In this way, the second adjusting component can perform intermittent transmission cooperation with the upward movement of the movable plate to ensure the stability of subsequent adjustments and the synchronization of the linkage transmission stroke.

[0021] The arrangement of the second pulley group, the rotating rod and the moving structure, that is, the second pulley group can synchronously realize the rotation of the rotating rod connected to the lower end of the front side when the rotating rod rotates intermittently with the rotating drum. As the rotating rod rotates, the driving wheel connected to the outside of the rotating rod will rotate synchronously, and cooperate with the toothed belt installed on the outside to realize the synchronous rotation of the driven wheels arranged on both sides. As a result, the moving seats installed on both sides of the outer end of the toothed belt can synchronously move laterally relative to each other along the inside of the cross plate, and thereby drive the sliding plate installed on the outside to move laterally outward. In this way, the wind force sensors and temperature and humidity sensors correspondingly installed on the outer ends of the sliding plates on both sides can synchronously realize lateral outward adjustment with the height adjustment activity to meet the lateral movement adjustment of the monitoring position and realize further expansion of the monitoring range.

[0022] The setting of the expansion structure, that is, when the sliding plate moves outward, the slider installed in the hollow groove opened inside will release the locking effect to cooperate with the pulling effect of the damper and spring connected to the middle side to move inward. As the slider moves inward, the connecting arm installed on the outside of the slider can realize the outward push of the support arm connected to one end, so that the support arm in the retracted state can automatically realize the outward adjustment of the auxiliary wind sensor or auxiliary temperature and humidity sensor connected to the outer end, so that the monitoring position of the auxiliary wind sensor or auxiliary temperature and humidity sensor is automatically adjusted, and combined with the wind sensor and the temperature and humidity sensor, further acquisition and recording of natural resource data can be realized. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a structural schematic diagram of the present invention;

[0024] Figure 2 This is a schematic diagram of the structure of the first adjustment component of the present invention;

[0025] Figure 3 This is a schematic diagram of the structure of the second adjustment component of the present invention;

[0026] Figure 4 It is a schematic diagram of the three-dimensional combined structure of the first adjustment component and the second adjustment component of the present invention;

[0027] Figure 5 This is a schematic diagram of the internal structure of the mobile structure of the present invention from a top view;

[0028] Figure 6This is a schematic top view of the deployment structure of the present invention.

[0029] In the figure: support - 1, control box - 2, first adjustment component - 3, connecting plate - 31, motor - 32, first pulley group - 33, screw rod - 34, moving plate - 35, connecting frame - 36, roller group - 37, guide rail bar - 38, fixed plate - 4, second adjustment component - 5, connecting shaft - 51, roller - 52, transmission groove - 53, second pulley group - 54, rotating rod - 55, moving structure - 56, driving wheel - 561, toothed belt - 562, driven wheel - 563, moving seat - 564, sliding plate - 565, deployment structure - 566, hollow groove - 5661, support arm - 5662, connecting arm - 5663, slider - 5664, guide rod - 5665, damper - 5666, spring - 5667, auxiliary wind sensor - 57, auxiliary temperature and humidity sensor - 58, cross - plate - 6, monitor main body - 7, wind sensor - 8, temperature and humidity sensor - 9. Detailed implementation manners

[0030] In order to further explain the technical solution of the present invention, it will be elaborated in detail through specific embodiments below.

[0031] Please refer to Figure 1 , the present invention provides a natural resource investigation and monitoring data recording device, including a support 1. A control box 2 is provided on the front side of the upper end of the support 1. A first adjustment component 3 is installed on the rear side of the upper end of the support 1. The upper end of the first adjustment component 3 is connected to a fixed plate 4, and the fixed plate 4 is fixedly connected to the rear side of the upper end of the support 1. A second adjustment component 5 is installed at the lower front side of the fixed plate 4, and the lower end of the second adjustment component 5 is connected to the first adjustment component 3. The outside of the second adjustment component 5 is connected to a cross - plate 6, and the rear side of the cross - plate 6 is connected to the first adjustment component 3. A monitor main body 7 is installed in the middle of the front side of the cross - plate 6. A wind sensor 8 is installed on the left side of the cross - plate 6, and a temperature and humidity sensor 9 is installed on the right side of the cross - plate 6.

[0032] Specifically, when conducting natural resource monitoring data recording activities, the operation of the monitor main body 7 installed in the middle of the front side of the cross - plate 6 can be realized through the control box 2 provided on the front side of the upper end of the support 1. When the wind sensor 8 and the temperature and humidity sensor 9 are in an operating state, the real - time monitoring of the wind and temperature and humidity conditions in the external environment can be efficiently realized. The monitored data can be transmitted to the inside of the monitor main body 7 for data storage and recording, so as to ensure that when the staff needs to view the data, the natural resource data monitored can be obtained in a timely manner.

[0033] Please refer to Figure 2The first adjustment component 3 in this embodiment also includes a connecting plate 31, which is fixedly connected to the upper end of the rear side of the bracket 1, and a motor 32 is installed at the lower end of the connecting plate 31. The top output end of the motor 32 is connected to the first pulley group 33, and the front side of the first pulley group 33 is connected to the screw 34. The lower end of the screw 34 is connected to a movable plate 35 by an external thread, and the screw 34 is rotatably connected to the lower end of the fixed plate 4. The rear side of the movable plate 35 is fixedly connected to a connecting frame 36, and the front side of the connecting frame 36 is connected to the cross plate 6. A roller group 37 is installed on the rear side of the connecting frame 36, and the roller group 37 is connected to the outer side of the guide bar 38, so that the up and down adjustment guide assistance can be achieved. The guide bar 38 is vertically fixedly connected to the upper rear end of the bracket 1 symmetrically.

[0034] Among them, the roller groups 37 are arranged in pairs along both sides of the rear end of the connecting frame 36, and the upper and lower roller groups 37 are connected to the outer side of the guide rail 38, so that stable movement guidance and stable assistance can be achieved to ensure the stability of the up and down movement adjustment process.

[0035] Specifically, when the height adjustment of the monitoring position is required, the motor 32 installed at the lower end of the connecting plate 31 can be operated to enable the motor 32 to realize the operation of the first pulley group 33 connected to the top output end, and as the first pulley group 33 rotates, the screw 34 connected to the lower end of the front side of the first pulley group 33 can rotate accordingly, and through the thread transmission effect, the upward movement of the externally threaded connecting moving plate 35 can be realized, so that the connecting frame 36 fixed to the rear side of the moving plate 35 will realize the upward movement of the horizontal plate 6 connected to the front side, so that the monitoring instrument body 7, wind force sensor 8 and temperature and humidity sensor 9 installed on the left and right sides of the upper end of the horizontal plate 6 are synchronously moved upward, so as to realize the flexible upward adjustment of the monitoring height;

[0036] Secondly, when the connecting frame 36 moves upward, the roller group 37 and the guide bar 38 arranged on both sides of the rear end of the connecting frame 36 can be connected to each other to achieve mobile guiding coordination, enhance the smoothness of the up and down movement adjustment, and enable the monitoring instrument body 7, wind sensor 8 and temperature and humidity sensor 9 to synchronously achieve flexible adjustment of the stable monitoring height, thereby meeting the rapid monitoring activities of natural resource data at different heights.

[0037] See also Figures 3-6, in this embodiment, the second adjustment component 5 includes a connecting shaft 51. The connecting shaft 51 is installed on the front side of the moving plate 35. The front side of the connecting shaft 51 is connected to a roller 52. The upper and lower ends of the roller 52 are respectively rotatably connected to the fixed plate 4 and the bracket 1. A transmission groove 53 is formed on the outer side of the roller 52. The inner part of the transmission groove 53 is connected to the outer side of the connecting shaft 51. The top of the roller 52 is connected to the rear side of the second pulley group 54. The front side of the second pulley group 54 is connected to the upper end of a rotating rod 55. The upper end of the rotating rod 55 is rotatably connected to the fixed plate 4. A moving structure 56 is installed on the outer side of the rotating rod 55. The moving structure 56 is installed inside the cross plate 6. An auxiliary wind sensor 57 is arranged on one side of the moving structure 56, and an auxiliary temperature and humidity sensor 58 is arranged on the other side of the moving structure 56.

[0038] Among them, the moving structure 56 includes a driving wheel 561. The driving wheel 561 is rotatably installed in the middle of the cross plate 6. The middle part of the driving wheel 561 is connected to the outer side of the rotating rod 55. A toothed belt 562 is connected to the outer side of the driving wheel 561. Driven wheels 563 are connected to the left and right sides of the toothed belt 562. Thus, through the arrangement of the toothed belt 562, the driving wheel 561 can stably drive the synchronous rotation of the driven wheels 563 on the left and right sides. Moving seats 564 that can move relatively or in opposite directions are installed on both outer sides of the toothed belt 562. Sliding plates 565 are tightly connected to the outer sides of the two moving seats 564. The sliding plates 565 are embedded in the left and right sides of the cross plate 6. An unfolding structure 566 is installed inside the sliding plates 565.

[0039] Among them, the unfolding structure 566 includes a hollow groove 5661. The hollow groove 5661 is formed inside the sliding plate 565. Support arms 5662 are rotatably connected to both sides inside the hollow groove 5661. Connecting arms 5663 are rotatably connected to the middle parts of the two support arms 5662. The side of the connecting arm 5663 far from one support arm 5662 is rotatably connected to the upper end of a slider 5664. Guide rods 5665 for moving and guiding cooperation are horizontally inserted into both sides inside the slider 5664. A damper 5666 is connected to the middle of the slider 5664. A spring 5667 is installed at the outer end of the damper 5666.

[0040] Among them, the transmission groove 53 is composed of a vertical groove and a spiral groove in communication. The inner part of the transmission groove 53 is connected to the connecting shaft 51 installed in the middle of the front side of the moving plate 35. It is ensured that through the guiding cooperation of the vertical groove and the spiral groove in the transmission groove 53, with the up and down movement of the connecting shaft 51, intermittent rotational transmission cooperation is achieved; vertical grooves are integrally formed on the left and right sides inside the rotating rod 55. The rotating rod 55 is limited and connected to the middle part of the driving wheel 561 through the vertical grooves formed on both sides. Thus, when the cross plate 6 moves up and down, the driving wheel 561 can move up and down along the outer side of the rotating rod 55 without canceling the rotation effect, ensuring the stable progress of subsequent rotational transmission activities.

[0041] Among them, the movable seat 564 is symmetrically arranged along the outer side of the toothed belt 562, and one end of the movable seat 564 on both sides is connected to the outside of the toothed belt 562, ensuring that the movable seats 564 on both sides can realize relative or opposite transverse movement through the movement of the toothed belt 562; the sliding plate 565 is installed for transverse sliding along both sides of the upper end of the transverse plate 6, and the upper ends of the sliding plates 565 on both sides are respectively connected to the wind sensor 8 and the temperature and humidity sensor 9. In this way, the monitoring positions of the wind sensor 8 and the temperature and humidity sensor 9 can be flexibly realized by moving the sliding plates 565 on both sides. Lateral movement adjustment; the length of the support arm 5662 is shorter than the lateral length of the hollow slot 5661, and the auxiliary wind sensor 57 and the auxiliary temperature and humidity sensor 58 are respectively installed at the rotating docking end of the support arm 5662 away from the hollow slot 5661, and the auxiliary wind sensors 57 or the auxiliary temperature and humidity sensors 58 installed on the support arm 5662 are arranged in pairs, and there is a distance between adjacent auxiliary wind sensors 57 or auxiliary temperature and humidity sensors 58 to avoid obstruction caused by adjacent auxiliary wind sensors 57 or auxiliary temperature and humidity sensors 58.

[0042] Specifically, when the movable plate 35 moves upward with the rotation of the screw rod 34, the connecting shaft 51 connected to the middle part of the front side of the movable plate 35 will move upward to transmit power to the transmission groove 53 provided on the outside of the roller 52, that is, when the connecting shaft 51 moves along the vertical groove inside the transmission groove 53, the roller 52 will not be pushed, and the roller 52 will remain stationary. When the connecting shaft 51 moves into the spiral groove inside the transmission groove 53, the roller 52 can be intermittently pushed and rotated as a whole through the guidance of the spiral groove. In this way, the roller 52 will rotate intermittently and transmit the second pulley group 54 connected to the upper end accordingly. When the second pulley group 54 is in a rotating state, the rotation of the rotating rod 55 connected to the lower end of the front side will be realized, and through the rotation of the rotating rod 55, the connecting shaft 51 connected to the rotating rod 5 The driving wheel 561 on the outside can rotate synchronously and cooperate with the toothed belt 562 connected to the outside to synchronously drive the driven wheels 563 connected to the two sides. In this way, the movable seats 564 installed on the left and right sides of the outer ends of the toothed belt 562 can move in opposite directions along the inside of the horizontal plate 6. Therefore, the sliding plates 565 respectively connected to the outside of the movable seats 564 on both sides can move in opposite directions along the upper sides of the horizontal plate 6. Therefore, the wind force sensors 8 and the temperature and humidity sensors 9 installed on the outer ends of the sliding plates 565 on both sides can realize lateral movement adjustment to adjust the height with the upward movement, and realize synchronous lateral movement adjustment. In this way, various adjustment transmissions of the monitoring positions can be realized to further strengthen the monitoring of different positions and realize various monitoring, acquisition and recording of natural resource data.

[0043] Secondly, when the sliding plates 565 on both sides move laterally outwards, the slider 5664 installed at the hollow groove 5661 opened inside the sliding plate 565 will release the locking effect to cooperate with the elastic pulling-back movement of the spring 5667 provided outside the damper 5666 for inward movement. When the slider 5664 is in the inward movement process, the connecting arm 5663 rotatably docked on the outer side of the slider 5664 can push out the outer end-connected support arm 5662 along with the inward movement process. Thus, the support arm 5662 retracted inside the hollow groove 5661 can be automatically expanded laterally, thereby automatically realizing the outward movement of the auxiliary wind sensor 57 or the auxiliary temperature and humidity sensor 58 docked on the outside, adjusting the monitoring position outward, ensuring that the auxiliary wind sensor 57 and the auxiliary temperature and humidity sensor 58 can be combined with the wind sensor 8 and the temperature and humidity sensor 9 to realize the multi-directional monitoring and acquisition of wind and temperature and humidity data, and significantly enhancing the acquisition efficiency of natural resource data;

[0044] When the sliding plates 565 on both sides move horizontally relative to each other, the movement of the unfolding structure 566 can be realized synchronously. When the unfolded support arm 5662 contacts the side of the cross plate 6 as it moves inward with the sliding plate 565, the extrusion of the two support arms 5662 will be realized. Thus, the two support arms 5662 will be simultaneously retracted into the hollow groove 5661. As the two support arms 5662 are retracted inward, the connecting arm 5663 docked in the middle of the support arm 5662 will push out the slider 5664 docked on the other side. In this way, the outward-moving slider 5664 will cooperate with the guiding of the guide rod 5665 to realize the stretching of the damper 5666 and the spring 5667. When the sliding plate 565 completes the inward movement and recovery activity, the overall synchronous inward retraction of the unfolding structure 566 and the locking of the internal spring 5667 will be realized to prepare for the next unfolding activity;

[0045] Meanwhile, when the first adjustment component 3 realizes the upward adjustment activity of the monitoring height of the cross plate 6, it can drive the second adjustment component 5 in a linkage manner to realize the lateral synchronous adjustment and auxiliary outward adjustment of the monitoring position. Moreover, since vertical grooves are integrally formed on both sides of the outer end of the rotating rod 55 and are in limit docking with the middle of the driving wheel 561, synchronous up and down movement can be realized without changing the rotation, so that the linkage driving effect between the first adjustment component 3 and the second adjustment component 5 is in a stable state.

[0046] The above are only the preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A natural resource survey monitoring data recording device, comprising a bracket (1), a control box (2) being provided at the front side of the upper end of the bracket (1), a first adjustment component (3) being installed at the rear side of the upper end of the bracket (1), the upper end of the first adjustment component (3) being connected to a fixing plate (4), and the fixing plate (4) being fixedly connected to the rear side of the upper end of the bracket (1), a second adjustment component (5) being installed at the lower end of the front side of the fixing plate (4), and the lower end of the second adjustment component (5) being connected to the first adjustment component (3), the outer side of the second adjustment component (5) being connected to a horizontal plate (6), a monitoring instrument body (7) being installed at the front side of the horizontal plate (6), a wind sensor (8) being provided at one side of the horizontal plate (6), and a temperature and humidity sensor (9) being provided at the other side of the horizontal plate (6); It is characterized in that: The first adjustment assembly (3) further comprises a connecting plate (31), the connecting plate (31) being fixedly mounted on the upper rear end of the bracket (1), a motor (32) being mounted on the lower end of the connecting plate (31), the top output end of the motor (32) being connected to a first belt pulley group (33), the front side of the first belt pulley group (33) being connected to a screw rod (34), the lower end of the screw rod (34) being connected to a movable plate (35) by external threads, a connecting frame (36) being fixedly mounted on the rear side of the movable plate (35), the front side of the connecting frame (36) being connected to the transverse plate (6), and a roller group (37) being mounted on the rear side of the connecting frame (36), the roller group (37) being connected to the outer side of a guide rail (38), and the guide rail (38) being fixed to the upper rear end of the bracket (1).

2. The natural resource survey and monitoring data recording device according to claim 1, characterized in that: The second adjustment assembly (5) comprises a connecting shaft (51), the connecting shaft (51) being mounted on the front side of the movable plate (35), a roller (52) being mounted on the front side of the connecting shaft (51), a transmission groove (53) being provided on the outside of the roller (52), and the inside of the transmission groove (53) being connected to the outside of the connecting shaft (51), an upper end of the roller (52) being connected to a second belt pulley set (54), a front side of the second belt pulley set (54) being connected to a rotating rod (55), a moving structure (56) being mounted on the outside of the rotating rod (55), and the moving structure (56) being mounted inside the transverse plate (6), an auxiliary wind force sensor (57) being provided on one side of the moving structure (56), and an auxiliary temperature and humidity sensor (58) being provided on the other side of the moving structure (56).

3. The natural resource survey and monitoring data recording device according to claim 2, wherein: The moving structure (56) comprises a driving wheel (561), the driving wheel (561) being rotatably mounted inside the transverse plate (6), and the middle portion of the driving wheel (561) being connected to the outside of the rotating rod (55), the outside of the driving wheel (561) being butt-jointed with a toothed belt (562), and both sides of the toothed belt (562) being butt-jointed with driven wheels (563), the outside of the toothed belt (562) being provided with a moving seat (564), and the outside of the moving seat (564) being lockedly butt-jointed with a sliding plate (565), and the inside of the sliding plate (565) being provided with an unfolding structure (566).

4. The natural resource survey and monitoring data recording device according to claim 3, wherein: The unfolding structure (566) comprises a hollow groove (5661), wherein the hollow groove (5661) is provided inside the sliding plate (565), a support arm (5662) is rotatably connected inside the hollow groove (5661), a middle portion of the support arm (5662) is connected to a connecting arm (5663), and one side of the connecting arm (5663) is connected to a sliding block (5664), a guide rod (5665) is inserted inside the sliding block (5664), a damper (5666) is butt-jointed at the middle portion of the sliding block (5664), and a spring (5667) is installed at the outer end of the damper (5666).

5. The data recording device for natural resource investigation and monitoring according to claim 1, wherein: The roller groups (37) are arranged in pairs along both sides of the rear end of the connecting frame (36), and the upper and lower roller groups (37) are both connected to the outer sides of the guide rail (38).

6. The data recording device for natural resource investigation and monitoring according to claim 2, wherein: The transmission groove (53) is composed of a vertical groove connected to a spiral groove, and the interior of the transmission groove (53) is connected to a connecting shaft (51) installed in the middle of the front side of the moving plate (35).

7. The natural resource survey and monitoring data recording device according to claim 2, characterized in that: Vertical grooves are integrally formed inside the left and right sides of the rotating rod (55), and the rotating rod (55) is limitedly connected to the middle of the driving wheel (561) through the vertical grooves formed on the two sides.

8. The natural resource survey and monitoring data recording device according to claim 3, wherein: The movable seats (564) are symmetrically arranged along the outer side of the toothed belt (562), and one end of the movable seats (564) on both sides is connected to the outer side of the toothed belt (562).

9. The data recording device for natural resource investigation and monitoring according to claim 3, characterized in that: The sliding plate (565) is installed to slide transversely along both sides of the upper end of the horizontal plate (6), and the upper ends of the sliding plates (565) on both sides are respectively connected to a wind force sensor (8) and a temperature and humidity sensor (9).

10. The natural resource survey and monitoring data recording device according to claim 4, characterized in that: The length of the support arm (5662) is shorter than the transverse length of the hollow groove (5661), and an auxiliary wind sensor (57) and an auxiliary temperature and humidity sensor (58) are respectively installed at the rotational butt joint end of the support arm (5662) away from the hollow groove (5661).

Citation Information

Patent Citations

  • Natural resource survey monitoring data recording device

    CN219914519U