Environment-friendly monitoring box

By adjusting the height and position of the monitoring box using the height adjustment and rotation components, the problem of fixed position of air monitoring equipment is solved, ensuring the accuracy of monitoring results and ease of operation.

CN223755086UActive Publication Date: 2026-01-02王鹏
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Patent Information

Application Number
CN202423023463.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2026-01-02
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The existing air monitoring equipment is fixed in its location after installation and cannot be adjusted in a timely manner, which causes the monitoring results to be affected by the installation location and may be inaccurate.

Method used

An adjustment component and a rotation component were designed to ensure air circulation by adjusting the height and position of the monitoring box body, thus avoiding localized poor air circulation from affecting the monitoring results.

Benefits of technology

The height and position of the monitoring box can be adjusted, ensuring the accuracy of monitoring results, expanding the scope of application, and reducing the labor intensity of operators.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223755086U_ABST
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Abstract

The utility model belongs to the technical field of unmanned aerial vehicle countering, and particularly relates to an environment-friendly monitoring box which comprises a bottom plate, a height adjusting assembly arranged on the bottom surface of the bottom plate, a rotating assembly arranged on the top surface of the bottom plate, a stand column arranged on the top surface of the rotating assembly, a limiting assembly connected with the stand column and a monitoring box body detachably connected with the limiting assembly. The monitoring box body monitors air around the position where the monitoring box body is located. After the height adjusting assembly adjusts the height of the bottom plate from the ground, the rotating assembly can rotate relative to the bottom plate, and the rotating rotating assembly drives the stand column, the limiting assembly and the monitoring box body to rotate together. The monitoring box body can be adjusted to the optimal air collection position by arranging the height adjusting assembly and the rotating assembly, and the situation that the monitoring result of the monitoring equipment is inaccurate due to non-circulation of local air is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to unmanned plane countermeasure technical field, especially relate to a kind of environmental protection monitoring box. BACKGROUND

[0002] In the process of national industrialization, many factories and enterprises are established, which effectively drive the employment of people, improve the social economy and improve the living standard of people. However, everything has two sides. Many factories and enterprises will produce a certain degree of pollutants such as waste gas in the manufacturing process of products. These pollutants will inevitably cause great harm to the environment. In view of this problem, the state has made a series of measures, but the implementation of the measures cannot be separated from the monitoring of air quality by air monitoring equipment. Once the existing air monitoring equipment is installed, it cannot be timely replaced at its location, and it needs to be manually disassembled and reinstalled at a new location, which may affect the air monitoring results of the air monitoring equipment due to the installation location. Therefore, the utility model provides an environmental protection monitoring box. SUMMARY

[0003] In view of the above defects, the utility model aims at providing an environmental protection monitoring box, which comprises a height adjusting assembly and a rotating assembly. The position height and orientation of the monitoring box body can be effectively adjusted by the above two assemblies, so that the monitoring box body can accurately monitor the air quality of the area where it is located, avoid the influence of poor air on the monitoring results, and ensure the accuracy of the monitoring results.

[0004] In order to achieve the above purpose, the utility model provides an environmental protection monitoring box, which comprises a bottom plate, a height adjusting assembly arranged on the bottom surface of the bottom plate, a rotating assembly arranged on the top surface of the bottom plate, a stand column arranged on the top surface of the rotating assembly, a limiting assembly connected to the stand column, a monitoring box body detachably connected to the limiting assembly, and an air monitoring device arranged on the monitoring box body to monitor the air around the position where the monitoring box body is located. When the height adjusting assembly adjusts the height of the bottom plate from the ground, the rotating assembly can rotate relative to the bottom plate, and the rotating rotating assembly drives the stand column, the limiting assembly and the monitoring box body to rotate together.

[0005] Further, the height adjusting assembly comprises four groups of supporting columns arranged at four corners of the bottom plate. The height adjusting assembly comprises a supporting column. The supporting column is connected to the bottom surface of the bottom plate, and the supporting column is a cylinder. Two vertical sliding grooves and a plurality of horizontal sliding grooves are formed on the outer surface of the supporting column. The vertical sliding grooves are symmetrical to the axis of the supporting column, and the vertical sliding grooves are connected to the horizontal sliding grooves. The horizontal sliding grooves and the vertical sliding grooves are slidably connected to sliding blocks. The number of sliding blocks is two, and the two sliding blocks are symmetrical to the axis of the supporting column. The sliding blocks are connected to upper rings, the upper rings are connected to arc rib plates, the arc rib plates are connected to lower cylinders, and the sliding blocks, the upper rings, the arc rib plates and the lower cylinders are all sleeved on the outer layer of the supporting column.

[0006] Further, the rotating assembly comprises a rotating motor; the rotating motor is arranged on the top surface of the bottom plate, an output shaft of the rotating motor is connected with a driving gear, the driving gear is connected with a driven gear in a meshing mode, a bottom surface of the driven gear is connected with the rotating shaft, and a top surface of the driven gear is connected with the stand column; and the rotating shaft is rotatably connected with the bottom plate.

[0007] Further, the limiting assembly comprises a limiting plate, a screw rod and two nuts; the limiting plate is connected with the stand column in a side mode, a plurality of clamping interfaces and a limiting sliding groove are arranged on the top surface of the limiting plate, a clamping plate is connected with a certain clamping interface in a plug-in mode, and the limiting sliding groove is connected with two groups of side plates in a sliding mode; the two groups of side plates, the clamping plate and the stand column surround and tightly contact the monitoring box body; the screw rod is vertically arranged through the bottom of the two groups of side plates in sequence, and the two ends of the screw rod are respectively connected with the two nuts in a threaded mode; and the two nuts are respectively tightly arranged on the two groups of side plates.

[0008] Further, the monitoring box body comprises a base, the base is tightly arranged on the side plate, the clamping plate and the stand column, and a box body is arranged on the top surface of the base; an air inlet channel and an air outlet hole are arranged on the side surface of the box body, and a wireless connector is arranged on the box body; and a cabinet door is arranged on the front surface of the box body, and a data display screen is arranged on the cabinet door.

[0009] Compared with the prior art, the utility model has at least the following beneficial effects:

[0010] 1. The height of the monitoring box body relative to the ground is adjusted through the height adjusting assembly, and the position of the monitoring box body is adjusted through the rotating assembly; the monitoring box body can be adjusted to the best air collection position through the two assemblies, so that the inaccuracy of the monitoring result of the monitoring equipment caused by the local air not flowing is avoided; and the extension distances of the four height adjusting assemblies are adjusted, so that they can all abut against the ground, thereby ensuring the stability of the utility model and increasing the terrain adaptability of the utility model.

[0011] 2. The limiting assembly is arranged, so that different models of the monitoring box body can be clamped without the need of adaptive design, and the application range of the utility model is expanded. DRAWINGS

[0012] Figure 1 It is a perspective view of the utility model applied to an environmental protection monitoring box;

[0013] Figure 2 It is a perspective view of the utility model applied to an environmental protection monitoring box;

[0014] Figure 3 It is Figure 2 It is a local enlarged view of A in the middle;

[0015] Figure 4 It is Figure 2 It is a local enlarged view of B in the middle;

[0016] Figure 5The utility model is applied to a left view of an environmental protection monitoring box.

[0017] Figure 6 The utility model is applied to a front view of an environmental protection monitoring box.

[0018] Figures 1-6 Middle: 10, bottom plate, 200, height adjusting assembly, 210, support column, 211, vertical sliding slot, 212, horizontal sliding slot, 220, sliding block, 230, upper ring, 240, circular rib plate, 250, lower cylinder, 300, rotating assembly, 310, rotating motor, 320, driving gear, 330, driven gear, 340, rotating shaft, 40, stand, 500, limiting assembly, 510, limiting plate, 511, clamping port, 512, limiting sliding slot, 520, clamping plate, 530, side plate, 540, screw rod, 550, nut, 600, monitoring box main body, 610, base, 620, box body, 630, air inlet channel, 640, air outlet hole, 650, wireless connector, 660, cabinet door, 670, data display screen. DETAILED DESCRIPTION

[0019] In the description of the present embodiment, it should be noted that the terms "upper", "lower", "inner", "bottom" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the utility model product is usually placed, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0020] In the description of the present embodiment, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set", "connected", "connected" should be broadly understood.

[0021] In order to make the purpose, technical scheme and advantages of the utility model more clear, the embodiments of the utility model will be further described in detail below with reference to the drawings.

[0022] Reference Figures 1 to 6 The present embodiment discloses an environmental protection monitoring box, including bottom plate 10, bottom plate 10 bottom surface is provided with height adjusting assembly 200, bottom plate 10 top surface is provided with rotating assembly 300, and rotating assembly 300 top surface is provided with stand 40, and stand 40 is connected with limiting assembly 500, and limiting assembly 500 is detachably connected with monitoring box main body 600, and monitoring box main body 600 monitors the air around the position thereof;When height adjusting assembly 200 adjusts the height of bottom plate 10 from the ground, rotating assembly 300 can be rotated relative to bottom plate 10, and rotating rotating assembly 300 drives stand 40, limiting assembly 500 and monitoring box main body 600 to rotate together.

[0023] In use, the height of the monitoring box body 600 relative to the ground is adjusted by the height adjustment assembly 200, and the position of the monitoring box body 600 is adjusted by the rotating assembly 300. The monitoring box body 600 can be adjusted to the best air collection position through the two assemblies, so as to avoid the inaccuracy of the monitoring result of the monitoring equipment caused by the poor air circulation in the local area. The specific operation is as follows: after the environmental protection monitoring box is transported to the area where air monitoring is needed, the limiting assembly 500 is used to clamp the monitoring box body 600, and then the utility model is placed on the ground, so that the height adjustment assembly 200 directly contacts the ground. The height adjustment assembly 200 can adopt a device with a contraction function such as a hydraulic pressure. The height of the bottom plate 10 from the ground is adjusted by the extension degree of the hydraulic rod from the hydraulic cylinder, and then the height of the monitoring box body 600 from the ground is adjusted. Then, the rotating assembly 300 is rotated. The rotating assembly 300 can adopt a rotating wheel arranged on the bottom plate 10, and then a handle is arranged on the rotating wheel. The handle is manually rotated, so that the rotating wheel rotates relative to the bottom, and drives the stand column 40, the limiting assembly 500 and the monitoring box body 600 to rotate together. Through the above operation, the monitoring box body 600 can be placed in a position with air circulation, so as to ensure the accuracy of the monitoring result of the monitoring box body 600.

[0024] As a further scheme of the embodiment: the height adjustment assembly 200 is four groups, which are respectively arranged at the four corners of the bottom plate 10; the height adjustment assembly includes a support column 210; the support column 210 is connected to the bottom surface of the bottom plate 10, and the support column 210 is a cylinder, and two vertical sliding grooves 211 and a plurality of horizontal sliding grooves 212 are formed on the outer surface of the support column 210. The vertical sliding grooves 211 are symmetrical to the axis of the support column 210, and the vertical sliding grooves 211 are communicated with the horizontal sliding grooves 212; the horizontal sliding grooves 212 and the vertical sliding grooves 211 are both slidingly connected with sliding blocks 220, the number of the sliding blocks 220 is two, and the two sliding blocks 220 are symmetrical to the axis of the support column 210; the sliding blocks 220 are connected with upper circular rings 230, the upper circular rings 230 are connected with circular arc rib plates 240, the circular arc rib plates 240 are connected with lower cylinders 250, and the sliding blocks 220, the upper circular rings 230, the circular arc rib plates 240 and the lower cylinders 250 are all sleeved on the outer layer of the support column 210.

[0025] Further, the two vertical sliding grooves 211 are spaced 180 degrees apart, the two sliding blocks 220 are spaced 180 degrees apart, and the spacing of each horizontal sliding groove 212 is consistent; the number of the circular arc rib plates 240 can be two or three, and the spacing between each circular arc rib plate 240 is the same; the sliding blocks 220 are arranged on the inner side of the upper circular ring 230.

[0026] When the utility model is transported to the designated position, the staff first lifts the bottom plate 10, then rotates the lower cylinder 250 around the support column 210, and then drives the arc rib plate 240 and the upper ring 230 to rotate together, at this time, the sliding block 220 in the inner layer of the upper ring 230 slides along the horizontal sliding groove 212, until the sliding block 220 slides to the vertical sliding groove 211, then drags the lower cylinder 250 to move downward or upward, and then drives the arc rib plate 240 and the upper ring 230 to move downward or upward together, and makes the sliding block 220 slide along the vertical sliding groove 212, thereby adjusting the extension distance of the lower cylinder 250 relative to the support column 210, thereby realizing the height adjustment of the device; the two sliding blocks 220 are spaced 180 degrees, which can ensure that the extension part of the lower cylinder 250 is stable when it is supported after being extended relative to the support column 210, and the two vertical sliding grooves 211 are also spaced 180 degrees to match the setting of the two sliding blocks 220; the purpose of setting the arc rib plate 240 between the upper ring 230 and the lower sliding cylinder is to enable the operator to intuitively see the specific position of the sliding block 220 in the horizontal sliding groove 212 or the vertical sliding groove 211, and facilitate the operator to operate. The specific operation is as follows: the staff holds the lower cylinder 250 and checks the specific position of the sliding block 220 through the arc rib plate 240, then rotates the lower cylinder 250, and then drives the arc rib plate 240 and the upper ring 230 to rotate together, the two sliding blocks 220 connected with the upper ring 230 slide along the horizontal sliding groove 212 where they are located, until the two sliding blocks 220 slide into the vertical sliding groove 211 respectively, then drag the lower cylinder 250 to move downward, and then drive the arc rib plate 240 and the upper ring 230 to move downward together, and the sliding block 220 slides downward along the vertical sliding groove 211, thereby adjusting the extension distance of the lower cylinder 250 relative to the support column 210; then, select the horizontal sliding groove 212 at the appropriate height position, rotate the lower cylinder 250, and then slide the sliding block 220 into the selected horizontal sliding groove 212, and ensure that the sliding block 220 is staggered with the vertical sliding groove 211, thereby increasing the height of the utility model relative to the ground. When it is necessary to lower the overall height of the utility model, the operation process is opposite to the above process. Through this setting, on the one hand, the height adjustment of the utility model can be realized; on the other hand, when the ground where the utility model is placed is not flat, the extension distance of the four groups of height adjusting assemblies 200 can be adjusted, so that they can all resist the ground, thereby ensuring the stability of the utility model and increasing the terrain adaptability of the utility model.

[0027] As a further scheme of the embodiment, the rotating assembly 300 comprises a rotating motor 310; the rotating motor 310 is arranged on the top surface of the bottom plate 10, the output shaft of the rotating motor 310 is connected with the driving gear 320, the driving gear 320 is engaged with the driven gear 330, the bottom surface of the driven gear 330 is connected with the rotating shaft 340, the top surface of the driven gear 330 is connected with the stand column 40, and the rotating shaft 340 is rotatably connected with the bottom plate 10.

[0028] Further, a sleeve is arranged on the top surface of the bottom plate 10, the sleeve is sleeved on the outer layer of the rotating shaft 340, and the sleeve and the rotating shaft 340 are connected in a sliding mode.

[0029] Through the arrangement, the stand column 40, the limiting assembly 500 and the monitoring box body 600 can be automatically rotated without manual rotation, and the labor intensity of the operator is effectively reduced. The specific operation is as follows: the rotating motor 310 rotates to drive the driving gear 320 connected therewith to rotate, the driving gear 320 rotates to drive the driven gear 330 engaged therewith to rotate, the driven gear 330 rotates to drive the rotating shaft 340 at the bottom of the driven gear 340 to rotate relative to the bottom plate 10, and the stand column 40 at the top of the driven gear 330, the limiting assembly 500 and the monitoring box body 600 rotate together, so that the position adjustment of the monitoring box body 600 is realized.

[0030] As a further scheme of the embodiment, the limiting assembly 500 comprises a limiting plate 510, a screw rod 540 and two nuts 550; the limiting plate 510 is connected with the stand column 40 in a side mode, a plurality of clamping interfaces 511 and a limiting sliding groove 512 are arranged on the top surface of the limiting plate 510, a clamping plate 520 is connected with a certain clamping interface 511 in a plug-in mode, the limiting sliding groove 512 is connected with two groups of side plates 530 in a sliding mode, the two groups of side plates 530, the clamping plate 520 and the stand column 40 surround and tightly contact the monitoring box body 600; the screw rod 540 penetrates through the bottom of the two groups of side plates 530 in sequence in a vertical mode, the screw rod 540 is threadedly connected with the two nuts 550 at two ends respectively, and the two nuts 550 are tightly connected with the two groups of side plates 530 respectively.

[0031] Further, the limiting sliding groove 512 is designed in a dovetail groove mode, the two groups of side plates 530 each comprise a convex plate, the convex plate is arranged on the bottom of the side plate 530 and connected with the limiting sliding groove 512 in a sliding mode, the screw rod 540 penetrates through the convex plate in a vertical mode, and the two nuts 550 are tightly connected with the convex plates at the bottoms of the two groups of side plates 530 respectively.

[0032] By setting the limiting assembly 500, different models of monitoring box body 600 can be clamped without the need for adaptive design, thereby expanding the application range of the utility model. The specific operation is as follows: first, place the monitoring box body 600 on the top surface of the bottom plate 10, with the rear end surface of the monitoring box body 600 abutting the stand 40, then slide the two side plates 530 along the limiting sliding groove 512, and make the two side plates 530 abut the left and right side surfaces of the monitoring box body 600, then tighten the nut 550, the nut 550 pushes the side plate 530 to continue pressing the monitoring box body 600, until the appropriate force is reached, then stop tightening the nut 550, finally insert the clamping plate 520 into the clamping port 511 in the appropriate position, so that the clamping plate 520 can abut the front end surface of the monitoring box body 600, and the stand 40, the two side plates 530 and the clamping plate 520 are used to clamp the monitoring box body 600. When the monitoring box body 600 needs to be removed from the limiting assembly 500, the operation process is opposite to the above process.

[0033] As a further scheme of the embodiment: the monitoring box body 600 comprises a base 610, the base 610 abuts the side plate 530, the clamping plate 520 and the stand 40, the top surface of the base 610 is connected with a box body 620, the side surface of the box body 620 is provided with an air inlet channel 630 and an air outlet hole 640, and a wireless connector 650 is arranged, and the front surface of the box body 620 is provided with a cabinet door 660, and the cabinet door 660 is provided with a data display screen 670.

[0034] Further, the base 610 is designed in a convex shape, the middle part of the side plate 530 is designed in a flat plate, and the top of the side plate 530 is provided with a horizontal plate which slightly extends from the flat plate in the middle of the side plate 530, so as to ensure that the side plate 530 can adapt to the shape of the base 610; the internal components of the box body 620 all adopt existing technologies.

[0035] By setting the base 610, the limiting assembly 500 can clamp the monitoring box body 600, and cannot interfere with the air inlet channel 630 and the air outlet hole 640 provided on the side surface of the box body 620, and the wireless connector 650, thereby ensuring that the utility model can collect the surrounding air through the air inlet channel 630 and the air outlet hole 640, monitor the air flowing into the box body 620, monitor the data processing through the wireless connector 650, and display the data processing results on the data display screen 670. The monitoring of air quality can be performed by using an air detector, and the air detector is arranged inside the box body 620. The processing of monitoring data, the process of monitoring data processing of the wireless connector 650, and the process of data transmission to the data display screen 670 all adopt existing technologies, and will not be described in detail here.

Claims

1. An environmental monitoring box, characterized by: The utility model provides a height -adjusting assembly, rotating assembly, stand, limiting assembly and monitoring box body, the height -adjusting assembly is arranged on the bottom plate (10) bottom, the rotating assembly is arranged on the bottom plate (10) top, the stand is arranged on the rotating assembly (300) top, the limiting assembly is arranged on the stand (40), the monitoring box body is arranged on the limiting assembly (500) and can be detachably connected, and the monitoring box body (600) monitors the air of the position periphery where it is located, when the height -adjusting assembly (200) adjusts the height of the bottom plate (10) from the ground, the rotating assembly (300) can rotate relative to the bottom plate (10) and drive the stand (40), the limiting assembly (500) and the monitoring box body (600) rotate together.

2. The environmental monitoring box of claim 1, wherein: The height -adjusting assembly (200) is four groups, and is arranged at four corners of the bottom plate (10) respectively, the height -adjusting assembly includes support column (210), the support column (210) is connected to the bottom surface of the bottom plate (10), the support column (210) is a cylinder, and two vertical sliding grooves (211) and a plurality of horizontal sliding grooves (212) are formed in the outer surface of the support column (210), the vertical sliding groove (211) is symmetrical to the axis of the support column (210), and the vertical sliding groove (211) is communicated with the horizontal sliding groove (212), the horizontal sliding groove (212) and the vertical sliding groove (211) are slidably connected with sliding blocks (220), the number of the sliding blocks (220) is two, and the two sliding blocks (220) are symmetrical to the axis of the support column (210), the sliding block (220) is connected with an upper circular ring (230), the upper circular ring (230) is connected with a circular arc rib plate (240), the circular arc rib plate (240) is connected with a lower cylinder (250), and the sliding block (220), the upper circular ring (230), the circular arc rib plate (240) and the lower cylinder (250) are sleeved on the outer layer of the support column (210).

3. The environmental monitoring box of claim 2, wherein: The rotating assembly (300) includes a rotating motor (310), the rotating motor (310) is arranged on the top surface of the bottom plate (10), the output shaft of the rotating motor (310) is connected with a driving gear (320), the driving gear (320) is connected with a driven gear (330) in meshing mode, the bottom surface of the driven gear (330) is connected with a rotating shaft (340), the top surface of the driven gear (330) is connected with the stand (40), and the rotating shaft (340) is rotatably connected with the bottom plate (10).

4. The environmental monitoring box of claim 3, wherein: Said limiting assembly (500) includes limiting plate (510), screw rod (540) and two nuts (550), limiting plate (510) is connected to the stand (40), the top surface of limiting plate (510) is provided with a plurality of clamping interfaces (511) and a limiting sliding slot (512), a certain clamping interface (511) is plug-in connected to the clamping plate (520), the limiting sliding slot (512) is slidingly connected to two groups of side plates (530), two groups of side plates (530), clamping plate (520) and stand (40) surround and tightly adhere to monitoring box body (600), screw rod (540) is vertically threaded through the bottom of two groups of side plates (530) in turn, both ends of screw rod (540) are respectively threaded connected to two nuts (550), and two nuts (550) are respectively tightly adhered to two groups of side plates (530).

5. The environmental monitoring box of claim 4, wherein: Said monitoring box body (600) includes base (610), base (610) is tightly adhered to side plate (530), clamping plate (520) and stand (40), the top surface of base (610) is connected with box body (620), the side surface of box body (620) is provided with air inlet channel (630), air outlet hole (640) and wireless connector (650), the front surface of box body (620) is installed with cabinet door (660), and data display screen (670) is arranged on cabinet door (660).