CN217273288U - Emergent monitoring devices of integration environmental risk - Google Patents

Emergent monitoring devices of integration environmental risk Download PDF

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Publication number
CN217273288U
CN217273288U CN202220250881.2U CN202220250881U CN217273288U CN 217273288 U CN217273288 U CN 217273288U CN 202220250881 U CN202220250881 U CN 202220250881U CN 217273288 U CN217273288 U CN 217273288U
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China
Prior art keywords
environmental risk
box
monitoring device
heat dissipation
box body
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CN202220250881.2U
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Chinese (zh)
Inventor
宫本敬
刘君
贾宇宇
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Shenyang Lvheng Environmental Consulting Co ltd
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Shenyang Lvheng Environmental Consulting Co ltd
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Priority to CN202220250881.2U priority Critical patent/CN217273288U/en
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Abstract

The utility model discloses an emergent monitoring devices of integration environmental risk, which comprises a supporting pedestal and is characterized by further comprising, the surface of supporting the base is provided with installation mechanism, the top welding of supporting the base has the telescopic link, the output welding of telescopic link has the box. The utility model discloses a support the base, a supporting plate, the locating lever, the installation piece, spacing knot, the heat dissipation case, the semiconductor cooler, lead the warm plate, radiator fan, a weighing sensor and a temperature sensor, the cooler bin, admission valve and the cooperation of going out the gas hood are used, the in-process of having solved current environmental risk emergency monitoring device in the use, it is relatively poor to the stability of environmental risk emergency monitoring device installation usually, make in-process equipment taking place easily not hard up using, the use that leads to giving environmental risk emergency monitoring device causes certain influence, the in-process that uses does not have usually to carry out radiating function to it simultaneously, can cause certain inconvenient problem for user's use.

Description

Emergent monitoring devices of integration environmental risk
Technical Field
The utility model relates to an environmental monitoring technology field specifically is emergent monitoring devices of integration environmental risk.
Background
The environmental monitoring means monitoring and measuring the environmental quality condition by an environmental monitoring mechanism, and the environmental monitoring means monitoring and measuring an index reflecting the environmental quality to determine the environmental pollution condition and the environmental quality.
At environmental monitoring's in-process, often need the emergent monitoring devices of operational environment risk, the emergent monitoring devices of current environmental risk is at the in-process that uses, it is relatively poor to the stability of the emergent monitoring devices installation of environmental risk usually, make in-process equipment taking place easily not hard up using, lead to causing certain influence for the use of the emergent monitoring devices of environmental risk, do not have usually at the in-process that uses simultaneously and carry out radiating function to it, may cause certain inconvenience for user's use.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an emergent monitoring devices of integration environmental risk, possess the installation stable with can carry out radiating advantage to it, the in-process of having solved current emergent monitoring devices of environmental risk in the use, it is relatively poor to the stability of the emergent monitoring devices installation of environmental risk usually, make the in-process equipment that uses take place easily not hard up, lead to causing certain influence for the use of emergent monitoring devices of environmental risk, the in-process that uses simultaneously does not have usually carries out radiating function to it, may cause certain inconvenient problem for user's use.
In order to achieve the above purpose, the utility model provides a following technical scheme: emergent monitoring devices of integration environmental risk, including supporting the base, the surface of supporting the base is provided with installation mechanism, the top welding of supporting the base has the telescopic link, the output welding of telescopic link has the box, the intracavity welding of box has risk monitoring facilities, there is the wind-force monitor at the top of box through bearing swing joint, the both sides of box all are provided with heat dissipation mechanism, the rear side welding of box has the cooler bin, the both sides of cooler bin all communicate there is the admission valve, the one end that the cooler bin was kept away from to the admission valve runs through to the inner chamber of box and communicates with there is the air outlet cover, there is the dodge gate in the front of box through hinge swing joint, there is the controller in the front of dodge gate through bolted connection.
Preferably, the surface welding of support base has the backup pad, the top of backup pad is run through and is provided with the locating lever, the installation piece has all been welded to the both sides of locating lever, the inner chamber of installation piece has spacing knot through pivot swing joint, the bottom welding of support base has the locating lever.
Preferably, the heat dissipation mechanism includes the heat dissipation case, the inner chamber of heat dissipation case has semiconductor cooler through bolted connection, and the equal welding of one side that two semiconductor cooler are relative has the temperature guide plate, the temperature guide plate is close to one side of box and extends to the inner chamber of box, and one side that two heat dissipation cases are opposite all has radiator fan through bolted connection, there is temperature sensor at the top of heat dissipation incasement chamber through bolted connection.
Preferably, the top intercommunication of admission valve has the inlet tube, the rear side of cooler bin is inlayed and is installed the sight glass, the right side intercommunication of cooler bin has the drain valve.
Preferably, the bottom of the rear side of the box body is welded with an installation box, and an inner cavity of the installation box is connected with a storage battery through a bolt.
Preferably, the front of the box body is movably connected with a movable door through a hinge, and the front of the movable door is welded with a handle.
Compared with the prior art, the beneficial effects of the utility model are as follows:
the utility model discloses a support the base, a supporting plate, the locating lever, the installation piece, spacing knot, the heat dissipation case, the semiconductor cooler, lead the warm plate, radiator fan, a weighing sensor and a temperature sensor, the cooler bin, admission valve and the cooperation of going out the gas hood are used, the in-process of having solved current environmental risk emergency monitoring device in the use, it is relatively poor to the stability of environmental risk emergency monitoring device installation usually, make in-process equipment taking place easily not hard up using, the use that leads to giving environmental risk emergency monitoring device causes certain influence, the in-process that uses does not have usually to carry out radiating function to it simultaneously, can cause certain inconvenient problem for user's use.
Drawings
FIG. 1 is a perspective sectional view of the structure of the present invention;
FIG. 2 is a three-dimensional bottom view of the local support base of the present invention;
FIG. 3 is a perspective rear view of the present invention;
fig. 4 is a perspective front view of the structure of the present invention.
In the figure: the device comprises a supporting base 1, a supporting plate 2, a positioning rod 3, a mounting block 4, a limiting buckle 5, a mounting mechanism 6, a telescopic rod 7, a box body 8, a risk monitoring device 9, a wind power monitor 10, a heat dissipation box 11, a semiconductor refrigerator 12, a temperature guide plate 13, a heat dissipation fan 14, a temperature sensor 15, a heat dissipation mechanism 16, a cooling box 17, an air inlet valve 18, an air outlet cover 19, a movable door 20 and a controller 21.
Detailed Description
Referring to fig. 1-4, an integrated environmental risk emergency monitoring device comprises a supporting base 1, a supporting plate 2 welded on the surface of the supporting base 1, a positioning rod 3 penetrating through the top of the supporting plate 2, mounting blocks 4 welded on both sides of the positioning rod 3, a limit buckle 5 movably connected with the inner cavity of the mounting block 4 through a rotating shaft, a positioning rod welded on the bottom of the supporting base 1, a mounting mechanism 6 arranged on the surface of the supporting base 1, a telescopic rod 7 welded on the top of the supporting base 1, a box body 8 welded on the output end of the telescopic rod 7, a mounting box welded on the bottom of the rear side of the box body 8, a storage battery connected with the inner cavity of the mounting box through bolts, a movable door movably connected with the front of the box body 8 through hinges, and a handle for cleaning the interior of the box body 8, the front side of the movable door is welded with a handle, the inner cavity of the box body 8 is welded with a risk monitoring device 9, the top of the box body 8 is movably connected with a wind power monitor 10 through a bearing, two sides of the box body 8 are both provided with heat dissipation mechanisms 16, each heat dissipation mechanism 16 comprises a heat dissipation box 11, the inner cavity of each heat dissipation box 11 is connected with a semiconductor refrigerator 12 through a bolt, one opposite side of each semiconductor refrigerator 12 is welded with a temperature guide plate 13, one side of each temperature guide plate 13 close to the box body 8 extends to the inner cavity of the box body 8, one opposite side of each heat dissipation box 11 is connected with a heat dissipation fan 14 through a bolt, the top of the inner cavity of each heat dissipation box 11 is connected with a temperature sensor 15 through a bolt, the rear side of the box body 8 is welded with a cooling box 17, the rear side of the cooling box 17 is embedded with an observation mirror, the inside of the cooling box 17 can be observed through the arrangement of the observation mirror, and the right side of the cooling box 17 is communicated with a drain valve, through setting up drain valve and inlet tube, the cooler bin 17 of being convenient for uses, and the both sides of cooler bin 17 all communicate there is admission valve 18, and admission valve 18's top intercommunication has the inlet tube, and admission valve 18 keeps away from the one end of cooler bin 17 and runs through to the inner chamber of box 8 and communicate and have gas outlet cover 19, and there is dodge gate 20 in the front of box 8 through hinge swing joint, and there is controller 21 in the front of dodge gate 20 through bolted connection.
The temperature sensor 15 is a sensor capable of sensing temperature and converting the sensed temperature into a usable output signal, the temperature sensor 15 is a core part of a temperature measuring instrument, and is widely divided into two types, namely a contact type and a non-contact type according to a measuring mode, and a thermal resistor and a thermocouple according to characteristics of sensor materials and electronic elements.
The semiconductor refrigerator 12 is a device for producing cold by using the thermo-electric effect of a semiconductor, and is also called a thermoelectric refrigerator, wherein two different metals are connected by a conductor, and when direct current is switched on, the temperature of one contact is reduced, and the temperature of the other contact is increased.
During the use, after the user will support base 1 and place suitable position, the user squeezes in locating lever 3 underground, install equipment with this, when the user pulls out locating lever 3, spacing buckle 5 will expand in installing block 4, with this stability that increases equipment, the user is with the leading-in cooling tank 17 of coolant liquid afterwards, the user starts semiconductor refrigerator 12 and radiator fan 14 simultaneously, semiconductor refrigerator 12 cools off in leading-in box 8 of low temperature through leading the temperature board 13, radiator fan 14 cools off in the radiating tank 11 simultaneously, then temperature sensor 15 carries out real-time supervision to the temperature in the radiating tank 11 and prevents the high temperature, the user opens admission valve 18 simultaneously, the cooling in the cooling tank 17 gets into box 8 through admission valve 18 in, carry out the secondary cooling to equipment.
In summary, the following steps: this emergent monitoring devices of integration environmental risk, through supporting base 1, backup pad 2, locating lever 3, installation piece 4, stop buckle 5, heat dissipation case 11, semiconductor cooler 12, lead warm plate 13, radiator fan 14, temperature sensor 15, cooling box 17, admission valve 18 and air outlet cover 19's cooperation is used, the in-process of current emergent monitoring devices of environmental risk in the use has been solved, it is relatively poor to the stability of emergent monitoring devices installation of environmental risk usually, make the in-process equipment that uses take place easily not hard up, lead to causing certain influence for the use of emergent monitoring devices of environmental risk, the in-process that uses does not have normally carries out radiating function to it simultaneously, can lead to the fact certain inconvenient problem for user's use.

Claims (6)

1. Emergent monitoring devices of integration environmental risk, including supporting base (1), its characterized in that: the surface of the supporting base (1) is provided with an installation mechanism (6), the top of the supporting base (1) is welded with a telescopic rod (7), the output end of the telescopic rod (7) is welded with a box body (8), the inner cavity of the box body (8) is welded with a risk monitoring device (9), the top of the box body (8) is movably connected with a wind power monitor (10) through a bearing, both sides of the box body (8) are provided with heat dissipation mechanisms (16), the rear side of the box body (8) is welded with a cooling box (17), both sides of the cooling box (17) are communicated with air inlet valves (18), one end of each air inlet valve (18) far away from the cooling box (17) penetrates through the inner cavity of the box body (8) and is communicated with an air outlet cover (19), the front surface of the box body (8) is movably connected with a movable door (20) through a hinge, the front surface of the movable door (20) is connected with a controller (21) through a bolt.
2. The integrated environmental risk emergency monitoring device of claim 1, wherein: the surface welding of support base (1) has backup pad (2), the top of backup pad (2) is run through and is provided with locating lever (3), installation piece (4) have all been welded to the both sides of locating lever (3), the inner chamber of installation piece (4) has spacing knot (5) through pivot swing joint, the bottom welding of support base (1) has the locating lever.
3. The integrated environmental risk emergency monitoring device of claim 1, wherein: heat dissipation mechanism (16) are including heat dissipation case (11), the inner chamber of heat dissipation case (11) has semiconductor cooler (12) through bolted connection, and temperature guide plate (13) have all been welded to one side that two semiconductor cooler (12) are relative, one side that temperature guide plate (13) are close to box (8) extends to the inner chamber of box (8), and two opposite one sides of heat dissipation case (11) all have radiator fan (14) through bolted connection, there is temperature sensor (15) at the top of heat dissipation case (11) inner chamber through bolted connection.
4. The integrated environmental risk emergency monitoring device of claim 1, wherein: the top intercommunication of admission valve (18) has the inlet tube, the rear side of cooler bin (17) is inlayed and is installed the sight glass, the right side intercommunication of cooler bin (17) has the drain valve.
5. The integrated environmental risk emergency monitoring device of claim 1, wherein: the bottom welding of box (8) rear side has the install bin, and the inner chamber of install bin has the battery through bolted connection.
6. The integrated environmental risk emergency monitoring device of claim 1, wherein: the front of the box body (8) is movably connected with a movable door through a hinge, and the front of the movable door is welded with a handle.
CN202220250881.2U 2022-02-07 2022-02-07 Emergent monitoring devices of integration environmental risk Active CN217273288U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220250881.2U CN217273288U (en) 2022-02-07 2022-02-07 Emergent monitoring devices of integration environmental risk

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220250881.2U CN217273288U (en) 2022-02-07 2022-02-07 Emergent monitoring devices of integration environmental risk

Publications (1)

Publication Number Publication Date
CN217273288U true CN217273288U (en) 2022-08-23

Family

ID=82904280

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220250881.2U Active CN217273288U (en) 2022-02-07 2022-02-07 Emergent monitoring devices of integration environmental risk

Country Status (1)

Country Link
CN (1) CN217273288U (en)

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