CN207438785U - A kind of air purification in closed workshop and real-time heat sink - Google Patents

A kind of air purification in closed workshop and real-time heat sink Download PDF

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Publication number
CN207438785U
CN207438785U CN201721201279.5U CN201721201279U CN207438785U CN 207438785 U CN207438785 U CN 207438785U CN 201721201279 U CN201721201279 U CN 201721201279U CN 207438785 U CN207438785 U CN 207438785U
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China
Prior art keywords
solenoid valve
water storage
triode
storage box
resistance
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Expired - Fee Related
Application number
CN201721201279.5U
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Chinese (zh)
Inventor
王亮
傅铁威
张晶
范洪博
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Kunming University of Science and Technology
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Kunming University of Science and Technology
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Priority to CN201721201279.5U priority Critical patent/CN207438785U/en
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Abstract

The utility model is related to a kind of air purification in closed workshop and real-time heat sinks, belong to room air processing technology field.The utility model includes air inlet, the components such as filter screen, air inlet is located at outside device and enters for gas, has filter screen behind air inlet for filtering gas, relay and lift pump are located inside device, relay is used to that lift pump to be controlled to open and close, admission line I is connected with activated carbon filtering ponds, admission line II and admission line III are located among activated carbon filtering ponds and water storage box, solenoid valve I and solenoid valve II are fixed on admission line II and admission line III, relay, solenoid valve I, solenoid valve II, temperature sensor is connected with control module, water storage box pedestal is located at below water storage box, freeze water pump, cooling-water machine, air-cooler is located at chassis interior respectively, air outlet is connected with pedestal.The utility model is simple in structure, and design is reasonable, and Resource Recycling Utilization can greatly reduce funds and resource.

Description

A kind of air purification in closed workshop and real-time heat sink
Technical field
The utility model is related to a kind of air purification in closed workshop and real-time heat sinks, belong to room air Processing technology field.
Background technology
In recent years, due to economic fast development, substantial amounts of factory goes through to establish and come into operation.But in reality In production process, particularly to summer, some factories often allow employee to head on high temperature progress operation, a side in order to cost-effective Face causes working environment unsatisfactory, on the other hand but also the health of employee is on the hazard.Simultaneously because workshop space Larger, installation central air-conditioning be easy to cause the wasting of resources, while can also face the increase of manufacturing cost, therefore is badly in need of a kind of i.e. warp Ji and practical heat sink.
The content of the invention
It drops the technical problem to be solved by the present invention is to provide a kind of air purification in closed workshop and in real time Warm device, for the air purification and room temperature lowering in workshop.
The technical solution of the utility model is:A kind of air purification in closed workshop and real-time heat sink, bag Include air inlet 1, filter screen 2, relay 3, lift pump 4, shell 5, admission line I 6, activated carbon filtering ponds 7, admission line II 8, Admission line III 9, solenoid valve I 10, solenoid valve II 11, control module 12, water storage box fixed link 13, water storage box 14, water storage box bottom Seat 15, refrigeration water pump 16, cooling-water machine 17, air-cooler 18, air outlet 19, temperature sensor 20;
Wherein air inlet 1 is located at outside device and enters for gas, and air inlet 1 was used for air filtration with filter screen 2 below Body, relay 3 and lift pump 4 are located inside device, and relay 3 is connected with lift pump 4, and relay 3 is used to that lift pump 4 to be controlled to beat Open and close, the inlet end of lift pump 4 is connected with air inlet 1, and the other end is connected with one end of admission line I 6, admission line I 6 The other end be connected with activated carbon filtering ponds 7, admission line II 8 and admission line III 9 are located at activated carbon filtering ponds 7 and water storage box Among 14, solenoid valve I 10 and solenoid valve II 11 are separately fixed on admission line II 8 and admission line III 9, temperature sensor 20 Be located at the top of water storage box 14 with control module 12, relay 3, solenoid valve I 10, solenoid valve II 11, temperature sensor 20 with control Molding block 12 connects, and water storage box fixed link 13 is connected with water storage box 14, and water storage box pedestal 15 is located at 14 lower section of water storage box, chilled water Pump 16, cooling-water machine 17, air-cooler 18 are located inside water storage box pedestal 15 respectively, and refrigeration water pump 16 extracts water in water storage box 14 simultaneously out It is transported in cooling-water machine 17, converts the water to vapor by cooling-water machine 17 and pass through air-cooler 18 to blow cold wind from air outlet 19 Go out, air outlet 19 is connected with water storage box pedestal 15.
The control module 12 includes microcontroller, control relay circuit 21, solenoid valve control circuit 22;The monolithic Machine uses AT89C52 chips, and temperature sensor 20 is connected with microcontroller, and 21 one end of control relay circuit is connected with microcontroller, 21 other end of control relay circuit is connected with relay 3, microcontroller respectively with two mutually isostructural solenoid valve control circuits 22 are connected, and two solenoid valve control circuits 22 are connected respectively with solenoid valve I 10 and solenoid valve II 11.
The control relay circuit 21 includes resistance R1, resistance R2, triode T1, diode D1, switch S1, wherein electricity Resistance R1 one end connects the P1.0 feet of single-chip computer AT89C52 chip, the base stage of another termination triode T1 of resistance R1, resistance R2 one end Between connecting resistance R1 and triode T1 base stages, the emitter of the other end and triode T1 is grounded, and the collector of triode T1 connects two The positive terminal of pole pipe D1, the cathode termination power of diode D1, relay 3 one terminate the collector of triode T1, the other end with The negative pole end connection of diode D1 is followed by power supply, the control switch S1 of relay 3, the closure of switch S1 control lift pumps 4.
The solenoid valve control circuit 22 includes resistance R3, resistance R4, resistance R5, triode T2, triode T3, diode D2, wherein resistance R3 one end meet the P1.1 feet of single-chip computer AT89C52 chip, the base stage of another termination triode T2, triode T2 Emitter connects power supply, collector connecting resistance R4 one end of triode T2, the base stage of another termination triode T3 of resistance R4, triode Emitter connecting resistance R5 one end of T3, resistance R5 other ends ground connection, the collector of triode T3 connect solenoid valve I 10 or solenoid valve II 11, diode D2 and solenoid valve I 10 or solenoid valve II 11 is in parallel is followed by power supply.
Utility model works principle is:
The present apparatus is used for closed workshop, and before the present apparatus is placed on workshop, we can set for temperature sensor A preset value is put, when temperature sensor detects that temperature is more than preset value in workshop, the present apparatus starts work.Control module 12 can control lift pump 4 that the gas in workshop is drawn into the present apparatus by control relay circuit 21, and then gas passes through Admission line I 6 carries out adsorption filtration into activated carbon filtering ponds 7, and after gas filtration, control module 12 controls solenoid valve I 10 and solenoid valve II 11 open(Here we can be used to control opening and being closed for solenoid valve to the cycle for presetting a 10s), Then gas is entered in water storage box, and water then is pumped into cooling-water machine by the refrigeration water pump of water tank bottom freezes, so Gas is sent out by air outlet by air-cooler again afterwards.
The beneficial effects of the utility model are:It is of simple structure and low cost, it can be according to Temperature Humidity Sensor in workshop Temperature monitored in real time, obtain real time temperature and cool down in workshop in time.Contribute to the health of employee, reduce Employee since temperature is excessively high causes heatstroke.
Description of the drawings
Fig. 1 is the installation drawing of the utility model;
Fig. 2 is the control module connection block diagram of the utility model;
Fig. 3 is the utility model control relay circuit figure;
Fig. 4 is the solenoid valve control circuit figure of the utility model.
Each label in figure:1- air inlets, 2- filter screens, 3- relays, 4- lift pumps, 5- shells, 6- admission lines I, 7- Activated carbon filtering ponds, 8- admission lines II, 9- admission lines III, 10- solenoid valves I, 11- solenoid valves II, 12- control modules, 13- Water storage box fixed link, 14- water storage boxes, 15- water storage box pedestals, 16- refrigeration water pumps, 17- cooling-water machines, 18- air-coolers, 19- outlet air Mouthful, 20- temperature sensors, 21- control relay circuits, 22- solenoid valve control circuits.
Specific embodiment
In the following with reference to the drawings and specific embodiments, the utility model is further described.
Embodiment 1:As shown in Figs 1-4, a kind of air purification in closed workshop and real-time heat sink, including into Gas port 1, filter screen 2, relay 3, lift pump 4, shell 5, admission line I 6, activated carbon filtering ponds 7, admission line II 8, air inlet Pipeline III 9, solenoid valve I 10, solenoid valve II 11, control module 12, water storage box fixed link 13, water storage box 14, water storage box pedestal 15, Freeze water pump 16, cooling-water machine 17, air-cooler 18, air outlet 19, temperature sensor 20;
Wherein air inlet 1 is located at outside device and enters for gas, and air inlet 1 was used for air filtration with filter screen 2 below Body, relay 3 and lift pump 4 are located inside device, and relay 3 is connected with lift pump 4, and relay 3 is used to that lift pump 4 to be controlled to beat Open and close, the inlet end of lift pump 4 is connected with air inlet 1, and the other end is connected with one end of admission line I 6, admission line I 6 The other end be connected with activated carbon filtering ponds 7, admission line II 8 and admission line III 9 are located at activated carbon filtering ponds 7 and water storage box Among 14, solenoid valve I 10 and solenoid valve II 11 are separately fixed on admission line II 8 and admission line III 9, temperature sensor 20 Be located at the top of water storage box 14 with control module 12, relay 3, solenoid valve I 10, solenoid valve II 11, temperature sensor 20 with control Molding block 12 connects, and water storage box fixed link 13 is connected with water storage box 14, and water storage box pedestal 15 is located at 14 lower section of water storage box, chilled water Pump 16, cooling-water machine 17, air-cooler 18 are located inside water storage box pedestal 15 respectively, and refrigeration water pump 16 extracts water in water storage box 14 simultaneously out It is transported in cooling-water machine 17, converts the water to vapor by cooling-water machine 17 and pass through air-cooler 18 to blow cold wind from air outlet 19 Go out, air outlet 19 is connected with water storage box pedestal 15.
As shown in Fig. 2, the control module 12 includes microcontroller, control relay circuit 21, solenoid valve control circuit 22; The microcontroller uses AT89C52 chips, and temperature sensor 20 is connected with microcontroller, 21 one end of control relay circuit and list Piece machine is connected, and 21 other end of control relay circuit is connected with relay 3, microcontroller respectively with two mutually isostructural solenoid valves Control circuit 22 is connected, and two solenoid valve control circuits 22 are connected respectively with solenoid valve I 10 and solenoid valve II 11.
As shown in figure 3, the control relay circuit 21 includes resistance R1, resistance R2, triode T1, diode D1, opens S1 is closed, K1 is solenoid valve 3 in figure, and wherein resistance R1 one end connects the P1.0 feet of single-chip computer AT89C52 chip, and resistance R1's is another The base stage of triode T1 is terminated, between mono- terminating resistor R1 of resistance R2 and triode T1 base stages, the hair of the other end and triode T1 Emitter grounding, the collector of triode T1 connect the positive terminal of diode D1, the cathode termination power of diode D1, relay 3 one The collector of triode T1 is terminated, the other end is connected with the negative pole end of diode D1 and is followed by power supply, the control switch S1 of relay 3, Switch the closure of S1 control lift pumps 4.
The solenoid valve control circuit 22 includes resistance R3, resistance R4, resistance R5, triode T2, triode T3, diode D2, wherein resistance R3 one end meet the P1.1 feet of single-chip computer AT89C52 chip, the base stage of another termination triode T2, triode T2 Emitter connects power supply, collector connecting resistance R4 one end of triode T2, the base stage of another termination triode T3 of resistance R4, triode Emitter connecting resistance R5 one end of T3, resistance R5 other ends ground connection, the collector of triode T3 connect solenoid valve I 10 or solenoid valve II 11, diode D2 and solenoid valve I 10 or solenoid valve II 11 is in parallel is followed by power supply.
The utility model is simple in structure, and design is reasonable, can measure workshop temperature in real time according to temperature sensor 20, then Hot gas in workshop is sucked in the present apparatus by lift pump 4, after a series of filterings, by water pump 16, the cooling-water machine of freezing 17 and cold extension set 18 gas is cooled down, finally transported out by air outlet 19, reach purification air and cooling Purpose.Compared with others cool down product, present apparatus Resource Recycling Utilization can greatly reduce funds and resource.
Specific embodiment of the present utility model is explained in detail above in conjunction with attached drawing, but the utility model is not It is limited to the above embodiment, within the knowledge of a person skilled in the art, this practicality can also be not being departed from Various changes can be made on the premise of new objective.

Claims (4)

1. a kind of air purification in closed workshop and real-time heat sink, it is characterised in that:Including air inlet(1), mistake Strainer(2), relay(3), lift pump(4), shell(5), admission line I(6), activated carbon filtering ponds(7), admission line II (8), admission line III(9), solenoid valve I(10), solenoid valve II(11), control module(12), water storage box fixed link(13), water storage Case(14), water storage box pedestal(15), refrigeration water pump(16), cooling-water machine(17), air-cooler(18), air outlet(19), temperature sensing Device(20);
Wherein air inlet(1)Enter outside device for gas, air inlet(1)Has filter screen below(2)For filtering Gas, relay(3)And lift pump(4)Inside device, relay(3)With lift pump(4)It is connected, relay(3)For Control lift pump(4)It opens and closes, lift pump(4)Inlet end and air inlet(1)Connection, the other end and admission line I(6) One end connection, admission line I(6)The other end and activated carbon filtering ponds(7)It is connected, admission line II(8)And admission line Ⅲ(9)Positioned at activated carbon filtering ponds(7)And water storage box(14)Centre, solenoid valve I(10)With solenoid valve II(11)It is separately fixed at Admission line II(8)With admission line III(9)On, temperature sensor(20)And control module(12)Positioned at water storage box(14)On Side, relay(3), solenoid valve I(10), solenoid valve II(11), temperature sensor(20)And control module(12)Connection, water storage Case fixed link(13)And water storage box(14)It is connected, water storage box pedestal(15)Positioned at water storage box(14)Lower section, freeze water pump(16), it is cold Water dispenser(17), air-cooler(18)It is located at water storage box pedestal respectively(15)Inside, freeze water pump(16)By water storage box(14)Middle water is taken out Go out and be transported to cooling-water machine(17)In, pass through cooling-water machine(17)It converts the water to vapor and passes through air-cooler(18)By cold wind from Air outlet(19)Blowout, air outlet(19)With water storage box pedestal(15)It is connected.
2. a kind of air purification and real-time heat sink, feature in closed workshop according to claim 1 exists In:The control module(12)Including microcontroller, control relay circuit(21), solenoid valve control circuit(22);The list Piece machine uses AT89C52 chips, temperature sensor(20)It is connected with microcontroller, control relay circuit(21)One end and microcontroller It is connected, control relay circuit(21)The other end and relay(3)Be connected, microcontroller respectively with two mutually isostructural solenoid valves Control circuit(22)It is connected, two solenoid valve control circuits(22)Respectively with solenoid valve I(10)With solenoid valve II(11)It is connected.
3. a kind of air purification and real-time heat sink, feature in closed workshop according to claim 2 exists In:The control relay circuit(21)Including resistance R1, resistance R2, triode T1, diode D1, wherein switch S1, resistance R1 one end connects the P1.0 feet of single-chip computer AT89C52 chip, the base stage of another termination triode T1 of resistance R1, and resistance R2 mono- is terminated Between resistance R1 and triode T1 base stages, the emitter of the other end and triode T1 is grounded, and the collector of triode T1 connects two poles The positive terminal of pipe D1, the cathode termination power of diode D1, relay(3)The collector of one termination triode T1, the other end with The negative pole end connection of diode D1 is followed by power supply, relay(3)Control switch S1, switch S1 control lift pumps(4)Closure.
4. a kind of air purification and real-time heat sink, feature in closed workshop according to claim 2 exists In:The solenoid valve control circuit(22)Including resistance R3, resistance R4, resistance R5, triode T2, triode T3, diode D2, Wherein resistance R3 one end connects the P1.1 feet of single-chip computer AT89C52 chip, the base stage of another termination triode T2, triode T2 transmittings Pole connects power supply, collector connecting resistance R4 one end of triode T2, the base stage of another termination triode T3 of resistance R4, triode T3's Emitter connecting resistance R5 one end, resistance R5 other ends ground connection, the collector of triode T3 connect solenoid valve I(10)Or solenoid valve II (11), diode D2 and solenoid valve I(10)Or solenoid valve II(11)Parallel connection is followed by power supply.
CN201721201279.5U 2017-09-19 2017-09-19 A kind of air purification in closed workshop and real-time heat sink Expired - Fee Related CN207438785U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721201279.5U CN207438785U (en) 2017-09-19 2017-09-19 A kind of air purification in closed workshop and real-time heat sink

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721201279.5U CN207438785U (en) 2017-09-19 2017-09-19 A kind of air purification in closed workshop and real-time heat sink

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107606728A (en) * 2017-09-19 2018-01-19 昆明理工大学 A kind of purification of air in closed factory building and real-time heat sink

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107606728A (en) * 2017-09-19 2018-01-19 昆明理工大学 A kind of purification of air in closed factory building and real-time heat sink

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GR01 Patent grant
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Zheng Huanke

Inventor after: Fu Tiewei

Inventor after: Zhang Jing

Inventor after: Wang Liang

Inventor after: Fan Hongbo

Inventor before: Wang Liang

Inventor before: Fu Tiewei

Inventor before: Zhang Jing

Inventor before: Fan Hongbo

CB03 Change of inventor or designer information
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180601

Termination date: 20180919

CF01 Termination of patent right due to non-payment of annual fee