CN204613698U - A kind of dry umbrella device - Google Patents
A kind of dry umbrella device Download PDFInfo
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- CN204613698U CN204613698U CN201520320927.3U CN201520320927U CN204613698U CN 204613698 U CN204613698 U CN 204613698U CN 201520320927 U CN201520320927 U CN 201520320927U CN 204613698 U CN204613698 U CN 204613698U
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- umbrella
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- dry
- gas
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Abstract
The dry umbrella device that the utility model provides comprises housing and is arranged on position transducer, pneumatic system, pneumatic protection system, water storage and unwatering system in housing, information interaction system, PLC and electric power system, PLC is link position sensor, pneumatic system, pneumatic protection system, water storage and unwatering system, information interaction system and electric power system respectively, and pneumatic system is also connected with pneumatic protection system with water storage and unwatering system respectively; Be provided with side door and umbrella drying chamber in housing, pneumatic system is communicated with described umbrella drying chamber with water storage and unwatering system.The dry umbrella device that the utility model provides can dry up umbrella fast, and automatization level is high, and security is good, practical, is applicable to the place that indoor visitor flow rate is large.
Description
Technical field
The utility model relates to dry umbrella device technical field, particularly relates to a kind ofly can realize Quick umbrella drying and the high dry umbrella device of automatization level.
Background technology
The umbrella drenched needs to put polybag when being entrained into indoor in order to avoid ground of making dirty, but the public place as larger in stream of peoples such as subways when peak on and off duty, for there is various inconvenience and relatively time-consuming in polybag on umbrella sleeve, passengers mostly do not process umbrella, thus often got wet and made dirty in ground and seat, the safety of damp floor to passenger self causes a hidden trouble, and too increases the workload of Cleaner.
Utility model content
The purpose of this utility model is to solve the problem, and provides a kind of dry umbrella device, and this dry umbrella device can dry up umbrella fast, and automatization level is high, and security is good, practical, is applicable to the place that indoor visitor flow rate is large.
For achieving the above object, technical scheme provided by the utility model is as follows.
The dry umbrella device that the utility model provides comprises housing and is arranged on position transducer, pneumatic system, pneumatic protection system, water storage and unwatering system in described housing, information interaction system, PLC and electric power system, PLC is link position sensor, pneumatic system, pneumatic protection system, water storage and unwatering system, information interaction system and electric power system respectively, and pneumatic system is also connected with pneumatic protection system with water storage and unwatering system respectively;
Be provided with side door and umbrella drying chamber in described housing, pneumatic system is communicated with described umbrella drying chamber with water storage and unwatering system.
Preferably, described pneumatic system comprises anti-water spray storage bottle, waterproof spray solenoid valve and the air-intake filter, the air compressor that are communicated with successively along air-flow direction, the air valve that dewaters, gas cylinder, stove pipe, solenoid valve cylinder manifold, gas-distributing pipe solenoid valve and nozzle, and nozzle is communicated with described umbrella drying chamber;
Anti-water spray storage bottle is communicated with gas cylinder and solenoid valve cylinder manifold respectively, is provided with waterproof spray solenoid valve between anti-water spray storage bottle and gas cylinder;
Air compressor is communicated with described side door, and side door is folding shield door;
Described PLC connects side door, waterproof spray solenoid valve and gas-distributing pipe solenoid valve respectively.
Preferably, described pneumatic protection system comprises temperature sensor, barometer, safety-valve and relay;
Described PLC connects temperature sensor and relay respectively, and temperature sensor is for the temperature that detects in air compressor and stove pipe and temperature information is transferred to PLC, and relay also connects described air compressor and stove pipe respectively;
Described barometer is for detecting the air pressure in gas cylinder, and barometer connects PLC, and safety-valve is communicated with gas cylinder.
Preferably, water storage and unwatering system comprise water tank, electromagnetic water valve and electromagnetic gas valve, water tank is provided with water inlet pipe, drainpipe and draft tube, described water inlet pipe is provided with filter screen, water inlet pipe joining water box and described umbrella drying chamber, be provided with electromagnetic water valve in water inlet pipe, described draft tube is communicated with water flowing case and described gas cylinder, is provided with electromagnetic gas valve in draft tube.
Preferably, be also provided with gas pawl in described umbrella drying chamber, described gas pawl is communicated with gas cylinder and the driving passing through pressure-air clamps umbrella handle;
Be provided with the sphere panel of depression in described umbrella drying chamber towards the side of gas pawl, described sphere panel is provided with multiple described nozzle and described position transducer.
Preferably, multiple described nozzle all in concentric arrays, the concentrically ringed center of circle be positioned in same level by the umbrella handle that described gas pawl clamps;
Multiple described position transducer is arranged in same level, and the mid point of the line of these position transducers and the concentrically ringed center of circle are positioned at one perpendicular in the plane of surface level simultaneously.
Preferably, described information interaction system comprises the pilot lamp, wireless transport module, wireless payment module, information display screen and the dry umbrella number of times statistical module that are connected with PLC respectively.
Preferably, described pilot lamp comprises normal pilot lamp, air pump overheating indicator lamp, gas cylinder overvoltage pilot lamp and the under-voltage pilot lamp of gas cylinder.
Preferably, described electric power system comprises 24V Switching Power Supply, scram button, earth leakage circuit-breaker.
The beneficial effects of the utility model are as follows:
1. the dry umbrella device that the utility model provides is provided with position transducer, can the position at perception umbrella place and the radius of umbrella surface, according to the size of umbrella radius, thus the nozzle starting the corresponding number of plies sprays to umbrella surface by anti-water spray with through the pressurized air of heating, energy saves energy while drying up umbrella fast, simple and efficient, practical.
2. the dry umbrella device that the utility model provides can complete the work drying up umbrella automatically, and automatization level is high.
3. the dry umbrella device that the utility model provides is provided with pneumatic protection system, prevents that pneumatic system temperature in operational process is too high or air pressure is excessive, and security is good.
4. instead of over and rainwater put into the method that polybag prevents rainwater from dripping, decrease the use of polybag, be conducive to environmental protection.
Accompanying drawing explanation
The annexation schematic diagram of each system of the dry umbrella device that Fig. 1 provides for the utility model.
The pneumatic system of dry umbrella device that Fig. 2 provides for the utility model and the annexation schematic diagram of pneumatic protection system.
The dry water storage of umbrella device that Fig. 3 provides for the utility model and the structural representation of unwatering system.
The structural representation of the information interaction system of the dry umbrella device that Fig. 4 provides for the utility model.
Fig. 5 is the position distribution schematic diagram of position transducer and nozzle.
Fig. 6 is the injection direction side schematic view of nozzle.
Embodiment
Be described further the utility model below in conjunction with accompanying drawing, the embodiment below enumerated only represents one or more preferred forms, should not form restriction of the present utility model.
As shown in Figure 1; the dry umbrella device that the utility model provides comprises housing and is arranged on position transducer 1, pneumatic system 2, pneumatic protection system 3, water storage and unwatering system 4 in housing, information interaction system 5, PLC 6 and electric power system 7; PLC 6 is link position sensor 1, pneumatic system 2, pneumatic protection system 3, water storage and unwatering system 4, information interaction system 5 and electric power system 7 respectively, and pneumatic system 2 is also connected with pneumatic protection system 3 with water storage and unwatering system 4 respectively.
Side door 8 and umbrella drying chamber is provided with in housing, side door 8 is folding shield door, gas pawl 9 for clamping umbrella handle is installed in umbrella drying chamber, be provided with the sphere panel 10 of depression towards the side of gas pawl 9 in umbrella drying chamber, multiple position transducer 1 is installed on sphere panel 10, and these position transducers 1 are arranged in same level.
As shown in Figure 2, pneumatic system 2 comprises anti-water spray storage bottle 201, waterproof spray solenoid valve 202 and the air-intake filter 203, the air compressor 204 that are communicated with successively along air-flow direction, the air valve 205 that dewaters, gas cylinder 206, stove pipe 207, solenoid valve cylinder manifold 208, gas-distributing pipe solenoid valve 209 and nozzle 210.
Multiple nozzle 210 is installed on sphere panel 10, and nozzle 210 is communicated with umbrella drying chamber, and these nozzles 210 are in concentric arrays, and wherein, the concentrically ringed spherical distance of adjacent two layers is about 1-3cm, and the spherical distance with adjacent nozzle in layer 210 is about 1-3cm.The concentrically ringed center of circle be positioned in same level by the umbrella handle 11 that gas pawl 9 clamps, the mid point P2 of the line of institute's position sensor 1 and concentrically ringed center of circle P1 is positioned at one perpendicular in the plane of surface level simultaneously.
Anti-water spray storage bottle 201 is communicated with gas cylinder 206 and solenoid valve cylinder manifold 208 respectively, is provided with waterproof spray solenoid valve 202 between anti-water spray storage bottle 201 and gas cylinder 206.
Air compressor 204 is communicated with side door 8, and PLC 6 connects side door 8, waterproof spray solenoid valve 202 and gas-distributing pipe solenoid valve 209 respectively, and gas pawl 9 is communicated with gas cylinder 206 and clamps umbrella handle 11 by the driving of pressure-air.
Pneumatic protection system 3 comprises temperature sensor 301, barometer 302, safety-valve 303 and relay 304.PLC 6 connects temperature sensor 301 and relay 304 respectively, temperature sensor 301 is for the temperature that detects in air compressor 204 and stove pipe 207 and temperature information is transferred to PLC 6, and relay 304 also connects air compressor 204 and stove pipe 207 respectively.Barometer 302 is for detecting the air pressure in gas cylinder 206, and barometer 302 connects PLC 6 and pressure information is transferred to PLC 6, and safety-valve 303 is communicated with gas cylinder 206.
As shown in Figure 3, water storage and unwatering system 4 comprise water tank 401, electromagnetic water valve 402 and electromagnetic gas valve 403, water tank 401 is provided with water inlet pipe 404, drainpipe 405 and draft tube 406, water inlet pipe 404 is provided with filter screen, water inlet pipe 404 joining water box 401 and umbrella drying chamber, be provided with electromagnetic water valve 402 in water inlet pipe 404, draft tube 406 is communicated with water flowing case 401 and gas cylinder 206, is provided with electromagnetic gas valve 403 in draft tube 406.
As shown in Figure 4, information interaction system 5 comprises the pilot lamp 501, wireless transport module 502, wireless payment module 503, information display screen 504 and the dry umbrella number of times statistical module 505 that are connected with PLC 6 respectively.Wherein, pilot lamp 501 comprises normal pilot lamp, air pump overheating indicator lamp, gas cylinder overvoltage pilot lamp and the under-voltage pilot lamp of gas cylinder.
Electric power system 7 comprises 24V Switching Power Supply, scram button, earth leakage circuit-breaker.
The workflow of the dry umbrella device that the utility model provides is as follows: air is successively through air-intake filter 203, air compressor 204, the air valve 205 that dewaters, gas cylinder 206, stove pipe 207, solenoid valve cylinder manifold 208, gas-distributing pipe solenoid valve 209 and nozzle 210; Air-intake filter 203 pairs of air filter, air compressor 204 pressurized air, the air valve 205 that dewaters removes the moisture in pressurized air, gas cylinder 206 storing compressed air, the air entered in stove pipe 207 entered solenoid valve cylinder manifold 208 after entering heating, and pressure-air is finally sprayed by nozzle 210; Waterproof spray solenoid valve 202 controls by PLC 6, and when waterproof spray solenoid valve 202 is opened, gas cylinder 206 discharges hyperbar makes anti-water spray be pressed out to solenoid valve cylinder manifold 208 by anti-water spray storage bottle 201, and anti-water spray is finally sprayed by nozzle 210.
Temperature sensor 301 and barometer 302 detect temperature in air compressor 204, stove pipe 207 and gas cylinder 206 and air pressure, and information feed back detection obtained is to PLC 6, the work of PLC 6 pilot relay 304, prevent the temperature in air compressor 204 and stove pipe 207 too high, when the air pressure in gas cylinder 206 is too high, pressure release can be carried out by safety-valve 303.
The water dripped from umbrella enters water tank 401 after filter screen elimination impurity, and PLC 6 controls electromagnetic gas valve 403 and opens, and makes the pressure-air in gas cylinder 206 enter water tank 401, is discharged by the water in water tank 401 from drainpipe 405.
Normal pilot lamp, air pump overheating indicator lamp, gas cylinder overvoltage pilot lamp and the under-voltage pilot lamp of gas cylinder control the dry umbrella device current operating conditions of instruction by PLC 6 respectively, wireless payment module 503 is paid the fees for wireless traffic, information display screen 504 is for display and dry umbrella device relevant information, as access times statistics, the information such as the use guide of wireless traffic payment situation and dry umbrella device and design, dry umbrella number of times statistical module 505 is for adding up dry umbrella number of times, wireless transport module 502 is for using wireless transmission method (as utilized WIFI or 2G network) by data (as access times, business is paid the fees, the data such as dry umbrella device ruuning situation) transfer to backstage, a distant place.
Wherein, the detailed process of dry umbrella operation is as follows: before clamping umbrella handle 11 with gas pawl 9, want first umbrella to be strutted, gas pawl 9 is by the driving clamping umbrella handle 11 of pressure-air, position transducer 1 is by the radius of irreflexive mode perception umbrella surface 12, namely can return the different signal of height after position transducer 1 senses umbrella, PLC 6 according to signal intensity to judge umbrella radius.
For further instruction judges the method for umbrella radius and the injection direction of nozzle 210, first the concentric circles at nozzle 210 place and each position sensor 1 are numbered.As shown in Figure 5 and Figure 6, from concentrically ringed center of circle P1 from inner outwards successively these concentric circless are numbered one deck, two layers, three layers ... N layer; From the position transducer that distance mid point P2 is nearest, successively the position transducer 1 be positioned on the left of mid point P2 is numbered the first from left, the second from left ... left N, far away with mid point P2 distance, position transducer 1 is numbered larger, according to same principle, successively the position transducer 1 on the right side of mid point P2 is numbered right one, right two ... right N.
The position transducer 1 on the left of mid point P2 or right side returns the different signal of height, all can trigger the operation of dry umbrella, and be as the criterion to number larger position transducer 1, height unlike signal is returned as only having the first from left and right two sensors, then be as the criterion with right two, and the nozzle 210 started within the corresponding number of plies carries out dry umbrella operation.
The injection positive dirction of each nozzle 210 is described: make straight line and connect the nozzle 210 and umbrella surface 12 edge that are positioned at D position for the nozzle 210 being arranged in Fig. 5 D position, and ensure that the length of this straight line is the bee-line between this nozzle 210 and umbrella surface 12 edge, the injection positive dirction that this straight path (the straight line DA namely in Fig. 5) is this nozzle 210.In each layer, the actual ejection direction of half nozzle 210 offsets 30 ° counterclockwise relative to its injection positive dirction, this class nozzle 210 is called counterclockwise injection nozzle, if the straight line DB namely in Fig. 5 is the actual ejection track of the nozzle 210 being positioned at D position, the nozzle 210 being positioned at D position is counterclockwise injection nozzle; Positive dirction clockwise 30 ° is sprayed relative to it in the actual ejection direction of second half nozzle, this class nozzle is called clockwise injection nozzle, if the straight line DC namely in Fig. 5 is the actual ejection track of the nozzle 210 being positioned at D position, the nozzle 210 being positioned at D position is clockwise injection nozzle; Distribute alternately with counterclockwise injection nozzle and clockwise injection nozzle in layer.
The injection action of nozzle 210 is divided into three steps, supposes that the maximum startup number of plies of nozzle 210 is M layer, often walks and carry out to M layer from one deck successively, just carries out next step operation after namely all nozzles 210 complete previous action from the inside to the outside successively in one deck to M layer.The first step: with clockwise injection nozzle inject high pressure air some seconds in layer, then injection nozzle inject high pressure air some seconds counterclockwise; Second step: spray anti-water spray with injection nozzle clockwise in layer, then injection nozzle sprays anti-water spray counterclockwise; 3rd step: the same to first step.
Finally should be noted that; above embodiment is only in order to illustrate the technical solution of the utility model but not restriction to the utility model protection domain; although be explained in detail the utility model with reference to preferred embodiment; those of ordinary skill in the art is to be understood that; without departing from the concept of the premise utility; can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.
Claims (9)
1. a dry umbrella device, it is characterized in that: this dry umbrella device comprises housing and is arranged on position transducer, pneumatic system, pneumatic protection system, water storage and unwatering system in described housing, information interaction system, PLC and electric power system, PLC is link position sensor, pneumatic system, pneumatic protection system, water storage and unwatering system, information interaction system and electric power system respectively, and pneumatic system is also connected with pneumatic protection system with water storage and unwatering system respectively;
Be provided with side door and umbrella drying chamber in described housing, pneumatic system is communicated with described umbrella drying chamber with water storage and unwatering system.
2. dry umbrella device according to claim 1, it is characterized in that: described pneumatic system comprises anti-water spray storage bottle, waterproof spray solenoid valve and the air-intake filter, the air compressor that are communicated with successively along air-flow direction, the air valve that dewaters, gas cylinder, stove pipe, solenoid valve cylinder manifold, gas-distributing pipe solenoid valve and nozzle, and nozzle is communicated with described umbrella drying chamber;
Anti-water spray storage bottle is communicated with gas cylinder and solenoid valve cylinder manifold respectively, is provided with waterproof spray solenoid valve between anti-water spray storage bottle and gas cylinder;
Air compressor is communicated with described side door, and side door is folding shield door;
Described PLC connects side door, waterproof spray solenoid valve and gas-distributing pipe solenoid valve respectively.
3. dry umbrella device according to claim 2, is characterized in that: described pneumatic protection system comprises temperature sensor, barometer, safety-valve and relay;
Described PLC connects temperature sensor and relay respectively, and temperature sensor is for the temperature that detects in air compressor and stove pipe and temperature information is transferred to PLC, and relay also connects described air compressor and stove pipe respectively;
Described barometer is for detecting the air pressure in gas cylinder, and barometer connects PLC, and safety-valve is communicated with gas cylinder.
4. dry umbrella device according to claim 2, it is characterized in that: water storage and unwatering system comprise water tank, electromagnetic water valve and electromagnetic gas valve, water tank is provided with water inlet pipe, drainpipe and draft tube, described water inlet pipe is provided with filter screen, water inlet pipe joining water box and described umbrella drying chamber, be provided with electromagnetic water valve in water inlet pipe, described draft tube is communicated with water flowing case and described gas cylinder, is provided with electromagnetic gas valve in draft tube.
5. dry umbrella device according to claim 2, is characterized in that: be also provided with gas pawl in described umbrella drying chamber, and described gas pawl is communicated with gas cylinder and the driving passing through pressure-air clamps umbrella handle;
Be provided with the sphere panel of depression in described umbrella drying chamber towards the side of gas pawl, described sphere panel is provided with multiple described nozzle and described position transducer.
6. dry umbrella device according to claim 5, is characterized in that: multiple described nozzle all in concentric arrays, the concentrically ringed center of circle be positioned in same level by the umbrella handle that described gas pawl clamps;
Multiple described position transducer is arranged in same level, and the mid point of the line of these position transducers and the concentrically ringed center of circle are positioned at one perpendicular in the plane of surface level simultaneously.
7. dry umbrella device according to claim 1, is characterized in that: described information interaction system comprises the pilot lamp, wireless transport module, wireless payment module, information display screen and the dry umbrella number of times statistical module that are connected with PLC respectively.
8. dry umbrella device according to claim 7, is characterized in that: described pilot lamp comprises normal pilot lamp, air pump overheating indicator lamp, gas cylinder overvoltage pilot lamp and the under-voltage pilot lamp of gas cylinder.
9. dry umbrella device according to claim 1, is characterized in that: described electric power system comprises 24V Switching Power Supply, scram button, earth leakage circuit-breaker.
Priority Applications (1)
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CN201520320927.3U CN204613698U (en) | 2015-05-19 | 2015-05-19 | A kind of dry umbrella device |
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CN201520320927.3U CN204613698U (en) | 2015-05-19 | 2015-05-19 | A kind of dry umbrella device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108968258A (en) * | 2018-08-29 | 2018-12-11 | 杭州厚谋创意设计有限公司 | A kind of umbrella sleeve band machine |
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2015
- 2015-05-19 CN CN201520320927.3U patent/CN204613698U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108968258A (en) * | 2018-08-29 | 2018-12-11 | 杭州厚谋创意设计有限公司 | A kind of umbrella sleeve band machine |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150902 Termination date: 20160519 |
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CF01 | Termination of patent right due to non-payment of annual fee |