CN217963038U - Controllable anti-icing spraying subassembly of fog volume - Google Patents

Controllable anti-icing spraying subassembly of fog volume Download PDF

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Publication number
CN217963038U
CN217963038U CN202222148170.7U CN202222148170U CN217963038U CN 217963038 U CN217963038 U CN 217963038U CN 202222148170 U CN202222148170 U CN 202222148170U CN 217963038 U CN217963038 U CN 217963038U
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China
Prior art keywords
shower nozzle
frostproofing
output
input
power
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CN202222148170.7U
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Chinese (zh)
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张旭
王志新
张玉川
胥立杰
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Chengde Xingsui Technology Co ltd
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Chengde Xingsheng Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a controllable anti-icing spraying subassembly of fog volume relates to industrial dust removal technical field. This controllable anti-icing spraying subassembly of fog volume includes the branch control box, button keyboard, a plurality of frostproofing shower nozzle and power, the output of power respectively with the input of branch control box, the input of button keyboard and the input electricity of frostproofing shower nozzle are connected, the output of button keyboard is connected with frostproofing shower nozzle's input electricity, the branch control box includes the box, two electromagnetism valves, main conveying line, water drainage pipeline, the shower nozzle water supply pipeline, power adapter and freeze-proof device constitute, main conveying line and electromagnetism valves intercommunication, the output of electromagnetism valves and the aqueous vapor pipeline intercommunication of frostproofing shower nozzle, power adapter's input is connected with the output electricity of power, power adapter's output is connected with electromagnetism valves electricity. The utility model discloses can nimble control fog volume size as required, the influence is frozen in the deicing side by side, the atomizer that also can normally work under winter low temperature condition.

Description

Controllable anti-icing spraying subassembly of fog volume
Technical Field
The utility model relates to an industrial dust removal technical field, concretely relates to controllable anti-icing spraying subassembly of fog volume.
Background
At present, at the shower nozzle that industrial dust removal used, there is water to remain in the shower nozzle after the water spray, be difficult to discharge, especially arrived in winter, remained the water in the shower nozzle can freeze, can block up the shower nozzle when using next time and lead to the shower nozzle not to go out water, and water freezes back volume expansion moreover, seriously is the spalling shower nozzle.
The existing spray head can not adjust the mist quantity according to the dust quantity of the working environment and can not automatically eliminate the influence of low temperature on the dry mist spray nozzle.
SUMMERY OF THE UTILITY MODEL
Therefore, the embodiment of the utility model provides a controllable anti-icing spraying subassembly of fog volume to solve current shower nozzle and can not adjust the fog volume size according to operation environment dust volume, and can not the problem of the influence of automatic elimination low temperature to the dry fog nozzle.
In order to achieve the above object, the embodiment of the present invention provides the following technical solutions:
the utility model provides a controllable anti-icing spraying subassembly of fog volume, includes branch control box, button keyboard, a plurality of frostproofing shower nozzle and power, the output of power respectively with the input of branch control box the input of button keyboard and the input electricity of frostproofing shower nozzle is connected, the output of button keyboard with the input electricity of frostproofing shower nozzle is connected, and opening and closing of control assembly control frostproofing shower nozzle of button keyboard as frostproofing shower nozzle, the branch control box includes box, two solenoid valve groups, main conveying pipeline, drain line, shower nozzle water supply pipeline, power adapter and freeze-proof device, main conveying pipeline's output with the input intercommunication of solenoid valve group, main conveying pipeline are water and gas transport for the solenoid valve group, the output of solenoid valve group with the aqueous vapor intercommunication of frostproofing shower nozzle, the input of power adapter with the output electricity of power is connected, the output of power adapter with the solenoid valve group electricity is connected.
Further optionally, the main conveying pipeline comprises a water conveying pipe and a gas conveying pipe, an output end of the water conveying pipe is communicated with an input end of one of the electromagnetic valve groups, an output end of the gas conveying pipe is communicated with an input end of the other electromagnetic valve group, the electromagnetic valve groups determine the opening and closing of each anti-freezing spray head according to the setting of the button keyboard, when the anti-freezing spray heads are set to be opened, the water gas pipelines of the anti-freezing spray heads are communicated with the water conveying pipe and the gas conveying pipe, and when the anti-freezing spray heads are set to be closed, the water conveying pipelines of the spray heads of the anti-freezing spray heads are communicated with the water drainage pipeline.
Further optionally, the button keyboard includes the box body, inlay a plurality of buttons of taking the lamp on the box body, be provided with the PCB circuit board of connecting the button of taking the lamp and cable in the box body, the quantity of taking the lamp button with the quantity of shower nozzle prevents frostbite is unanimous.
Further optionally, the anti-freezing device includes a temperature control box, a carbon fiber heating wire, and a thermal insulation material, and the temperature control box and the carbon fiber heating wire are connected in series to the power adapter.
Further optionally, the anti-freezing sprayer comprises a temperature probe, a heating circuit, a dry fog nozzle and a heat-insulating sheath, the heat-insulating sheath is fixed at the rear end of the anti-freezing sprayer, the heating circuit is fixed between the heat-insulating sheath and the anti-freezing sprayer, a U-shaped groove is formed in the outer wall of the heat-insulating sheath, and the temperature probe is fixed in the U-shaped groove.
Further optionally, the heating circuit comprises a wire, a heating body and a temperature controller, the heating body is made of a carbon fiber material or a graphene heating film, and the heating body and the temperature controller are connected in series on the power adapter through the wire.
The utility model discloses following beneficial effect has at least:
the utility model provides a controllable anti-icing spraying subassembly of fog volume, be responsible for the pipeline through setting up and provide air and water that accord with certain pressure, distribute water and gas to the frostproofing shower nozzle everywhere through the branch control case, thereby realize the spray dust removal operation, the branch control case is connected with button keyboard, but opening and closing of each frostproofing shower nozzle of manual regulation, prevent frostproofing shower nozzle and water pipe freezing through setting up freeze-proof device, whether come to control to begin to spray, thereby can control the fog volume size, accomplish the nimble dust removal operation of accurately implementing of intelligence.
Drawings
In order to clearly illustrate the prior art and the present invention, the drawings needed to be used in the description of the prior art and the embodiments of the present invention will be briefly described. It should be apparent that the drawings in the following description are merely exemplary, and that other drawings may be derived from the provided drawings by those of ordinary skill in the art without inventive effort.
The structure, ratio, size and the like shown in the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by people familiar with the technology, and are not used for limiting the limit conditions that the present invention can be implemented, and any modification of the structure, change of the ratio relation or adjustment of the size should still fall within the scope that the technical content disclosed in the present invention can cover without affecting the efficacy that the present invention can produce and the purpose that can be achieved.
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the structure of the anti-freezing nozzle of the present invention;
FIG. 3 is a schematic view of the heating circuit of the present invention;
FIG. 4 is a schematic diagram of the anti-freeze device circuit structure of the present invention;
description of reference numerals:
1. a power adapter; 2. a sub-control box; 21. a box body; 22. an electromagnetic valve group; 23. a main conveying line; 231. a water delivery pipe; 232. a gas delivery pipe; 24. a drain line; 25. a nozzle water supply pipeline; 26. an anti-freeze device; 261. a temperature control box; 262. heating the wire with carbon fiber; 3. a freeze-proof spray head; 31. a temperature probe; 32. a heating circuit; 321. a wire; 322. a heating body; 323. a temperature controller; 33. a dry mist nozzle; 34. a thermal insulation sleeve; 4. a button keypad; 41. a box body; 42. a button with a light; 5. and a power supply lead.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
In the description of the present invention, "a plurality" means two or more unless otherwise specified. The terms "first," "second," "third," "fourth," and the like in the description and claims of the present invention and in the above-described drawings (if any) are intended to distinguish between the referenced items. For a scheme with a time sequence flow, the term expression does not need to be understood as describing a specific sequence or a sequence order, and for a scheme of a device structure, the term expression does not have distinction of importance degree, position relation and the like.
Furthermore, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements specifically listed, but may include other steps or elements not expressly listed that are inherent to such process, method, article, or apparatus or that are added to such process, method, article, or apparatus based on the concepts of the present invention.
As shown in fig. 1-4, an anti-icing spray assembly with controllable mist quantity comprises a sub-control box 2, a button keyboard 4, a plurality of anti-icing spray heads 3 and a power supply, wherein an output end of the power supply is electrically connected with an input end of the sub-control box 2, an input end of the button keyboard 4 and an input end of the anti-icing spray heads 3 respectively, and is used for providing electric energy, an output end of the button keyboard 4 is electrically connected with an input end of the anti-icing spray heads 3, the button keyboard 4 is used as a control assembly of the anti-icing spray heads 3 to control the anti-icing spray heads 3 to be opened and closed, the sub-control box 2 comprises a stainless steel box body 21, two electromagnetic valve groups 22, a main conveying pipeline 23, a drain pipeline 24, a spray head water conveying pipeline 25, a power adapter 1 and an anti-icing device 26, an output end of the main conveying pipeline 23 is communicated with input ends of the electromagnetic valve groups 22, the main conveying pipeline 23 is used for respectively conveying water and gas to the two electromagnetic valve groups 22, an output end of the electromagnetic valve group 22 is communicated with a water and gas conveying pipeline to the anti-icing spray heads 3, the electromagnetic valve group 22 is used for conveying water and gas to the anti-icing spray heads 3, an input end of the power adapter 1 is electrically connected with an output end of the power supply 1.
As shown in fig. 1 and 2, the main conveying pipeline 23 includes a water conveying pipe 231 and a gas conveying pipe 232, an output end of the water conveying pipe 231 is communicated with an input end of one of the electromagnetic valve sets 22, an output end of the gas conveying pipe 232 is communicated with an input end of the other electromagnetic valve set 22, the electromagnetic valve sets 22 determine on and off of each anti-freezing nozzle 3 according to the setting of the button keyboard 4, when the anti-freezing nozzles 3 are set to be on, the water conveying pipe 231 and the gas conveying pipe 232 of the anti-freezing nozzles 3 are both communicated with each other, when the anti-freezing nozzles 3 are set to be off, the nozzle water conveying pipe 25 of the anti-freezing nozzles 3 is communicated with the water drainage pipe 24, water in the nozzle water pipes of the anti-freezing nozzles 3 is discharged outside, no water is stored in the pipes, and an anti-freezing effect is achieved.
As shown in fig. 1 and fig. 2, the button keyboard 4 includes a box body 41, a plurality of buttons with lamps are embedded on the box body 41, a PCB circuit board connecting the buttons 42 with the lamps and cables is arranged in the box body 41, the number of the buttons 42 with the lamps is consistent with that of the anti-freezing nozzles 3, in this embodiment, the button keyboard 4 is a cubic box made of aluminum alloy, 3 or 5 buttons with lamps are embedded on the cubic box, and the PCB circuit board connecting the buttons and the cables is arranged inside the cubic box. When the button is pressed down, the indicating lamp is on, the electromagnetic valve connected with the button is opened, and when the button is pressed down again, the indicating lamp is turned off.
As shown in fig. 1 to 4, the antifreeze apparatus 26 includes a temperature control box 261, a carbon fiber heating wire 262, and an insulating material. The anti-freezing spray head 3 consists of a temperature probe 31, a heating circuit 32, a dry fog nozzle 33 and a heat-insulating sheath. The heating circuit 32 comprises a lead 321, a heating body 322 and a temperature controller 323, the heating body 322 is made of a carbon fiber material or a graphene heating film, and can be a spiral heating cable or a graphene heating film, and the heating circuit 32 is electrically connected with the power adapter 1 in the sub-control box 2 through a power lead 5 at the bottom of the anti-freezing spray head 3. The dry fog nozzle 33 is similar to a common dry fog nozzle in the market, and the rear end of the dry fog nozzle 33 is provided with a spiral outer wire and a round outer wall for installing and fixing the heating circuit 32 and the heat preservation sleeve 34. The thermal insulation sleeve 34 is a circular tubular structure, the material of the thermal insulation sleeve can be copper, steel or PPR (stainless material), the length of the thermal insulation sleeve is one third of the total length of the nozzle, and a gap between the thermal insulation sleeve and the nozzle is used for placing the heating circuit 32. At the tail end of the sheath, there is an internal thread screw for mounting the rear cover. The outer wall of the sheath has a U-shaped recess for receiving a temperature probe 31. The anti-freezing device 26 senses the temperature of the pipeline and the nozzle in real time by using a temperature measuring technology, when the temperature is lower than 0 degree (or other set temperature), the heating circuit 32 of the heating device is started to heat the whole anti-freezing spray head 3 to ensure that the anti-freezing spray head is not frozen, and when the temperature rises by 3 degrees (or other set temperature), the heating circuit 32 of the heating device stops heating, so that the nozzle is ensured not to be frozen all the time. The heating device adopts carbon fibers (or graphene heating films) as heating materials, is safe and energy-saving, and has the heating power of only 4.5W.
The utility model discloses adjustable fog volume of going out adapts to the dust removal operation of different dust volumes, makes dry fog nozzle 33 also can normally work at low temperature condition. Heating and stopping are automatically carried out, so that electric energy is saved, and the trouble of manual maintenance is avoided. Sturdy and durable structure, long service life, the cost has been practiced thrift for the enterprise the utility model discloses the power consumption is low, long service life, strike sparks, safe and reliable, single shower nozzle during operation power is 4.5 watts, and is rational in infrastructure firm, and in use can not take place to warp and drop, in the plant ore deposit dust removal in-service application, has actually confirmed can be according to the dust volume regulation and control fog volume size of dusting point, normal work more than 20 degrees below zero, do not freeze, even the outage makes inside freeze, after the during operation circular telegram, also enable to freeze and melt very fast, ensure normal work. Because of the reliable temperature control heating device, the circuit only works when the ice freezes at low temperature, and the circuit does not heat at ordinary times and consume redundant electric energy. The workload of maintenance is very little at ordinary times.
The above embodiments may be combined, and details of the same or similar concepts or processes may not be repeated in some embodiments.
All the technical features of the above embodiments can be arbitrarily combined (as long as there is no contradiction between the combinations of the technical features), and for brevity of description, all the possible combinations of the technical features in the above embodiments are not described; these examples, which are not explicitly described, should be considered to be within the scope of the present description.
The present invention has been described in considerable detail with reference to certain embodiments and examples thereof. It should be noted that, without departing from the inventive concept, it is obvious that several variations and modifications can be made to the specific embodiments, which fall within the scope of protection of the present application. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (6)

1. An anti-icing spraying subassembly that controllable fog volume which characterized in that: including branch accuse case (2), button keyboard (4), a plurality of frostproofing shower nozzle (3) and power, the output of power respectively with the input of branch accuse case (2) the input of button keyboard (4) and the input electricity of frostproofing shower nozzle (3) is connected, the output of button keyboard (4) with the input electricity of frostproofing shower nozzle (3) is connected, and opening and closing of control assembly control frostproofing shower nozzle (3) of button keyboard (4) as frostproofing shower nozzle (3), branch accuse case (2) is including box (21), two electromagnetism valves (22), main conveying line (23), drain line (24), shower nozzle water supply pipeline (25), power adapter (1) and freeze-proof device (26), the output of main conveying line (23) with the input intercommunication of electromagnetism valves (22), main conveying line (23) are water and gas transport for electromagnetism valves (22), the output of electromagnetism valves (22) with the aqueous vapor pipeline intercommunication of frostproofing shower nozzle (3), the input of power adapter (1) with the output electricity of power is connected, the output of power is connected with electromagnetism adapter (1) electricity.
2. The controlled mist quantity anti-icing spray assembly of claim 1, wherein: the main conveying pipeline (23) comprises a water conveying pipe (231) and a gas conveying pipe (232), the output end of the water conveying pipe (231) is communicated with the input end of one of the electromagnetic valve groups (22), the output end of the gas conveying pipe (232) is communicated with the input end of the other electromagnetic valve group (22), the electromagnetic valve groups (22) determine the opening and closing of each anti-freezing spray head (3) according to the setting of the button keyboard (4), when the anti-freezing spray heads (3) are set to be opened, the water gas pipeline of the anti-freezing spray heads (3) is communicated with the water conveying pipe (231) and the gas conveying pipe (232), and when the anti-freezing spray heads (3) are set to be closed, the spray head water conveying pipeline (25) of the anti-freezing spray heads (3) is communicated with the water drainage pipeline (24).
3. The controlled mist anti-icing spray assembly of claim 1, wherein: button keyboard (4) are including box body (41), inlay a plurality of lamp of taking button (42) on box body (41), be provided with the PCB circuit board of connecting lamp of taking button (42) and cable in box body (41), take the quantity of lamp button (42) with the quantity of shower nozzle (3) of preventing frostbite is unanimous.
4. The controlled mist quantity anti-icing spray assembly of claim 1, wherein: the anti-freezing device (26) comprises a temperature control box (261), a carbon fiber heating wire (262) and a heat insulation material, wherein the temperature control box (261) and the carbon fiber heating wire (262) are connected in series on the power adapter (1).
5. The controlled mist quantity anti-icing spray assembly of claim 1, wherein: frostproofing shower nozzle (3) comprise temperature probe (31), heating circuit (32), dry fog nozzle (33) and heat preservation sheath, the heat preservation sheath is fixed in frostproofing shower nozzle (3) rear end, heating circuit (32) are fixed in the heat preservation sheath with frostproofing between shower nozzle (3), U type groove has been seted up to the heat preservation sheath outer wall, temperature probe (31) are fixed in U type inslot.
6. The controlled mist quantity anti-icing spray assembly of claim 5, wherein: the heating circuit (32) comprises a lead (321), a heating body (322) and a temperature controller (323), the heating body (322) is made of a carbon fiber material or a graphene heating film, and the heating body (322) and the temperature controller (323) are connected in series on the power adapter (1) through the lead (321).
CN202222148170.7U 2022-08-12 2022-08-12 Controllable anti-icing spraying subassembly of fog volume Active CN217963038U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222148170.7U CN217963038U (en) 2022-08-12 2022-08-12 Controllable anti-icing spraying subassembly of fog volume

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222148170.7U CN217963038U (en) 2022-08-12 2022-08-12 Controllable anti-icing spraying subassembly of fog volume

Publications (1)

Publication Number Publication Date
CN217963038U true CN217963038U (en) 2022-12-06

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CN (1) CN217963038U (en)

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TR01 Transfer of patent right

Effective date of registration: 20230509

Address after: 067000 High tech Industrial Development Zone, Luanping County, Chengde City, Hebei Province

Patentee after: Chengde Xingsui Technology Co.,Ltd.

Address before: 067406 temporary office building of Chengde County high tech Industrial Development Zone Management Committee (Liugou Park), Chengde City, Hebei Province

Patentee before: Chengde Xingsheng Machinery Manufacturing Co.,Ltd.

TR01 Transfer of patent right