CN207498692U - A kind of energy-conserving intelligent ironing system - Google Patents
A kind of energy-conserving intelligent ironing system Download PDFInfo
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- CN207498692U CN207498692U CN201721202818.7U CN201721202818U CN207498692U CN 207498692 U CN207498692 U CN 207498692U CN 201721202818 U CN201721202818 U CN 201721202818U CN 207498692 U CN207498692 U CN 207498692U
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- 238000010409 ironing Methods 0.000 title claims abstract description 43
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 193
- 238000010438 heat treatment Methods 0.000 claims abstract description 109
- 238000003303 reheating Methods 0.000 claims abstract description 66
- 238000003860 storage Methods 0.000 claims abstract description 55
- 239000002351 wastewater Substances 0.000 claims abstract description 15
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 claims description 89
- 229910052742 iron Inorganic materials 0.000 claims description 42
- 238000005485 electric heating Methods 0.000 claims description 30
- 238000001816 cooling Methods 0.000 claims description 20
- 230000003020 moisturizing effect Effects 0.000 claims description 13
- 230000000694 effects Effects 0.000 claims description 9
- 230000005611 electricity Effects 0.000 claims description 8
- 239000003795 chemical substances by application Substances 0.000 claims description 7
- 238000004140 cleaning Methods 0.000 claims description 5
- 239000004744 fabric Substances 0.000 claims description 5
- 230000001186 cumulative effect Effects 0.000 claims description 3
- 238000010025 steaming Methods 0.000 claims description 2
- 238000007599 discharging Methods 0.000 abstract 1
- 238000005516 engineering process Methods 0.000 description 8
- 230000006837 decompression Effects 0.000 description 7
- 238000009835 boiling Methods 0.000 description 4
- 230000009977 dual effect Effects 0.000 description 4
- 238000005265 energy consumption Methods 0.000 description 4
- 230000004224 protection Effects 0.000 description 4
- 238000010586 diagram Methods 0.000 description 3
- 230000009471 action Effects 0.000 description 2
- 238000013461 design Methods 0.000 description 2
- 230000003993 interaction Effects 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 230000014759 maintenance of location Effects 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000004064 recycling Methods 0.000 description 2
- 239000007921 spray Substances 0.000 description 2
- PMVSDNDAUGGCCE-TYYBGVCCSA-L Ferrous fumarate Chemical compound [Fe+2].[O-]C(=O)\C=C\C([O-])=O PMVSDNDAUGGCCE-TYYBGVCCSA-L 0.000 description 1
- 206010053615 Thermal burn Diseases 0.000 description 1
- 238000010521 absorption reaction Methods 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- 230000004888 barrier function Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 230000000903 blocking effect Effects 0.000 description 1
- 230000036760 body temperature Effects 0.000 description 1
- 238000009529 body temperature measurement Methods 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- 238000010790 dilution Methods 0.000 description 1
- 239000012895 dilution Substances 0.000 description 1
- 238000001035 drying Methods 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
- 239000010419 fine particle Substances 0.000 description 1
- 230000017525 heat dissipation Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 235000000396 iron Nutrition 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 238000007726 management method Methods 0.000 description 1
- 230000000737 periodic effect Effects 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 238000011084 recovery Methods 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 230000035945 sensitivity Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
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Abstract
The utility model embodiment discloses a kind of energy-conserving intelligent ironing system, and the energy-conserving intelligent ironing system includes:Intelligent water supply module, water inlet pre-heating module, steam storage are with reheating module, steam output and flatiron module, automatic pollution discharge module, automatic desludging module and working condition and failure code display module;The water inlet pre-heating module stops heating during for reaching preset temperature;The steam storage is heated again with reheating module, the steam for being conveyed to main heating furnace body;The automatic pollution discharge module, for when recognizing trigger signal, discharging the main heating furnace body and steam storage and the waste water and entrained steam in reheating furnace body;The automatic desludging module, for starting default scale removal program according to default scale removal condition.So as to by using unique automatic desludging mode, reduce the problem of artificial scale removal, solve industry device dirt not except problem, greatly improve equipment practicability, stability.
Description
Technical field
The utility model embodiment is related to the technical field of steam generator device more particularly to a kind of energy-conserving intelligent is pressed
The system of scalding.
Background technology
Existing similar product on the market, all using single furnace structure, without automatic blowdown function, without automatic desludging
Function does not have failure code prompting function, does not have operation code prompting function, common radiator heat dissipation, these can bring following
Problem:
(1) in order to ensure the quantity of steam and steam pressure that need within the unit interval, boiler furnace certainly will be needed to do
Must be very big, required amount of water, electric heating tube power will increase, and as a result be exactly the increase of energy consumption.
(2) since the moisturizing of traditional product during the work time is same by the way of water is added directly into furnace body, cold water
The sharp temperature drop in furnace body can be caused during being added to, so as to which steam production and steam pressure is greatly reduced,
Ironing efficiency is seriously affected.
(3) since the water of single furnace body and generated steam can only be all deposited in same furnace body, steam storage capacity has
Limit, user carry out the moment of flatiron work opening iron steam cock, and the steam stored in furnace body has largely been ejected,
Steam pressure declines rapidly, quantity of steam is greatly decreased, and user, which can only be stopped, waits for the recovery of steam pressure that can just continue
Work so that work is intermittent, so as to influence ironing efficiency.
(4) single furnace structure, the steam of generation are handled without reheating, are directly output to by steam pipe 37 boiling hot
Bucket is ejected to flatiron object surface by iron, and steam can be because rapid lose warm decompression and condense, so as to generate a large amount of liquid
State water, that is, " steam the is overly wet " problem generally perplexed in the industry, not only influence ironing effect, and the clothes being ironed because
For water content it is excessive influence manufacture delivery.
(5) single furnace structure, lower half portion water, top half deposit steam, the heated boiling of water, in the effect of high pressure
Under, the droplet splash in boiling can together be sprayed with steam, that is, " the iron water spray phenomenon " generally reflected in the industry, seriously
Influence ironing effect.
(6) traditional electric heating steam generator, is not a complete whole boiling hot system, and dedicated steam output is not configured
With pressing module, user is only used at will buying a steam iron on the market and connect after buying back, such harm
There are two may:Ironing effect and working efficiency are severely impacted because iron lacks steam reheat function,
Because lacking effective coordination and control between iron and host, and make iron bottom plate temperature control, so as to which cloth can be scorched
Material.
(7) after a period of use, the fouling thickness of heating tube gradually increases equipment, and the heat transfer efficiency of heating tube declines,
Energy consumption increases, moreover, heating tube causes heating tube to hardening crack, leak electricity because heat cannot transmit outward in time.
(8) furnace body can lead to that the steam of output is clean, blocking pipeline, that is, is generally stranded in the industry due to the increase of incrustation scale
Iron " spray yellow water " reason disturbed.
(9) incrustation scale increase can cause water-level detecting device sensitivity to decline, and damage causes furnace body to add water out of control, equipment is not
Can normal use, gently then damage water-level detecting device, it is heavy then damage water pump, furnace body.
(10) furnace body surface scale is serious, increases maintenance expense, waste of manpower, material resources influence product service life and press
Scald efficiency.
(11) radiator of traditional product is radiated by ordinary aluminum plate, and the heat that control circuit element generates accumulates in equipment
Inside causes device temperature excessively high so as to generate component failure, and largely loss thermal energy improves energy consumption.
Utility model content
The purpose of the utility model embodiment is to propose a kind of intelligent ironing system, so realize multi-stove bodies structure, into
Water pre-add thermal technology, best supplementary water time control technology, steam are independently stored with reheating technology, steam output and flatiron skill
Art, automatic pollution discharge technology, automatic desludging technology, water-cooled thermal energy recycling heat sink technology and human-computer interaction technology;It is intended to solve
Certainly how to realize device energy conservation consumption reduction, easy to maintain, storage and transportation easy to use conveniently.
For this purpose, the utility model embodiment uses following technical scheme:
A kind of energy-conserving intelligent ironing system, the energy-conserving intelligent ironing system include:
Intelligent water supply module, pre-heating module of intaking, steam storage and reheating module, steam output and flatiron module,
Automatic pollution discharge module, automatic desludging module and display module;
The intelligent water supply module, for master control borad and auxiliary control panel control under, pass through water-cooling type radiator, first
Entering water electromagnetic valve, water pump water adding to water inlet preheat furnace body, the water inlet be heated to set temperature in preheating furnace body after, warp
Check valve adds in main heating furnace body;
The water inlet pre-heating module, for intaking by the water-cooling type radiator, absorption and being produced using control circuit
Raw thermal energy and after making temperature rise, into the preheating furnace body, be additionally operable in temperature sensor, master control borad and auxiliary control
Under the control of plate, the second electric heating tube is controlled, the water in the water inlet preheating furnace body is heated, when reaching preset temperature
Stop heating;
The steam storage is with reheating module, for steam storage and the electric heating tube third in reheating furnace body
Electric heating tube is transported to main heating furnace body described to steam in pressure sensor, master control borad and under assisting the control of control panel
Storage is heated again with the steam in reheating furnace body;
The steam output and flatiron module convey what is come for receiving the steam storage with reheating furnace body (3)
Steam is scalded through first steam electromagnetic valve and/or the second steam electromagnetic valve, the steam pipe, the first iron and/or second
Bucket, and be ejected to ironing fabrics surface after being heated again by first iron and/or the second iron and pressed;
The automatic pollution discharge module, for when recognizing trigger signal, opening the first blowoff electromagnetic valve and the second blowdown
Solenoid valve discharges the main heating furnace body and steam storage and the waste water and entrained steam in reheating furnace body;
The automatic desludging module, for detecting whether reaching default scale removal condition, the default scale removal condition includes:It is tired
The meter working time reaches preset time threshold, and in " come off duty key OFF " triggering state;If reach the default scale removal item
Part then starts default scale removal program according to the default scale removal condition.
Optionally, the water-cooling type radiator carries out water inlet while for cooling down to the water-cooling type radiator pre-
Heating, the thermal energy generated to auxiliary control panel recycle.
Optionally, the intelligent water supply module is additionally operable in moisturizing, first covers the bottom of the water inlet preheating furnace body
Portion, then from the top of the water inlet preheating furnace body the main heating furnace body is output to through check valve.
Optionally, it between the water inlet preheating furnace body and the main heating furnace body, is controlled by check valve.
Optionally, the intelligent water supply module selects best opportunity to preheat furnace body to the main heating from the water inlet
Furnace body moisturizing, the best opportunity be:Steam pressure is in the working clearance not less than scheduled threshold value, iron.
Optionally, the water inlet pre-heating module, is additionally operable to:After hot water adds the main heating furnace body, examined by water level
It surveys device and controls default amount of water, in the pressure sensor, master control borad and under assisting the control of control panel, the first electricity of control adds
The heating of heat pipe generates steam, and the pressure sensor, master control borad and auxiliary control panel control opening for first electric heating tube
Dynamic, stopping;The steam is stored by Pipeline transport to steam with reheating furnace body.
Optionally, the steam storage is additionally operable to reheating module:
Steam of the steam storage with reheating furnace body is transported to, in the pressure sensor, master control borad and auxiliary control
Under the control of making sheet, control third electric heating tube carries out reheating to the steam;
The steam of the main heating furnace body stores the bottom with reheating furnace body by the steam, is reheated;
After the steam heating, store through the steam and exported with the top for reheating furnace body.
The steam is stored by steam with reheating at the top of furnace body after output, through first steam electromagnetic valve and/or the
Two steam electromagnetic valves, the steam pipe, the first iron and/or the second iron, and by first iron and/or the second iron again
Ironing fabrics surface is ejected to after secondary heating to be pressed;
First iron and/or the second iron are through the steam pipe, power cord, electronic temperature measurement signal wire and device Host
Connection receives and stores the steam to come with reheating furnace body conveying and required electric power and temperature control instruction by the steam.
Optionally, the automatic desludging module, is used for:
Waste water in the main heating furnace body is exhausted, then pass through second blowdown electricity by first blowoff electromagnetic valve
Magnet valve exhausts the steam storage and the waste water in reheating furnace body;
By the switching of the second entering water electromagnetic valve, through first entering water electromagnetic valve, water from scale removal agent container and water tank
Pump adds water and scale remover to the water inlet preheating furnace body, the main heating furnace body and steam storage with reheating furnace body,
It heated, impregnated, decompose incrustation scale and cleaning.
Optionally, the automatic desludging module, is additionally operable to:
Two are carried out to water inlet preheating furnace body, main heating furnace body, steam storage and the reheating furnace body after scale removal and pipeline
Secondary wash cycles.
Optionally, the intelligent ironing system is additionally operable to:It is reminded according to different work and phenomenon of the failure into line code.
A kind of energy-conserving intelligent ironing system that the utility model embodiment provides, the energy-conserving intelligent ironing system packet
It includes:Intelligent water supply module, water inlet pre-heating module, steam storage are with reheating module, steam output and flatiron module, automatic row
Dirty module, automatic desludging module and display module;The water inlet pre-heating module stops heating during for reaching preset temperature;
The steam storage is heated again with reheating module, the steam for being conveyed to main heating furnace body;The automatic pollution discharge
Module for when recognizing trigger signal, opening the first blowoff electromagnetic valve and the second blowoff electromagnetic valve, discharges the main heating
Furnace body and steam storage and the waste water and entrained steam in reheating furnace body;The automatic desludging module, for being removed according to default
Dirty condition starts default scale removal program.So as to by using unique automatic desludging mode, reduce the problem of artificial scale removal, solve
Certainly industry device dirt greatly improves equipment practicability, stability not except problem.
Description of the drawings
Fig. 1 is the high-level schematic functional block diagram of a kind of intelligent ironing system that the utility model embodiment provides;
Fig. 2 is the internal structure schematic diagram of a kind of intelligent ironing system that the utility model embodiment provides;
Fig. 3 is the external structure schematic diagram of a kind of intelligent ironing system that the utility model embodiment provides;
Wherein, 1, main heating furnace body;2nd, water inlet preheating furnace body;3rd, steam storage is with reheating furnace body;4th, check valve;5、
First entering water electromagnetic valve;6th, the second entering water electromagnetic valve;7th, the first blowoff electromagnetic valve;8th, the second blowoff electromagnetic valve;9th, water pump;10、
Pressure sensor;11st, the first electric heating tube;12nd, the second electric heating tube;13rd, third electric heating tube;14th, control panel is assisted;15、
First steam electromagnetic valve;16th, the second steam electromagnetic valve;17th, safety valve;18th, pressure switch;19th, Thermal Cutoffs;20th, it connects
Pipeline;21st, temperature sensor;22nd, hardware frame;23rd, water-cooling type radiator;24th, water-level detecting device;25th, transformer;26th, it is main
Control plate;27th, scale removal agent container;28th, scale remover capacity checking apparatus;29th, pressure setting key;30th, temperature setting key;31st, iron
Power key;32nd, pressure is shown;33rd, temperature display;34th, working ON/ comes off duty OFF control handles;35th, casing;36th, earth leakage protective
Switch;37th, steam pipe;38th, the first iron;39th, the second iron;
Wherein, main heating furnace body 1 is used to generate steam;Water inlet preheating furnace body 2 is used to cold water becoming high-temperature water;Steam stores up
It deposits and is used to store steam with reheating with reheating furnace body 3;Check valve 4 is used to prevent opposing steam flow;First entering water electromagnetic valve 5 is used
In adding water management;Second entering water electromagnetic valve 6 is used to switch the selection of water and scale remover;First blowoff electromagnetic valve 7 is used for main stove
Body blowdown;Second blowoff electromagnetic valve 8 is for neatly storage with reheating furnace body blowdown;Water pump 9, for adding water;Pressure sensor
10 for output pressure signal and control main furnace body and steam storage furnace body, reheating furnace body heating;First electric heating tube 11 is used
In heating main furnace body;Second electric heating tube 12 preheats for intaking;Third electric heating tube 13 reheats for heating steam;It is auxiliary
Control panel 14 is helped for controlling water pump, heater circuit, solenoid valve;First steam electromagnetic valve 15 exports for steam;Second steam
Solenoid valve 16 exports for steam;Safety valve 17 loses heart for superpressure;Pressure switch 18 powers off for superpressure;Thermal Cutoffs 19
It is powered off for overtemperature;Temperature sensor 21 is for the temperature information in output water inlet preheating furnace body;Mounting bracket 22 is used for equipment
The installation of internal components is fixed;Water-cooling type radiator 23 be used for assist control panel radiating and cooling and meanwhile to recycling thermal energy into
Water is tentatively preheated;Water-level detecting device 24 is used to detect the water level in main heating furnace body;Transformer 25 is used to convert electricity
Pressure;Master control borad 26 is used for the command and control of equipment various actions;Iron power key 31 is used for the switch of iron power supply.
Specific embodiment
The utility model embodiment is described in further detail with reference to the accompanying drawings and examples.It is appreciated that
It is that specific embodiment described herein is used only for explaining the utility model embodiment rather than to the utility model embodiment
Restriction.It also should be noted that it illustrates only for ease of description, in attached drawing relevant with the utility model embodiment
Part rather than entire infrastructure.
With reference to figure 1, the energy-conserving intelligent ironing system includes:Intelligent water supply module 101, water inlet pre-heating module 102,
Steam is stored with reheating module 103, steam output and flatiron module 104, automatic pollution discharge module 105, automatic desludging module 106
With display module 107;
Referring to figs. 2 and 3, the intelligent water supply module 101, for passing through water cooled heat radiating 23, the first entering water electromagnetic valve
5th, water pump 9 plus water preheat furnace body 2 to water inlet;
Wherein, the water-cooling type radiator 23 carries out water inlet while for cooling down to the water-cooling type radiator 23
Preliminary preheating, the thermal energy generated to control circuit recycle.
Wherein, the intelligent water supply module 101 is additionally operable in moisturizing, first covers the bottom of the water inlet preheating furnace body 2
Portion, then from the top of the water inlet preheating furnace body 2 the main heating furnace body 1 is output to through check valve 4.
Wherein, it between the water inlet preheating furnace body 2 and the main heating furnace body 1, is controlled by check valve 4.
Wherein, the intelligent water supply module 101 selects the best opportunity to preheat furnace body 2 to the main heating from the water inlet
1 moisturizing of furnace body, the best opportunity be:Steam pressure is in the working clearance not less than preset threshold value, iron.
Illustratively, in intelligent water supply function, water inlet is by water-cooling type radiator 23, the first entering water electromagnetic valve 5, water pump
9 are added into water preheating furnace body 2.
When water passes through water-cooling type radiator 23, water inlet is heated while cooling to radiator, such design, rationally
Utilize thermal energy, reduce the energy consumption of equipment.
Under the control of temperature sensor 21, the second electric heating tube 12 is controlled, the water in water inlet preheating furnace body 2 is carried out
Heating, stops when reaching preset temperature.
To during main 1 moisturizing of heating furnace body, first filling into 2 bottom of water preheating furnace body, then exported from top through check valve 4
To main heating furnace body 1, it is ensured that the water for covering main heating furnace body 1 every time is all high-temperature water.
It between water inlet preheating furnace body 2 and main heating furnace body 1, is controlled by check valve 4, prevents from steaming in main heating furnace body 1
Vapour flows back.
What is covered in main heating furnace body 1 every time is all high-temperature water, effectively prevents main heating furnace body 1 caused by moisturizing
Rapidly decompression, lose temperature and influence, greatly meet demand of the flatiron to steam stable, improve ironing efficiency.
Supplementary water time is selected, the moisturizing under conditions of flatiron gap and steam pressure are up to standard avoids steam from losing
Warm decompression.
Above design perfectly solves the decompression caused by moisturizing is equipment, loses temperature influence, improves ironing efficiency.
Illustratively, equipment total power switch is opened, equipment enters standby mode, and total operation knob is pushed working key ON
Gear, equipment are started to work, and at this moment the water-level detecting device 24 in main heating furnace body 1, can carry out water level detecting, according to water level automatically
The situation that detection device 24 detects if you need to add water, can control 9 automatic watering of water pump, after suitable water level, stop adding
Water.
The water inlet pre-heating module 102, in temperature sensor 21, master control borad 26 and the control for assisting control panel 14
Under system, the second electric heating tube 12 is controlled, the water in the water inlet preheating furnace body 2 is heated, is stopped when reaching preset temperature
Only heat;
Illustratively, water inlet is by water-cooling type radiator 23, by the first entering water electromagnetic valve 5 and the second entering water electromagnetic valve 6,
Under the action of 9 draft of water pump, furnace body 2 is preheated into water inlet, in temperature sensor 21, master control borad 26 and auxiliary control panel 14
Control under, control the second electric heating tube 12, to water inlet preheating furnace body 2 in water preheated and reaching it is default
Stop heating (moreover, furnace body is equipped with Thermal Cutoffs 19, carrying out temperature anomaly protection) during 90 DEG C of temperature.
To water inlet during main 1 moisturizing of heating furnace body, to come from the interior conveying of water-cooling type radiator 23 first from water inlet pre-add hot stove
The bottom of body 2 enters, and is connected from the top of water inlet preheating furnace body 2 by check valve 4 with main heating furnace body 1 outflow, guarantee
The water for covering main heating furnace body 1 every time is all high-temperature water, reduces and temperature is lost caused by moisturizing is to heating furnace body, decompression influences.Unidirectionally
The setting of valve 4 is to preheat furnace body 2 to prevent the steam of main heating furnace body 1 from flowing back into water.
After hot water adds main heating furnace body 1, suitable amount of water is controlled by water-level detecting device 24, in pressure sensor
10th, under the control of master control borad 26 and auxiliary control panel 14, the heating of the first electric heating tube 11 is controlled, generates steam, pressure sensing
Device 10, master control borad 26 and auxiliary control panel 14 control the startup of the first electric heating tube 11, stop.The steam of generation is defeated by pipeline
Steam storage is sent to reheating furnace body 3.
Illustratively, the first electric heating tube 11 in main heating furnace body 1 contains two groups of electric heating tubes --- main heating tube
With auxiliary heating tube.When steam demand amount is in reduced levels, main heating tube work;When steam demand amount is in high level
When, auxiliary heating tube starts immediately and main heating tube works together, is met with the demand for ensureing steam.Particularly, herein
Steam demand amount be by user according to flatiron object type and characteristic set by the pressure set key 29 on operation panel
It puts, and the master control borad 26 of equipment sets according to this and the first electricity is controlled to add by pressure sensor 10, auxiliary control panel 14
The start and stop of two groups of electric heating tubes in heat pipe 11 determine to obtain suitable steam, both ensure that best ironing effect, realized
Energy-efficient purpose.
Steam of the steam storage with reheating furnace body 3 is transported to, in pressure sensor 10, master control borad 26 and auxiliary control panel
Under 14 control, control third electric heating tube 13 carries out reheating to steam.Such way is not only effectively guaranteed steam
Enough storages and steam saturation degree, and also assure the stability on steam pressure and temperature index.
The steam storage adds with reheating module 103 for steam storage with reheating the third electricity in furnace body 3
Heat pipe 13 is in pressure sensor 10, master control borad and under assisting the control of control panel, to main heating furnace body 1 steam that comes of conveying into
Row heats again;
Wherein, the steam storage is additionally operable to reheating module 103:
It is transported to steam of the steam storage with reheating furnace body 3, under the control of the pressure sensor 10, control
Electric heating tube third electric heating tube 13 carries out reheating to the steam;
The steam of the main heating furnace body 1 stores the bottom with reheating furnace body 3 by the steam, is reheated;
After the steam heating, first store through the steam and exported with the top for reheating furnace body 3.
Illustratively, in order to ensure the stability and mass dryness fraction of steam output, this structure employ independent steam storage with
Furnace body 3 is reheated, the steam that main heating furnace body 1 generates is transported to steam storage and is handled with reheating furnace body 3:
Third electric heating tube 13 in furnace body is in pressure sensor 10, master control borad 26 and under assisting the control of control panel 14,
The steam of main heating furnace body 1 conveying is heated again.
It conveys the steam to come and stores and reheat the heating of third electric heating tube 13 in furnace body 3 by steam, keep foot
Enough storage capacitys and saturation degree, it is achieved thereby that steam stablizes output.
Moreover, the vapor (steam) temperature of the saturation after heating again is high, moisture is few, also saved while improving ironing efficiency
The energy also solves the overly wet subsequent drying process problem of flatiron.
Equipped with safety devices such as pressure switch 18, Temperature protections 19 on furnace body, the safety of equipment is protected.
Bottom of furnace body is equipped with the second blowoff electromagnetic valve 8, and come off duty carries out automatic pollution discharge daily to furnace body.
Multi-stove bodies combine, and each furnace body is done sufficiently small, according to different functional requirements, sets suitable furnace body temperature,
Static thermal losses caused by reducing when furnace body is huge, amount of water is big, heating tube power is big, saves electric energy.
Multi-stove bodies combine, and steam storage has particularly been separately provided with reheating furnace body so that water and steam separation ensure
Enough storages of steam and the saturation degree of steam avoid influencing ironing effect when rapidly losing temperature, decompression when work plus water.
Multi-stove bodies combine, and water inlet preheating furnace body have particularly been separately provided, it is ensured that intake and entering main heating furnace body
It is preceding just to have passed through sufficient preheating so that main heating furnace body will not lose during the work time because of frequently cold water is added
Warm decompression problem, it is ensured that steam is continually generated in main heating furnace body.
The steam output and flatiron module 104 convey what is come for receiving the steam storage with reheating furnace body 3
Steam, through 15 and/or second steam electromagnetic valve 16 of the first steam electromagnetic valve, the steam pipe 37, the first iron and/or
Two irons, and be ejected to ironing fabrics after being heated again by 38 and/or second iron 39 of the first iron and pressed;
The steam output and flatiron module 104, are additionally operable to:
Temperature signal control that the master control borad 26 is fed back according to 38 and/or second iron 39 of the first iron described the
The baseplate temp of one iron 38 and/or the second iron 39, to reach scheduled ironing effect.
The automatic pollution discharge module 105, for when recognizing trigger signal, opening the first blowoff electromagnetic valve 7 and second
Blowoff electromagnetic valve 8 discharges the main heating furnace body 1 and steam storage with reheating waste water and remaining steam in furnace body 13;
Illustratively, when equipment is shut down every time, blowdown auxiliary control panel 14 can recognize off signal, shutdown it is same
When, blowdown auxiliary control panel 14 opens the first blowoff electromagnetic valve 7 and the second blowoff electromagnetic valve 8.
The waste water of furnace interior and remaining steam under the effect of the pressure by the road, pass through the first blowoff electromagnetic valve 7 and the
Two blowoff electromagnetic valves 8 are quickly discharged to blowdown tank and keep in, after blowdown, automatic power-off shutdown.
Per secondary device during shutdown, equipment can all carry out automatic pollution discharge, and personnel without waiting, can voluntarily leave, and solve equipment
Manpower has been saved while scale problems.
Daily automatic pollution discharge, the remaining discharge of wastewater to have boiled in furnace body one day is clean, drastically reduce incrustation scale
Formation, improve flatiron quality, the service life that reduces equipment failure rate, extend equipment.
The automatic desludging module 106, for detecting whether reach default scale removal condition, the default scale removal condition packet
It includes:Cumulative operation time reaches preset time threshold, and in " come off duty key OFF " triggering state;If reach described preset to remove
Dirty condition then starts default scale removal program according to the default scale removal condition.
Wherein, if described reach the default scale removal condition, default scale removal journey is started according to the default scale removal condition
Sequence, including:
Waste water in the main heating furnace body 1 is exhausted, then pass through second blowdown by first blowoff electromagnetic valve 7
Solenoid valve 8 exhausts the steam storage with reheating the waste water in furnace body 3;
By the switching of the second entering water electromagnetic valve 6, through first entering water electromagnetic valve from scale removal agent container 27 and water tank
5th, water pump 9 add water and scale remover to the water inlet preheating furnace body 2, the main heating furnace body 1 and steam storage with adding again
Hot stove body 3 is heated, is impregnated, decomposes incrustation scale and cleaning.
Illustratively, after equipment cumulative operation time reaches given threshold, scale removal work, scale removal flow can be started:
The water in main heating furnace body 1 is exhausted by the first blowoff electromagnetic valve 7 first, then passes through 8 row of the second blowoff electromagnetic valve
Fall steam storage with reheating the water in furnace body 3.
By the switching of the second entering water electromagnetic valve 6, the first entering water electromagnetic valve 5, water pump from scale removal agent container 27 and water tank
9, add suitable water and scale remover to water inlet preheating furnace body 2, main heating furnace body 1 and steam storage with reheating furnace body 3, into
The automatic heating of line program impregnates, decomposes incrustation scale, cleaning.
Equipment is on the basis of daily blowdown, then carries out Periodic scale removal processing, perfectly solves the fouling of puzzlement industry
Problem is greatly improved the service life of equipment, reduces the maintenance cost of equipment.
Illustratively, control switch pushes next key OFF position, and equipment is automatically closed all operation functions, automatically opens
Blowdown valve when being discharged to 0.3KG/c ㎡ pressure, opens steam threshold switch, forms gas flow loop, allow the unimpeded blowdown of equipment, and blowdown 5 divides
Zhong Hou is automatically shut power off.As long as control switch of coming off duty daily pulls out next key OFF, auxiliary control panel 14 carries out blowdown
Function, a daily blowdown reduce equipment scaling probability, improve flatiron quality.
Wherein, it decomposes incrustation scale to include, the scale removing agent of this device-specific is housed in scale removal agent container 27, scale remover passes through
First entering water electromagnetic valve 5 and the second entering water electromagnetic valve 6 and water pump 9 enter water inlet preheating furnace body 2, main heating furnace body 1 and steam
Storage and reheating furnace body 3 and connected pipeline, and control the dilution ratio of scale remover and water and preset temperature
Degree.In the preset time, scale remover generates chemical reaction with the incrustation scale adhered on furnace body and pipeline inner wall, and incrustation scale is broken down into
Fine particle simultaneously comes off in waste water.
Wherein, the cleaning, specially:
Water inlet preheating furnace body 2, main heating furnace body 1, steam storage and reheating furnace body 3 after scale removal and pipeline are carried out
At least secondary above wash cycles.
Unique automatic desludging mode reduces the problem of artificial scale removal, solves industry device dirt and does not remove problem, significantly
Improve equipment practicability, stability.
Wherein, the display module 107, for being carried according to the different working condition of equipment and phenomenon of the failure into line code
It wakes up.
Wherein, code includes:Auto sleep wake-up, failure code and operation code.
Auto sleep wake-up has:If 2 switching signals are not detected in steam cock, steam cock or iron electricity are pressed
Source key can wake-up master and corresponding iron, normal operating conditions is entered after wake-up;Switching signal includes:If in 2 minutes, there is one
It is a that switching signal is not detected, then it corresponds to iron and carries out suspend mode;In 5 minutes, boiler enters suspend mode, and (setting pressure is not arrived in just booting
Except value);In 30S, preheating enters suspend mode, (just during booting, preheating does not work).
Failure code includes:Steam valve failure, blowdown valve failure, water valve failure, heating tube failure, pressure sensor event
Barrier;Steam valve failure has switching signal, and 20S shows failure code, failure generation without apparent Pressure Fluctuation Signal, then corresponding temperature area
Code F1;Blowdown valve failure has blowdown signal, and 20S is interior without boiler pressure, hence it is evident that declines, then panel red lamp bar flicker alarm, stops
Machine, failure code all show simultaneously in dual temperature zones, not voice reminder, failure code F2;Water valve failure, water pump continuous work
More than 300 seconds, there are no water level signal is detected, then panel red lamp bar flicker alarm, shut down, failure code is all in dual temperature
It spends area to show simultaneously, not voice reminder, failure code F3;Heating tube failure rises for 5 minutes without apparent pressure, and 5 minutes without bright
Aobvious sensing electric current, panel red lamp bar flicker alarm, shuts down, failure code all shows that voice does not carry simultaneously in dual temperature zones
It wakes up, failure code F4;Pressure sensor failure rises for 5 minutes without apparent pressure, there is within 5 minutes apparent sensing electric current, and panel is red
Lamp bar flicker alarm, shuts down, failure code is all shown simultaneously in dual temperature zones, not voice reminder, failure code F5.
Operation code includes:Water shortage, scale removal;Water shortage is audio alert, and 10S reports are primary, please add water;When scale remover lacks,
Audio alert, 10S reports are primary, please add scale remover.
The utility model embodiment discloses a kind of energy-conserving intelligent ironing system, the energy-conserving intelligent ironing system packet
It includes:Intelligent water supply module, water inlet pre-heating module, steam storage are with reheating module, steam output and flatiron module, automatic row
Dirty module, automatic desludging module and working condition and failure code display module;The intelligent water supply module is intake for managing
System realizes the dynamic control to water inlet opportunity, inflow temperature and inflow;The water inlet pre-heating module, for into
Water is heated in advance, it is ensured that enter main heating furnace body is high-temperature-hot-water;Steam storage with reheating module, for pair
The steam that main heating furnace body conveying comes is heated again, it is ensured that steam stablizes output;The automatic pollution discharge module is used
In when recognizing trigger signal, the discharge main heating furnace body and steam storage are steamed with the waste water in reheating furnace body and residual
Vapour;The automatic desludging module, for starting default scale removal program according to default scale removal condition, automatically in equipment furnace body,
Electric heating tube carries out incrustation scale removing with pipeline;So-called display module, for human-computer interaction.
The technical principle of the utility model embodiment is described above in association with specific embodiment.These descriptions are intended merely to solve
The principle of the utility model embodiment is released, and the limit to the utility model embodiment protection domain cannot be construed in any way
System.Based on explanation herein, those skilled in the art, which would not require any inventive effort, can associate the utility model
Other specific embodiments of embodiment, these modes are fallen within the protection domain of the utility model embodiment.
Claims (10)
1. a kind of energy-conserving intelligent ironing system, which is characterized in that the energy-conserving intelligent ironing system includes:
Intelligent water supply module (101), water inlet pre-heating module (102), steam storage are with reheating module (103), steam exports
With flatiron module (104), automatic pollution discharge module (105), automatic desludging module (106) and display module (107);
The intelligent water supply module (101), for auxiliary control panel (14) control under, by water-cooling type radiator (23),
First entering water electromagnetic valve (5), water pump (9) plus water preheat furnace body (2) to water inlet;
The water inlet pre-heating module (102), under the control of temperature sensor (21) and auxiliary control panel (14), controlling
Second electric heating tube (12) heats the water in the water inlet preheating furnace body (2), stops adding when reaching preset temperature
Heat;
The steam storage adds with reheating module (103) for steam storage with reheating the third electricity in furnace body (3)
Heat pipe (13) is in pressure sensor (10) under the control of auxiliary control panel (14), the steaming to come is conveyed to main heating furnace body (1)
Vapour is heated again;
The steam output and flatiron module (104) convey what is come for receiving the steam storage with reheating furnace body (3)
Steam, through the first steam electromagnetic valve (15) and/or the second steam electromagnetic valve (16), steam pipe (37), the first iron and/or second
Iron, and be ejected to ironing fabrics after being heated again by first iron (38) and/or the second iron (39) and pressed;
The automatic pollution discharge module (105), for when recognizing trigger signal, opening the first blowoff electromagnetic valve (7) and second
Blowoff electromagnetic valve (8) is discharged the main heating furnace body (1) and steam storage and is steamed with reheating the waste water in furnace body (3) and remaining
Vapour;
The automatic desludging module (106), for detecting whether reaching default scale removal condition, the default scale removal condition includes:
Equipment cumulative operation time reaches preset time threshold, and in " come off duty key OFF " triggering state;If reach described preset to remove
Dirty condition then starts default scale removal program according to the default scale removal condition;
The display module (107), for being reminded according to the different working condition of equipment and phenomenon of the failure into line code.
2. energy-conserving intelligent ironing system according to claim 1, which is characterized in that
The water-cooling type radiator (23), for being preheated while cooling to the auxiliary control panel (14) to water inlet,
The thermal energy generated to auxiliary control panel (14) recycles.
3. energy-conserving intelligent ironing system according to claim 1, which is characterized in that the intelligent water supply module (101),
It is additionally operable in moisturizing, the warm water to be come by the water-cooling type radiator (23) conveying is first covered the water inlet preheating furnace body
(2) bottom, then from the top of the water inlet preheating furnace body (2) the main heating furnace body (1) is output to through check valve (4)
It is interior.
4. energy-conserving intelligent ironing system according to claim 1, which is characterized in that the water inlet preheating furnace body (2)
Between the main heating furnace body (1), controlled by check valve (4).
5. energy-conserving intelligent ironing system according to claim 1, which is characterized in that the intelligent water supply module (101)
Selecting the best opportunity, the best opportunity is from the water inlet preheating furnace body (2) to main heating furnace body (1) moisturizing:It steams
Steam pressure is in the working clearance not less than scheduled threshold value, iron.
6. the energy-conserving intelligent ironing system according to claim 1 to 5 any one, which is characterized in that the water inlet is pre-
Heating module (102), is additionally operable to:After hot water adds the main heating furnace body (1), controlled by water-level detecting device (24) default
Amount of water under the control of the pressure sensor (10), master control borad (26) and auxiliary control panel (14), controls the first electrical heating
The heating for managing (11) generates steam, and the pressure sensor (10) and auxiliary control panel (14) control first electric heating tube
(11) startup, stopping;The steam produced is stored by Pipeline transport to the steam with reheating furnace body (3).
7. energy-conserving intelligent ironing system according to claim 6, which is characterized in that the steam storage is with reheating mould
Block (103), is additionally operable to:
Steam of the steam storage with reheating furnace body (3) is transported to, in the pressure sensor (10) and auxiliary control panel
(14) under control, control third electric heating tube (13) carries out reheating to the steam;
The steam of the main heating furnace body (1) stores the bottom with reheating furnace body (3) by the steam, is reheated;
After the steam heating, store through the steam and exported with the top for reheating furnace body (3).
8. energy-conserving intelligent ironing system according to claim 6, which is characterized in that the steam output and flatiron module
(104), it is additionally operable to:
The master control borad (26) is according to the temperature signal control that first iron (38) and/or the second iron (39) are fed back
The baseplate temp of first iron (38) and/or the second iron (39), to reach scheduled ironing effect.
9. energy-conserving intelligent ironing system according to claim 1, which is characterized in that the automatic desludging module (106),
For:
Waste water in the main heating furnace body (1) is exhausted, then pass through second blowdown by first blowoff electromagnetic valve (7)
Solenoid valve (8) exhausts the steam storage with reheating the waste water in furnace body (3);
By the switching of the second entering water electromagnetic valve (6), respectively from scale removal agent container (27) and external water tank through described first into
Water solenoid valve (5), water pump (9) add water and scale remover to the water inlet preheating furnace body (2), the main heating furnace body (1) and institute
Steam storage is stated with reheating furnace body (3), heated, impregnate, decompose incrustation scale and cleaning.
10. energy-conserving intelligent ironing system according to claim 9, which is characterized in that the automatic desludging module
(106), it is additionally operable to:
To after scale removal water inlet preheating furnace body (2), main heating furnace body (1), steam storage with reheat furnace body (3) and pipeline into
Row secondary cycle is cleaned.
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| CN201721202818.7U CN207498692U (en) | 2017-09-19 | 2017-09-19 | A kind of energy-conserving intelligent ironing system |
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Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107435231A (en) * | 2017-09-19 | 2017-12-05 | 深圳汉明威智能设备有限公司 | A kind of energy-conserving intelligent ironing system |
| CN108800087A (en) * | 2018-06-25 | 2018-11-13 | 东台帕瓦环保节能科技有限公司 | A kind of energy-saving environmental-protection steam generator |
| CN109005609A (en) * | 2018-07-19 | 2018-12-14 | 丁宇 | A kind of graphene heating system applied to staple food dining car |
| CN109208262A (en) * | 2018-10-29 | 2019-01-15 | 珠海格力电器股份有限公司 | Steam generating device of washing machine, washing machine and washing method |
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2017
- 2017-09-19 CN CN201721202818.7U patent/CN207498692U/en active Active
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107435231A (en) * | 2017-09-19 | 2017-12-05 | 深圳汉明威智能设备有限公司 | A kind of energy-conserving intelligent ironing system |
| CN107435231B (en) * | 2017-09-19 | 2023-11-03 | 深圳汉明威智能设备有限公司 | Energy-saving intelligent ironing system |
| CN108800087A (en) * | 2018-06-25 | 2018-11-13 | 东台帕瓦环保节能科技有限公司 | A kind of energy-saving environmental-protection steam generator |
| CN109005609A (en) * | 2018-07-19 | 2018-12-14 | 丁宇 | A kind of graphene heating system applied to staple food dining car |
| CN109208262A (en) * | 2018-10-29 | 2019-01-15 | 珠海格力电器股份有限公司 | Steam generating device of washing machine, washing machine and washing method |
| CN109208262B (en) * | 2018-10-29 | 2023-06-20 | 珠海格力电器股份有限公司 | Steam generating device of washing machine, washing machine and cleaning method |
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