CN202074681U - Electromagnetic heating boiler - Google Patents
Electromagnetic heating boiler Download PDFInfo
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- CN202074681U CN202074681U CN2011201497757U CN201120149775U CN202074681U CN 202074681 U CN202074681 U CN 202074681U CN 2011201497757 U CN2011201497757 U CN 2011201497757U CN 201120149775 U CN201120149775 U CN 201120149775U CN 202074681 U CN202074681 U CN 202074681U
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- heating
- boiler
- temperature control
- boiler body
- electromagnetic heating
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Abstract
The utility model discloses an electromagnetic heating boiler, comprising a boiler body, an electromagnetic heating temperature control system and a decompression bubble; the boiler body which takes on an 'III' shape comprises a water inlet, a water outlet and a heating chamber, the heating chamber is a cavity inserted into the boiler body, a wall of the heating chamber is provided with a heat insulation layer, and a heating plate is arranged on an outer surface of the heat insulation layer; the electromagnetic heating temperature control system comprises an electromagnetic coil, a temperature measurement sensor and an electromagnetic heating temperature control device; the decompression bubble is arranged on the top of the heating chamber in the boiler body. The electromagnetic heating boiler is energy-saving and environment-friendly because the power is supplied through an electromagnetic heating mode, and the temperature can be automatically measured and controlled; as the heating plate is annularly arranged on the periphery of the electromagnetic coil, the energy utilization efficiency is greatly improved; meanwhile, the decompression buddle arranged in the boiler body can relieve pressure by compressing a volume when the pressure inside the boiler body is overhigh, and a safety factor of using the boiler is improved.
Description
Technical field
The utility model relates to a kind of electromagnetic heater, specifically a kind of electromagnetism heating boiler.
Background technology
Traditional boiler is that the shortcoming of this mode is that energy utilization rate is low, contaminated environment is serious by the combustion heating energy supply in the combustion chamber of moulded coal, natural gas or wet goods, and there is bigger potential safety hazard in the naked light heating.Along with energy-saving and cost-reducing popularization, the electromagnetism mode of heating that developed recently gets up is because the energy utilization rate height, and safe and reliable, enjoys high praise.But no matter utilizing sandwich wound coil at present on the market or the externally-wound type coil carries out electromagnetic induction heating, all is one-sided heater heating in the design, causes the bigger wasting of resources, especially for big volume heaters such as boilers; And present most of boiler or do not have the measuring and controlling temp device, or adopt the method for designing of pressing force container to put thermometer in addition, its temp measuring method is comparatively extensive, precision is low and do not have temperature automatically controlled function, the manual adjustment temperature has not only reduced operating efficiency but also cause the unnecessary consumption of portion of energy, and has certain potential safety hazard.In addition, at present the decompressor of boiler mostly is the exhaust decompression valve, installs complicated and only can be used for the gas decompression, when the hypervolia in the boiler and easy spilling water when very fast that heats up, still has certain safety problem.
The utility model content
In order to overcome above-mentioned defective, the purpose of this utility model be to provide a kind of energy-conserving and environment-protective, can automatic temperature measurement temperature control and the good boiler of security performance.
In order to achieve the above object, the utility model is achieved through the following technical solutions: the electromagnetism heating boiler, comprise boiler body, electromagnetic heating temperature control system and pressure reduction foam, wherein:
Described boiler body is " Ш " type, comprises delivery port, water inlet and heating clamber, and described heating clamber is the cavity that is arranged on boiler body inside, its wall is provided with thermal insulation layer, described thermal insulation layer outer surface is provided with heating plate, and described heating plate is the magnetic stainless steel heating plate, and promptly it adopts the magnetic stainless steel material;
Described electromagnetic heating temperature control system comprises electromagnetic heating temperature control device, solenoid and temperature transducer, described solenoid is the water-cooled tubular type lead that adopts the refractory metal wire rod to turn to, be surrounded on described heating clamber outside, and link to each other with described electromagnetic heating temperature control device, described electromagnetic heating temperature control device output AC high frequency electric produces alternating magnetic field and makes heating clamber produce eddy-current heating to described solenoid; Described temperature transducer is located at described heating clamber inside, and link to each other with described electromagnetic heating temperature control device, be used to survey the temperature of heating clamber, electromagnetic heating temperature control device is gathered the temperature value that temperature transducer records, and exchanging the output of high frequency electric according to this thermometric value adjustment, it comprises the size of adjusting the output AC high frequency electric or adjusts break-make; Described electromagnetic heating temperature control device is located at boiler body surface water inlet one side;
Described pressure reduction foam is located at the heating clamber top in the described boiler body, and described pressure reduction foam is the high elastic rubber pressure reduction foam, and promptly it adopts the high elastic rubber material.When the boiler body internal pressure was less than or equal to 8MP, described pressure reduction foam was in original diastole state; Along with the rising of carrying out temperature of heating, when the boiler body internal pressure surpassed 8MP, described pressure reduction foam pressurized retraction volume reduced, and relative volume increases in the boiler body thereby make, and pressure is reduced in the safety limit.Described pressure reduction foam temperature reduce pressure be decreased to 8MP and following after can restore to the original state.
Further, described electromagnetic heating temperature control device comprises microprocessor module MCU, temperature detecting module, interchange high frequency output module, AC/DC ac-dc converter circuit module and power supply, wherein:
The power supply that links to each other with AC/DC ac-dc converter circuit module of described power supply, it is used to described electromagnetic heating temperature control device that electric energy is provided, and exporting the alternating current of input to described AC/DC ac-dc converter circuit module converts is direct current;
Described microprocessor module MCU with exchange the control that links to each other of high frequency output module, the described interchange high frequency output module output AC high frequency electric that links to each other with solenoid, promptly exchange the high frequency output module under described microprocessor module MCU control, direct current is converted to the required interchange high frequency electric of electromagnetism heating exports described solenoid to;
Temperature transducer in the described boiler body thermometric that links to each other with temperature detecting module, the described temperature detecting module feedback temperature value that links to each other with microprocessor module MCU, being temperature detecting module is connected with temperature transducer in the boiler body, be used to detect the thermometric value that obtains temperature transducer, and this thermometric value fed back to described microprocessor module MCU, microprocessor module MCU is according to the thermometric value that is received, be used to control the output current size of adjusting described interchange high frequency output module, perhaps adjust whether stop or starting the output AC high frequency electric as required.
Further, described electromagnetic heating temperature control device also comprises:
Be provided with input control parameter and check the interface of heating-up temperature touch-screen, will export the programmable computer controller PCC of microprocessor module MCU by the control information of touch screen interface input to, and temperature value carries out the warning circuit of alarm prompt when reaching default alarm conditions.Wherein:
Touch-screen is used for whole electromagnetic heating temperature control system being controlled by touch-screen for the user, and the user checks current heating-up temperature by interface input control parameter;
Programmable computer controller PCC is used for exporting the control information that the user imports by touch-screen to described microprocessor module MCU, realizes the control of user to whole electromagnetic heating temperature control system;
Warning circuit when temperature value reaches default alarm conditions, carries out alarm prompt to the user.
Compared with prior art, the beneficial effect of the utility model electromagnetism heating boiler is:
Adopt the energy supply of electromagnetism mode of heating, energy-conserving and environment-protective, and electricity separation, safe and reliable; The solenoid peripheral ring is established heating plate, can make full use of electromagnetic-energy, and improves the efficiency of heating surface; Have the automatic temperature measurement temperature controlling function, save manpower, increase work efficiency and safety coefficient; Built-in pressure reduction foam reduces pressure by compression volume, loads and unloads simple, safe.
Description of drawings
Fig. 1 is the structure cut-away view of the utility model electromagnetism heating boiler;
Fig. 2 is the flow chart of electromagnetic heating temperature control system of the present utility model.
Wherein: 1 is boiler body, and 11 is delivery port, and 12 is water inlet, and 13 is heating clamber, and 131 is heating plate, and 132 is thermal insulation layer, and 2 is electromagnetic heating temperature control system, and 21 is solenoid, and 22 is temperature transducer, and 23 is electromagnetic heating temperature control device, and 3 is pressure reduction foam.
The specific embodiment
Embodiment
As depicted in figs. 1 and 2, the electromagnetism heating boiler comprises boiler body 1, electromagnetic heating temperature control system 2 and pressure reduction foam 3, wherein:
Described boiler body 1 is " Ш " type, comprise delivery port 11, water inlet 12 and heating clamber 13, described heating clamber 13 is for being arranged on the cavity of boiler body 1 inside, and its wall is provided with thermal insulation layer 132, described thermal insulation layer 132 surfaces are provided with heating plate 131, and described heating plate 131 is the magnetic stainless steel material;
Described electromagnetic heating temperature control system 2 comprises solenoid 21, temperature transducer 22 and electromagnetic heating temperature control device 23, described solenoid 21 is the water-cooled tubular type leads that adopt the refractory metal wire rod to turn to, around described heating clamber 13 inside, and link to each other with described electromagnetic heating temperature control device 23; Described temperature transducer 22 is located at described boiler body 1 inside, and links to each other with described electromagnetic heating temperature control device 23; Described electromagnetic heating temperature control device 23 is located at boiler body 1 surperficial water inlet 12 1 sides;
Described pressure reduction foam 3 is located at described boiler body 1 inside and is positioned at top, described heating Room 13, is the high elastic rubber material;
Described electromagnetic heating temperature control device comprises microprocessor module MCU, temperature detecting module, interchange high frequency output module, AC/DC ac-dc converter circuit module and power supply, wherein:
Described power supply is used to described electromagnetic heating temperature control device that electric energy is provided, and civil power is after the power supply input, and exporting described AC/DC ac-dc converter circuit module converts to is direct current, and direct current exports to and exchanges the high frequency output module;
Described interchange high frequency output module is converted to the required interchange high frequency electric of electromagnetism heating with direct current, and exports described solenoid 21 under microprocessor module MCU control;
Described temperature detecting module is connected with temperature transducer on the heating clamber, is used to obtain the thermometric value of temperature transducer 22, and this thermometric value is fed back to microprocessor module MCU;
Described microprocessor module MCU is as the control core of whole electromagnetic heating temperature control system 2, come whole system is controlled, wherein dispose the software systems that are used for measuring and controlling temp, can be according to the thermometric value that is received, control adjustment exchanges the output current size of high frequency output module, perhaps stops or starting the output AC high frequency electric as required.
Described electromagnetic heating temperature control device also comprises: touch-screen, be used for by touch-screen whole electromagnetic heating temperature control system 2 being controlled for the user, and the user checks current heating-up temperature by interface input control parameter;
Programmable computer controller PCC is used for exporting the control information that the user imports by touch-screen to described microprocessor module MCU, realizes the control of user to whole electromagnetic heating temperature control system 2;
Warning circuit when temperature value reaches default alarm conditions, carries out alarm prompt to the user.
Obviously, the foregoing description of the present utility model only is for the utility model example clearly is described, and is not to be qualification to embodiment of the present utility model.For those of ordinary skill in the field, can also make other changes in different forms on the basis of the above description.Here can't give exhaustive to all embodiments.Everyly belong to the row that conspicuous variation that the technical solution of the utility model extends out or change still are in protection domain of the present utility model.
Claims (5)
1. electromagnetism heating boiler is characterized in that: comprise boiler body (1), electromagnetic heating temperature control system (2) and pressure reduction foam (3), wherein:
Described boiler body (1) is " Ш " type, comprise delivery port (11), water inlet (12) and heating clamber (13), described heating clamber (13) is for being arranged on the inner cavity of boiler body (1), its wall is provided with thermal insulation layer (132), and described thermal insulation layer (132) outer surface is provided with heating plate (131);
Described electromagnetic heating temperature control system (2) comprises solenoid (21), temperature transducer (22) and electromagnetic heating temperature control device (23), described solenoid (21) is surrounded in described heating clamber (13) cavity, and links to each other with described electromagnetic heating temperature control device (23); Described temperature transducer (22) is located at described boiler body (1) inside, and links to each other with described electromagnetic heating temperature control device (23); Described electromagnetic heating temperature control device (23) is located at surperficial water inlet (12) one sides of boiler body (1);
Described pressure reduction foam (3) is located in the described boiler body (1) and is positioned at heating clamber (13) top.
2. electromagnetism heating boiler according to claim 1, it is characterized in that: described electromagnetic heating temperature control device (23) comprises microprocessor module MCU, temperature detecting module, interchange high frequency output module, AC/DC ac-dc converter circuit module and power supply, wherein:
The power supply that links to each other with AC/DC ac-dc converter circuit module of described power supply;
Described microprocessor module MCU with exchange the control that links to each other of high frequency output module, the described interchange high frequency output module output AC high frequency electric that links to each other with solenoid (21);
Temperature transducer (22) in the described boiler body (1) thermometric that links to each other with temperature detecting module, the described temperature detecting module feedback temperature value that links to each other with microprocessor module MCU;
3, as electromagnetism heating boiler as described in the claim 2, it is characterized in that: described electromagnetic heating temperature control device (23) further comprises:
Be provided with input control parameter and check the interface of heating-up temperature touch-screen, will export the programmable computer controller PCC of microprocessor module MCU by the control information of touch screen interface input to, and temperature value carries out the warning circuit of alarm prompt when reaching default alarm conditions.
3. as electromagnetism heating boiler as described in the claim 1,2 or 3, it is characterized in that: described heating plate (131) is the magnetic stainless steel heating plate.
4. as electromagnetism heating boiler as described in the claim 1,2 or 3, it is characterized in that: described solenoid (21) is the water-cooled tubular type lead that adopts the coiling of refractory metal wire rod to form.
5. as electromagnetism heating boiler as described in the claim 1,2 or 3, it is characterized in that: described pressure reduction foam (3) is the high elastic rubber pressure reduction foam.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2011201497757U CN202074681U (en) | 2011-05-12 | 2011-05-12 | Electromagnetic heating boiler |
Applications Claiming Priority (1)
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CN2011201497757U CN202074681U (en) | 2011-05-12 | 2011-05-12 | Electromagnetic heating boiler |
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CN202074681U true CN202074681U (en) | 2011-12-14 |
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CN2011201497757U Expired - Fee Related CN202074681U (en) | 2011-05-12 | 2011-05-12 | Electromagnetic heating boiler |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105066428A (en) * | 2015-08-04 | 2015-11-18 | 苏阳东 | Electromagnetic water heating device with through-type cooling air duct |
CN108562166A (en) * | 2018-06-13 | 2018-09-21 | 重庆云彬科技发展有限公司 | Electromagnetic heating boiler with power saving function |
CN109084580A (en) * | 2018-08-02 | 2018-12-25 | 乐清市考克思电气科技厂 | A kind of intermediate frequency induction heating device |
CN114294819A (en) * | 2022-01-11 | 2022-04-08 | 新疆大学 | Liquid rapid heating device based on electromagnetic induction principle |
-
2011
- 2011-05-12 CN CN2011201497757U patent/CN202074681U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105066428A (en) * | 2015-08-04 | 2015-11-18 | 苏阳东 | Electromagnetic water heating device with through-type cooling air duct |
CN108562166A (en) * | 2018-06-13 | 2018-09-21 | 重庆云彬科技发展有限公司 | Electromagnetic heating boiler with power saving function |
CN109084580A (en) * | 2018-08-02 | 2018-12-25 | 乐清市考克思电气科技厂 | A kind of intermediate frequency induction heating device |
CN114294819A (en) * | 2022-01-11 | 2022-04-08 | 新疆大学 | Liquid rapid heating device based on electromagnetic induction principle |
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Legal Events
Date | Code | Title | Description |
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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 | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20111214 Termination date: 20160512 |