CN203190504U - Electric heating superconducting radiator - Google Patents

Electric heating superconducting radiator Download PDF

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Publication number
CN203190504U
CN203190504U CN 201320054150 CN201320054150U CN203190504U CN 203190504 U CN203190504 U CN 203190504U CN 201320054150 CN201320054150 CN 201320054150 CN 201320054150 U CN201320054150 U CN 201320054150U CN 203190504 U CN203190504 U CN 203190504U
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CN
China
Prior art keywords
heating
superconducting
module
links
conduction oil
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Expired - Fee Related
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CN 201320054150
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Chinese (zh)
Inventor
刘炳炎
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Foshan City Shunde District Qilin Electric Co ltd
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Foshan City Shunde District Qilin Electric Co ltd
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Priority to CN 201320054150 priority Critical patent/CN203190504U/en
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Publication of CN203190504U publication Critical patent/CN203190504U/en
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Abstract

The utility model discloses an electric heating superconducting radiator. The electric heating superconducting radiator comprises a heating control module (1), a heat-conducing oil container (2) with an inner cavity filled with heat-conducing oil, and a superconducting liquid container (3) with an inner cavity filled with superconducting liquid, wherein the heat-conducing oil container (2) is fixedly connected with the superconducting liquid container (3) in a welding mode, the superconducting liquid container (3) is provided with radiating fins (31), a heating bar (21) used for heating the heat-conducing oil is arranged in the inner cavity of the heat-conducing oil container (2), and the heating bar (21) is connected with the heating control module (1). The electric heating superconducting radiator is good in heating effect. Compared with traditional heating equipment, the electric heating superconducting radiator saves more energy, is more beneficial to the environment, and is safer and more reliable. Besides, the electric heating superconducting radiator is low in construction cost, thin in size, and light in weight, and has the advantages of being obvious in heating effect, being efficient, saving energy, being low in carbon, protecting the environment, saving water and electricity, being safe and durable, being good in portability, being simple in operation, and being automatic in temperature control while being unattended.

Description

The electric heating superconducting radiator
Technical field
The utility model relates to a kind of family expenses electrically heating device, especially relates to a kind of electric heating superconducting radiator.
Background technology
Family's heating system commonly used mainly contains fuel heating, electric heatings etc. such as central heating, fire coal, combustion gas or fuel oil at present.The central heating mode is sent the water time break because the heating phase is fixed, and the user can not grasp with the hot time voluntarily and regulate indoor temperature, and opening of using is safe manages differently with the metal material coefficient of expansion, drainage very easily occurs.The fuel heating system scope of application is wider, and not only water consumption is big, serious heat loss, and can discharge a large amount of pernicious gases in using, cause severe contamination, in addition coal-burning boiler construction and management maintenance cost height, both take up an area of the room, destroyed ground with tubing, and needed personal management and maintenance.Traditional electric heater mostly is heating wire directly heating or single use conduction oil heat transfer type greatly, all has problems such as power consumption is big, service life is short.
The utility model content
The technical problems to be solved in the utility model provides that a kind of heating effect is remarkable, energy-efficient, low-carbon environment-friendly, water and electric saving, safety durable, good portability, electric heating superconducting radiator simple to operate.
For solving the problems of the technologies described above, the technical solution adopted in the utility model is:
A kind of electric heating superconducting radiator, comprise that heating control module, inner chamber are marked with the conduction oil container of conduction oil and the superconducting fluid container that inner chamber is marked with superconducting fluid, the inner chamber of described conduction oil container, superconducting fluid container is vacuum chamber, be welded to connect fixing between described conduction oil container and the superconducting fluid container, described superconducting fluid container is provided with fin, be provided with in the inner chamber of described conduction oil container for heating heating heat-conducting oil rod, described heating rod links to each other with heating control module.
As further improvement in the technical proposal:
Described heating control module comprises temp probe module and the heating control box that links to each other by cable, described temp probe module is made up of with the temperature sensor of being located on the described magnetic patch adsorbable magnetic patch on fin or heating control box, be provided with controller in the described heating control box, power driving circuit, input module and display module, the input of described controller links to each other with the temperature sensor of described temp probe module, the output of described controller links to each other with heating rod by power driving circuit, and described input module links to each other with controller respectively with display module.
Also be provided with the overtemperature alarm module in the described heating control box, the input of described overtemperature alarm module links to each other with controller.
Also be provided with tilt switch in the described heating control box, the output of described tilt switch links to each other with controller.
The outer wall of described conduction oil container is provided with relief valve.
The utlity model has following advantage: present embodiment utilizes heating rod that the conduction oil in the conduction oil container intracavity is heated, after heating up, conduction oil by the housing of conduction oil container heat is conducted to the superconducting fluid of superconducting fluid container intracavity, the superconducting fluid of superconducting fluid container intracavity is fissioned, the energy that produces is released into superconduction heat radiation chamber wall and is passed to the heat on the wall of chamber outside the chamber rapidly by fin, good heating effect, relative traditional heating equipment, energy-conserving and environment-protective more, safety and stability, and cost is low, volume is thin, in light weight, it is remarkable to have the heating effect, energy-efficient, low-carbon environment-friendly, the water and electric saving, safety durable, good portability, simple to operate, the temperature automatically controlled advantage of unmanned guard.
Description of drawings
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, to do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below, apparently, accompanying drawing in describing below only is embodiment more of the present utility model, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is the broken section structural representation of the utility model embodiment.
Fig. 2 is the frame structure schematic diagram of heating control module among the utility model embodiment.
Marginal data:
1, heating control module; 11, temp probe module; 12, heating control box; 121, controller; 122, power driving circuit; 123, input module; 124, display module; 125, overtemperature alarm module; 126, tilt switch;
2, conduction oil container; 21, heating rod; 22, relief valve;
3, superconducting fluid container; 31, fin.
The specific embodiment
Below in conjunction with accompanying drawing the preferred embodiments of the present invention are described in detail, thereby so that advantages and features of the invention can be easier to be it will be appreciated by those skilled in the art that protection scope of the present invention are made more explicit defining.
As depicted in figs. 1 and 2, the electric heating superconducting radiator of present embodiment comprises that heating control module 1, inner chamber are marked with the conduction oil container 2 of conduction oil and the superconducting fluid container 3 that inner chamber is marked with superconducting fluid, be welded to connect fixing between conduction oil container 2 and the superconducting fluid container 3, superconducting fluid container 3 is provided with fin 31, be provided with in the inner chamber of conduction oil container 2 for heating heating heat-conducting oil rod 21, heating rod 21 links to each other with heating control module 1.Present embodiment utilizes the conduction oil in 21 pairs of conduction oil container 2 inner chambers of heating rod to heat, after heating up, conduction oil by the housing of conduction oil container 2 heat is conducted to the superconducting fluid of superconducting fluid container 3 inner chambers, the superconducting fluid of superconducting fluid container 3 inner chambers is fissioned, the energy that produces is released into superconduction heat radiation chamber wall and is passed to the heat on the wall of chamber outside the chamber rapidly by fin 31, good heating effect, relative traditional heating equipment, energy-conserving and environment-protective more, safety and stability, and cost is low, volume is thin, in light weight, it is remarkable to have the heating effect, energy-efficient, low-carbon environment-friendly, the water and electric saving, safety durable, good portability, simple to operate, the temperature automatically controlled advantage of unmanned guard.In the present embodiment, conduction oil is the THERMINOL59 conduction oil, and the THERMINOL59 conduction oil uses optimum temperature-46~316 a ℃ synthesis of alkyl cyclic hydrocarbon to make.The raw material of superconducting fluid: potassium sulfate (chemical pure), potassium bichromate (chemical pure), redistilled water; The proportioning of superconducting fluid is as follows: potassium sulfate 0.5%, potassium bichromate 2%, redistilled water 97.5%; The preparation method of superconducting fluid is as follows: (be example to prepare 100 gram heat transfer mediums) places dried redistilled water 97.5 grams, potassium sulfate 0.5 gram, potassium bichromate 2 grams in the beaker earlier successively, heat below the beaker then, heat while stirring, solution temperature must not be above 60 degrees centigrade, after treating that potassium sulfate and potassium bichromate dissolve fully, beaker is left thermal source be cooled to room temperature.Need to prove that in the above-mentioned preparation method, chemical raw material is also can be earlier pure with analyzing, the raw material proportioning is constant, and medium is as crystallization occurring, usefulness, not impact effect again after the dissolving of can heating.After the superconducting fluid sealing, only need a small amount of thermal source just can emit a large amount of heat, thereby realize adding the hot-air heating.
The inner chamber of conduction oil container 2, superconducting fluid container 3 can adopt vacuum chamber as required or the vacuum valve of exempting from of vacuum plant is installed, and exempts from vacuum valve and can only discharge the unnecessary air of inner chamber, can not enter the inner chamber air, thereby reach vacuum free purpose.In the present embodiment, the inner chamber of conduction oil container 2, superconducting fluid container 3 is vacuum chamber.
As depicted in figs. 1 and 2, heating control module 1 comprises temp probe module 11 and the heating control box 12 that links to each other by cable, temp probe module 11 by adsorbable on the fin 31 (when temp probe module 11 is adsorbed on the fin 31, temperature sensor on the temp probe module 11 is for detection of the temperature of fin 31, otherwise the temperature sensor on the temp probe module 11 is for detection of environment temperature) magnetic patch and the temperature sensor of being located on the magnetic patch form, be provided with controller 121 in the heating control box 12, power driving circuit 122, input module 123 and display module 124, the input of controller 121 links to each other with the temperature sensor of temp probe module 11, the output of controller 121 links to each other with heating rod 21 by power driving circuit 122, and input module 123 links to each other with controller 121 respectively with display module 124.Present embodiment can pass through controller 121 and power driving circuit 122, the heating-up temperature scope of control heating rod 21 is at 20~65 degree, use more comfortable, and by input module 123 and display module 124, can also be arranged so that present embodiment has functions of child lock and (pins function key all buttons in 3 seconds and enter disarmed state, restPose for 3 seconds pinning function key), the outage memory function, use convenient.When needs are surveyed the temperature of fin 31, temp probe module 11 is adsorbed on the fin 31, when putting that and needing the acquisition environment temperature, be adsorbed in temp probe module 11 on the heating control box 12 or other position all can, easy to use.
In the present embodiment, also be provided with overtemperature alarm module 125 in the heating control box 12, the input of overtemperature alarm module 125 links to each other with controller 121, when surpassing assigned temperature, controller 121 control overtemperature alarm modules 125 are sent alarm, thereby remind the user, more safe and reliable, the overtemperature alarm module 125 of present embodiment is the audible alarm circuit.
In the present embodiment, also be provided with tilt switch 126 in the heating control box 12, the output of tilt switch 126 links to each other with controller 121, when present embodiment is toppled over, the output triggering signal of tilt switch 126 is given controller 121, controller 121 stops the heating of heating rod 21 immediately, thereby has automatic circuit break function, can prevent owing to topple over the disaster hidden-trouble that causes.In addition, the heating rod of present embodiment is equipped with the earth leakage protective coil for 21 li, and the reliable safety ground of earth leakage protective coil, and is more safe and reliable.
In the present embodiment; the outer wall of conduction oil container 2 is provided with relief valve 22; when the conduction oil hypertonia of conduction oil container 2 inner chambers; relief valve 22 can be realized the conduction oil of conduction oil container 2 inner chambers is carried out pressure release; thereby prevent from damaging the structure of conduction oil container 2; start the power-off protection heating tube up to controller 121, more safe and reliable.
The above only is preferred embodiment of the present utility model, and protection domain of the present utility model is not limited in above-mentioned embodiment, and every technical scheme that belongs to the utility model principle all belongs to protection domain of the present utility model.For a person skilled in the art, some improvements and modifications of under the prerequisite that does not break away from principle of the present utility model, carrying out, these improvements and modifications also should be considered as protection domain of the present utility model.

Claims (5)

1. electric heating superconducting radiator, it is characterized in that: comprise that heating control module (1), inner chamber are marked with the conduction oil container (2) of conduction oil and the superconducting fluid container (3) that inner chamber is marked with superconducting fluid, be welded to connect fixing between described conduction oil container (2) and the superconducting fluid container (3), described superconducting fluid container (3) is provided with fin (31), be provided with in the inner chamber of described conduction oil container (2) for heating heating heat-conducting oil rod (21), described heating rod (21) links to each other with heating control module (1).
2. electric heating superconducting radiator according to claim 1, it is characterized in that: described heating control module (1) comprises temp probe module (11) and the heating control box (12) that links to each other by cable, described temp probe module (11) is made up of with the temperature sensor that designs on described magnetic patch adsorbable magnetic patch on fin (31) or heating control box (12), be provided with controller (121) in the described heating control box (12), power driving circuit (122), input module (123) and display module (124), the input of described controller (121) links to each other with the temperature sensor of described temp probe module (11), the output of described controller (121) links to each other with heating rod (21) by power driving circuit (122), and described input module (123) links to each other with controller (121) respectively with display module (124).
3. electric heating superconducting radiator according to claim 2, it is characterized in that: also be provided with overtemperature alarm module (125) in the described heating control box (12), the input of described overtemperature alarm module (125) links to each other with controller (121).
4. electric heating superconducting radiator according to claim 3, it is characterized in that: also be provided with super tilt switch (126) in the described heating control box (12), the output of described tilt switch (126) links to each other with controller (121).
5. according to any described electric heating superconducting radiator in the claim 1~4, it is characterized in that: the outer wall of described conduction oil container (2) is provided with relief valve (22).
CN 201320054150 2013-01-30 2013-01-30 Electric heating superconducting radiator Expired - Fee Related CN203190504U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320054150 CN203190504U (en) 2013-01-30 2013-01-30 Electric heating superconducting radiator

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Application Number Priority Date Filing Date Title
CN 201320054150 CN203190504U (en) 2013-01-30 2013-01-30 Electric heating superconducting radiator

Publications (1)

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CN203190504U true CN203190504U (en) 2013-09-11

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104776596A (en) * 2015-03-27 2015-07-15 牛卫国 Superconducting heating device
CN106123094A (en) * 2016-06-28 2016-11-16 太仓陶氏电气有限公司 A kind of energy-conservation quick-acting intelligent domestic superconducting fluid convectors
CN106318336A (en) * 2016-06-29 2017-01-11 天津锦源远华石油工程技术有限公司 Novel compound chemical heat-conducting medium
GB2578102A (en) * 2018-10-15 2020-04-22 Mccrory Shane Radiator assembly
CN113251786A (en) * 2021-05-27 2021-08-13 四川华景智农农业开发有限责任公司 Integrated superconductor multipurpose device and use method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104776596A (en) * 2015-03-27 2015-07-15 牛卫国 Superconducting heating device
CN106123094A (en) * 2016-06-28 2016-11-16 太仓陶氏电气有限公司 A kind of energy-conservation quick-acting intelligent domestic superconducting fluid convectors
CN106318336A (en) * 2016-06-29 2017-01-11 天津锦源远华石油工程技术有限公司 Novel compound chemical heat-conducting medium
GB2578102A (en) * 2018-10-15 2020-04-22 Mccrory Shane Radiator assembly
CN113251786A (en) * 2021-05-27 2021-08-13 四川华景智农农业开发有限责任公司 Integrated superconductor multipurpose device and use method

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130911

Termination date: 20150130

EXPY Termination of patent right or utility model