CN207702568U - Electric radiator - Google Patents
Electric radiator Download PDFInfo
- Publication number
- CN207702568U CN207702568U CN201820005659.XU CN201820005659U CN207702568U CN 207702568 U CN207702568 U CN 207702568U CN 201820005659 U CN201820005659 U CN 201820005659U CN 207702568 U CN207702568 U CN 207702568U
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- Prior art keywords
- heat dissipation
- stainless steel
- steel substrates
- component
- heating tube
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Abstract
The utility model discloses a kind of Electric radiators, including temperature control element, power supply component, multiple heating tubes and multiple stainless steel substrates components;The multiple stainless steel substrates component is connected two-by-two surrounds a heat dissipation cavity, and the multiple heating tube is arranged on the multiple stainless steel substrates component, and in the heat dissipation cavity;Heat dissipation channel is offered in the stainless steel substrates component;The power supply component is electrically connected by temperature control element and the multiple heating tube;Heating tube is set up directly on the multiple stainless steel substrates component, multiple stainless steel substrates components surround a heat dissipation cavity, heat dissipation channel is offered in stainless steel substrates component, the heat of heating tube is directly radiated by stainless steel substrates, the direction of heating tube placement is not limited, while substantially increasing safety, good heat conductivity, heating, heat dissipation can be rapidly realized when heated, physical heating and natural thermodynamic cycle are really realized simultaneously, achieve the effect that environmental protection and it is mute, finally build comfortable living environment.
Description
Technical field
The utility model is related to a kind of Electric radiators.
Background technology
Current market sales of Electric radiator is all conduction oil Electric radiator, i.e. oil medium type electric heater;Its heating principles,
The closed electrothermal tube for being marked with conduction oil is mounted on cooling fin cavity in the following, after the conduction oil in heat conducting pipe is heated, heat conduction
Oil can rise to cavity top, be distributed heat using the housing surface of cooling fin, to promote environment temperature, cooling
Conduction oil can drop to electrothermal tube and be heated again, so recycle.The preheating time of oil heater is long, and the thermal efficiency is slower, and power is big,
The family that ammeter capacity is small or voltage is low cannot use.Oil medium type Electric radiator using when it need to uprightly be placed, it
Heat-generating pipe be all disposed upon the lower end of entire product conduction oil heated, the conduction oil after heating will carry out in pipe
Heat is transmitted in flowing, if putting or keeping flat heater upside down, be easy to cause empty burning in this way, is easy to accident occur.
Utility model content
The utility model aim is to provide a kind of Electric radiator, and Electric radiator preheating time is long in the prior art for solution, heat
Efficiency is slower, and power is big, and consume energy big problem.
The utility model solves technical problem and adopts the following technical scheme that:A kind of Electric radiator, including temperature control element, power supply
Element, multiple heating tubes and multiple stainless steel substrates components;The multiple stainless steel substrates component is connected two-by-two surrounds a heat dissipation cavity, institute
It states multiple heating tubes to be arranged on the multiple stainless steel substrates component, and in the heat dissipation cavity;The stainless steel substrates component
Heat dissipation channel is inside offered, the upper end of the heat dissipation channel offers thermovent, and the lower end of the heat dissipation channel offers down
Thermovent;The power supply component is electrically connected by temperature control element and the multiple heating tube.
Preferably, the heat dissipation channel of the stainless steel substrates component is ladder-like, and the heat dissipation channel is into heat dissipation cavity
Direction is extended with transition passage, and transition passage direction into heat dissipation cavity is extended with installation passage, and the installation passage is to heat dissipation cavity
Interior direction is extended with buffer channel;The heating tube is mounted in the installation passage.
Preferably, between the adjacent two stainless steel substrates component between be separated with ventilating duct.
Preferably, further include the first heat dissipation pipe fitting and the second heat dissipation pipe fitting, the first heat dissipation pipe fitting and described second dissipate
Heat pipe part is separately positioned on the top and bottom of the heat dissipation cavity, and the heat dissipation channel with the first heat dissipation pipe fitting and the
The inside connection of two heat dissipation pipe fittings.
Preferably, second heat dissipation pipe fitting lower end is provided with multiple universal wheels.
The utility model has the advantages that:Heating tube is set up directly on the multiple stainless steel substrates component,
Multiple stainless steel substrates components surround a heat dissipation cavity, and heat dissipation channel is offered in stainless steel substrates component, and the heat of heating tube is directly logical
Stainless steel substrates heat dissipation is crossed, does not limit the direction of heating tube placement, while substantially increasing safety, good heat conductivity is adding
Heating, heat dissipation can be rapidly realized when hot, while really realizing physical heating and natural thermodynamic cycle, reach environmentally friendly and quiet
The effect of sound finally builds comfortable living environment.
Description of the drawings
Fig. 1 is temperature control element, power supply component and heating tube circuit connection diagram;
Fig. 2 is the structural schematic diagram that the first heat-dissipating pipe is not arranged for Electric radiator;
Fig. 3 is stainless steel substrates component structure diagram;
Fig. 4 is Fig. 2 vertical views;
Fig. 5 is Fig. 2 upward views;
Fig. 6 is Electric radiator structural schematic diagram.
The mark in the figure shows:1- temperature control elements;2- power supply components;3- heating tubes;4- stainless steel substrates components;5- radiates
Chamber;6- heat dissipation channels;The upper thermovents of 7-;Thermovent under 8-;9- transition passages;10- installation passages;11- buffer channels;12- is logical
Air duct;The heat dissipation pipe fittings of 13- first;The heat dissipation pipe fittings of 14- second;15- universal wheels.
Specific implementation mode
The technical solution of the utility model is further elaborated with reference to embodiment and attached drawing.
Embodiment 1
Present embodiments provide a kind of Electric radiator, including temperature control element 1, power supply component 2, multiple heating tubes 3 and multiple
Stainless steel substrates component 4;The multiple stainless steel substrates component 4 is connected two-by-two surrounds a heat dissipation cavity 5, and the multiple heating tube 3 is arranged
On the multiple stainless steel substrates component 4, and in the heat dissipation cavity 5;It is logical that heat dissipation is offered in the stainless steel substrates component 4
The upper end in road 6, the heat dissipation channel 6 offers thermovent 7, and the lower end of the heat dissipation channel 6 offers lower thermovent 8;Institute
Power supply component 2 is stated to be electrically connected by temperature control element 1 and the multiple heating tube 3.
Power supply component 2 is powered multiple heating tubes 3, and multiple heating tubes 3 are set up directly on the multiple stainless steel substrates
On component 4, by heating tube 3 to 4 direct heating of stainless steel substrates component, quickly and effectively surrounded by stainless steel substrates component 4
Heat dissipation cavity 5 and the heat dissipation channel 6 opened up inside it carry out the propagation of heat, and the upper end of heat dissipation channel 6 offers thermovent 7,
The lower end of the heat dissipation channel 6 offers lower thermovent 8 and realizes that convection current, good heat conductivity can be realized rapidly when heated
Heating, heat dissipation, while really realization physical heating and natural thermodynamic cycle, achieve the effect that environmental protection and mute, final construction
Go out comfortable living environment.
The heat dissipation channel 6 of the preferred further embodiment of the present embodiment, the stainless steel substrates component 4 is ladder
Shape, the direction into heat dissipation cavity 5 of the heat dissipation channel 6 are extended with transition passage 9, and transition passage 9 is extended in direction into heat dissipation cavity 5
Installation passage 10, the direction into heat dissipation cavity 5 of the installation passage 10 are extended with buffer channel 11;The heating tube 3 is mounted on institute
It states in installation passage 10.The heat dissipation channel 6 of stainless steel substrates component 4 is ladder-like so that heat dissipation channel 6 is fully to heating tube 3
Heat radiates, and transition passage 9 is so that the heat of heating tube 3 is fully diffused into heat dissipation channel 6, and buffer channel 11 is so that add
The heat of heat pipe 3 is fully diffused into heat dissipation cavity 5.Certainly it is optimal selection that heat dissipation channel 6 here, which is ladder-like, or
Triangular shape, round, square shape is rectangular-shaped etc., unrestricted here.
The preferred further embodiment of the present embodiment, between the adjacent two stainless steel substrates component 4 between be separated with ventilating duct
12.Ventilating duct 12 is formed between stainless steel substrates component 4, the air draught around stainless steel substrates component 4 is heated, continuous to dissipate
Heat.
The preferred further embodiment of the present embodiment further includes the first heat dissipation pipe fitting 13 and second heat dissipation pipe fitting 14, institute
It states the first heat dissipation pipe fitting 13 and the second heat dissipation pipe fitting 14 is separately positioned on the top and bottom of the heat dissipation cavity 5, and is described
Heat dissipation channel 6 is connected to the inside of the first heat dissipation pipe fitting 13 and second heat dissipation pipe fitting 14.Around stainless steel substrates component 4
Air is heated, and rises to the top of heat dissipation cavity 5 later, is finally carried out along the first heat dissipation heat dissipation pipe fitting 14 of pipe fitting 13 and second
Convection circulation, to realize the heating to space.
The preferred further embodiment of the present embodiment, the second heat dissipation pipe fitting, 14 lower end are provided with multiple universal wheels
15.It is moved easily, it is easy to use.
The sequencing of above example is only for ease of description, can not represent the quality of embodiment.
Finally it should be noted that:Above example is only to illustrate the technical solution of the utility model, rather than its limitations;
Although the utility model is described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that:
It still can be with technical scheme described in the above embodiments is modified, or is carried out to which part technical characteristic etc.
With replacement;And these modifications or replacements, various embodiments of the utility model technology that it does not separate the essence of the corresponding technical solution
The spirit and scope of scheme.
Claims (5)
1. a kind of Electric radiator, which is characterized in that including temperature control element, power supply component, multiple heating tubes and multiple stainless steel substrates
Component;
The multiple stainless steel substrates component is connected two-by-two surrounds a heat dissipation cavity, and the multiple heating tube is arranged the multiple stainless
On steel disc component, and in the heat dissipation cavity;
Heat dissipation channel is offered in the stainless steel substrates component, the upper end of the heat dissipation channel offers thermovent, described to dissipate
The lower end of the passage of heat offers lower thermovent;
The power supply component is electrically connected by temperature control element and the multiple heating tube.
2. Electric radiator according to claim 1, which is characterized in that the heat dissipation channel of the stainless steel substrates component is
Ladder-like, heat dissipation channel direction into heat dissipation cavity is extended with transition passage, and transition passage direction into heat dissipation cavity is extended with
Installation passage, installation passage direction into heat dissipation cavity are extended with buffer channel;It is logical that the heating tube is mounted on the installation
In road.
3. Electric radiator according to claim 2, which is characterized in that be separated between the adjacent two stainless steel substrates component
Ventilating duct.
4. Electric radiator according to claim 3, which is characterized in that further include the first heat dissipation pipe fitting and the second heat-dissipating pipe
Part, the first heat dissipation pipe fitting and the second heat dissipation pipe fitting are separately positioned on the top and bottom of the heat dissipation cavity, and described
Heat dissipation channel is connected to the inside of the first heat dissipation pipe fitting and the second heat dissipation pipe fitting.
5. Electric radiator according to claim 4, which is characterized in that second heat dissipation pipe fitting lower end is provided with multiple ten thousand
To wheel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820005659.XU CN207702568U (en) | 2018-01-03 | 2018-01-03 | Electric radiator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820005659.XU CN207702568U (en) | 2018-01-03 | 2018-01-03 | Electric radiator |
Publications (1)
Publication Number | Publication Date |
---|---|
CN207702568U true CN207702568U (en) | 2018-08-07 |
Family
ID=63031222
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201820005659.XU Active CN207702568U (en) | 2018-01-03 | 2018-01-03 | Electric radiator |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN207702568U (en) |
-
2018
- 2018-01-03 CN CN201820005659.XU patent/CN207702568U/en active Active
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