CN204765025U - High efficiency insulating pot that refrigerates - Google Patents
High efficiency insulating pot that refrigerates Download PDFInfo
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- CN204765025U CN204765025U CN201520391686.1U CN201520391686U CN204765025U CN 204765025 U CN204765025 U CN 204765025U CN 201520391686 U CN201520391686 U CN 201520391686U CN 204765025 U CN204765025 U CN 204765025U
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Abstract
The utility model relates to a high efficiency insulating pot that refrigerates, including kettle body and pot lid, kettle body bottom is equipped with the base, and characterized by is equipped with the distance sleeve in the base, and inboard and the outside of distance sleeve constitute the refrigeration installation cavity respectively and heat the installation cavity, install the refrigerating plant who is connected with kettle body bottom plate in the installation cavity that refrigerates, heats to install in the installation cavity to heat the device with kettle body bottom plate is connected. Through this kind of cool and thermal power kettle, can let not only water is boiled to be drunk, but also can get out of the way the quick cool down of hydroenergy, has added on this refrigerating plant moreover and has heated the distance sleeve that the device separates, so not only make refrigerating plant with heat the device and separate, can not influence each other to make refrigeration efficiency promote greatly, accelerate the refrigeration time.
Description
Technical field
The utility model relates to a kind of electric kettle technical field, and especially one is rapidly and efficiently freezed insulating pot.
Background technology
At present, a kind of electric kettle comprises kettle body, pot lid, attemperating unit, electro-heat equipment, circuit control device, bottom; Described kettle body is by upper shed, material can be that stainless steel or other materials are made, electro-heat equipment is arranged on kettle body bottom position, Problems existing is that boiled water can not be drunk at once, particularly wants to drink the refreshing plain boiled water of ice in summer, needs burned water to pour out, and then put into refrigerator, refrigerate, especially for students colony or without refrigerator colony, use very inconvenient; And some technology adds refrigeration system bottom electro-heat equipment now, but do not keep apart separately, when heating system works, temperature is too high like this can destroy refrigeration system, thus refrigeration system can not be freezed efficiently, also makes present cooling time long.
Summary of the invention
The purpose of this utility model is to solve above-mentioned the deficiencies in the prior art, and provides one rapidly and efficiently to freeze insulating pot, and it is simple and reasonable, effectively extends the service life of refrigerating plant and heating combined equipment.
The utility model solves the technical scheme that its technical problem adopts:
One is rapidly and efficiently freezed insulating pot, comprise kettle body and pot lid, base is provided with bottom kettle body, it is characterized in that, distance sleeve is provided with in base, the inner side and outer side of distance sleeve forms refrigeration installation cavity respectively and heats installation cavity, is provided with the refrigerating plant be connected with kettle body base plate, heats in installation cavity the heating combined equipment being provided with and being connected with kettle body base plate in refrigeration installation cavity.
Adopt the insulating pot of this structure, base intracavity be divided into the refrigeration installation cavity of opposing seal by distance sleeve and heat installation cavity, make can not be affected mutually between refrigerating plant and heating combined equipment, effective prolongation service life separately, thus refrigerating efficiency is promoted greatly, accelerate cooling time.
The utility model can also adopt following technical measures to solve:
Described heating combined equipment is heater.
Described refrigerating plant comprises semiconductor, fin and radiator fan, and semiconductor is close to the kettle body plate outer side in refrigeration installation cavity, and radiator fan is arranged on below semiconductor, and fin is arranged between semiconductor and radiator fan.
Described refrigerating plant comprises semiconductor, fin and radiator fan, and the kettle body base plate in refrigeration installation cavity offers and is suitable for the through hole that encapsulating semiconductor installs connection, and radiator fan is arranged on below semiconductor, and fin is arranged between semiconductor and radiator fan.
Sealing ring is connected with between described semiconductor periphery and through hole hole wall.
Kettle body plate outer side in refrigeration installation cavity is provided with thermistor.
Heat in installation cavity and circuit board be installed, circuit board be provided with extend base side wall heat button and refrigeration button.
Operation principle is such, first be press heating button, start the water heating in kettle body after heater energising, to be heated to when seething with excitement, by heater power-off after attemperating unit induction, because of heat insulation air channel, heater and refrigerating plant are kept apart in the process of heating simultaneously, such heat would not be fully transmitted on refrigerating plant, thus the work of refrigerating plant after can not affecting, when pressing refrigeration button, refrigerating plant is started working, cold energy is passed to the hot water in kettle body by semiconductor (i.e. semiconductor refrigerating block) work, the heat energy of semiconductor refrigerating block self passes through fin, radiator fan is by the quick concentrated vectoring in heat insulation air channel, heat energy is discharged to outside body by the louvre (offering the louvre communicated with the installation cavity that freezes bottom kettle body) of base bottom, thus accelerate hot water variable, greatly reduce cooling time like this, improve refrigerating efficiency.
The beneficial effects of the utility model are:
One of the present utility model is rapidly and efficiently freezed insulating pot, by this cool and thermal power kettle, not only can allow water is boiled to be drunk, but also boiling water can be allowed to cool down fast, and our this refrigerating plant adds the distance sleeve separated with heating combined equipment, so not only make refrigerating plant and heating combined equipment separate, can not influence each other, thus refrigerating efficiency is promoted greatly, accelerate cooling time.
Accompanying drawing explanation
Fig. 1 is the STRUCTURE DECOMPOSITION figure of the utility model first embodiment.
Fig. 2 is the structure sectional view of the utility model first embodiment.
Fig. 3 is the structure sectional view of the utility model second embodiment.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is further illustrated.
First embodiment:
As shown in Figure 1 to Figure 2, one is rapidly and efficiently freezed insulating pot, comprise kettle body 1 and pot lid 2, base 3 is provided with bottom kettle body 1, it is characterized in that, be provided with distance sleeve 4 in base 3, the inner side and outer side of distance sleeve 4 forms refrigeration installation cavity 401 respectively and heats installation cavity 402, in refrigeration installation cavity 401, the refrigerating plant 5 be connected with kettle body 1 base plate 101 is installed, heats in installation cavity 402 heating combined equipment 6 being provided with and being connected with kettle body 1 base plate 101.
Adopt the insulating pot of this structure, base intracavity be divided into the refrigeration installation cavity 401 of opposing seal by distance sleeve 4 and heat installation cavity 402, make can not be affected mutually between refrigerating plant 5 and heating combined equipment 6, effective prolongation service life separately, thus refrigerating efficiency is promoted greatly, accelerate cooling time.
More specifically embodiment as the present embodiment:
Described heating combined equipment 6 is heater; Structure tradition, working stability.
Described refrigerating plant 5 comprises semiconductor 501, fin 502 and radiator fan 503, semiconductor 501 is close to outside kettle body 1 base plate 101 in refrigeration installation cavity 401, radiator fan 503 is arranged on below semiconductor 501, and fin 502 is arranged between semiconductor 501 and radiator fan 503; Kettle body 1 base plate 101 is close to by semiconductor 501, ensure refrigeration, heat can be discharged outside body by refrigeration installation cavity 401 by fin 502 and radiator fan 503, realizes the quick heat radiating of semiconductor 501, the function of the wind guide and heat dispersion also making refrigeration installation cavity 401 possess.
Outside kettle body 1 base plate 101 in refrigeration installation cavity 401, thermistor 7 is installed; Thermistor 7, as attemperating unit, plays anti-dry and heats the effect of switch on and off electricity.
Heat in installation cavity 402 and circuit board 8 be installed, circuit board 8 be provided with extend base 1 sidewall heat button 801 and refrigeration button 802; Heat in installation cavity 402 although circuit board 8 is arranged on, the distance that heater is certain but its position can be separated by, heat can not cause the impact of circuit board 8, it is the use that circuit board 8 can be safe, or the structures such as thermal insulation board can be set between circuit board 8 and heater, because this belongs to the means of the art routine, again do not chat tired.
Second embodiment:
As shown in Figure 3, similar to the first embodiment, described refrigerating plant 5 comprises semiconductor 501, fin 502 and radiator fan 503, difference is, kettle body 1 base plate 101 in refrigeration installation cavity 401 offers and is suitable for the through hole 102 that semiconductor 501 seals installation connection, radiator fan 503 is arranged on below semiconductor 501, and fin 502 is arranged between semiconductor 501 and radiator fan 503; The mounting structure of the semiconductor 501 of this structure is different from the first embodiment, and the semiconductor 501 of the present embodiment can be directly installed on the through hole 102 of kettle body 1 base plate 101, and semiconductor 501 directly can touch the water in kettle body 1, makes refrigeration better.
Sealing ring 9 is connected with between described semiconductor 501 periphery and through hole 102 hole wall; Sealing ring 9 plays sealing function.
Operation principle (operation principle of two embodiments is identical): be first press heating button 801, start the water heating in kettle body 1 after heater energising, to be heated to when seething with excitement, by heater power-off after thermistor 7 induction, because of heat insulation air channel, heater and refrigerating plant 5 are kept apart in the process of heating simultaneously, such heat would not be fully transmitted on refrigerating plant 5, thus the work of refrigerating plant 5 after can not affecting, when pressing refrigeration button 802, refrigerating plant 5 is started working, semiconductor 501(and semiconductor refrigerating block) cold energy to pass to hot water in kettle body 1 by work, the heat energy of semiconductor refrigerating block self is by fin 502, radiator fan 503 is by refrigeration installation cavity 401 concentrated vectoring fast, by heat energy by offering the louvre 301 communicated with the installation cavity 401 that freezes bottom the louvre 301(kettle body 1 bottom base 3, be discharged to as shown in Figure 2) outside body, thus accelerate hot water variable, greatly reduce cooling time like this, improve refrigerating efficiency.
Above-described specific embodiment, is only the utility model preferred embodiment, such as according to this reality
By the equivalent arrangements that novel claim is done, all should be technology of the present utility model and contained.
Claims (7)
1. the insulating pot that rapidly and efficiently freezes, comprise kettle body (1) and pot lid (2), kettle body (1) bottom is provided with base (3), it is characterized in that, distance sleeve (4) is provided with in base (3), the inner side and outer side of distance sleeve (4) forms refrigeration installation cavity (401) respectively and heats installation cavity (402), in refrigeration installation cavity (401), the refrigerating plant (5) be connected with kettle body (1) base plate (101) is installed, heats in installation cavity (402) heating combined equipment (6) being provided with and being connected with kettle body (1) base plate (101).
2. rapidly and efficiently freeze insulating pot according to claim 1, and it is characterized in that, described heating combined equipment (6) is heater.
3. rapidly and efficiently freeze insulating pot according to claim 1, it is characterized in that, described refrigerating plant (5) comprises semiconductor (501), fin (502) and radiator fan (503), semiconductor (501) is close to kettle body (1) base plate (101) outside in refrigeration installation cavity (401), radiator fan (503) is arranged on semiconductor (501) below, and fin (502) is arranged between semiconductor (501) and radiator fan (503).
4. rapidly and efficiently freeze insulating pot according to claim 1, it is characterized in that, described refrigerating plant (5) comprises semiconductor (501), fin (502) and radiator fan (503), kettle body (1) base plate (101) in refrigeration installation cavity (401) offers and is suitable for the through hole (102) that connection is installed in semiconductor (501) sealing, radiator fan (503) is arranged on semiconductor (501) below, and fin (502) is arranged between semiconductor (501) and radiator fan (503).
5. rapidly and efficiently freeze insulating pot according to claim 4, it is characterized in that, be connected with sealing ring (9) between described semiconductor (501) periphery and through hole (102) hole wall.
6. rapidly and efficiently freeze insulating pot according to claim 1, it is characterized in that, kettle body (1) base plate (101) outside in refrigeration installation cavity (401) is provided with thermistor (7).
7. rapidly and efficiently freeze insulating pot according to claim 1, it is characterized in that, heat in installation cavity (402) and be provided with circuit board (8), circuit board (8) be provided with extend base (1) sidewall heat button (801) and refrigeration button (802).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520391686.1U CN204765025U (en) | 2015-06-09 | 2015-06-09 | High efficiency insulating pot that refrigerates |
Applications Claiming Priority (1)
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CN201520391686.1U CN204765025U (en) | 2015-06-09 | 2015-06-09 | High efficiency insulating pot that refrigerates |
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CN204765025U true CN204765025U (en) | 2015-11-18 |
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CN201520391686.1U Active CN204765025U (en) | 2015-06-09 | 2015-06-09 | High efficiency insulating pot that refrigerates |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105902158A (en) * | 2016-06-21 | 2016-08-31 | 珠海格力电器股份有限公司 | Base assembly and electric kettle with same |
CN108294604A (en) * | 2018-01-30 | 2018-07-20 | 广东天际电器股份有限公司 | A kind of cooking apparatus and its heating refrigerating plant |
WO2020052634A1 (en) * | 2018-09-12 | 2020-03-19 | 广东美的生活电器制造有限公司 | Small household appliance refrigerating apparatus, and integrated heating and refrigerating apparatus |
-
2015
- 2015-06-09 CN CN201520391686.1U patent/CN204765025U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105902158A (en) * | 2016-06-21 | 2016-08-31 | 珠海格力电器股份有限公司 | Base assembly and electric kettle with same |
CN108294604A (en) * | 2018-01-30 | 2018-07-20 | 广东天际电器股份有限公司 | A kind of cooking apparatus and its heating refrigerating plant |
WO2020052634A1 (en) * | 2018-09-12 | 2020-03-19 | 广东美的生活电器制造有限公司 | Small household appliance refrigerating apparatus, and integrated heating and refrigerating apparatus |
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