CN220557863U - Refrigerating steam wall breaking machine - Google Patents

Refrigerating steam wall breaking machine Download PDF

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Publication number
CN220557863U
CN220557863U CN202322029896.3U CN202322029896U CN220557863U CN 220557863 U CN220557863 U CN 220557863U CN 202322029896 U CN202322029896 U CN 202322029896U CN 220557863 U CN220557863 U CN 220557863U
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water
wall
wall breaking
broken
pipeline
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CN202322029896.3U
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Chinese (zh)
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罗彤
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Zhongshan Shanshifu Electric Appliance Co ltd
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Zhongshan Shanshifu Electric Appliance Co ltd
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Abstract

The application relates to a but refrigerated steam broken wall machine, it is including the water receiver that is used for storing the water, be used for broken food broken wall ware, refrigeration component and cold water pipe, broken wall ware include broken wall cup and set up in broken wall component in the broken wall cup, refrigeration component set up in be used for the cooling to store in the water receiver the water, cold water pipe is used for the intercommunication broken wall cup reaches in the water receiver to water conservancy diversion in the water receiver is to the broken wall cup. The steam wall breaking machine designed by the application utilizes the refrigerating element arranged in the water receiver to cool water in the water receiver to form ice water, and the ice water is conducted to the wall breaking device through the cold water pipeline, so that the wall breaking device can be used for preparing cold drink, the user requirement is met, and the use value is improved.

Description

Refrigerating steam wall breaking machine
Technical Field
The application relates to the field of kitchen appliance technology, in particular to a refrigeration steam wall breaking machine.
Background
The wall breaking machine is a kitchen appliance for preparing vegetable and fruit juice, and most of fruits and vegetables which are usually eaten by people can be chewed and digested by human bodies, but the seeds of the wall breaking machine are very hard, difficult to chew and swallow and difficult to digest. Seeds are rich in dietary fibers, unsaturated fatty acids, phytochemicals, etc., and are unfortunately discarded. By breaking the wall, we can easily obtain the nutrition in the water. While the peel is not hard like seeds, the peel of partial vegetables and fruits such as grape peel, tomato peel and the like is not easy to chew and is not easy to digest and absorb by human bodies. The wall breaking machine can crush vegetables and fruits through the blades with high rotating speed, so that the vegetables and fruits can be conveniently obtained.
Most of the existing wall breaking machines in the market can prepare vegetable juice, soybean milk and the like at room temperature, and some wall breaking machines have a heating function and can be used for preparing porridge, pulp, paste and other liquid foods needing to be cooked. But can not cool food materials, can not be used for preparing cold drinks generally, and can not fully embody the use value of the wall breaking machine in hot summer.
Disclosure of Invention
Aiming at the defects of the technology, the application provides a refrigeration steam wall breaking machine.
The application provides a but refrigerated steam broken wall machine adopts following technical scheme:
a refrigerated vapor wall breaking machine comprising:
a water reservoir for storing a body of water;
the wall breaking device comprises a wall breaking cup body and wall breaking elements arranged in the wall breaking cup body;
a refrigerating element disposed in the water reservoir for cooling a body of water stored in the water reservoir;
and the cold water pipeline is used for communicating the wall-broken cup body and the water receiver so as to guide the water body in the water receiver into the wall-broken cup body.
Preferably, the water storage device comprises a water storage cavity and an element placement cavity which are independent of each other, the refrigerating element is arranged in the element placement cavity and used for cooling water stored in the water storage cavity, and one end of the cold water pipeline is communicated with the water storage cavity.
Preferably, the refrigerator further comprises a heat radiation fan, wherein the heat radiation fan is arranged in the element arranging cavity and used for radiating heat of the refrigerating element.
Preferably, a first water pump is further arranged on the cold water pipeline and is used for pumping the water body in the water receiver into the wall-broken cup body.
Preferably, the water storage device further comprises a hot water pipeline and a heater, wherein the hot water pipeline is used for communicating the water storage cavity and the wall-broken cup body, and the heater is arranged on the hot water pipeline and used for heating water flowing through the hot water pipeline.
Preferably, a second water pump is further arranged on the hot water pipeline and is used for pumping the water body in the water storage cavity into the wall-broken cup body.
Preferably, the wall breaking cup body comprises a wall breaking cavity and an installation cavity, and the water outlet ends of the cold water pipeline and the hot water pipeline are communicated with the wall breaking cavity.
Preferably, the water outlet end of the cold water pipeline and/or the hot water pipeline is provided with a check valve.
Preferably, the cold water pipeline and the hot water pipeline share one water outlet end.
Preferably, the water storage device further comprises a base, wherein the water storage device and the wall breaking device are arranged on the base in a separable mode, and the cold water pipeline and the hot water pipeline are arranged in the base.
According to the technical scheme, the steam wall breaking machine is characterized in that the refrigerating element is arranged in the water receiver to cool the water body in the water receiver to form ice water, and the ice water is pumped into the wall breaking machine through the first water pump, so that the wall breaking machine can prepare cold drink, the user requirement is met, and the use value is improved; meanwhile, when hot drinks are required to be prepared, the water flowing through the hot water pipe can be heated through the hot water pipe and the heater arranged in the base and then flows into the wall breaking device for use; in addition, when the user only needs to use ice water and does not need to prepare corresponding cold drink, the user can cool the water body in the water receiver through the refrigerating element and directly use the ice water, so that the application range of the wall breaking machine is improved, and the practicability is higher.
Drawings
Fig. 1 is a schematic overall structure of an embodiment of the present application.
Fig. 2 is a schematic cross-sectional view of an embodiment of the present application.
Fig. 3 is a bottom view of a base plate with a chassis removed in accordance with an embodiment of the present application.
Fig. 4 is another cross-sectional structural schematic diagram of an embodiment of the present application.
Fig. 5 is an enlarged schematic view of the portion a in fig. 4.
Reference numerals illustrate: 1. a water reservoir; 11. a water storage chamber; 12. a component placement chamber; 2. breaking the wall; 21. breaking the wall of the cup body; 211. breaking the wall of the cavity; 212. a mounting cavity; 22. breaking cell wall; 3. a refrigerating element; 31. a heat radiation fan; 4. a cold water pipe; 41. a first water pump; 5. a hot water pipe; 51. a heater; 52. a second water pump; 6. a check valve; 61. a valve body; 62. a spring; 63. a stopper ball; 7. and (5) a base.
Detailed Description
Reference will now be made in detail to the present embodiments of the present utility model, examples of which are illustrated in the accompanying drawings, wherein the accompanying drawings are used to supplement the description of the written description so that one can intuitively and intuitively understand each technical feature and overall technical scheme of the present utility model, but not to limit the scope of the present utility model.
In the description of the present utility model, plural means two or more, and greater than, less than, exceeding, etc. are understood to not include the present number, and the above, below, within, etc. are understood to include the present number. The description of the first and second is for the purpose of distinguishing between technical features only and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present utility model, it should be understood that references to orientation descriptions such as upper, lower, front, rear, left, right, etc. are based on the orientation or positional relationship shown in the drawings, are merely for convenience of description of the present utility model and to simplify the description, and do not indicate or imply that the apparatus or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present utility model.
In the present utility model, unless clearly defined otherwise, the terms "disposed," "mounted," "connected," and the like are to be construed broadly and may be connected directly or indirectly through an intermediary; the connecting device can be fixedly connected, detachably connected and integrally formed; may be a mechanical connection; may be a communication between two elements or an interaction between two elements. The specific meaning of the words in the utility model can be reasonably determined by a person skilled in the art in combination with the specific content of the technical solution.
The present application is described in further detail below in conjunction with figures 1-5.
The embodiment of the application discloses a steam broken wall machine capable of refrigerating. Referring to fig. 1 and 2, the coolable vapor wall breaking machine includes a water reservoir 1, a wall breaker 2, a refrigerating element 3, and a cold water pipe 4.
The water reservoir 1 is used for storing water for the wall breaking machine.
The wall breaking device 2 comprises a wall breaking cup body 21 and wall breaking elements 22 arranged in the wall breaking cup body 21, wherein the wall breaking elements 22 are used for carrying out wall breaking operation on food to be processed, and can be a common rotary cutter type wall breaking element directly driven by a motor, which is a well known prior art and is not described herein.
The refrigerating element 3 is disposed in the water reservoir 1 and is used for cooling the water body stored in the water reservoir 1, and in this scheme, the refrigerating element 3 adopts a refrigerating sheet, i.e. a semiconductor refrigerating sheet, which is a well-known prior art and will not be described in detail.
The cold water pipeline 4 is used for communicating the wall-broken cup body 21 and the water reservoir 1 so as to guide the water body in the water reservoir 1 into the wall-broken cup body 21.
From this, the steam broken wall machine that this application designed utilizes to set up refrigerating element 3 in water receiver 1, cools off the water in the water receiver 1, forms the frozen water, and rethread cold water pipeline 4 switches on the frozen water to broken wall ware 2 in, makes broken wall ware 2 can prepare cold drink, satisfies the user demand, improves use value. In this scheme, the way of conducting ice water into the broken cup 21 may be implemented by using the communicating pipe principle or by using a water pump, which is not limited herein. In addition, how to implement the steam function of the wall breaking machine may be implemented by an existing technical scheme in the industry, or by a technical scheme of the present technical scheme, which is not described herein, and a structure of the present technical scheme designed to implement the steam function will be described below.
The first embodiment of the refrigerating steam wall breaking machine provided in the embodiments of the present application is the second embodiment of the refrigerating steam wall breaking machine provided in the embodiments of the present application, and refer to fig. 1 to 5 specifically.
Based on the scheme of the first embodiment:
further, in terms of the design of the water reservoir 1, the water reservoir comprises a water storage cavity 11 and an element installation cavity 12 which are independent from each other, the refrigerating element 3 is arranged in the element installation cavity 12 and is used for cooling the water body stored in the water storage cavity 11, and one end of the cold water pipeline 4 is communicated with the water storage cavity 11.
Generally, the water storage chamber 11 is provided with an opening and a cup cover for covering the opening for convenient water addition or cleaning. In the conventional design in industry, the element mounting cavity 12 may be disposed below the water storage cavity 11 and detachably connected with the element mounting cavity 12, and the refrigerating element 3, i.e., the semiconductor refrigerating sheet, is mounted in the element mounting cavity 12 and is in contact with the bottom wall of the outer side of the water storage cavity 11, so as to improve the refrigerating effect. Of course, the component placement chamber 12 may be disposed on a side wall of the water storage chamber 11 or other positions, and the component placement chamber 12 may be disposed at any position as long as the semiconductor refrigerating sheet can exert a refrigerating effect in principle, and is not limited herein. Of course, the present solution employs a design in which the component placement chamber 12 is disposed below the water storage chamber 11, based on an aesthetic design.
In the case of the design of the semiconductor cooling fin and the component placement chamber 12, a heat radiation fan is also provided for cooling the heat emitted from the semiconductor cooling fin. In this scheme, set up cooling fan 31 in component placement chamber 12, and be located the semiconductor refrigeration piece and deviate from the one side of water storage chamber 11, can dispel the heat of semiconductor refrigeration piece fast like this. Of course, the heat dissipation fan 31 may be disposed at other positions of the component placement chamber 12, so long as the heat dissipation fan 31 can blow out the air in the component placement chamber 12.
Further, still be provided with first water pump 41 on the cold water pipeline 4 for in pumping the water body in the water storage cavity 11 to broken wall cup 21, first water pump 41 can play the effect that control cold water pipeline 4 was opened and close, strengthens the pumping capacity of water simultaneously, compares the design that adopts communicating pipe principle, can pump the water in the water storage cavity 11 completely to broken wall cup 21 in use, and the practicality is stronger.
In terms of the design scheme that the element placement cavity 12 is arranged below the water storage cavity 11, the water inlet end of the cold water pipeline 4 is optimally arranged on the bottom wall of the water storage cavity 11, and at the moment, the cold water pipeline 4 needs to pass through the element placement cavity 12, so that the assembly production and the cost control of the wall breaking machine are convenient, one joint is usually fixed on the bottom wall of the water storage cavity 11, the other joint is fixed on the wall of the element placement cavity 12, and the two joints are connected through a hose, so that the cold water pipeline 4 can be conveniently routed, and the cost can be reduced. In this embodiment, the first water pump 41 may be a commercially available direct-current water pump.
Further, in order to realize the steam function of the wall breaking machine, the design scheme comprises a hot water pipeline 5 and a heater 51, wherein the hot water pipeline 5 is used for communicating the water storage cavity 11 with the wall breaking cup body 21, and the heater 51 is arranged on the hot water pipeline 5 and is used for heating water flowing through the hot water pipeline 5. In this scheme, the heater 51 is a conventional heater 51, and the water inlet end of the hot water pipeline 5 is also preferably disposed on the bottom wall of the water storage cavity 11, and the specific structural design may refer to the cold water pipeline 4, which is not described in detail.
Similarly, to facilitate the opening and closing of the hot water pipe 5, a second water pump 52 is disposed on the hot water pipe 5, for pumping the water in the water storage cavity 11 into the wall breaking cup 21, and the first water pump 41 may be an electromagnetic pump.
Further, the broken wall cup 21 includes a broken wall cavity 211 and an installation cavity 212, and the water outlet ends of the cold water pipeline 4 and the hot water pipeline 5 are all connected with the broken wall cavity 211, so that hot water or cold water can circulate into the broken wall cavity 211.
Further, in order to avoid the backflow of the water in the wall breaking cavity 211, a check valve 6 is provided at the water outlet end of the cold water pipe 4 and/or the hot water pipe 5. In this solution, the check valve 6 may be any check valve 6 commonly used in the market, but for cost control, the check valve 6 may be a check valve 6 having the following structure, wherein the check valve 6 is composed of a valve body 61, a spring 62 and a plug 63, the valve body 61 has a channel through which water can flow, the spring 62 and the plug 63 are disposed in the channel, one end of the spring 62 is connected with a side wall of the valve body 61 located at an outlet of the channel, the other end is connected with the plug 63, and the plug 63 can block an inlet of the channel under the action of the spring 62 to close the channel. When the cold water pipe 4 or the hot water pipe 5 is connected with water, the plug ball 63 is moved away under the impact of the water body, the spring 62 is compressed, the inlet of the channel is opened, and ice water or hot water can enter the wall breaking cavity 211. When the cold water pipe 4 or the hot water pipe 5 is closed, the plug ball 63 blocks the inlet of the passage under the action of the spring 62, thereby playing a role of non-return. The check valve 6 has simple structure and low cost.
Further, when the wall breaking machine is used, the refrigerating function and the heating function are not started at the same time, so that the cold water pipeline 4 and the hot water pipeline 5 can share one water outlet end, thereby saving the cost. Of course, if the design is that the refrigerating function and the heating function can be simultaneously started, a water outlet end can be respectively arranged for the cold water pipeline 4 and the hot water pipeline 5, that is, two outlets are arranged on the wall breaking cavity 211 and respectively communicated with the cold water pipeline 4 and the hot water pipeline 5.
For the purposes of aesthetic design, convenient wiring, functional key setting and the like, the wall breaking machine is generally provided with a base 7, the water receiver 1 and the wall breaking device 2 are all arranged on the base 7 in a separable manner, and the cold water pipeline 4, the hot water pipeline 5, the first water pump 41, the second water pump 52 and the heater 51 are all arranged in the base 7, so that the structure is a conventional technology and is not repeated herein.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (10)

1. The utility model provides a but refrigerated steam broken wall machine which characterized in that includes:
a water reservoir (1) for storing a body of water;
the wall breaking device (2) comprises a wall breaking cup body (21) and wall breaking elements (22) arranged in the wall breaking cup body (21);
a refrigerating element (3) arranged in the water reservoir (1) for cooling a body of water stored in the water reservoir (1);
and the cold water pipeline (4) is used for communicating the wall-broken cup body (21) and the water receiver (1) so as to guide water in the water receiver (1) into the wall-broken cup body (21).
2. The refrigerated vapor wall breaking machine of claim 1, wherein: the water receiver (1) comprises a water storage cavity (11) and an element placement cavity (12) which are independent of each other, the refrigerating element (3) is arranged in the element placement cavity (12) and is used for cooling water stored in the water storage cavity (11), and one end of the cold water pipeline (4) is communicated with the water storage cavity (11).
3. The refrigerated vapor wall breaking machine of claim 2, wherein: the cooling device further comprises a cooling fan (31), wherein the cooling fan (31) is arranged in the element accommodating cavity (12) and is used for cooling the refrigerating element (3).
4. The refrigerated vapor wall breaking machine of claim 1, wherein: the cold water pipeline (4) is also provided with a first water pump (41) which is used for pumping the water body in the water receiver (1) into the wall-broken cup body (21).
5. The refrigerated vapor wall breaking machine of claim 2, wherein: still include hot-water piping (5) and heater (51), hot-water piping (5) are used for the intercommunication water storage chamber (11) and broken wall cup (21), heater (51) set up on hot-water piping (5) for the heating flows through the water of hot-water piping (5).
6. The refrigerated vapor wall breaking machine of claim 5, wherein: the hot water pipeline (5) is also provided with a second water pump (52) which is used for pumping the water body in the water storage cavity (11) into the wall-broken cup body (21).
7. The refrigerated vapor wall breaking machine of claim 5, wherein: the wall breaking cup body (21) comprises a wall breaking cavity (211) and a mounting cavity (212), and the water outlet ends of the cold water pipeline (4) and the hot water pipeline (5) are communicated with the wall breaking cavity (211).
8. The refrigerated vapor wall breaking machine of claim 7, wherein: the water outlet end of the cold water pipeline (4) and/or the hot water pipeline (5) is provided with a check valve (6).
9. The refrigerated vapor wall breaking machine of claim 5, wherein: the cold water pipeline (4) and the hot water pipeline (5) share a water outlet end.
10. The refrigerated vapor wall breaking machine of claim 5, wherein: still include base (7), water receiver (1), broken wall ware (2) all separable set up in on base (7), cold water pipeline (4), hot-water line (5) are arranged in base (7).
CN202322029896.3U 2023-07-31 2023-07-31 Refrigerating steam wall breaking machine Active CN220557863U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322029896.3U CN220557863U (en) 2023-07-31 2023-07-31 Refrigerating steam wall breaking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322029896.3U CN220557863U (en) 2023-07-31 2023-07-31 Refrigerating steam wall breaking machine

Publications (1)

Publication Number Publication Date
CN220557863U true CN220557863U (en) 2024-03-08

Family

ID=90103990

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322029896.3U Active CN220557863U (en) 2023-07-31 2023-07-31 Refrigerating steam wall breaking machine

Country Status (1)

Country Link
CN (1) CN220557863U (en)

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