CN214231013U - Host computer and cooking machine of cooking machine - Google Patents

Host computer and cooking machine of cooking machine Download PDF

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Publication number
CN214231013U
CN214231013U CN202022588371.XU CN202022588371U CN214231013U CN 214231013 U CN214231013 U CN 214231013U CN 202022588371 U CN202022588371 U CN 202022588371U CN 214231013 U CN214231013 U CN 214231013U
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China
Prior art keywords
water
cup
heating device
assembly
instant heating
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CN202022588371.XU
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Chinese (zh)
Inventor
周忠建
叶理德
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Abstract

The application provides a host computer and cooking machine of cooking machine. A main body of a food processor can be assembled with a water tank assembly and alternatively matched with a juice receiving cup assembly or a hot water cup. The host computer includes the shell, is located the cup in the space that the shell encloses, motor and instant heating device and set up in the stirring sword of motor. The stirring knife is positioned in the space enclosed by the cup body. The instant heating device is communicated with the water tank component and the cup body. The main machine also comprises a valve component which is arranged on the shell and communicated with the cup body. The valve assembly is configured to control the flow of fluid from the cup into the juice cup assembly according to a cooking program. The shell is also provided with a water outlet hole. The water outlet is communicated with the instant heating device. The water tank assembly may deliver water into the cup or to the hot water cup according to a cooking program. The problem of cooking machine only can process the single function of eating the material is solved, a tractor serves several purposes.

Description

Host computer and cooking machine of cooking machine
Technical Field
The application relates to a small household electrical appliance field especially relates to host computer and cooking machine of cooking machine.
Background
With the increasing living standard of people, many different types of food processors appear on the market. The functions of the food processor mainly include, but are not limited to, functions of making soybean milk, squeezing fruit juice, making rice paste, mincing meat, shaving ice, making coffee and/or blending facial masks and the like. The food processor can comprise a soybean milk machine, a stirrer or a wall breaking food processor and other machines for crushing and stirring food. When the related food processor is used, the food materials processed in the stirring cup flow into the juice receiving cup through the juice outlet, and the function is single.
SUMMERY OF THE UTILITY MODEL
The application provides a host computer and cooking machine of multi-functional cooking machine.
The application provides a host computer of cooking machine can assemble a water tank set spare and choose ground and one connect juice cup set spare or hot water cup cooperation, the host computer includes the shell, is located cup, motor and the instant heating device in the space that the shell encloses and set up in the stirring sword of motor, the stirring sword is located in the space that the cup encloses, instant heating device intercommunication water tank set spare with the cup, the host computer still including set up in the shell and with the valve component that the cup intercommunication set up, the valve component is set up to the fluid in the controllable cup and flows in according to cooking program connect in the juice cup set spare, the shell still is equipped with the apopore, the apopore with instant heating device intercommunication, the water tank set spare can according to cooking program to delivery water in the hot water cup or to delivery water.
In some embodiments, above-mentioned technical scheme's host computer is equipped with the apopore, the apopore with the instant heating device intercommunication, water tank set spare can according to the culinary art procedure to carry water in the cup of stirring cup subassembly or to the hot water cup carries water, has solved the problem that the cooking machine can only process the single function of eating the material, and a tractor serves several purposes has saved the cost and has solved the problem that the little household electrical appliances of a plurality of stand alone types occupy great space, has promoted user's use and has experienced.
Further, the host computer still includes the solenoid valve, the solenoid valve includes water inlet portion, first water outlet portion and second water outlet portion, water inlet portion with the delivery port intercommunication of instant heating device, first water outlet portion with the cup intercommunication of stirring cup subassembly, second water outlet portion with the apopore intercommunication of shell, the solenoid valve opens the water route between instant heating device and the cup or the water route between instant heating device and the apopore according to the culinary art procedure.
In some embodiments, above-mentioned technical scheme utilizes the cup of solenoid valve intercommunication instant heating device, apopore and stirring cup subassembly, simple structure, controls easily.
Furthermore, the host computer includes first water pipe, second water pipe and third water pipe, first water pipe intercommunication the portion of intaking with the delivery port of instant heating device, the second water pipe intercommunication first water portion with the cup of stirring cup subassembly, the third water pipe intercommunication the second water portion of intaking with the apopore of shell.
Further, the main machine further comprises a heating device, and the heating device is located below the juice receiving cup assembly and used for heating food materials in the juice receiving cup assembly.
In some embodiments, the heating device of the above technical scheme is used for heating food materials in the juice receiving cup assembly, and the stirring cup assembly only stirs the food materials and does not heat the food materials, so that the bottom pasting phenomenon of the food materials in the stirring cup assembly can be prevented, and a cup body of the stirring cup assembly is easy to clean; meanwhile, the overflow phenomenon in the heating process can be prevented, which is beneficial to the cleaning of the food processor and the protection of the food processor from being damaged; secondly, the food materials are heated in the juice receiving cup assembly, so that the cooking condition of the food materials is convenient to observe, and the use experience of a user is improved; moreover, the area of the bottom of the juice receiving cup assembly is relatively large, so that the heating uniformity of food materials can be improved, and the taste of the processed food materials is improved.
Further, the host computer still includes fan and first power strip, the fan and heating device with first power strip lotus root connects, the host computer still including set up in the lower casing of shell, the casing is equipped with a plurality of first air intakes, a plurality of second air intake and a plurality of air outlet down, first air intake and second air intake can be used to supply external cold air to pass through, the air outlet is used for hot air process, the air outlet is located first air intake with between the second air intake.
In some embodiments, the fan of the technical scheme can simultaneously radiate the heat of the heating device and the first power panel, the structure is simple, and the cost is saved.
Further, the housing includes a main body portion extending in a vertical direction, a first support portion extending from a bottom end of the main body portion to one side, a second support portion extending from the bottom end of the main body portion to the other side, and an extension portion extending from a top end of the main body portion to one side, the first support portion is configured to support the juice receiving cup assembly, the second support portion is configured to assemble the water tank assembly, the extension portion is located above the first support portion, the heating device is located below the first support portion, and the solenoid valve is located in a space surrounded by the extension portion.
In some embodiments, the shell of the technical scheme is designed in a one-piece independent mode, only one set of die is used, and the high cost of die opening is omitted; meanwhile, the assembly process is omitted, and the production efficiency is improved; moreover, damage caused by disassembly or assembly during maintenance can be avoided in one piece mode, and the service life of the food processor is prolonged.
Further, the shell is equipped with the light trap, the host computer still including set up in the temperature detection device of shell, the temperature detection device includes the probe, the probe with the light trap aligns for be used for surveying the temperature of the edible material in the juice receiving cup subassembly.
In some embodiments, the probe of the above technical solution is aligned with the light-transmitting hole for detecting the temperature of the food material in the juice receiving cup assembly, without opening a hole on the cup wall of the juice receiving cup assembly, which can prevent the problem of water leakage and can facilitate cleaning of the juice receiving cup assembly.
Further, the instant heating device comprises a heating element, and the heating element comprises a quartz tube nano-coating heating element.
In some embodiments, the heating element in the above technical scheme comprises a quartz tube nano-coating heating element, so that the heating efficiency is high and the heating speed is high.
Further, the instant heating device is assembled on the shell, the instant heating device further comprises a water pump and a flow meter, a water inlet of the flow meter is communicated with the water tank assembly, a water outlet of the flow meter is communicated with a water inlet of the instant heating device, and the water pump is arranged to enable water in the water tank assembly to flow into the heating element.
The embodiment of this application still provides a cooking machine, includes the water tank subassembly, connects the host computer of juice cup subassembly and foretell cooking machine.
Drawings
Fig. 1 is a schematic view of a food processor according to an embodiment of the present application.
Fig. 2 is an exploded view of the main body of the food processor shown in fig. 1.
Fig. 3 is a schematic cross-sectional view of the food processor shown in fig. 1, wherein the main machine is assembled with the juice receiving cup assembly.
Fig. 4 is an enlarged view of the circled portion of the cross-sectional view shown in fig. 3.
Fig. 5 is a cross-sectional view of the food processor shown in fig. 1, wherein the main body is assembled with a hot water cup.
Fig. 6 is an enlarged view of the circled portion of the cross-sectional view shown in fig. 5.
Fig. 7 is a schematic view of the instant heating apparatus of the host shown in fig. 2.
Fig. 8 is a schematic view of the instant heating device shown in fig. 7 with a third water pipe and a fourth water pipe connected.
FIG. 9 is a schematic view of a solenoid valve of the host machine shown in FIG. 2.
FIG. 10 is a schematic view of the water circuit connection between the instant heating apparatus of FIG. 7 and the solenoid valve and the blender cup.
Fig. 11 is a schematic view of the water connection between the instant heating device shown in fig. 9 and the solenoid valve, the mixing cup and the water outlet hole of the housing.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless otherwise defined, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application belongs. The use of "first," "second," and similar terms in the description and in the claims does not indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Also, the use of the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one. "plurality" or "a number" means two or more. Unless otherwise indicated, "front", "rear", "lower" and/or "upper" and the like are for convenience of description and are not limited to one position or one spatial orientation. The word "comprising" or "comprises", and the like, means that the element or item listed as preceding "comprising" or "includes" covers the element or item listed as following "comprising" or "includes" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. As used in this specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
Referring to fig. 1, the food processor comprises a main machine 1, a juice receiving cup assembly 2, a water tank assembly 3 and a cup cover assembly 4. The juice receiving cup assembly 2, the water tank assembly 3 and the cup cover assembly 4 are detachably assembled on the main machine 1.
Referring to fig. 2 to 3, the main body 1 includes a housing 10, and an instant heating device 11, a motor 12, a stirring cup assembly 13, a heating device 14, a second power board 152, a first power board 153, a temperature detecting device 16, a fan 17, a solenoid valve 18, and a valve assembly 19 located in a space enclosed by the housing 10. The housing 10 includes a casing 101, and an upper housing 102 and a lower housing 103 assembled to the casing 101. The motor 12 is coupled to the second power board 152 to provide power to the motor 12. The heating device 14 and the fan 17 are coupled to the first power board 153 to provide power to the heating device 14 and the fan 17. The temperature detecting device 16 is located at one side of the juice receiving cup assembly 2 for detecting the temperature of the food material in the juice receiving cup assembly 2. The fan 17 allows external cold air to enter the inside of the main body 1 to take away heat generated by the motor 12, the heating device 14, and the first power board 153, so as to cool the main body 1.
The stirring cup assembly 13 comprises a cup body 130 and a stirring blade 133 positioned in a space enclosed by the cup body 130. The cup cover assembly 4 is arranged on the cup body 130 in a covering mode. The motor 12 includes a shaft portion 120. Stirring sword 133 assemble in axial region 120 has saved upper and lower coupler, has saved the cost, simultaneously, has avoided the noise that the collision between the upper and lower coupler caused, can reduce the noise of cooking machine during operation, moreover, can improve transmission efficiency.
The instant heating device 11 is communicated with the cup body 130 and the water tank assembly 3, and water in the water tank assembly 3 flows into the cup body 130 after being heated by the instant heating device 11. In the process of stirring the food materials by the stirring cup assembly 13, hot water is added, so that the cooking time of the food materials can be shortened; meanwhile, the cup body 130 of the stirring cup assembly 13 can be more effectively cleaned by hot water, and the cup can be cleaned more cleanly.
The heating device 14 is located below the juice receiving cup assembly 2 and is used for heating food materials in the juice receiving cup assembly 2. The heating device 14 can be an electromagnetic heating element, a heating tube, a heating disc, a heating film (thick film), a quartz tube nano-film, etc. The stirring cup assembly 13 only stirs food materials and does not heat the food materials, so that the food materials in the stirring cup assembly 13 can be prevented from being burnt, and the cup body 130 of the stirring cup assembly 13 is easy to clean; meanwhile, the overflow phenomenon in the heating process can be prevented, which is beneficial to the cleaning of the food processor and the protection of the food processor from being damaged; secondly, the food materials are heated in the juice receiving cup assembly 2, so that the cooking condition of the food materials is convenient to observe, and the use experience of a user is improved; moreover, the area of the bottom of the juice receiving cup assembly 2 is relatively large, so that the uniformity of heated food materials can be improved, and the mouthfeel of the processed food materials is improved.
The lower housing 103 is provided with a plurality of first air inlets 1036, a plurality of second air inlets 1037, and a plurality of air outlets 1038. The plurality of air outlets 1038 are formed in a circular shape. The lower housing 103 further includes a retaining wall 1034, the retaining wall 1034 is enclosed at the outer side of the air outlet 1038. The first power board 153 is disposed between the first air inlet 1036 and the air outlet 1038, the heating device 14 is disposed between the second air inlet 1037 and the air outlet 1038, the blower 17 is disposed between the first power board 153 and the heating device 14, and the blower 17 is disposed above the air outlet 1038. So set up, fan 17 makes external cold air pass through first air intake 1036 blows to the hot-blast process that forms behind the first power strip 153 air outlet 1038 discharges and makes external cold air pass through second air intake 1037 blows to the hot-blast process that forms behind the heating device 14 air outlet 1038 discharges, and a fan 17 can cool down for heating device 14 and first power strip 153 simultaneously, and simple structure has saved the space and has saved the cost.
Referring to fig. 2 to 5, the housing 101 includes a main body 1010 extending in a vertical direction, a first support 1013 extending from a bottom end of the main body 1010 to one side, a second support 1014 extending from the bottom end of the main body 1010 to the other side, and an extension 1016 extending from a top end of the main body 1010 to one side. The extension 1016 is positioned above the first support 1013 and extends toward the first support 1013. The first support 1013 is used for supporting the juice receiving cup assembly 2, and the second support 1014 is used for supporting the water tank assembly 3. The extension 1016 includes a bottom wall 1060 and side edges 1061 extending upward from the bottom wall 1060. The bottom wall 1060 and the side edge 1061 enclose a receiving space 10601. The bottom wall 1060 is provided with a through hole 10602 and a water outlet hole 10603 communicating with the receiving space 10601.
The casing 101 is provided with a light hole 1017, the temperature detecting device 16 comprises a probe 161, the probe 161 is aligned with the light hole 1017 for detecting the temperature of the food material in the juice receiving cup assembly 2, and for detecting whether the food is cooked or not; at the same time, the power of the heating device 14 can be controlled depending on the temperature. The probe 161 is preferably made of copper, or aluminum, ceramic, iron, or the like.
The probe 161 is an infrared probe, which detects the temperature of the food material in the juice receiving cup assembly 2 by using infrared rays, and can detect the height of the liquid level in the juice receiving cup assembly 2 to prevent dry burning; furthermore, there is no need to open a hole in the wall of the juice receiving cup assembly 2, which can prevent the problem of water leakage and facilitate cleaning of the juice receiving cup assembly 2.
The valve assembly 19 includes an inlet end 190 and an outlet end 191. The liquid inlet end 190 is communicated with the cup body 130 of the stirring cup assembly 13, and the liquid outlet end 191 is inserted into the through hole 10602 of the extension 1016, so that the fluid in the cup body 130 can flow into the juice receiving cup assembly 2 through the liquid outlet end 191 of the valve assembly 19. The water outlet hole 10603 is communicated with the instant heating device 11, so that water heated by the instant heating device 11 can flow into the water receiving cup 5 from the water outlet hole 10603 for drinking or other purposes. The food processor can process food materials and provide hot water, so that the food processor has multiple functions, and the use experience of a user is improved; meanwhile, a kettle does not need to be purchased additionally, so that the cost is saved, and the problem that a plurality of independent small household appliances occupy larger space is solved.
Referring to fig. 6 to 7, the instant heating device 11 includes a heat generating member 110, a water pump 111, a flow meter 112, an upper holding column 113, and a lower holding column 114. The water inlet of the flow meter 112 communicates with the water tank assembly 3 through a fourth water pipe 1121, so that water in the water tank assembly 3 enters the flow meter 112 through the fourth water pipe 1121. The water outlet of the flow meter 112 is communicated with the water inlet of the instant heating device 11 through a fifth water pipe 1122, so that the water flowing through the flow meter 112 flows into the instant heating device 11 through the fifth water pipe 1122. The water pump 111 is used to pump water in the tank assembly 3 into the instant heating apparatus 11.
The water in the water tank assembly 3 flows into the heating element 110 for heating after passing through the flow meter 112, and then enters the cup body 130 of the stirring cup assembly 13 to process food materials or clean the cup body 130. The flow meter 112 detects the amount of water flowing out of the water tank assembly 3, stops the operation of the water pump 111 when the water reaches a predetermined amount, and stops the supply of water into the cup body 130 of the stirring cup assembly 13. The host 1 further includes a fixing plate 118 located in a space enclosed by the housing 101, and the fixing plate 118 is located above the first power supply plate 153. The second power board 152 and the lower holding column 114 of the instant heating device 11 are fixed to the fixing plate 118 to limit the second power board 152 and the instant heating device 11, and the assembly is simple and convenient.
The heating member 110 may be a quartz tube nano-coating heating member, a thick film heating member, a heating tube, an infrared tube heating member, or the like. The quartz tube nano coating heating member has the characteristics of high heating efficiency and high heating speed. In the process of stirring the food materials by the stirring cup assembly 13, hot water is added, so that the cooking time of the food materials can be shortened; meanwhile, the cup body 130 of the stirring cup assembly 13 can be more effectively cleaned by hot water, and the cup can be cleaned more cleanly.
Referring to fig. 8 to 11, the solenoid valve 18 includes a water inlet portion 181, a first water outlet portion 182 and a second water outlet portion 183. The water inlet portion 181 is communicated with the water outlet of the instant heating device 11 through a first water pipe 115, so that the hot water flowing through the instant heating device 11 can flow into the water inlet portion 181 of the electromagnetic valve 18. The first water outlet part 182 is communicated with the cup body 130 of the stirring cup assembly 13 through a second water pipe 1301, so that water flowing through the water inlet part 181 of the electromagnetic valve 18 can flow into the cup body 130, and the second water outlet part 183 is communicated with the water outlet hole 10603 of the housing 101 through a third water pipe 184, so that water flowing through the water inlet part 181 of the electromagnetic valve 18 can flow through the water outlet hole 10603 and then enter the water receiving cup 5. The electromagnetic valve 18 opens the water path between the instant heating device 11 and the cup body 130 according to the cooking program, so that water can flow into the cup body 130 or the water path between the instant heating device 11 and the water outlet hole 10603, and the water can flow into the hot water cup 5 through the water outlet hole 10163.
In other embodiments, the water outlet 10603 of the housing 101 and the cup body 130 of the stirring cup assembly 13 may be connected to the instant heating device 11 through water pipes, so that the functions of the food processor, such as beating food materials and discharging hot water, may be realized.
Host computer 1 of this application embodiment is including stirring cup subassembly 13 and instant heating device 11, host computer 1 still is equipped with apopore 10603, instant heating device 11 with stirring cup subassembly 13 intercommunication, and simultaneously, instant heating device 11 with apopore 10603 intercommunication, through program control for rivers in the water tank subassembly 3 can get into after instant heating device 11 heats in stirring cup subassembly 13's cup 130, eat material or wash cup 130 with processing, simultaneously, rivers accessible after instant heating device 11 in the water tank subassembly 3 apopore 10603 flows out, so as to supply to drink etc. have solved the problem that the cooking machine can only process the single function of eating the material, and a machine is multi-purpose, has saved the cost and has solved the problem that a plurality of independent small household appliances occupy great space, has promoted user's use and has experienced.
Although the present application has been described with reference to a preferred embodiment, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the application, and all changes, substitutions and alterations that fall within the spirit and scope of the application are to be understood as being covered by the following claims.

Claims (10)

1. A host machine of a food processor can assemble a water tank component (3) and alternatively cooperate with a juice receiving cup component (2) or a hot water cup (5), and is characterized in that the host machine comprises a shell (101), a cup body (130) positioned in a space enclosed by the shell (101), a motor (12), an instant heating device (11) and a stirring knife (133) arranged on the motor (12), wherein the stirring knife (133) is positioned in the space enclosed by the cup body (130), the instant heating device (11) is communicated with the water tank component (3) and the cup body (130), the host machine further comprises a valve component (19) arranged on the shell (101) and communicated with the cup body (130), the valve component (19) is set to control fluid in the cup body (130) to flow into the juice receiving cup component (2) according to a cooking program, and the shell (101) is further provided with a water outlet hole (10163), the water outlet hole (10163) is communicated with the instant heating device (11), and the water tank assembly (3) can deliver water into the cup body (130) or deliver water into the hot water cup (5) according to a cooking program.
2. The host machine of the food processor of claim 1, wherein the host machine further comprises an electromagnetic valve (18) and a stirring cup assembly (13), the stirring cup assembly (13) comprises a cup body (130), the electromagnetic valve (18) comprises a water inlet portion (181), a first water outlet portion (182) and a second water outlet portion (183), the water inlet portion (181) is communicated with a water outlet of the instant heating device (11), the first water outlet portion (182) is communicated with the cup body (130) of the stirring cup assembly (13), the second water outlet portion (183) is communicated with a water outlet hole (10163) of the housing (101), and the electromagnetic valve (18) opens a water path between the instant heating device (11) and the cup body (130) or a water path between the instant heating device (11) and the water outlet hole (10163) according to a cooking program.
3. The host machine of the food processer according to claim 2, wherein the host machine comprises a first water pipe (115), a second water pipe (1301) and a third water pipe (184), the first water pipe (115) communicates the water inlet portion (181) with the water outlet of the instant heating device (11), the second water pipe (1301) communicates the first water outlet portion (182) with the cup body (130), and the third water pipe (184) communicates the second water outlet portion (183) with the water outlet hole (10163) of the housing (101).
4. The main machine of the food processor according to claim 2, further comprising a heating device (14), wherein the heating device (14) is located below the juice receiving cup assembly (2) for heating food material inside the juice receiving cup assembly (2).
5. The host computer of claim 4, further comprising a blower (17) and a first power board (153), wherein the blower (17) and the heating device (14) are coupled to the first power board (153), the host computer further comprises a lower housing (103) disposed on the housing (101), the lower housing (103) is provided with a plurality of first air inlets (1036), a plurality of second air inlets (1037), and a plurality of air outlets (1038), wherein the first air inlets (1036) and the second air inlets (1037) are used for passing outside cold air, the air outlets (1038) are used for passing hot air, and the air outlets (1038) are located between the first air inlets (1036) and the second air inlets (1037).
6. The main unit of food processor as claimed in claim 4, wherein the housing comprises a main body portion (1010) extending in a vertical direction, a first supporting portion (1013) extending from a bottom end of the main body portion (1010) to one side, a second supporting portion (1014) extending from a bottom end of the main body portion (1010) to the other side, and an extending portion (1016) extending from a top end of the main body portion (1010) to one side, the first supporting portion (1013) is configured to support the juice receiving cup assembly (2), the second supporting portion (1014) is configured to assemble the water tank assembly (3), the extending portion (1016) is located above the first supporting portion (1013), the heating device (14) is located below the first supporting portion (1013), and the solenoid valve (18) is located in a space surrounded by the extending portion (1016).
7. The host computer of claim 4, wherein the housing (101) is provided with a light hole (1017), the host computer further comprises a temperature detecting device (16) arranged on the housing (101), the temperature detecting device (16) comprises a probe (161), the probe (161) is aligned with the light hole (1017) for detecting the temperature of the food material in the juice receiving cup assembly (2).
8. The host machine of any one of claims 1 to 7, wherein the instant heating device (11) comprises a heat generating member (110), and the heat generating member (110) comprises a quartz tube nano-coating heating element.
9. The host machine of claim 8, wherein the instant heating device (11) is assembled to the housing (101), the instant heating device (11) further comprises a water pump (111) and a flow meter (112), a water inlet of the flow meter (112) is communicated with the water tank assembly (3), a water outlet of the flow meter (112) is communicated with a water inlet of the instant heating device (11), and the water pump (111) is configured to enable water in the water tank assembly (3) to flow into the heat generating component (110).
10. A food processor, characterized in that it comprises a water tank assembly (3), a juice cup assembly (2) and a main body of the food processor according to any one of claims 1 to 9.
CN202022588371.XU 2020-11-10 2020-11-10 Host computer and cooking machine of cooking machine Active CN214231013U (en)

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CN202022588371.XU CN214231013U (en) 2020-11-10 2020-11-10 Host computer and cooking machine of cooking machine

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Application Number Priority Date Filing Date Title
CN202022588371.XU CN214231013U (en) 2020-11-10 2020-11-10 Host computer and cooking machine of cooking machine

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CN214231013U true CN214231013U (en) 2021-09-21

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023087539A1 (en) * 2021-11-20 2023-05-25 周劲松 Multifunctional food processor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023087539A1 (en) * 2021-11-20 2023-05-25 周劲松 Multifunctional food processor

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