CN209285232U - Food processor - Google Patents
Food processor Download PDFInfo
- Publication number
- CN209285232U CN209285232U CN201821246241.4U CN201821246241U CN209285232U CN 209285232 U CN209285232 U CN 209285232U CN 201821246241 U CN201821246241 U CN 201821246241U CN 209285232 U CN209285232 U CN 209285232U
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- Prior art keywords
- valve
- air inlet
- inlet port
- cylinder block
- block set
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- 235000013305 food Nutrition 0.000 title claims abstract description 37
- 238000005086 pumping Methods 0.000 claims abstract description 9
- 238000000605 extraction Methods 0.000 claims description 42
- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 claims description 31
- 238000010411 cooking Methods 0.000 claims description 27
- 230000008676 import Effects 0.000 claims description 27
- 238000004891 communication Methods 0.000 abstract description 5
- 238000004140 cleaning Methods 0.000 abstract description 3
- 238000003780 insertion Methods 0.000 abstract 1
- 230000037431 insertion Effects 0.000 abstract 1
- 235000010469 Glycine max Nutrition 0.000 description 15
- 244000068988 Glycine max Species 0.000 description 15
- 239000008267 milk Substances 0.000 description 15
- 210000004080 milk Anatomy 0.000 description 15
- 235000013336 milk Nutrition 0.000 description 15
- 238000010586 diagram Methods 0.000 description 10
- 239000011521 glass Substances 0.000 description 8
- 230000000694 effects Effects 0.000 description 5
- 239000007789 gas Substances 0.000 description 5
- 230000000930 thermomechanical effect Effects 0.000 description 5
- 238000000354 decomposition reaction Methods 0.000 description 4
- 230000003993 interaction Effects 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 244000046052 Phaseolus vulgaris Species 0.000 description 1
- 235000010627 Phaseolus vulgaris Nutrition 0.000 description 1
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 238000007654 immersion Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000003913 materials processing Methods 0.000 description 1
- 235000016709 nutrition Nutrition 0.000 description 1
- 230000035764 nutrition Effects 0.000 description 1
- 239000001301 oxygen Substances 0.000 description 1
- 229910052760 oxygen Inorganic materials 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
Landscapes
- Food-Manufacturing Devices (AREA)
Abstract
The utility model aims to provide a food processor, which comprises a machine body assembly and a base, wherein the base comprises a fixed part and a movable part, the movable part can swing relative to the fixed part, a vacuumizing system is arranged in the base, the vacuumizing system comprises an air suction valve, and the air suction valve is arranged on the movable part; the machine body component is provided with an air inlet duct which is communicated with the interior of the cup barrel component of the machine body component; and wherein the bleed valve is in communication with the air intake passage of the block assembly when the movable portion is swung to the first position and is disconnected from the air intake passage when the movable portion is swung to the second position. The vacuum pumping function can be realized by simple arrangement. Moreover, the base is provided with an electrically conductive insertion piece which is inserted into a jack connected with an electric connector in the body assembly, so that the base and the body assembly are detachably and electrically connected, thereby satisfying the requirements of portability and easy cleaning.
Description
Technical field
The utility model relates to a kind of food cooking machines.
Background technique
Currently, food cooking machine is using very extensive as common household electrical appliance.And increasingly with food cooking machine
Development, it is also more and more diversified to the functional requirement of food cooking machine.Wherein, it is related to food cooking machine food when handling food
The problem of object and air effect lead to nutrition loss.
And in order to solve this problem, vacuumize process can be carried out to food cooking machine before arranging food, so that
When carrying out food cooking under vacuum conditions, the interaction of food Yu air especially oxygen is avoided, to enhance food guarantor
Fresh function.
Utility model content
The purpose of this utility model is to provide a kind of food cooking machine, the function of vacuumizing can be realized.
A kind of food cooking machine, including cylinder block set and pedestal are provided, the pedestal includes fixed part and movable part, institute
It is swingable relative to the fixed part to state movable part, and the base interior is disposed with pumped vacuum systems, described vacuumize is
System includes extraction valve, and the extraction valve is arranged in the movable part;The cylinder block set has air inlet port, the air inlet port
It is connected to inside the cup tub assembly of the cylinder block set;And wherein, when the movable part swings to first position, the pumping
Valve is connected to the air inlet port of the cylinder block set, and when the movable part swings to the second position, the extraction valve with
The air inlet port disconnects.
In one embodiment, the fixed part of the pedestal further includes the supporting part protruded out from downside, the branch
Plug division or jack are provided in bearing portion;And the bottom of the cylinder block set is provided with jack or plug division;The pedestal
The plug division is inserted into the jack of the cylinder block set or the pedestal is inserted into the plug division of the cylinder block set
In jack, and the supporting part supports the cylinder block set.
In one embodiment, the plug division of the pedestal or the cylinder block set is electrical conduction inserted sheet, and institute
It states jack and is connected with electric connector.
In one embodiment, the pumped vacuum systems further include: vacuum pump, including air entry and exhaust outlet;With it is big
Air valve, the atmos-valve includes that atmos-valve import, atmosphere valve outlet and atmos-valve are imported and exported, described in the atmos-valve inlet communication
Exhaust outlet;Wherein, the extraction valve includes extraction valve import, pumping valve outlet and extraction valve inlet and outlet, the pumping valve outlet
It is connected to the air entry;Also, extraction valve import described in the atmos-valve outlet, the atmos-valve inlet and outlet connection are big
Gas, and atmos-valve inlet and outlet optionally connect with the atmos-valve inlet communication or with the atmosphere valve outlet
It is logical.
In one embodiment, the pumped vacuum systems further include for control vacuumize vacuumize control system.
In one embodiment, the vacuum pump is arranged in the fixed part.
In one embodiment, the atmos-valve is arranged in the movable part.
In one embodiment, the pumped vacuum systems further includes the electrical storage device of power supply.
In one embodiment, it there also is provided the socket for connecting external power supply in the pedestal.
In one embodiment, the extraction valve is arranged in the protruding portion of the movable part protruded out downwards.
In one embodiment, it is provided on the upper lid of the nose assembly of the cylinder block set corresponding with the protruding portion
The recessed portion to lower recess.
In one embodiment, in the cylinder block set, the center line of the air inlet port and the lower cover of nose assembly
Lateral wall distance be L, 10mm≤L≤85mm;The road junction of the air inlet port is M at a distance from blade, 60mm≤M≤
90mm;The ratio of the sectional area of the sectional area and inner cup of the air inlet port is more than or equal to 0.07;Across the third air inlet of inner cover
The diameter in duct and the ratio of the length of the third air inlet port along vertical direction are more than or equal to 0.5.
In one embodiment, in the cylinder block set, the center line of the air inlet port and the central axis of motor
Distance be B, 25mm≤B≤100mm;The center line of the air inlet port is C, 15mm at a distance from the inner sidewall of inner cup
≤C≤100mm;Also, the road junction of the air inlet port is G, 20mm≤G≤80mm at a distance from the top of flow-interfering bar.
In one embodiment, the center line of the air inlet port is E, 35mm at a distance from the center line of anti-flow electrode
≤E≤110mm;Also, the road junction of the air inlet port is F at a distance from the bottom of the anti-flow electrode, 35mm≤F≤
75mm。
By the food cooking machine with above structure, food can be carried out to realize with simple-arranged under vacuum conditions
Cooking, to enhance food fresh-keeping function.Moreover, pedestal is provided with electrical conduction inserted sheet, it is inserted into cylinder block set and is connected with electricity
The jack of connector is thus removably electrically connected between pedestal and cylinder block set, to meet wanting for portability and easy cleaning
It asks.
Detailed description of the invention
It is to provide and being further understood to the utility model including attached drawing, they are included and constitute one of the application
Point, attached drawing shows the embodiments of the present invention, and plays the role of explaining the utility model principle together with this specification.
In attached drawing:
Fig. 1 is the structural schematic diagram of the soya-bean milk thermomechanical components according to the utility model when movable part swings to first position.
Fig. 2 is the soya-bean milk thermomechanical components according to the utility model when movable part swings to the position different from first position
Structural schematic diagram.
Fig. 3 is the soya-bean milk unit according to the utility model when movable part swings to the another location different from first position
The structural schematic diagram of part.
Fig. 4 is the decomposition diagram according to the nose assembly of the soy bean milk making machine of the utility model.
Fig. 5 is the decomposition diagram according to the pedestal of the utility model beans and the cup tub assembly of soy bean milk making machine and base assembly.
Fig. 6 is the schematic diagram according to the gas circuit in the pumped vacuum systems of the soya-bean milk thermomechanical components of the utility model.
Fig. 7 is the schematic diagram according to all parts arrangement of the soya-bean milk thermomechanical components of the utility model.
Specific embodiment
The utility model is described in further detail with attached drawing combined with specific embodiments below, elaborates in the following description
More details are in order to fully understand the utility model, but the utility model obviously can be different from what this was described with a variety of
Other way is implemented, and those skilled in the art can be without prejudice to the utility model connotation according to practical application feelings
Condition makees similar popularization, deduces, therefore should not limit the protection scope of the utility model with the content of this specific embodiment.
It should be noted that these and subsequent other attached drawings are only as an example, it is not to be according to equal proportion
What condition was drawn, and should not be construed as limiting in this, as the protection scope to the utility model actual requirement.
As shown in Figure 1, Figure 2 and Figure 3, soy bean milk making machine according to the present utility model includes cylinder block set 10 and pedestal 100.
Pedestal 100 includes fixed part 101 and movable part 102, and movable part 102 is arranged in the upside of fixed part 101, and class
It is similar to a swing arm, can be swung relative to fixed part 101.In addition, fixed part 101 further includes the supporting part protruded out from downside
101a, soy bean milk making machine 10 are supported on the supporting part 101a of fixed part 101.
In addition, fixed part 101 can also include the grip part 101b for facilitating user to hold.In Fig. 3, grip part 101b passes through
It is formed along horizontal direction through the through-Penetration portion 101c of fixed part 101, the finger of user can pass through through-Penetration portion 101c.It holds
Portion 101b is also possible to external handle.
Cylinder block set 10 includes nose assembly 1, cup tub assembly 2 and base assembly 3, and cup tub assembly 2 is for providing food materials
Processing space, base assembly 3 are used to support nose assembly 1 and cup tub assembly 2, and the lid of nose assembly 1 closes on cup tub assembly 2.
Fig. 4 is the decomposition diagram of the nose assembly 1 of soy bean milk making machine.Wherein, nose assembly 1 includes upper cover 11,12 and of inner cover
Lower cover 13.Lower cover 13 is cylindrical in shape, and extends downwardly into the bottom of glass tub assembly 2, is used to install motor.Cloth is gone back in nose assembly 1
It is equipped with the electric components such as electric machine assembly 14, power panel box 15, control panel component 16 and upper coupler 17, control panel component 16 can be with
It is PCB circuit board, is electrically connected with the motor installed on lower cover 13, for controlling the operating of motor.Grinding device is mounted under
On the motor shaft that lid 13 extends, it is used for comminuting matter, specifically, grinding device includes blade 18 (referring to Fig. 7).Upper cover 11
Panel can be set in upside, and human-computer interaction interface can be set in panel, can be used for being arranged the starting of soy bean milk making machine, program plus
Load, function of selection soy bean milk making machine etc..It realizes and is tightly connected respectively between upper cover 11 and lower cover 13.Cup tub assembly 2 can be by head group
The lid of part 1 closes, and food materials are placed between nose assembly 1 and cup tub assembly 2 by immersion, crushing or heating.In addition, nose assembly 1 is also
Including head gasket 30, when vacuumizing, head gasket 30 is arranged between nose assembly 1 and cup tub assembly 2, is needed with realizing
Sealing inside the cup tub assembly 2 to be vacuumized.
Fig. 5 is the cup tub assembly 2 of pedestal 100 and cylinder block set 10 and the decomposition diagram of base assembly 3.Cup tub assembly
2 include inner cup 21 and outer cup 22.As can be seen from Figure 5, lower coupler 41 is additionally provided on cup tub assembly 2, under lower coupler 41 passes through
Coupler bracket 42 is fixed, couples with the upper coupler 17 being arranged on nose assembly 1.Required electric power passes through on nose assembly 1
Connector is transferred to lower coupler 41, then is transferred to upper coupler 17 by lower coupler 41, is then transmitted further on nose assembly 1
Each electrically or electronically component.
Fig. 6 schematically shows the gas circuit in the pumped vacuum systems of soya-bean milk thermomechanical components.Pumped vacuum systems includes vacuum pump
4, atmos-valve 5 and extraction valve 6.Vacuum pump 4 includes air entry A and exhaust outlet B, and atmos-valve 5 includes atmos-valve import F, atmos-valve
E and atmos-valve inlet and outlet 51 are exported, and extraction valve 6 includes extraction valve import D, pumping valve outlet C and extraction valve inlet and outlet 66.
Wherein, extraction valve inlet and outlet 66 are led in glass tub assembly 2, and pumping valve outlet C is connected to air entry A, exhaust outlet B be connected to atmos-valve into
Mouth F, atmos-valve inlet and outlet 51 lead to atmosphere.In addition, atmosphere valve outlet E is connected to extraction valve import D.In atmos-valve 5, atmos-valve
It is connected to atmos-valve import F or is connected to atmosphere valve outlet E to 51 property of can choose of inlet and outlet, for example, as described later
, by the effect for selecting switch 55.
When vacuum pump 4 is started with to vacuumizing inside cup tub assembly 2, atmos-valve inlet and outlet 51 and atmos-valve import F connects
Lead to and is not connected to atmosphere valve outlet E.Therefore, stuffiness at the extraction valve import D being connect with atmosphere valve outlet E, so, cup bucket
After air inside component 2 enters extraction valve 6 from extraction valve import D, come out from pumping valve outlet C, subsequently into air entry A,
It comes out from exhaust outlet B, is come out into atmos-valve import F, and then from atmos-valve inlet and outlet 51, into the external world, to realize that pumping is true
Empty effect.
When needing outside air to enter glass 2 inside of tub assembly, atmos-valve inlet and outlet 51 be connected to atmosphere valve outlet E and with
Atmos-valve import F is not connected to.Therefore, outside air enters atmos-valve 5 from atmos-valve inlet and outlet, comes out from atmosphere valve outlet E, into
Enter extraction valve import D, and then come out from extraction valve inlet and outlet 66, is finally entered inside glass tub assembly 2.
Atmos-valve inlet and outlet 51 are specifically to be connected to or be connected to atmos-valve import F that Fig. 7 can be passed through with atmosphere valve outlet E
Shown in switching switch 52 control.
In above description, it is the air inlet of corresponding component with the port main function that " import " describes, is retouched with " outlet "
The port main function stated is the gas outlet of corresponding component, and with " inlet and outlet " describe be then corresponding component both air inlet outlets
Port.
Described above is the gas circuit trends and basic working principle in pumped vacuum systems, are described below to vacuumize and are
The specific arrangement of all parts particularly may refer to Fig. 7 in system.Wherein, it in order to keep diagram more succinct, is omitted in Fig. 7
The signal of specific pipeline, piping connection may refer to the description above for Fig. 6.
Pumped vacuum systems includes vacuum pump 4, atmos-valve 5 and extraction valve 6, further includes controlling the control that vacuumizes vacuumized to be
System 43, is all disposed within inside pedestal 100.Specifically, it due to needing the object that vacuumizes to be inside glass tub assembly 2, thus is evacuated
The extraction valve inlet and outlet of valve 6 must be connected to inside glass tub assembly 2, so extraction valve 6 is arranged in inside movable part 102.In order to subtract
The weight of light movable part 102 and make movable part 102 be easy to swing, vacuum pump 4 and vacuumize control system 43 and be arranged in pedestal
Inside 100 fixed part 101, vacuum pump 4 is fixed by vacuum pump support 41, vacuum pump 4 and vacuumizes control system 43
It can be arranged in inside movable part 102.In figure, atmos-valve 5 is arranged in inside movable part 102, and atmos-valve 5 can also be arranged in solid
Determine inside portion 101, as long as its atmos-valve inlet and outlet 51 stretch out to be in communication with the outside.
Cylinder block set 10 has air inlet port 121, and air inlet port 121 is connected to inside the cup tub assembly 2 of cylinder block set 10, tool
Body, air inlet port 121 is connected to inside the inner cup 21 of cylinder block set 10, and air inlet port 121 is along vertically downward direction
Sequentially pass through upper cover 11, inner cover 12 and lower cover 13.Air inlet port 121 is made of three sections of air inlet ports, i.e. the first air inlet port
121a, the second air inlet port 121b and third air inlet port 121c, wherein the first air inlet port 121a, the second air inlet port
121b and third air inlet port 121c is the air inlet port across upper cover 11, inner cover 12 and lower cover 13 respectively.
Extraction valve inlet and outlet 66 are directly connected to the first air inlet port 121a in upper cover 11, then pass sequentially through the second air inlet
Duct 121b and third air inlet port 121c, to be connected to inside inner cup 2.
In order to which leakproofness is good, each air inlet port junction and extraction valve inlet and outlet 66 and the first air inlet port 121a
Junction has all used gasket, the gasket 61,62,63,64,65 in such as figure.
Although in embodiment, the first air inlet port 121 is by the first air inlet port 121a, the second air inlet port 121b and third
Air inlet port 121c is constituted, and in Fig. 7, the first air inlet port 121a, the second air inlet port 121b and third air inlet port
121c is directly provided with respectively on upper cover 11, inner cover 12 and lower cover 13, and still, the first recent channel 121 is also possible to one and wears
The pipe of upper cover 11, inner cover 12 and lower cover 13 is crossed, as long as good airproof performance, extraction valve inlet and outlet 66 and cup tub assembly 2 may be implemented
Internal connection.
Particularly, extraction valve 6 is arranged in the protruding portion 102a of movable part 102 protruded out downwards, in this way, conveniently visually
See the position of extraction valve 6.Further, it is provided with and 102a pairs of protruding portion in the upper cover 11 of the nose assembly 1 of cylinder block set 10
The recessed portion 11a to lower recess answered.
When specifically vacuumizing, cylinder block set 10 is placed on the supporting part 101a of pedestal 100, movable part 102 is swung
To first position, position as shown in Figure 1, i.e. extraction valve 6 (specifically, extraction valve inlet and outlet 66) be connected to cylinder block set 10 into
Stomata road 121, at this point, pumped vacuum systems can be operated with to vacuumizing inside cup tub assembly 2.Outside air is needed to enter cup bucket
When 2 inside of component, movable part 102 is swung into the second position different from first position, as shown in Figures 2 and 3, Fig. 2 and Fig. 3
In two kinds of positions can be referred to as the second position, i.e. extraction valve inlet and outlet 66 and the air inlet of cylinder block set 10 of extraction valve 6
Road 121 disconnects, at this point, outside air enters inside cup tub assembly 2 from air inlet port 121, to conveniently take away nose assembly 1.
In addition, first state described above can also be passed through when needing outside air to enter glass 2 inside of tub assembly
The lower switching switch 52 using atmos-valve 5, make atmos-valve 5 atmos-valve import and export 51 be connected to atmosphere valve outlet E and and atmosphere
Valve import F is not connected to.At this point, outside air enters atmos-valve 5 from atmos-valve inlet and outlet 51, come out, enters from atmosphere valve outlet E
Extraction valve import D, and then come out from extraction valve inlet and outlet 66, enter cup bucket finally by the air inlet port 121 of cylinder block set 10
Inside component 2.
From the description above it is found that atmos-valve 5 can be the valve that only atmos-valve imports and exports 51 and atmos-valve import F,
Only allow air to enter atmos-valve 5 from atmos-valve import F then to come out from atmos-valve inlet and outlet 51, be in communication with the outside.At this point, needing
When outside air being wanted to enter glass 2 inside of tub assembly, movable part 102 may only be swung to the second position different from first position
A kind of this mode.
Pumped vacuum systems further includes the electrical storage device 44 of power supply, and electrical storage device 44 is mounted in fixed part 101.Electrical storage device
44 can be rechargeable unit, be also possible to disconnectable battery.Electrical storage device 44 can independently be vacuum pump 4 and vacuumize
Control system 43 is powered.
It there also is provided the socket 40 for connecting external power supply in pedestal 100, which may be coupled to electrical storage device
44, to charge for electrical storage device 44.Socket 40 also may be coupled to vacuum pump 4 and vacuumize control system 43, to be true
Sky pump 4 is powered with control system 43 is vacuumized.In addition, socket 40 may be also connected to the electrical conduction inserted sheet that will be discussed later
47, to power for cylinder block set 10.
It is additionally provided with plug division 47 on the supporting part 101a protruded out in fixed part 101 from downside, and cylinder block set 10
The bottom of base assembly 3 is provided with jack 3a, in the jack 3a of the 47 inserted base component 3 of plug division of supporting part 101a, may be used also
To realize the effect positioned to the cylinder block set 10 that supporting part 101a is supported.
In addition, the plug division 47 of supporting part 101a can be electrical conduction inserted sheet, and correspondingly, base assembly 3
Jack 3a is connected with electric connector 48.In this way, as referenced above, by being connected to the socket 40 of external power supply, then pass through
It is connected to the electrical conduction inserted sheet 47 of socket 40, finally by the electric connector 48 for being connected to electrical conduction inserted sheet 47, may be implemented pair
The effect that cylinder block set 10 is powered.In cylinder block set 10, socket can also be disposed in base assembly 3, for connecting external electrical
Source powers to soy bean milk making machine 10.Pedestal 100 is provided with electrical conduction inserted sheet, is inserted into cylinder block set 10 and is connected with electric connector 48
Jack 3a is thus removably electrically connected between pedestal 100 and cylinder block set 10, to meet wanting for portability and easy cleaning
It asks.
In another embodiment, jack is set on supporting part 101a, and the bottom of the base assembly 3 of cylinder block set 10 is set
Set plug division.
When it is implemented, there is following preferred size range:
The center line of air inlet port 121 is set as B at a distance from the central axis of electric machine assembly 14, then 25mm≤B≤
100mm;The center line of air inlet port 121 is set as C at a distance from the inner sidewall of inner cup 21, then 15mm≤C≤100mm;It will
The center line of air inlet port 121 is set as E at a distance from the center line of anti-flow electrode 29, then 35mm≤E≤110mm;By air inlet
The road junction in duct 121 is set as F at a distance from the bottom of anti-flow electrode 29, then 35mm≤F≤75mm;By air inlet port 121
Road junction is set as G at a distance from the top of flow-interfering bar 19, then 20mm≤G≤80mm;By the center line and head of air inlet port 121
The distance of the lateral wall of the lower cover 13 of component 1 is set as L, then 10mm≤L≤85mm;By the road junction of air inlet port 121 and blade
18 distance is set as M, then 60mm≤M≤90mm;By the center line of air inlet port 121 at a distance from the center line of atmos-valve 5
It is set as W, then 25mm≤W≤120mm;The sectional area of air inlet port 121 and the ratio of the sectional area of inner cup 21 are more than or equal to
0.07;Across the length H of diameter D and third air inlet port 121b along vertical direction of the third air inlet port 121b of inner cover 12
Ratio be more than or equal to 0.5.
In above-described embodiment, the soy bean milk making machine with vacuumizing function is essentially described, is taken out very in fact, being also possible to other
Empty food cooking machine.
The above, the only specific embodiment in the utility model, but the protection scope of the utility model not office
It is limited to this, any people for being familiar with the technology is in the technical scope disclosed by the utility model, it will be appreciated that the transformation expected is replaced
It changes, should all cover within the scope of the utility model, therefore, the protection scope of the utility model should be with claim
Subject to the protection scope of book.
Claims (14)
1. a kind of food cooking machine, including cylinder block set (10) and pedestal (100), which is characterized in that
The pedestal (100) includes fixed part (101) and movable part (102), and the movable part (102) is relative to the fixed part
(101) swingable, and it is disposed with pumped vacuum systems inside the pedestal (100), the pumped vacuum systems includes extraction valve
(6), the extraction valve is arranged in the movable part (102);
The cylinder block set (10) has air inlet port (121), and the air inlet port (121) is connected to the cylinder block set (10)
Cup tub assembly (2) is internal;And
Wherein, when the movable part (102) swings to first position, the extraction valve (6) is connected to the cylinder block set (10)
The air inlet port (121), and when the movable part (102) swings to the second position, the extraction valve and the air inlet
Duct (121) disconnects.
2. food cooking machine as described in claim 1, which is characterized in that wherein,
The fixed part (101) of the pedestal (100) further includes the supporting part (101a) protruded out from downside, the supporting part
Plug division (47) or jack are provided on (101a);And
The bottom of the cylinder block set (10) is provided with jack (3a) or plug division;
The plug division (47) of the pedestal (100) is inserted into the jack (3a) of the cylinder block set (10) or described
The plug division of cylinder block set (10) is inserted into the jack of the pedestal (100), and the supporting part (101a) supports the machine
Body component (10).
3. food cooking machine as claimed in claim 2, which is characterized in that wherein,
The plug division of the pedestal (100) or the cylinder block set (10) is electrical conduction inserted sheet, and the jack is connected with
Electric connector (48).
4. food cooking machine as described in claim 1, which is characterized in that wherein,
The pumped vacuum systems further include:
Vacuum pump (4), including air entry (A) and exhaust outlet (B);With
Atmos-valve (5), the atmos-valve (5) include atmos-valve import (F), atmosphere valve outlet (E) and atmos-valve inlet and outlet (51);
Wherein, the extraction valve (6) includes that extraction valve import (D), pumping valve outlet (C) and extraction valve import and export (66), described
It is evacuated valve outlet (C) and is connected to the air entry (A);And
The atmos-valve import (F) is connected to the exhaust outlet (B), and the atmosphere valve outlet (E) is connected to the extraction valve import
(D), atmos-valve inlet and outlet (51) are connected to atmosphere, and atmos-valve inlet and outlet (51) optionally with the atmosphere
Valve import (F) is connected to or is connected to the atmosphere valve outlet (E).
5. food cooking machine as claimed in claim 4, which is characterized in that wherein,
The pumped vacuum systems further include for control vacuumize vacuumize control system (43).
6. food cooking machine as claimed in claim 4, which is characterized in that wherein,
The vacuum pump (4) is arranged in the fixed part (101).
7. food cooking machine as claimed in claim 4, which is characterized in that wherein,
The atmos-valve (5) is arranged in the movable part (102).
8. food cooking machine as claimed in claim 3, which is characterized in that wherein,
The pumped vacuum systems further includes the electrical storage device (44) of power supply.
9. food cooking machine as described in claim 1, which is characterized in that wherein,
It there also is provided the socket (40) for connecting external power supply in the pedestal (100).
10. food cooking machine as described in claim 1, which is characterized in that wherein,
The extraction valve (6) is arranged in the protruding portion (102a) of the movable part (102) protruded out downwards.
11. food cooking machine as claimed in claim 10, which is characterized in that wherein,
Be provided in the upper cover (11) of the nose assembly (1) of the cylinder block set (10) it is corresponding with the protruding portion (102a) to
The recessed portion (11a) of lower recess.
12. food cooking machine as described in claim 1, which is characterized in that in the cylinder block set (10),
It is L, 10mm≤L at a distance from the lateral wall of the lower cover (13) of the center line and nose assembly (1) of the air inlet port (121)
≤85mm;
The road junction of the air inlet port (121) is M, 60mm≤M≤90mm at a distance from blade (18);
The ratio of the sectional area of the sectional area and inner cup (21) of the air inlet port (121) is more than or equal to 0.07;And
Across inner cover (12) third air inlet port (121b) diameter (D) with the third air inlet port (121b) along vertical
The ratio of the length (H) in direction is more than or equal to 0.5.
13. food cooking machine as described in claim 1, which is characterized in that in the cylinder block set (10),
The center line of the air inlet port (121) is B at a distance from the central axis of electric machine assembly (14), 25mm≤B≤
100mm;
The center line of the air inlet port (121) is C, 15mm≤C≤100mm at a distance from the inner sidewall of inner cup (21);
And
The road junction of the air inlet port (121) is G, 20mm≤G≤80mm at a distance from the top of flow-interfering bar (19).
14. food cooking machine as described in claim 1, which is characterized in that in the cylinder block set (10),
The center line of the air inlet port (121) is E, 35mm≤E≤110mm at a distance from the center line of anti-flow electrode (29);
And
The road junction of the air inlet port (121) is F, 35mm≤F≤75mm at a distance from the bottom of the anti-flow electrode (29).
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