CN205885327U - Food processor - Google Patents
Food processor Download PDFInfo
- Publication number
- CN205885327U CN205885327U CN201620369262.XU CN201620369262U CN205885327U CN 205885327 U CN205885327 U CN 205885327U CN 201620369262 U CN201620369262 U CN 201620369262U CN 205885327 U CN205885327 U CN 205885327U
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- shearing
- quiet
- circulation line
- intracavity
- container
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- 235000013305 food Nutrition 0.000 title claims abstract description 30
- 239000000463 material Substances 0.000 claims abstract description 53
- 230000007246 mechanism Effects 0.000 claims abstract description 27
- 238000010008 shearing Methods 0.000 claims description 61
- 238000010298 pulverizing process Methods 0.000 claims description 47
- 239000002002 slurry Substances 0.000 claims description 42
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 25
- 238000005520 cutting process Methods 0.000 claims description 20
- 238000000227 grinding Methods 0.000 claims description 13
- 238000002347 injection Methods 0.000 claims description 10
- 239000007924 injection Substances 0.000 claims description 10
- 239000011159 matrix material Substances 0.000 claims description 7
- 239000000843 powder Substances 0.000 claims description 6
- 239000007921 spray Substances 0.000 claims description 6
- 238000001125 extrusion Methods 0.000 claims description 5
- 239000007788 liquid Substances 0.000 claims description 4
- 238000003780 insertion Methods 0.000 claims description 3
- 230000037431 insertion Effects 0.000 claims description 3
- 238000005452 bending Methods 0.000 claims description 2
- 244000046052 Phaseolus vulgaris Species 0.000 abstract description 2
- 235000010627 Phaseolus vulgaris Nutrition 0.000 abstract description 2
- 230000000694 effects Effects 0.000 description 12
- 238000010438 heat treatment Methods 0.000 description 6
- 238000003825 pressing Methods 0.000 description 5
- 238000011160 research Methods 0.000 description 5
- 235000010469 Glycine max Nutrition 0.000 description 4
- 244000068988 Glycine max Species 0.000 description 4
- 238000010586 diagram Methods 0.000 description 4
- 239000008267 milk Substances 0.000 description 4
- 210000004080 milk Anatomy 0.000 description 4
- 235000013336 milk Nutrition 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 239000000203 mixture Substances 0.000 description 3
- 238000010992 reflux Methods 0.000 description 3
- UHOVQNZJYSORNB-UHFFFAOYSA-N Benzene Polymers C1=CC=CC=C1 UHOVQNZJYSORNB-UHFFFAOYSA-N 0.000 description 2
- 230000009471 action Effects 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 2
- 235000013361 beverage Nutrition 0.000 description 2
- 238000005119 centrifugation Methods 0.000 description 2
- 238000004140 cleaning Methods 0.000 description 2
- 208000037265 diseases, disorders, signs and symptoms Diseases 0.000 description 2
- 230000005484 gravity Effects 0.000 description 2
- 230000001737 promoting effect Effects 0.000 description 2
- 239000002893 slag Substances 0.000 description 2
- 206010053615 Thermal burn Diseases 0.000 description 1
- 230000001133 acceleration Effects 0.000 description 1
- 230000002776 aggregation Effects 0.000 description 1
- 238000004220 aggregation Methods 0.000 description 1
- 230000000903 blocking effect Effects 0.000 description 1
- 239000004568 cement Substances 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 230000003750 conditioning effect Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000000354 decomposition reaction Methods 0.000 description 1
- 230000003670 easy-to-clean Effects 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000008187 granular material Substances 0.000 description 1
- 239000011229 interlayer Substances 0.000 description 1
- 238000003801 milling Methods 0.000 description 1
- 238000002156 mixing Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 238000013138 pruning Methods 0.000 description 1
- 238000004537 pulping Methods 0.000 description 1
- 238000009955 starching Methods 0.000 description 1
Abstract
The utility model relates to a kitchen appliances, especially a food processor, including the container and with the upper and lower circulation pipeline of intercommunication of container, be provided with the reducing mechanism that drives through the motor in the container, the container including the crushing chamber that is located the container bottom, be located the head piece that gathers that chamber and backward flow chamber were smashed to the backward flow chamber of smashing the chamber top and intercommunication, the reducing mechanism sets up in crushing intracavity, and the reducing mechanism motor is epaxial to be moved the sword and is fixed in the stationary knife of smashing the intracavity including being fixed in, move the sword and form to shear to the material with the stationary knife cooperation and smash, gather the head piece and set up in the top of moving the sword, circulation pipeline's entry lies in crushing intracavity, circulation pipeline's export lies in the backward flow intracavity, the oral area area that gathers the head piece is lighter than the oral area area of arbitrary horizontal cross -section on the backward flow chamber of circulation pipeline export below. The utility model discloses compare in prior art, simple structure, cost are lower to the reducing mechanism can be concentrated the material and smash, and it is higher to smash efficiency, beans piece phenomenon can not appear, and washs the convenience.
Description
Technical field
This utility model is related to kitchen small household appliances, particularly a kind of food processor.
Background technology
Patent No. " cn201220102774.1 ", in the utility model patent of entitled " circulating regulation machine ", open
A kind of structure of circulating regulation machine, the bottom of cup of this regulation machine is provided with cutting tip and mill, the holding of cup sidepiece
It is provided with a circulating line interior, and the bottom of mill is provided with pressing mechanism and serosity is pressurizeed, so that serosity is entered and follow
In endless tube road, then flow back in container from the refluxing opening at circulating line top, realize circulation cutting and the grinding of material.
In said structure, because grinding of mill completes under conditions of rotating speed is less than 6000r/min, and
And need to arrange a pressing mechanism below mill serosity is pressurizeed with (pressing mechanism is upper and lower Cone Disc or force (forcing) pump),
Serosity just can be made to enter in circulating line, and be back in cup from the refluxing opening at circulating line top, therefore, above-mentioned follows
Ring type conditioning machine structure is complicated, relatively costly.Without pressing mechanism, above-mentioned regulation machine, in slurrying, will be unable to
Realize circulation cutting inside and outside circulating line for the serosity and grind.Meanwhile, cutting tip is arranged at the top of mill, regulation machine work
When making, the material flowing out from refluxing opening is in unordered state with the mixture of water, trickles down to cutting tip from top all directions
On, when material is after being cut blade hit, can throw away to cup surrounding and top, therefore, it is difficult to enter in mill carry out
Grind, and because mill is arranged at the bottom of container, for the bulk materials granule not being cut it could even be possible to whole
Pulping process all cannot be introduced into being ground in mill.So, the crush efficiency of this regulation machine is relatively low, and need through long when
Between grinding after be possible to occur without the material particles of bulk.
Utility model content
This utility model purpose to be reached is exactly to provide that a kind of crush efficiency is high, circulation rate is fast, structure is simple, and
Easy to clean, lower-cost food processor.
In order to achieve the above object, this utility model adopts the following technical scheme that a kind of food processor, including container and
The circulation line that container is connected up and down, be provided with described container motor drive reducing mechanism it is characterised in that: institute
State container to include crushing chamber positioned at container bottom, be located at the back cavity above crushing chamber and connect gathering of crushing chamber and back cavity
Head piece, described reducing mechanism is arranged at pulverizing intracavity, and reducing mechanism includes the moving knife that is fixed on motor shaft and is fixed on powder
The stationary knife of broken intracavity, described moving knife forms shearing with stationary knife cooperation to material and pulverizes, and described converging inlet is arranged at the top of moving knife,
The entrance of described circulation line is located at pulverizes intracavity, and the outlet of described circulation line is located at backflow intracavity, the mouth of described converging inlet
Portion's area is less than the mouth area of arbitrarily horizontal cross-section on the back cavity of circulation line outlet lower section.
Further, the bottom of described back cavity has to the raised conflux portion of container center, and described converging inlet runs through poly-
Stream portion is arranged.
Further, described conflux portion relative level is downward-sloping.
Further, described top of chamber of pulverizing is provided with restriction material in the occlusion part pulverizing intracavity, and described converging inlet passes through
Wear occlusion part setting.
Further, in a tubular form, described converging inlet has water inlet end and water side, described water inlet end setting to described converging inlet
In backflow intracavity, described water side is located at pulverizes intracavity;
Or, described converging inlet is non-circular.
Further, described stationary knife is shearing cylinder, and the side wall of described shearing cylinder is provided with shearing perforation, and described shearing cylinder
It is fixed on the bottom of crushing chamber.
Further, described moving knife is in foliaceous, and moving knife includes horizontal cutting edge and opposite cutting edge bends downwards
Shear blade, described shear blade with shearing cylinder on shearing perforation cooperatively form shearing cooperation;
Or, described moving knife is cylindrical in shape, and described moving knife is included the shearing inner core being matched with shearing cylinder and is fixed on motor
Cutting blade on axle, described shearing inner core is provided with the shearing endoporus corresponding with shearing perforation, and described shearing inner core with
Cutting blade is integrally formed.
Further, described stationary knife includes the quiet grind section with tubular and the quiet cut part with plate-like, described quiet grinds
Mill portion is in run through to be provided with quiet tooth lapping in structure, and the inwall of quiet grind section, and described quiet cut part is located at the bottom of quiet grind section
Portion, and the bottom of described quiet cut part is provided with downwardly projecting quiet shearing tooth, described moving knife includes and the cooperation of quiet grind section
Dynamic grind section and the dynamic cut part with the cooperation of quiet cut part, described dynamic cut part is located at the bottom of dynamic grind section, and described moving is cut
Cut that portion is disc-shaped, and the top of dynamic cut part is provided with the internal ring gear mutually sheared with the inner side of quiet shearing tooth and quiet shearing tooth
Outer ring tooth and the cut groove being located between internal ring gear and outer ring tooth that outside is mutually sheared, in described quiet shearing tooth insertion cut groove,
Described dynamic grind section is in the form of a column, and dynamic grind section is set in the inner side of quiet grind section, described dynamic grind section include grinding matrix and
It is arranged at the extrusion head grinding baseline top, the outer wall of described grinding matrix is provided with the dynamic grinding corresponding with quiet tooth lapping
Tooth, described extrusion head and quiet tooth lapping form extruding cooperation.
Further, the outlet of described circulation line is arranged on the side wall of back cavity, vertical projection when horizontal plane, institute
The line stating center to the container center of outlet is l1, and during circulating pulp-making, the serosity ejecting from exit is inclined with l1
Spray regime, the horizontal-jet angle that the serosity of injection is formed with l1 is β, wherein, 0≤β≤60 °;
Or, the outlet of described circulation line is arranged on the side wall of back cavity, during circulating pulp-making, ejects from exit
Serosity horizontal by spray regime diagonally downward, the vertical jet angle that the serosity of injection is formed with horizontal plane is θ, its
In, 0≤θ≤60 °;
Or, the inwall of described back cavity is provided with water level tag line, the outlet of described circulation line is located at water level stake
Know more than line;
Or, the entrance of described circulation line is arranged on the side wall of crushing chamber, and porch is provided with backgauge part.
Further, described motor load rotating speed is at least 10000r/min;
Or, described circulation line is provided with slurry outlet nozzle and control valve, described slurry outlet nozzle is connected with circulation line, described
Control valve is used for controlling slurry outlet nozzle pulp, and control valve is arranged between slurry outlet nozzle and circulation line;
Or, it is provided with heater outside described back cavity, described heater is located at below the outlet of circulation line;
Or, the capacity of described crushing chamber is 50ml ~ 400ml.
After technique scheme, because container has crushing chamber and back cavity, crushing chamber passes through conflux with back cavity
Mouth connection, and, the mouth area of converging inlet is less than the oral area of any horizontal cross-section on the back cavity of circulation line outlet lower section
Area, therefore, can be concentrated through converging inlet from the serosity of back cavity backflow and flow back to pulverizing intracavity, converging inlet has aggregation
Material flows into participation pulverizing in crushing chamber it is ensured that material can be transferred through converging inlet.Meanwhile, reducing mechanism is disposed on pulverizing intracavity,
Therefore, the material flowing into from converging inlet can carry out concentrating in less pulverizing intracavity to be pulverized, and material enters in pulverizing intracavity
Row is concentrated when pulverizing, and due to persistently there being serosity to flow to crushing chamber from converging inlet in back cavity, the material pulverizing intracavity is subject to conflux
Slurry pressure effect above mouthful, material is not easy to run out of from crushing chamber and enter in back cavity, and therefore, material is concentrated
Carry out concentrating the efficiency pulverized higher in pulverizing intracavity.In addition, pulverizing intracavity, when motor drives moving knife high-speed rotation, move
Knife can drive slurry stream to make the centrifugal motion of high speed, because the entrance of circulation line is arranged at pulverizing intracavity, makees centrifugal motion
Slurry stream can be subject to inertia force effect to enter into circulation line from porch, and, because moving knife persistently makees the rotation of high speed
Motion, the slurry stream that follow-up slurry stream enters in circulation line before persistently promoting is back to back cavity from exit
Interior.Therefore, the moving knife of food processor of the present utility model while comminuting matter, make by the water circulation that pushes away also with strength
With it is ensured that serosity can be circulated circulation inside and outside circulation line.Compared to regulation machine of the prior art, need to install
For abrasive disk and pressing mechanism, food processor of the present utility model, structure is simple, and cost is relatively low, and can carry out automatically
Cleaning.
Brief description
The utility model is described in further detail below in conjunction with the accompanying drawings:
Fig. 1 is the structural representation of this utility model embodiment one;
Fig. 2 is the structural representation of this utility model embodiment two;
Fig. 3 is the structural representation of stationary knife in embodiment two;
Fig. 4 is the structural representation of moving knife in embodiment two;
Fig. 5 is the structural representation of this utility model embodiment three;
Fig. 6 is the structural representation of moving knife in Fig. 5;
Fig. 7 is the mplifying structure schematic diagram at a in Fig. 5;
Fig. 8 is the cross section structure schematic diagram of horizontal plane m in Fig. 5;
Fig. 9 is the top view of reducing mechanism in embodiment three;
Figure 10 is the mplifying structure schematic diagram at b in Fig. 5;
Figure 11 is the structural representation of this utility model example IV;
Figure 12 is the decomposition texture schematic diagram of reducing mechanism in Figure 11;
Figure 13 is the structural representation of moving knife in Figure 11.
Specific embodiment
Embodiment one:
As shown in figure 1, the structural representation for the first embodiment of this utility model.A kind of food processor, this food
The reducing mechanism of processing machine, including container 1a, the reducing mechanism 2a being arranged in container 1a and the circulation connecting container up and down
Pipeline 3a, described reducing mechanism 2a pass through motor 4a and drive driving, and described circulation line 3a is arranged at outside of containers, described container
1a includes the crushing chamber 11a positioned at container bottom, the back cavity 12a above crushing chamber 11a and connects crushing chamber 11a and return
The converging inlet 13a of stream chamber 12a, described reducing mechanism 2a are arranged in crushing chamber 11a, and described reducing mechanism 2a includes being fixed on electricity
Moving knife 21a on the arbor and stationary knife 22a being fixed on pulverizing intracavity, described moving knife 21a and stationary knife 22a cooperation is formed to material cuts
Cut pulverizing, described converging inlet 13a is arranged at the top of moving knife 21a, the entrance 31a of described circulation line is located in crushing chamber 11a,
The outlet 32a of described circulation line is located in back cavity 12a.
Food processor in the present embodiment is soy bean milk making machine, and this soy bean milk making machine has head and cup, wherein, cup
For double-decker, including in cup and shell 10a, wherein, described container 1a is the interior cup of this soy bean milk making machine, circulation line
3a is hidden in the interlayer between interior cup and shell 10a, and motor 4a is arranged inside head.In the present embodiment, described conflux
The mouth area of mouth 13a is less than the mouth area of any horizontal cross-section on the back cavity 12a below circulation line outlet 32a.
In the present embodiment, because container has crushing chamber and back cavity, crushing chamber is connected by converging inlet with back cavity, and
And, the mouth area of converging inlet is less than the mouth area of arbitrarily horizontal cross-section on the back cavity of circulation line outlet lower section, therefore,
Converging inlet can be concentrated through flow back to pulverizing intracavity from the serosity of back cavity backflow, converging inlet has aggregated material it is ensured that material
Can be transferred through converging inlet and flow into participation pulverizing in crushing chamber.Meanwhile, reducing mechanism is disposed on pulverizing intracavity, therefore, from conflux
The material that mouth flows into can carry out concentrating pulverizing in less intracavity of pulverizing, and material carries out concentrating pulverizing in pulverizing intracavity
When, due to persistently there being serosity to flow to crushing chamber from converging inlet in back cavity, the material pulverizing intracavity is subject to starching above converging inlet
Action of hydraulic force, material is not easy to run out of from crushing chamber and enter in back cavity, and therefore, material is focused into pulverizing intracavity
Carry out concentrating the efficiency pulverized higher.In addition, pulverizing intracavity, when motor drives moving knife high-speed rotation, moving knife can drive slurry
Liquor stream makees the centrifugal motion of high speed, and because the entrance of circulation line is arranged at pulverizing intracavity, the slurry stream making centrifugal motion can be subject to
Enter into circulation line to inertia force effect from porch, and, because moving knife persistently makees the rotary motion of high speed, follow-up
The slurry stream that slurry stream enters in circulation line before persistently promoting is back to backflow intracavity from exit.Therefore, this reality
While comminuting matter, also have strength pushes away water circulation effect it is ensured that slurry to the moving knife applying food processor in example
Liquid energy is circulated circulation inside and outside circulation line.Compared to regulation machine of the prior art, need abrasive disk and pressurization are installed
For mechanism, the food processor of the present embodiment, structure is simple, and cost is relatively low, and can automatically be cleaned.
In the present embodiment, stationary knife is fixed on the bottom of head, and stationary knife forms shearing with moving knife cooperation to material and pulverizes.Need
Illustrate, the circulation line in the present embodiment only has one naturally it is also possible to arrange many.And, for the present embodiment institute
The technique effect producing, other embodiments of the present utility model also have, and when describing for other embodiments effect, will differ
One repeats.
Embodiment two:
As shown in Figure 2, Figure 3, Figure 4, be this utility model second embodiment structural representation.Different from embodiment one
Part be: the food processor in the present embodiment be provided with motor at lower formula structure, described converging inlet 13a in a tubular form, described conflux
Mouth 13a has water inlet end 131a and water side 132a, and described water inlet end 131a is arranged in back cavity 12a, described water side
132a is located in crushing chamber 11a.And, slurry outlet nozzle 33a and control valve 34a, described pulp are provided with described circulation line 3a
Mouth 33a is connected with circulation line 3a, and described control valve 34a is used for controlling slurry outlet nozzle 33a pulp, and control valve 34a is arranged at out
Between slurry mouth 33a and circulation line 3a.By arranging control valve 34a and slurry outlet nozzle 33a, after the completion of slurrying, user just can be straight
Connected control control valve 34a to implement to drink product and drink.
Stationary knife 22a in the present embodiment is shearing cylinder, and the side wall of described shearing cylinder is provided with shearing perforation 221a, and described
Shearing cylinder is fixed on the bottom of crushing chamber 11a, in addition, described moving knife 21a is in foliaceous, and moving knife 21a includes horizontal cutting
Shear blade 212a of sword 211a and opposite cutting edge 211a bending downwards, described shear blade 212a and the shearing perforation sheared on cylinder
221a cooperatively forms shearing cooperation.
In the present embodiment, the entrance of circulation line is arranged on the side wall of crushing chamber, and shearing perforation just enters to circulation line
Mouthful setting, so clipped after material and serosity, by the centrifugation thrust of moving knife, circulation line can be entered directly into
Interior, the resistance that slurry stream is subject to is less.And, in the present embodiment, converging inlet is arranged to tubular structure, serosity enters from water inlet end
Enter, flow out from water side, material has effect, the material of accelerated mistake and the slurry of gravity acceleration during converging inlet
After liquid clashes into the cutting edge on moving knife, greatly coarse pulverization can be carried out to material so that the material after coarse pulverization can
Enter in shear blade and the cooperation of shearing perforation and carry out shearing pulverizing, so can more in degree, material be pulverized, lifting
The crush efficiency of material.Meanwhile, converging inlet is arranged to tubular structure, the material collision being also prevented from pulverizing intracavity is dynamic
Back cavity rebound back after knife it is also possible to prevent the serosity pulverizing intracavity from when being cut sword collision, violent splashing occurring, and causes
Consumer's scald accident.
It should be noted that for further improving material the cycle efficieny in circulation line, for the present embodiment come
Say, can be with lifting motor rotating speed.The present inventor finds according to research, and the load speed of motor is more than more than 10000r/min,
Serosity can preferably be circulated inside and outside circulation line.Meanwhile, the present inventor also finds according to research, reduces crushing chamber
Capacity can also accordingly lift the cycle efficieny of serosity, and moving knife promotes efficiency bigger the centrifugation of serosity.The present embodiment is come
Say, the capacity of crushing chamber is generally 50ml ~ 400ml, wherein, if the slurrying amount of container is in 600ml ~ 1300ml, crushing chamber
Capacity is preferably 50ml ~ 180ml;If the slurrying amount of container is more than 1300ml, the capacity of crushing chamber be preferably 100ml ~
300ml.It should be noted that the said structure deformation of the present embodiment and parameter are chosen, for other enforcements of the present utility model
Example can also be suitable for.
Embodiment three:
As shown in Fig. 5, Fig. 6, Fig. 7, Fig. 8, it is the structural representation of the third embodiment of this utility model.With embodiment two
Difference is: in the present embodiment, the bottom of described back cavity 12a has to the raised conflux portion 14a of container center, and poly-
The top surface relative level of stream portion 14a is downward-sloping, and the inclination angle of conflux portion 14a relative level is generally less than 80 °.Due to poly-
Stream portion 14a is in inverted cone, the material of backflow and serosity can be collected so that material is easier to flow into from converging inlet.With
When, described crushing chamber 11a top is provided with restriction occlusion part 15a(occlusion part 15a in crushing chamber 11a for the material and can enter one
Walk prevents material driven knife collision rift, and ejects crushing chamber 11a), wherein, converging inlet 13a runs through conflux portion 14a and occlusion part
15a is arranged.The entrance 31a of the circulation line in the present embodiment is arranged at the side wall of crushing chamber 11a, and, described circulation line
Entrance 31a at be provided with backgauge part 5a, this backgauge part 5a can prevent that bulk materials are not crushed to enter into circulation line
In, thus there being the risk causing circulation line blocking.In addition, being provided with heater 6a outside described back cavity 12a, described plus
Thermal 6a is located at the lower section of the outlet 32a of circulation line.
In the present embodiment, described moving knife is cylindrical in shape, described moving knife include with the shearing shearing inner core 213a that matches of cylinder and
It is fixed on the cutting blade 214a on motor shaft, described shearing inner core 213a is provided with the shearing endoporus corresponding with shearing perforation
215a, and described shearing inner core 213a and cutting blade 214a be integrally formed.It should be noted that for the present embodiment,
Setting can also be similar to blade construction on the outer wall of shearing cylinder, increase serosity in circulation using the strength pushing effect of water of blade
Cycle rate inside and outside pipeline.
In the present embodiment, described converging inlet is square, when serosity is from the outlet of circulation line is sprayed to back cavity, slurry
Liquid can rotate along the inwall of back cavity.Because converging inlet is square, when serosity rotates to converging inlet, serosity collides
To converging inlet turning when it may occur that turbulent flow, thus being easier to enter into pulverizing intracavity.If converging inlet is circle, the slurry of rotation
Liquor stream is possible to throw away under the action of the centrifugal force, thus being not easily accessed pulverizing intracavity, therefore, for the present embodiment,
Converging inlet can also be the other non-circular structures including square.
In the present embodiment, the outlet setting of circulation line is also an important feature of the present embodiment.Top for container
When portion is provided with the structure of container cover, the outlet of circulation line can be arranged in container cover, or directly run through container cover and stretch
Enter to backflow intracavity.For the present embodiment, the outlet of circulation line is arranged on the side wall of back cavity.And, this enforcement
Circulation line outlet in example is in more than the water level tag line of container, because, when circulation line outlet is located at water level mark
When more than line, when the slurry stream ejecting from exit is back to backflow intracavity, have the effect that a gravity accelerates, thus
Line disturbance can be entered to slurry stream original in container, not only can ensure that serosity can smoothly enter pulverizing intracavity, also
Beneficial to comminuting matter.
As shown in figure 9, for the top view of food processor in the present embodiment, vertical projection when horizontal plane, described outlet
The line of center to container center be l1, during circulating pulp-making, the serosity that ejects from the exit spurting inclined with l1
State, the serosity of injection forms horizontal-jet angle beta with l1.The present inventor finds according to research, when the outlet of circulation line is arranged to
When the serosity of injection is at an angle β with l1, container side wall can be carried out from the serosity of exit injection, and, eject
Serosity along back cavity side wall dirty when be also less likely to occur splash phenomena.In the case of ensureing safety, can also realize to appearance
The cleaning of device.And, the present inventor according to research find, for the present embodiment it is desirable to, 0≤β≤60 °.Need explanation
, under this structure, the slurry stream ejecting from the exit of circulation line can carry out violent rotation in backflow intracavity, if
Now, if the direction of rotation of slurry stream is contrary with the direction of rotation of moving knife, the slurry stream of this rotation is conducive to further to powder
The slurry stream of broken intracavity carries out disorder, thus the further pulverized efficiency of improving material.
As shown in Figure 10, be food processor in the present embodiment front view.During circulating pulp-making, eject from exit
Serosity forms vertical jet angle θ horizontal by spray regime diagonally downward, the serosity of injection and horizontal plane.Due to from outlet
The serosity that place ejects can rotate along the inwall of back cavity, and the spray regime that serosity is tilted down, Ke Yishi
When entering into converging inlet, the slurry stream tilting injection can carry out disorder, flow-disturbing to the slurry stream of rotation, thus ensureing to existing serosity
Slurry stream no longer rotates motion when entering into converging inlet.And, the present inventor finds according to research, for the present embodiment
For it is desirable to, 0≤θ≤60 °.
For the present embodiment, when outlet and the back cavity side wall of circulation line be both formed with horizontal-jet angle, and shape
When becoming to have vertical jet angle, the slurry stream of injection not only can upset the slurry stream that backflow intracavity makees gyration, can also be big
The big lifting cutting stock-removing efficiency to material for the blade.Certainly, it should be noted that the outlet of circulation line is installed on back cavity
Form on the wall of side can also only only have a kind of above-mentioned horizontal-jet angle, vertical jet angle setting structure therein.
In addition, for the present embodiment, heater is disposed on the side wall of back cavity, and go out positioned at circulation line
The lower section of mouth, mainly considers that the serosity of the serosity pulverizing intracavity relatively of backflow intracavity is diluter, is not easy appearance paste during heating
The phenomenon of pot.And, when making the beverage of many person-portions, can directly carry out adding water blending in backflow intracavity, at this point it is possible to directly
Connect and back cavity is heated, the efficiency of heating surface is higher.Certainly, the outer wall of crushing chamber can also be arranged another one heating dress
Put, the efficiency of heating surface of this food processor can be lifted further, realize quickly preparing cement paste.It should be noted that in the present embodiment
In, the setting of heater is not limited to the structure of the present embodiment, for any mode of heating of the prior art, the present embodiment
All can adopt.Also, it should be noted the conflux portion relative level in the present embodiment is downward-sloping, and for conflux portion with
During plane-parallel, also enable the effects on slurry making of the present embodiment, now, in conflux portion, particularly conflux portion and back cavity connect
There is the phenomenon of accumulated slag in the corner connecing, is unfavorable for that material enters converging inlet interior circulation, now, if increase the serosity of backflow intracavity
Flow-disturbing effect is it is possible to solve the phenomenon of material accumulated slag.
The present embodiment has above-described embodiment identical beneficial effects, and here is omitted.Furthermore, it is desirable to explanation,
For the said structure change of the present embodiment and the selection of parameter, other embodiments of the present utility model all can be suitable for.
Example IV:
As shown in Figure 11, Figure 12, Figure 13, it is the structural representation of the 4th kind of embodiment of this utility model.The present embodiment with
Embodiment three difference is that the structure shearing reducing mechanism is different: described stationary knife includes quiet grind section 23a with tubular
With the quiet cut part 24a with plate-like, described quiet grind section 23a is in run through to be provided with structure, and the inwall of quiet grind section 23a
Quiet tooth lapping 231a, described quiet cut part 24a are located at the bottom of quiet grind section 23a, and the bottom setting of described quiet cut part 24a
Have downwardly projecting quiet shearing tooth 241a, described moving knife include with quiet grind section 23a cooperation dynamic grind section 25a and with quiet shearing
The dynamic cut part 26a of portion 24a cooperation, described dynamic cut part 26a are located at the bottom of dynamic grind section 25a, and described dynamic cut part 26a
Disc-shaped, and the top of dynamic cut part 26a is provided with the internal ring gear 261a mutually being sheared with the inner side of quiet shearing tooth 241a and cut with quiet
Outer ring tooth 262a and the cut groove 263a being located between internal ring gear 261a and outer ring tooth 262a that the outside of cutting 241a is mutually sheared,
In described quiet shearing tooth 241a insertion cut groove 263a, described dynamic grind section 25a is in the form of a column, and dynamic grind section 25a be set in quiet
The inner side of grind section 23a, described dynamic grind section 25a includes grinding matrix 251a and is arranged at the extruding grinding matrix 251a top
The outer wall of head 252a, described grinding matrix 251a is provided with the dynamic tooth lapping 2511a corresponding with quiet tooth lapping 231a, described crowded
Pressure head 252a and quiet tooth lapping 231a forms extruding cooperation.Meanwhile, it is additionally provided with impeller in the bottom being located at dynamic cut part 26a
27a, impeller 27a can lift the cycle rate of slurry stream.
In the present embodiment, extrusion head carries out first of coarse pulverization with dynamic tooth lapping cooperation to material, and bulk materials are squeezed
Crush broken, the material after pulverizing enters into the milling zone between dynamic tooth lapping and quiet tooth lapping, the coarse pulverization carrying out second is ground
Mill, after the coarse pulverization of second, the bottom of the driven grind section of mixture of material and serosity is flowed out, enter into internal ring gear with
The fine powder proceeding by first in the shear zone of quiet shearing tooth is broken, meanwhile, the material that flows out from internal ring gear, also suffer from
The second fine pruning of quiet shearing tooth and outer ring tooth cuts pulverizing.After pulverizing through above-mentioned four roads, the mixture of material and serosity just may be used
To enter from the circulation line entrance being arranged at crushing chamber side wall, drive because moving knife is driven by motor shaft, in centrifugal force not
Under disconnected effect, follow-up serosity persistently promotes aforesaid slurry stream to flow into backflow intracavity from the outlet of circulation line, proceeds to follow
Ring is pulverized.Therefore, the reducing mechanism of the present embodiment is higher to the crush efficiency of material, prepared serosity beverage delicate mouthfeel, complete
Entirely do not need to filter bean dregs.It should be noted that being provided with twice coarse pulverization in the present embodiment and twice fine powder is broken, therefore pulverize
In hgher efficiency, material is pulverized finer and smoother, and for the present embodiment, coarse pulverization can also be respectively provided with one with fine powder is broken
Road, or it is not provided with coarse pulverization etc., it should be noted that the said structure of the present embodiment is readily adaptable for use in this utility model
Other embodiments.
Food processor of the present utility model, both can be for being provided with motor at lower formula structure or motor top load arrangement.
And, this can be soy bean milk making machine or other food processors without heating function with new food processor.
Those of ordinary skill in the art should be understood that this utility model includes but is not limited to accompanying drawing and retouches in specific embodiment above
The content stated.Any modification without departing from function and structure principle of the present utility model is intended to be included in the scope of claims
In.
Claims (10)
1. a kind of food processor, the circulation line including container and container being connected up and down, it is provided with described container
Reducing mechanism that motor drives it is characterised in that: described container includes crushing chamber positioned at container bottom, is located above crushing chamber
Back cavity and the converging inlet connecting crushing chamber and back cavity, described reducing mechanism is arranged at pulverizing intracavity, and reducing mechanism bag
Include the moving knife being fixed on motor shaft and be fixed on the stationary knife pulverizing intracavity, described moving knife forms shearing with stationary knife cooperation to material
Pulverize, described converging inlet is arranged at the top of moving knife, the entrance of described circulation line is located at pulverizes intracavity, described circulation line
Outlet is located at backflow intracavity, and the mouth area of described converging inlet is less than any level on the back cavity of circulation line outlet lower section and cuts
The mouth area in face.
2. according to claim 1 food processor it is characterised in that: the bottom of described back cavity has convex to container center
The conflux portion risen, described converging inlet runs through the setting of conflux portion.
3. according to claim 2 food processor it is characterised in that: described conflux portion relative level is downward-sloping.
4. according to claim 1 food processor it is characterised in that: described pulverizing top of chamber be provided with restriction material in powder
The occlusion part of broken intracavity, described converging inlet runs through occlusion part setting.
5. according to claim 1 food processor it is characterised in that: in a tubular form, described converging inlet has described converging inlet
Water inlet end and water side, described water inlet end is arranged at backflow intracavity, and described water side is located at pulverizes intracavity;
Or, described converging inlet is non-circular.
6. according to claim 1 food processor it is characterised in that: described stationary knife be shearing cylinder, the side of described shearing cylinder
Shearing perforation is provided with wall, and described shearing cylinder is fixed on the bottom of crushing chamber.
7. according to claim 6 food processor it is characterised in that: described moving knife is in foliaceous, and moving knife includes laterally
Cutting edge and opposite cutting edge bending downwards shear blade, described shear blade cooperatively forms shearing with the shearing perforation on shearing cylinder
Cooperation;
Or, described moving knife is cylindrical in shape, and described moving knife is included the shearing inner core being matched with shearing cylinder and is fixed on motor shaft
Cutting blade, described shearing inner core is provided with the shearing endoporus corresponding with shearing perforation, and described shearing inner core and cutting
Blade is integrally formed.
8. according to claim 1 food processor it is characterised in that: described stationary knife include having tubular quiet grind section and
There is the quiet cut part of plate-like, described quiet grind section is in run through to be provided with quiet tooth lapping in structure, and the inwall of quiet grind section, institute
State the bottom that quiet cut part is located at quiet grind section, and the bottom of described quiet cut part is provided with downwardly projecting quiet shearing tooth, institute
State moving knife to include and the dynamic grind section of quiet grind section cooperation and the dynamic cut part with the cooperation of quiet cut part, described dynamic cut part is located at
The bottom of dynamic grind section, and described dynamic cut part is disc-shaped, and the top of dynamic cut part is provided with the inner side phase with quiet shearing tooth
Outer ring tooth and the cut groove being located between internal ring gear and outer ring tooth that the internal ring gear of shearing is mutually sheared with the outside of quiet shearing tooth,
In described quiet shearing tooth insertion cut groove, described dynamic grind section is in the form of a column, and dynamic grind section is set in the inner side of quiet grind section, institute
State grind section to include grinding matrix and be arranged at the extrusion head grinding baseline top, the outer wall of described grinding matrix be provided with
The corresponding dynamic tooth lapping of quiet tooth lapping, described extrusion head and quiet tooth lapping form extruding cooperation.
9. according to any one of claim 1 to 8 food processor it is characterised in that: the outlet of described circulation line setting
On the side wall of back cavity, when horizontal plane, the line of center to the container center of described outlet is l1 to vertical projection, circulation system
During slurry, the serosity that ejects from the exit spray regime inclined with l1, the horizontal-jet angle that the serosity of injection is formed with l1
For β, wherein, 0≤β≤60 °;
Or, the outlet of described circulation line is arranged on the side wall of back cavity, during circulating pulp-making, the slurry that ejects from exit
Horizontal by spray regime diagonally downward, the vertical jet angle that the serosity of injection is formed with horizontal plane is θ to liquid, wherein, 0≤
θ≤60°;
Or, the inwall of described back cavity is provided with water level tag line, the outlet of described circulation line is located at water level tag line
More than;
Or, the entrance of described circulation line is arranged on the side wall of crushing chamber, and porch is provided with backgauge part.
10. according to any one of claim 1 to 8 food processor it is characterised in that: described motor load rotating speed is at least
10000r/min;
Or, described circulation line is provided with slurry outlet nozzle and control valve, described slurry outlet nozzle is connected with circulation line, described control
Valve is used for controlling slurry outlet nozzle pulp, and control valve is arranged between slurry outlet nozzle and circulation line;
Or, it is provided with heater outside described back cavity, described heater is located at below the outlet of circulation line;
Or, the capacity of described crushing chamber is 50ml ~ 400ml.
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CN201620369262.XU CN205885327U (en) | 2016-04-28 | 2016-04-28 | Food processor |
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CN201620369262.XU CN205885327U (en) | 2016-04-28 | 2016-04-28 | Food processor |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2023201398A1 (en) * | 2022-04-21 | 2023-10-26 | Intohealth International Pty Ltd | Plant based milk system |
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2016
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2023201398A1 (en) * | 2022-04-21 | 2023-10-26 | Intohealth International Pty Ltd | Plant based milk system |
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