CN208926005U - Move and grind, grinding assembly and food processor - Google Patents
Move and grind, grinding assembly and food processor Download PDFInfo
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- CN208926005U CN208926005U CN201721487292.1U CN201721487292U CN208926005U CN 208926005 U CN208926005 U CN 208926005U CN 201721487292 U CN201721487292 U CN 201721487292U CN 208926005 U CN208926005 U CN 208926005U
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Abstract
An object of the utility model is to provide a food processor and grinding assembly, its structure is favorable to moving the dismantlement of grinding, is convenient for wash. According to the utility model discloses a grinding component of a movable grinder for a food processor, wherein, the inner wall of a cylindrical movable grinder body is provided with movable grinding teeth; the shaft lever combining part is positioned at the top end of the cylindrical dynamic grinding body; the shaft rod combining part comprises an extracting part, and the extracting part extends outwards in the lateral direction and protrudes out of the outer wall of the cylindrical movable grinding body so as to facilitate extraction.
Description
Technical field
The utility model relates to food cooking machine grinding assemblies.
Background technique
Such as the food cooking machine of food cooking machine class is just extensively by the welcome of domestic consumer.In general, this kind of food
Object cooking machine all has the function of food crushing, heating etc., and the automatic cooking of food materials may be implemented, and nutritive value is high, deep to be consumed
Person likes, so that the life to consumer offers convenience.
In market, existing product form is essentially head overhead product to food cooking machine at present, that is, motor and blade
It is all set at head, row is rotated by motor band cutting blade and crushes cutting.Also there is part to be ground using emery wheel in the market
The product of mill.
The grinding assembly of food cooking machine includes dynamic mill and quiet mill, and dynamic mill is built in quiet mill, and dynamic mill can be driven by motor,
It is rotated relative to quiet mill, and then food materials is ground, dynamic grinding-in is equipped with guide portion, and guide portion generates radial adsorption capacity, is used for
Food materials are sucked from lateral import.
Such grinding assembly needs to dismantle on quiet mill in the dynamic mill of cleaning, but quiet mill is easy quilt in use for some time
It is stuck, it is difficult to dismantle.
Utility model content
The purpose of this utility model is to provide a kind of food cooking machine and grinding assembly, structure is conducive to tearing open for dynamic mill
It unloads, convenient for cleaning.
The grinding assembly of food cooking machine is used for according to a kind of dynamic mill of the utility model one side, wherein the dynamic mill of tubular
Internal wall is provided with dynamic roll flute;Shaft binding site moves mill body top in the tubular;The shaft engaging portion includes extraction unit,
The extraction unit extends laterally outward and protrudes from the outer wall that the tubular moves mill body, is extracted with facilitating.
In one embodiment, the shaft engaging portion includes plectane and protrudes from plectane diametrical direction both ends convex
Ear, the outer diameter of the plectane are less than the internal diameter that the tubular moves mill body top, and the lug moves mill body with the tubular and connects respectively
It connects, and moves mill body projecting radially out tubular, form the extraction unit.
In one embodiment, the top that the tubular moves mill body provides card slot at diametrical direction both ends respectively, described convex
Ear and the card slot are rigidly connected.
In one embodiment, it is convex that the top that the tubular moves mill body at its described diametrical direction both ends is protruding with two respectively
The card slot is limited between the top end face of the dynamic mill body of column, two pillar and the tubular.
In one embodiment, the lower surface of the plectane of the shaft engaging portion and the tubular move the top of mill body
It is concordant between end face.
In one embodiment, the shaft engaging portion has annulus, and the annulus moves mill body periphery around the tubular
Side is simultaneously threadedly coupled with it, forms axial step in junction, the axial step forms the extraction unit.
In one embodiment, the shaft engaging portion further includes plectane, and the plectane center has to be driven with a shaft
The structure of connection, the outer diameter of the plectane are less than the internal diameter of the annulus, pass through interval between the plectane and the annulus
Dowel connection.
In one embodiment, it is described it is dynamic mill further include smashing portion, the smashing portion include from the tubular move mill body to
The blade extended outside.
It include dynamic mill, quiet mill and shaft assemblies, the axis according to a kind of grinding assembly of the utility model another aspect
Bar assembly includes shaft, and the dynamic mill grinds material with the quiet grinding-in conjunction, and the dynamic mill is any dynamic mill.
A kind of food cooking machine according to the utility model another further aspect includes cover assembly, cup body component and pedestal group
Part, cover assembly cover the upper opening of cup body component, and the setting of cup body component is equipped with drive inside base assembly, base assembly
Dynamic motor is provided with the grinding assembly, the shaft and the driving motor of the grinding assembly in cup body component
Transmission connection.
Mill body is moved in one direction relative to the tubular in grinding assembly according to the present utility model, the shaft engaging portion
Both ends protrude respectively, part outstanding forms extraction unit, therefore dynamic mill easy to disassemble is cleaned.
Detailed description of the invention
The above and other feature, property and advantage of the utility model will be by with reference to the accompanying drawings and examples
Description and become readily apparent from, in which:
Fig. 1 is the perspective view of food cooking machine in an embodiment of the present invention;
Fig. 2 is the half sectional view of food cooking machine in an embodiment of the present invention;
Fig. 3 is the decomposition view of food cooking machine in an embodiment of the present invention;
Fig. 4 is the base assembly of food cooking machine in an embodiment of the present invention, cup body component and cover assembly separation
When three-dimensional view;Fig. 5 is the perspective view of the grinding assembly of food cooking machine in an embodiment of the present invention;
Fig. 6 is the cross-sectional view of grinding assembly shown in Fig. 5;
Fig. 7 is the decomposition view of grinding assembly shown in Fig. 5;
Fig. 8 is the partial enlarged view of food cooking machine in an embodiment of the present invention;
Fig. 9 A-9F is side view, main view and the cross-sectional view of the different angle of the dynamic mill of grinding assembly shown in Fig. 5;
Figure 10 A-10B is the perspective view of the different angle of the quiet mill of grinding assembly shown in Fig. 5;
Figure 11 A-11B is the perspective view of the different angle of the pedestal of the shaft assemblies of grinding assembly shown in Fig. 5;
Figure 12 is the locking assembly of the utility model grinding assembly and the decomposition view of shaft
Figure 13 is the cross-sectional view of the utility model grinding assembly locking assembly, is mounted with dynamic mill and quiet mill thereon;
Figure 14 is the part isometric exploded view of locking assembly shown in Figure 13.
Figure 15 is the decomposition view of a transformation embodiment of the dynamic mill of the utility model grinding assembly;
Figure 16 is the cross-sectional view that mill is moved shown in utility model Figure 15;
Figure 17 is the cross-sectional view that the grinding assembly of mill is moved shown in the utility model corresponding diagram 15.
Figure 18 is the decomposition view of a transformation embodiment of the dynamic mill of the utility model;
Figure 19 is the cross-sectional view that mill is moved shown in Figure 18.
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 Fig. 1 to Figure 11 B shows one embodiment of the utility model, these and it is subsequent other
Attached drawing only as an example, it is drawn according to the condition of equal proportion, and should not be in this, as to this is practical
The protection scope of novel actual requirement is construed as limiting.
Fig. 1 to Fig. 4 shows the structure of the food cooking machine of one embodiment.Fig. 5 to Fig. 7 is shown in one embodiment
The structure of grinding assembly.Fig. 8 shows grinding assembly in the configuration of bottom of cup.Fig. 9 A to Fig. 9 E shows the structure of dynamic mill,
Figure 10 A, Figure 10 B show the structure of quiet mill.
As shown in Figures 1 to 4, which mainly includes cover assembly 101, cup body component 102 and base assembly
103.Cover assembly 101 covers the upper opening of cup body component 102, and grinding assembly 104, cup body are arranged in cup body component 102
Component 102 is arranged on base assembly 103.102 side of cup body component is provided with handle 105, user is facilitated to take.
In the embodiment shown in Fig. 1 to Fig. 4, food cooking machine 100 is a kind of provided with motor at lower formula cooking machine, i.e. pedestal group
The structures such as driving motor 106 and corresponding circuit are installed inside part 103.Grinding assembly 104 includes aftermentioned dynamic mill 107 and quiet
Mill 108 and shaft assemblies 109.
Cup body component 102 includes cup body 1020, heat-generating disc 1021, fever disc carrier 1022, coupler bracket 1023, coupling
Device 1024, cup holder 1025.1020 bottom of cup body is fixedly connected with heat-generating disc 1021, and heat-generating disc 1021 is located in fever disc carrier 1022
On, fever 1022 bottom wall of disc carrier is equipped with fever disc carrier 1023, and upper coupler 1024, hair are carried on the disc carrier 1023 that generates heat
Hot plate bracket 1022, coupler bracket 1023 are arranged in cup holder 1025, and heat-generating disc 1021,1020 bottom of cup body are by cup holder
1025 receive, and are sealed between 1020 bottom opening of heat-generating disc 1021 and cup body by sealing element 10,11, heat-generating disc 1021, fever
Disc carrier 1022, coupler bracket 1023, cup holder 1025 have centre bore, pass through for grinding assembly 104, as described later, by grinding
The bearing holder (housing, cover) for grinding the shaft assemblies of component 104 passes through, which is threadedly coupled locking nut 1029 again, thus by heat-generating disc
1021, fever disc carrier 1022, coupler bracket 1023, cup holder 1025 are fastenedly connected.Upper coupler 1024 and base assembly 103
On coupler 1031 dock, to heat-generating disc 1021 power.The shaft 111 of grinding assembly 104 passes through the bearing holder (housing, cover), bottom
Connect upper coupling 110.
Lower coupler 112 and motor 106 can be equipped in base assembly 103.Lower coupler 112 is fixed on the defeated of motor 106
It on shaft, is rotated so as to be driven in motor 106, lower coupler 112 and upper coupling 110 connect, and transfer power to axis
Bar 111, shaft 111 transfer power to grinding assembly 104 again, and grinding assembly 104 grinds the food materials in cup body component 102
Mill, cover assembly 101 are covered on cup body component 102, are encircled into the cavity for being used to process food materials with cup body component 102,
Upper coupling 110 is connect with lower coupler 112, and upper coupling 110 can be driven by the rotation of lower coupler 112 as a result,
Rotation, and then upper coupling 110 can drive shaft 111 to rotate.Shaft 111 is fixed in the dynamic mill 107 inside grinding assembly 104,
So as to drive dynamic 107 rotation of mill.Relative motion between the dynamic mill 107 of grinding assembly 104 and quiet mill 108, realizes and grinds
Grind function.
As shown in Fig. 5, Fig. 6, Fig. 7, grinding assembly 104 includes 107, quiet mill 108, shaft assemblies 109 of dynamic mill.As Fig. 9 A is arrived
Shown in Fig. 9 E, moving mill 107 includes that tubular moves mill body 70, shaft engaging portion 74, guide portion and smashing portion.In implementation as shown in the figure
In example, guide portion and smashing portion move mill body 70 with tubular and are combined into one.In embodiment as described later, it is to be understood that cylinder
The all or part that shape moves in mill body 70, shaft engaging portion 74, guide portion and smashing portion can be seperated part.Guide portion packet
It includes and moves two guide blades 73 being arranged on 70 inner wall of mill body in tubular, guide blade 73 can be helical blade, in another implementation
In example, it is also possible to the blade of other forms, can play the equal of axis stream impetus can be with.Smashing portion is included in tubular and moves mill body
Multiple blades 71,72 that 70 outsides are arranged, two blades 71 extend in the horizontal direction, and two blades, 81 relatively horizontal orientation upwarps.Cylinder
The inner wall that shape moves mill body 70 is provided with dynamic roll flute 700, is used to grind.The quantity of blade 71,72 can change, such as smashing portion
It only include two blades, two blades extend in the horizontal direction, can also be more than two blades.
In view of the dynamic balancing of dynamic mill 107, blade can be uniformly distributed within the scope of 360 degree of circumferencial direction.Blade is extremely
Few side has cutting edge, and in Fig. 9 A to Fig. 9 E, illustrating only side has the case where cutting edge, as shown in fig. 9d, cutting edge 710 or
720 directions, such be provided with are conducive to that material is pulled down or pressed, are conducive to be sent to material in grinding assembly 104.Setting
The blade 72 upwarped is also beneficial to enhancing and beats efficiency.The major function of blade 71,72 is before material to be entered to grinding assembly 104
It crushes in advance, the material crushed in advance enters back into grinding assembly 104, is conducive to enhance choke preventing function.As shown in Figure 9 B, knife
Piece 72 upwarps angle a and can select at 10 degree between 25 degree or 0 degree to 30 degree.The blade of each blade can be blunt sword or
Person's sharp sword.In embodiment preferable for choke preventing function, due to being not necessarily to reverse turn operation, blade can be only in direction of rotation side
Blade is set.Such as Fig. 9 A to 9E, still further it can be seen that, the side forward or reverse of the point of a knife of each blade is fillet, on blade
Seamed edge or crest line are preferably both advisable with rounding off, help to maintain the flow pattern of food materials in this way, are reduced and are entered grinding assembly
Resistance.
The two guide blades 73 in guide portion can also quantitatively change, in order to increase the dynamic balancing of dynamic mill 107, guide leaf
Piece 73 is interior uniformly distributed or be distributed with axisymmetrical at 360 degree of circumferencial direction.In the embodiment shown in the drawings, guide blade 73 is
Helical blade, starting point protrude from tubular and move mill body 70, and clearing end is set to tubular and moves in mill body 70, move mill body from tubular
70 inner wall protrusion, spirally extends from starting point to clearing end, in a preferred embodiment, from starting point to clearing end spiral shell
The radial dimension of vane piece is tapered, and as shown in fig. 9e, starting point moves mill body 70 or dynamic mill bottom face relative to tubular and to dash forward
The distance of L1 out, L1 can be selected within the scope of 0 to 6mm, and clearing end is very close to tooth lapping 700.In a preferred embodiment,
The inner wall junction that the upper and lower helicoid and tubular of the axial direction of each helical blade move mill body 70 is arranged to knuckle,
Food materials can be squeezed in feeding in this way toward abrasive areas, to accelerate the grinding rate of food materials, while avoid buildup, it is convenient clear
It washes.
As shown in fig. 9f, the starting point of each helical blade protrudes from the upper helicoid that tubular moves the part of mill body 70
It is arranged to arc surface 730, guidance is also facilitated to feed in this way.As shown in Figure 9 C, the root of blade 71 and tubular move between mill body 70
Junction be also equipped with knuckle 710, this is also avoided that buildup, easy to clean.
With continued reference to Fig. 9 A to Fig. 9 F, tubular moves mill body 70 and is segmented into upper and lower two parts, upper part according to functional area
For tooth lapping 700 to be arranged, lower part is used as the annular support part in guide portion, smashing portion.In the embodiment shown in the drawings, cylinder
The top that shape moves mill body 70 is divided into straight-tube shape, and lower part is divided into the cone cylinder shape of flaring.In one embodiment, it is whole to move mill body 70 for tubular
Body can be cone cylinder shape or straight-tube shape.
With continued reference to Fig. 9 A to Fig. 9 F, shaft engaging portion 74 is arranged in the top that tubular moves mill body 70, and shaft engaging portion 74 exists
It is plectane in embodiment as shown in the figure, middle part has flat position hole 740, and shaft engaging portion 74 and tubular move to be had between mill body 70
It has the gap, quantity, the openings of sizes in these gaps can be varied according to different situations, the discharging as grinding assembly
Mouthful.Flat position hole 740 is passed through by the homalocephalus on the top of shaft 11, and with the connection of realization type face, shaft 11 can be driven dynamic mill whereby
107, uppermost limit of the dynamic mill 107 on shaft 11 can be realized by locking assembly 120 shown in fig. 6.Implement at one
Locking assembly can be nut in example.The embodiment of locking assembly as shown in the figure will be described in detail later.Dynamic mill 107 exists
Lowermost limit on shaft 11 can be realized by the shaft shoulder on shaft 11.Shaft engaging portion 74 is in addition to implementation as shown in the figure
Outside mode, it can also be other modes, such as shaft sleeve part is supported on by the top that tubular moves mill body 70 by supporting rib, for shaft
It passes through.In addition, in the examples described below, another embodiment of shaft engaging portion 74 will be discussed further.
With continued reference to Fig. 9 A to Fig. 9 F, tubular moves mill body 70 as previously mentioned, being tooth lapping 700, blade 71,72, guide leaf
The carrier of piece 73, aftermentioned embodiment also further discuss, and for different function part, tubular moves mill body 70 can be seperated at several
A part is processed respectively with different process.Tooth lapping 700 can be straight-tooth perhaps helical teeth or the tooth lapping of other forms.
As shown in figs. 10 a and 10b, quiet mill 108 is in bar shape, and shaft is provided with tooth lapping, and tooth lapping includes two
Point, lower part is divided into quiet roll flute 810, and top is divided into corase grinding tooth 812.The upper surface of quiet mill 108 has counterbore 815, also has center
Hole 816, shaft 111 are pierced by from centre bore 816.Quiet mill 108 also has positioned at the engaging portion 814 of bottom, during engaging portion 814 is
Empty shape, ring wall are provided with screw thread, are used to connect with the pedestal 91 of shaft assemblies 109.The bottom shaft of quiet mill 108 is tapered
Cone, through the following description, it will be appreciated that tapered column is cone-shaped will be helpful to it is anti-blocking.
As shown in Figure 6 and Figure 7, shaft assemblies 109 include pedestal 91, bearing holder (housing, cover) 92, are provided with two bearings in bearing holder (housing, cover) 92
93, the both ends of bearing holder (housing, cover) 92 are also provided with sealing element 94.Pedestal 91 is separately shown in Figure 11 A, Figure 11 B, has downward
The flange 912 of protrusion and the canister portion 910 protruded upwards at center, pedestal 91 also have centre bore 901.Such as Fig. 6 and Fig. 7 institute
Show, bearing holder (housing, cover) 92 has flange 921, and bearing holder (housing, cover) 92 is located at 91 downside of pedestal, and pedestal 91 is located at quiet 108 downside of mill.Pedestal 91
Canister portion 910 by it is quiet mill 108 engaging portion 814 receive, the two can be threaded connection or other connection types, the two can
To be rigid connection, without disassembly, junction can be sealed by sealing element or sealing material or sealing structure.Bearing
It is connected and fixed between the flange 912 and pedestal 91 of set 92 by means of fastener 90, fastener 90 can be screw or rivet.It is close
Packing 95 passes through and is located at the lower section of flange 912 by bearing holder (housing, cover) 92, and gasket 95 has sealing ring 950 protruding upward, close
Seal 950 is clipped between flange 912 and the downwardly projecting flange 912 of pedestal 91, between bearing holder (housing, cover) 92 and pedestal 91 into
Row sealing.There are also other sealing functions for gasket 95, this will also be further described later.
As shown in fig. 6, the sealing element 94 being located above is fixed in bearing holder (housing, cover) 92, sealing position is in pedestal 91
Between heart hole 901 and shaft 111, sealing element 94 can be oil sealing, and upside is limited by pedestal 91, and downside is limited by bearing 93
Position, bearing 93 are fixed in bearing holder (housing, cover) 92, and downside is limited from the circlip 96 being stuck on shaft 111 with corresponding gasket 97
Position.In the lower part of bearing holder (housing, cover) 92, it is also equipped with bearing 93, top is limited by gasket 97, the circlip 96 of another pairing, under
Side is limited by the circlip 98 being fixed on 92 inner wall of bearing holder (housing, cover), is additionally provided with another sealing element 94 in the lower end of bearing holder (housing, cover) 92, should
The upper and lower ends of sealing element 94 are limited by circlip 98 as shown in the figure respectively.
As shown in figure 8, heat-generating disc 1021 passes through in 1020 bottom opening 1026 of cup body, it is fixed on the bottom of cup body 1020
Portion, the upside of heat-generating disc 1021 have counterbore 1027 (see Fig. 3), and heat-generating disc 1021 also has a perforation 1028, and perforation 1028 is from heavy
The bottom in hole 1027 passes through heat-generating disc 1021.Shaft assemblies 109 are pierced by from the perforation 1028 of heat-generating disc 1021, shaft assemblies
109 pedestal 91, the flange 921 of bearing holder (housing, cover) 92 and gasket 95 are received by counterbore 1027.Pedestal 91 it is downwardly projecting
It can be for tight fit or welding or other modes rigid connection between flange 912 and the hole wall of counterbore 1027 and junction can
To be arranged to seal, prevent material from entering the cooperation position of the two.Gasket 95 be clipped in flange 921 and counterbore 1027 it
Between, by means of the pulling force that aforementioned locking nut 1029 generates, it is applied enough pressure on gasket 95, to reach sealing effect
Fruit.
With continued reference to Fig. 8, point of a knife and cup body 1020 (the including the heat-generating disc 1021 as its bottom) of the blade of mill 107 are moved
Side wall between space D 3 can be set between 6mm to 12mm, the distance between the downside of blade and bottom of a cup plane D1
It can be selected between 5mm to 15mm.Between the downside of blade and the temperature control component 3 being arranged on bottom of a cup i.e. heat-generating disc 1021
Distance D2 can be selected between 2mm to 10mm.According to the practice of utility model people, in order to reach preferably crushing and suction
Effect, as shown in Fig. 9 A, 9B, the distance between point of a knife of two symmetrically arranged blades L can be selected in 78mm between 90mm.
With continued reference to Fig. 8, the pedestal 91 of shaft assemblies 109, the flange 921 of bearing holder (housing, cover) 92 and gasket 95 are sunk to
After counterbore 1027, the upper surface of pedestal 91 can be concordant with the upper surface of heat-generating disc 1021.As shown in Figure 6 and Figure 8, mill 107 is moved
Be equivalent on the bottom wall (heat-generating disc 1021) for being suspended at cup body 1020, lower end Full-open all can be used for feeding, this with it is previous
Grinding assembly compare, i.e., with it is dynamic grind situation about being arranged in quiet mill compared with, the size of feed zone can be arranged for greater flexibility,
Therefore facilitate to promote charging rate, shorten Production Time, enhancing choke preventing function.The lower end of dynamic mill 107, pedestal 91, quiet mill 108
Lower part between the feed inlet 40 of grinding assembly 104 is collectively formed.As previously mentioned, the bottom shaft of quiet mill 108 is tapered cone
Body is provided with storage cavity in feed inlet 40, which facilitates buffered more material, therefore the tapered cone-shaped general of column
Help to feed and increase choke preventing function.
Figure 12 is the structural schematic diagram of the utility model locking assembly.Figure 13 is the explosion of the utility model locking assembly
Figure.Figure 14 is the part isometric exploded view utility model of locking assembly.
As shown in Figure 12 to Figure 14, the locking assembly for being suitable for previous embodiment and aftermentioned each embodiment includes shaft
111 and shaft end fixation kit 30, shaft end fixation kit 30 herein be mounted on the shaft end of shaft 111.Wherein, shaft end fixation kit
30 include retaining ring 31 and pressing external member, by 31 elastic connection of retaining ring in the pressing external member.The top of shaft 111 is provided with one
Fixed column 21, fixed column 21 use thin cylindrical body, and diameter is less than the diameter of transmission shaft.It is arranged in the outside wall surface of fixed column 21
There is the step 22 of a circle annular outer, such as be arranged at the lower semisection of fixed column 21, retaining ring 31 is sleeved in fixed column 21,
And it is fastened between the lower end surface of step 22 and the outside wall surface of fixed column 21.When unlocking the locking assembly, institute is pressed down on
Pressing external member is stated, retaining ring 31 is strutted, so that retaining ring 31 is separated with fixed column 21.
Preferably, the pressing external member includes shaft end set 32, end cap 33 and key 34.Fig. 6 is the utility model locking group
The perspective view of part axis end cap.As shown in fig. 6, shaft end set 32 is a hollow cavity, one is provided on the inner wall of the cavity
The first positioning step 321 and second positioning step 322 of circle are enclosed, a circle protrusion 311 is provided in the outside wall surface of retaining ring 31, is led to
It crosses protrusion 311 retaining ring 31 is mounted on the first positioning step 321.
Such as Figure 12 to Figure 14, the lower end of key 34 is threaded through in retaining ring 31, upper end and key 34 in retaining ring 31
An elastomeric element 35 is arranged between outside wall surface.End cap 33 is set in the outside of key 34, so that end cap 33 and shaft end set 32 connect
It connects, and end cap 33 is located on the second positioning step 322.The bottom of end cap 33 and the upper surface of the protrusion 311 of retaining ring 31 offset.
It is further preferred that extending downwardly setting at least two along protrusion 311 on retaining ring 31 buckles muscle 312, each button muscle
312 lower end is equipped with an arc surface 313 to convex.Meanwhile in the lower end surface of 21 top bar 22 of fixed column and fixed column 21
Outside wall surface between formed an inner sunken face 211 so that button muscle 312 arc surface 313 match fastening with inner sunken face 211.
It effectively will can need to be fixed on the component on shaft 111 40 in this way and carry out axially position.
Particularly, button muscle 312 herein with even circumferential, is arranged symmetrically under the protrusion 311 of retaining ring 31 two-by-two
End.
It is provided with a boss 314 in addition, upwardly extending on retaining ring 31 along protrusion 311, one end of elastomeric element 35 is positioned
On boss 314.Elastomeric element 35 is preferably spring in the present embodiment.The effect of elastomeric element 35 is so that key 34 is pressurized
Has the function of automatic rebounding reset afterwards.
The one circle circular conical surface 341 of outside cylinder lower end surface setting of key 34, is set with a upper seal 342 on key 34,
Play sealing function.When key 34 is by next time, entire pressing external member can be allowed to loose from shaft 111, so as to
The removable component disassembly, cleaning that will be fixed on shaft 111.
Further, the circular conical surface 212 of a ring shape is arranged in the upper end of 111 top bar 22 of shaft, can play axial direction
Guiding role.The symmetrical plane 213 in two axle center is arranged in the top of shaft 111 and the junction of fixed column 21, with this
It can be to avoid the component rotation being sleeved on shaft 111.
Here component refers to needing to be axially positioned on the part on shaft 111, and can be to be sleeved on shaft 111 needs
The parts such as the stirring blade group, rotary bistrique or quiet bistrique of axially position are wanted, mill 107 is shown in the present embodiment, shaft 111
Plane 213 and aforementioned flat 740 long side of position hole against, avoid 107 rotations of dynamic mill, but the utility model is not intended to be limited thereto, other
Part can be applicable in above structure, be only for example herein.
The bottom end of shaft end set 32 is set on shaft 111, and is provided with lower seal between shaft end set 32 and shaft 111
323, play sealing function.
Preferably, it is provided with external screw thread in the outside wall surface of end cap 33, is provided with internal screw thread on the inner wall of shaft end set 32,
So that end cap 33 is threadedly coupled with shaft end set 32, to limit the axial movement distance of key 34.
It is described according to above structure, when the utility model locking assembly assembles, the component 40 of axially position will be needed first
It is sleeved on shaft 111.Then shaft end fixation kit 30 is assembled, i.e., is installed retaining ring 31 to the first positioning table in shaft end set 32
On rank, by an end cap of elastomeric element 35 (selecting spring in the present embodiment) on the boss 314 of retaining ring 31, another end cap is being pressed
On the outside cylinder lower end of key 34, and it is arranged upper seal 342 on the lower end of key 34, and is threaded through in retaining ring 31;Then
End cap 33 is set in the outside of key 34, and is threadedly coupled with shaft end set 32.End cap 33 is located on the second positioning step 322,
And the bottom of end cap 33 and the upper surface of the protrusion 311 of retaining ring 31 offset, to limit the axial movement of retaining ring 31.Finally by group
The entire shaft end fixation kit 30 installed is installed on shaft 111, so that retaining ring 31 buckles muscle 312 and 111 top bar 22 of shaft
The inner sunken face 211 that lower end is formed fastens, with this axially position component 40.
When needing to disassemble component 40 from shaft 111, it is only necessary to depresses button 34, the lower end meeting of key 34
Retaining ring 31 is pressed down on, the muscle 312 of buckleing of retaining ring 31 is strutted, so that retaining ring 31 is by buckleing the indent on muscle 312 and shaft 111
It is unclamped in curved surface 211, the entire pressing external member can be unloaded from the shaft end of transmission shaft, and key 34 is returned by elastomeric element 35
Elastic reset.It needs the component 40 of axially position that can easily disassemble from shaft 111 in this way to be cleaned.
Corase grinding tooth 812 referring to Fig. 6 and Fig. 8, the guide blade 73 and quiet mill 108 that move mill 107 is opposite, and guide blade 73 exists
While playing the role of guide, material is squeezed to corase grinding tooth 812, therefore a degree of abrasive action can be played.In conjunction with preceding
Description is stated, the finishing grinding tooth 810 of the tooth lapping 700 and quiet mill 108 that move mill 107 is opposite, the two fit clearance (unilateral fit clearance)
Such as 0.1-0.3mm or so, it is further ground when material passes through, the material after being ground is dynamic from shaft engaging portion 74 and tubular
Gap discharge between mill body 70.In another embodiment, the tooth lapping 700 for moving mill 107 can also be divided into bastard and serration.
In conjunction with Fig. 6, Fig. 8 and Fig. 2, after food cooking machine assembles, quiet mill 108 is built in dynamic mill 107, the two
Gap between side wall constitutes the grinding operation area of grinding food materials.In the operating condition, motor 106 passes through upper and lower shaft coupling
112,110 shaft 111 is driven, shaft 111 drives dynamic mill 107 again, moves 107 high-speed rotations of mill, generates in grinding assembly 104 negative
Pressure, food materials and water form the feed inlet 40 that mixing liquid is inhaled on quiet mill 108, and along shape between guide portion and quiet mill 108
At material guide channel spiral way enters grinding operation area from lower to upper, entering between feed inlet 40, material is pulverized first
Portion crushes in advance, and quiet roll flute and dynamic roll flute carry out crush and grind to by food materials between the two, and ground food materials are from grinding
The top of component 104 is discharged, rapidly flying out upwards between the driven mill 107 of the food materials and slurries that crushed and quiet mill 108, it
Afterwards, food materials mixing liquid enters between grinding assembly 104 and the wall of cup of cup body component 102 along water circulation direction, continues downward
The feed inlet 1135 being again sucked on quiet mill 108 afterwards, to realize lasting grinding of the grinding assembly 104 to food materials.It can manage
The fast-crushing that previous embodiment realizes food materials in a manner of slightly playing fine grinding is solved, can grind and beat larger harder food materials, avoid card
It is stifled, and effect and degradation rate are ground with good, while realizing quickly grinding for food materials, soya-bean milk can be not only ground, but also can beat
Fruits and vegetables have expanded utility function, also achieve the theory of a tractor serves several purposes.
According to previous embodiment, form feeding-passage between 107 bottom ends of dynamic mill and bottom of a cup, can by 107 bottom ends of dynamic mill and
Gap between bottom of a cup controls minimum, after food materials are slightly beaten by blade, food materials particle only smaller than the width of feeding-passage,
Anti-blocking performance can so can be enhanced by feeding-passage, then the abrasive areas being transported in grinding assembly;Moreover, because dynamic
Grinder outer surface has blade, and the position of blade is close from bottom of a cup, beats biggish food materials even if to grind, can be slightly to play fine grinding
Mode realize;Even if also, feeding-passage is very narrow, due to 107 lower end Full-opens of dynamic mill, can also be allowed with faster speed
Material is entered in grinding assembly by feeding-passage.
For Figure 15 to Figure 17 shows another embodiment of the utility model, the present embodiment continues to use the element of previous embodiment
Wherein adopting the identical or approximate element that is denoted by the same reference numerals, and phase is selectively omitted in label and partial content
With the explanation of technology contents.Explanation about clipped can refer to previous embodiment, and it is no longer repeated for the present embodiment.With it is preceding
State the dynamic mill that embodiment difference is mainly reflected in grinding assembly.As shown in figure 15, moving mill 107a includes seperated molding axis
Bar engaging portion 74, tubular move mill body 70a, crush guide portion 75a, and it is dynamic relative to the tubular of previous embodiment that tubular moves mill body 70a
For mill body 70, guide portion, smashing portion bearing part separate, crush guide portion 75a include integrally formed smashing portion
With guide portion comprising carrier portion 750, carrier portion 750 is the equal of that tubular is moved to the bottom of mill body 70 to separate, for holding
Carry the blade 71,72 of smashing portion and the guide blade 73 for carrying guide portion.As previously mentioned, carrier portion 750 can be column
Tubular or with the horn-like of taper.The top that tubular moves mill body 70a has in the respectively arranged card slot in diametrical direction both ends
701, shaft engaging portion 74 has two lugs 741, and lug 741 is clamped with corresponding card slot 701, weld or other modes are rigid
Connection.Card slot 701 is to move two pillars that the top mill body 70a end face is protruded from tubular to surround with top end face.Such as Figure 17
Shown, lug 741 moves mill body 70a with respect to tubular and protrudes respectively, and part outstanding can be set to extraction unit, in order to apply disassembly
The external force of dynamic mill.The ontology that tubular moves mill body 70a is plectane, and lug 741 protrudes respectively from the diametric both ends of plectane.Circle
The lower plane of plate is concordant with the dynamic top end face of mill body 70 of tubular, is thusly-formed the discharge port of direction upward.
With continued reference to Figure 12 referring concurrently to Figure 13, carrier portion 750 has neck 751, and tubular, which moves mill body 70a, has annular skirt
Portion 702, tubular move mill body and are coated on the neck 751 in carrier portion 750 by ring-shaped skirt 702, the outer side surface of neck 751 with
The outside of ring-shaped skirt 702 avoids complementation, and the two is substantially bonded comprehensively, by welding, screwing connection, bulging connection, pin
The modes such as connection are rigidly connected.As shown in figure 14, mill 107 and quiet 108 cooperation of mill are moved, substantially the same effect can be obtained,
It include seperated molding shaft engaging portion due in the present embodiment, moving mill 107a in addition to this with good anti-blocking performance
74a, tubular move mill body 70a, crush guide portion 75a, can will only crush guide portion 75a and be formed by precision casting process, and
Shaft engaging portion 74a, tubular move mill body 70a using machining, reduce the specific gravity of dynamic mill essence casting material, drop simultaneously
Low material cost and process costs.
As shown in Figure 18 and Figure 19, in a transformation embodiment of dynamic mill, shaft engaging portion includes plectane 743 and circle
Ring 742,743 center of plectane has the structure 744 being sequentially connected with a shaft, such as transmission connection is by flat mouth 740 and axis
The homalocephalus of bar connects.The outer diameter of plectane 743 is less than the internal diameter of annulus 742, passes through the company at interval between plectane 743 and annulus 742
Muscle connection is connect, as shown in figure 19, annulus 742 is threadedly coupled with the top that tubular moves mill body 70a, and junction forms the axial shaft shoulder
742, which can also be used as dynamic mill extraction unit easy to disassemble.
Although the utility model is disclosed as above with preferred embodiment, its be not for limiting the utility model, it is any
Those skilled in the art without departing from the spirit and scope of the utility model, can make possible variation and modification, example
The position of the blade such as crushed is not limited to be located at dynamic mill bottom end, can also move up, dynamic mill axial height half with
Under be ok, for another example aforementioned locking assembly can also limit other rotating members other than the axial direction to dynamic mill limits
Position, such as crush cutter head.Therefore, all contents without departing from technical solutions of the utility model, the technology according to the utility model
Essence any modification, equivalent variations and modification to the above embodiments, each fall within the utility model claims and are defined
Protection scope within.
Claims (10)
1. the dynamic mill of one kind, the grinding assembly for food cooking machine characterized by comprising
Tubular moves mill body, and inner wall is provided with dynamic roll flute;
Shaft engaging portion is located at the tubular and moves mill body top;And
Wherein, the shaft engaging portion includes extraction unit, and the extraction unit extends laterally outward and protrudes from the dynamic mill of the tubular
The outer wall of body is extracted with facilitating.
2. mill as described in claim 1 dynamic, which is characterized in that the shaft engaging portion includes plectane and from plectane diameter side
The lug protruded to both ends, the outer diameter of the plectane are less than the internal diameter that the tubular moves mill body top, the lug and the cylinder
Shape moves mill body and is separately connected, and moves mill body projecting radially out tubular, forms the extraction unit.
3. dynamic mill as claimed in claim 2, which is characterized in that distinguish at diametrical direction both ends on the top that the tubular moves mill body
Card slot is provided, the lug and the card slot are rigidly connected.
4. dynamic mill as claimed in claim 3, which is characterized in that the tubular moves the top of mill body in its diametrical direction two
End is protruding with two pillars respectively, limits the card slot between two pillar and the top end face of the dynamic mill body of the tubular.
5. mill as claimed in claim 3 dynamic, which is characterized in that the lower surface of the plectane of the shaft engaging portion with it is described
Tubular moves concordant between the top end face of mill body.
6. dynamic mill as described in claim 1, which is characterized in that the shaft engaging portion has annulus, and the annulus is around institute
It states tubular to move mill body peripheral side and be threadedly coupled with it, forms axial step in junction, the axial step forms described mention
Take portion.
7. dynamic mill as claimed in claim 6, which is characterized in that the shaft engaging portion further includes plectane, the plectane center
With the structure being sequentially connected with a shaft, the outer diameter of the plectane is less than the internal diameter of the annulus, the plectane and the circle
Pass through the dowel connection at interval between ring.
8. dynamic mill as described in claim 1, which is characterized in that the dynamic mill further includes smashing portion, and the smashing portion includes certainly
The tubular moves the blade that mill body extends outward.
9. a kind of grinding assembly, including dynamic mill, quiet mill and shaft assemblies, the shaft assemblies include shaft, the dynamic mill with
Material is ground in the quiet grinding-in conjunction, which is characterized in that the dynamic mill is described in any item of the claim 1 to 8 dynamic
Mill.
10. a kind of food cooking machine, including cover assembly, cup body component and base assembly, cover assembly covers cup body component
Upper opening, the setting of cup body component are equipped with driving motor inside base assembly, base assembly, it is characterised in that: in cup body
Grinding assembly as claimed in claim 9 is provided in component, the shaft and the driving motor of the grinding assembly pass
Dynamic connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721487292.1U CN208926005U (en) | 2017-11-09 | 2017-11-09 | Move and grind, grinding assembly and food processor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721487292.1U CN208926005U (en) | 2017-11-09 | 2017-11-09 | Move and grind, grinding assembly and food processor |
Publications (1)
Publication Number | Publication Date |
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CN208926005U true CN208926005U (en) | 2019-06-04 |
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Application Number | Title | Priority Date | Filing Date |
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CN201721487292.1U Active CN208926005U (en) | 2017-11-09 | 2017-11-09 | Move and grind, grinding assembly and food processor |
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CN (1) | CN208926005U (en) |
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2017
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