CN205267932U - Fine grinding ware subassembly and food processor suitable for food processor - Google Patents

Fine grinding ware subassembly and food processor suitable for food processor Download PDF

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Publication number
CN205267932U
CN205267932U CN201520894921.7U CN201520894921U CN205267932U CN 205267932 U CN205267932 U CN 205267932U CN 201520894921 U CN201520894921 U CN 201520894921U CN 205267932 U CN205267932 U CN 205267932U
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China
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mill part
permanent seat
axostylus axostyle
assembly
quiet mill
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CN201520894921.7U
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Chinese (zh)
Inventor
孙帅
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Abstract

The utility model provides a refiner subassembly and food processor suitable for food processor. The fine grinding ware subassembly includes quiet grinding member, move grinding member and axostylus axostyle fixing base, it is fixed to move grinding member and axostylus axostyle fixing base transmission cooperation, quiet grinding member spacer sleeve is established on moving grinding member, the bottom and the axostylus axostyle fixing base cooperation of quiet grinding member are fixed, the axostylus axostyle fixing base includes fixing base and axostylus axostyle, the fixing base axial is equipped with the through-hole, top at the fixing base is equipped with outside bellied knot position, it is fixed with the bottom cooperation of quiet grinding member to detain the position, the through-hole is stretched into to the lower part of axostylus axostyle, with fixing base normal running. The utility model provides a pair of refiner subassembly and food processor suitable for food processor, its simple structure grinds effectually, and convenient to detach washs.

Description

A kind of sharpener assembly and food cooking machine being applicable to food cooking machine
Technical field
The utility model relates to food cooking field, particularly relates to sharpener assembly and the food cooking machine of a kind of food cooking machine.
Background technology
Along with people are increasing to the demand of health-nutrition, food cooking machine is also more and more subject to the favor of human consumer. Particularly soybean milk maker product, market existing conventional products structure is basically identical, is head up-set type product, and motor and blade are all arranged at head place, by driven by motor blade rotate carry out pulverize cutting, the shortcoming of this kind of structure be pulverize not thorough. Also having portioned product to adopt emery wheel to carry out the product ground, but its textural anomaly is complicated, grinding system need to realize circular grinding by water pump and pipeline.
Chinese invention patent application CN102553699A discloses a kind of Household food pulverizing device, comprise motor, hopper, crushing part, crushing part comprises the cavity of blade, impeller, circulation line and band plasma discharge mouth, cavity is fixed on motor, hopper is fixed on cavity, and blade and impeller are fixed on motor shaft; Circulation line comprises the threeway, circulation tube and the slurry-discharging mouth that connect cavity, and threeway one end connects the plasma discharge mouth of cavity, and the 2nd end connects circulation tube, three-terminal link slurry-discharging mouth. Material is by returning to hopper through impeller, threeway, circulation tube after the pulverizing of blade, and constantly circulate pulverizing, after setting-up time, as long as user opens slurry-discharging mouth, catches slurries and can with cup. This kind of structure mainly have employed circulation and pulverize, can abundant comminuting matter.
Chinese invention patent application CN102553699A discloses a kind of crushing grinding device, comprise motor, hopper and pulverizing-grinding unit, pulverizing-grinding unit comprises coarse reduction part and fine grinding part, fine grinding part is made up of rotary bistrique and quiet bistrique, the cutterhead that coarse reduction part comprises the upper surface band blade being arranged at rotary bistrique upper surface and the binder circle being arranged between hopper and cutterhead. This kind of structure make by crushed material under the gravity of self and the pressure effect of binder circle with blade effect and by coarse reduction.
Conventional grinding type soymilk machine disintegrating mechanism has a maximum problem to annoying human consumer always, namely sound mill is the structure of toothed shape always, after soya-bean milk has been pulverized, have slurries or bean dregs between tooth and tooth to remain within it, owing to not dismantling, also just be inconvenient to clean, place through after a while after machine uses, cause machine inside smelly, especially hot summer is even more serious, when sound has stink to produce between grinding, naturally also can produce the microorganisms such as bacterium, bring food sanitation safe to threaten to human consumer.
Practical novel content
The technical problems to be solved in the utility model is to provide a kind of sharpener assembly being applicable to food cooking machine, and its structure is simple, and grinding effect is good, and is convenient to disassembly, cleaning.
For solving the problems of the technologies described above, the utility model provides a kind of sharpener assembly being applicable to food cooking machine, comprise quiet mill part, dynamic mill part and axostylus axostyle permanent seat, described dynamic mill part and described axostylus axostyle permanent seat transmission coordinate fixing, described quiet mill part interval is set on described dynamic mill part, the bottom of described quiet mill part and described axostylus axostyle permanent seat coordinate fixing, described axostylus axostyle permanent seat comprises permanent seat and axostylus axostyle, described permanent seat is axially arranged with through hole, the button bit of outwardly convex it is provided with at the top of described permanent seat, described button bit coordinates fixing with the bottom of described quiet mill part, described through hole is stretched in the bottom of described axostylus axostyle, with described permanent seat rotatable engagement, the top of described axostylus axostyle is stretched in described dynamic mill part, described permanent seat under comprise the buckling plate being fixed together successively, fixing cap and permanent seat body.
According to an embodiment of the present utility model, described buckling plate, described fixing cap and described permanent seat body open holes and center through hole have been offered, described permanent seat also comprises rivet, described rivet is arranged in order to described buckling plate, described fixing cap and described permanent seat body to be riveted together in described open holes, and the upper surface of described buckling plate is provided with the button bit of outwardly convex.
According to an embodiment of the present utility model, described button bit is the convex button of the upper surface outwardly convex of described buckling plate.
According to an embodiment of the present utility model, described rivet is sunk rivet, has offered tack hole in the bottom of described rivet.
According to an embodiment of the present utility model, described rivet, buckling plate, fixing cap are stainless steel, and described permanent seat body is aluminum alloy material.
According to an embodiment of the present utility model, in the described through hole of described permanent seat under the first oil sealing, bearing, back-up ring and the 2nd oil sealing are set successively, described first oil sealing, described bearing, described back-up ring and described 2nd oil sealing rotatable engagement are stretched in the bottom of described axostylus axostyle, and described axostylus axostyle lower periphery is provided with and the jump-ring slot of described bearing fit.
According to an embodiment of the present utility model, dynamic mill part top is provided with the wind leaf with flow-disturbing effect.
According to an embodiment of the present utility model, described quiet mill part is hollow circle tube, the barrel of described quiet mill part is provided with opening for feed, it is provided with grinding internal tooth inside the barrel of described quiet mill part, at the top of described quiet mill part, disturbing flow device is set, the open top of the described quiet mill part that described disturbing flow device is formed inside contracts to the axle center of described quiet mill part, skids off from described quiet mill part to limit described dynamic mill part.
According to an embodiment of the present utility model, described dynamic mill part under comprise rotary bistrique successively, lead material screw thread and connect post, described rotary bistrique is cylindrical shape, cylinder periphery in described rotary bistrique is provided with grinding tooth, described material screw thread of leading extends downwards along described rotary bistrique, described lead to be formed between material screw thread one lead material track, described lead material screw thread under connection post is set, be provided with axial opening upwards in the bottom of described connection post.
The utility model additionally provides a kind of food cooking machine, this food cooking machine comprises bowl cover assembly, cup body assembly and base assembly, described bowl cover assembly is covered on the cup mouth of described cup body assembly, described cup body assembly is arranged on described base assembly, in described base assembly, drive-motor is set, described cup body assembly comprises the arbitrary described sharpener assembly of claim 1-9, described sharpener assembly is arranged on the bottom of described cup body assembly, and described drive-motor drives the work of described dynamic mill part by described axostylus axostyle permanent seat.
A kind of sharpener assembly and food cooking machine thereof being applicable to food cooking machine that the utility model provides, its structure is simple, and grinding effect is good, and is convenient to disassembly, cleaning.
Accompanying drawing explanation
Comprising accompanying drawing is for providing understanding that the utility model is further, and they are included and form the part of the application, and accompanying drawing shows embodiment of the present utility model, and plays the effect explaining the utility model principle together with this specification sheets. In accompanying drawing:
Fig. 1 schematically shows the sectional view of the food cooking machine that the utility model is suitable for.
Fig. 2 shows the part assembly structure schematic diagram of Fig. 1.
Fig. 3 shows the structural representation of the first embodiment of quiet mill part of the present utility model.
Fig. 4 is the stereographic map of Fig. 3.
Fig. 5 shows the structural representation of the 2nd embodiment of quiet mill part of the present utility model.
Fig. 6 shows the structural representation of the 3rd embodiment of quiet mill part of the present utility model.
Fig. 7 shows the structural representation of the first embodiment of dynamic mill part of the present utility model.
Fig. 8 is the inversion structural representation of Fig. 7.
Fig. 9 shows the structural representation of the 2nd embodiment of dynamic mill part of the present utility model.
Figure 10 shows the assembly structure schematic diagram of the first embodiment of axostylus axostyle permanent seat of the present utility model.
Figure 11 shows the part assembly structure schematic diagram of the first embodiment of axostylus axostyle permanent seat of the present utility model.
Figure 12 shows the structural representation of the rivet of the first embodiment of axostylus axostyle permanent seat of the present utility model.
Figure 13 shows the subassembly schematic diagram of the 2nd embodiment of axostylus axostyle permanent seat of the present utility model.
Figure 14 shows the assembling schematic diagram of the first embodiment of sharpener assembly of the present utility model.
Figure 15 shows the assembly structure schematic diagram of the 2nd embodiment of sharpener assembly of the present utility model.
Embodiment
With detailed reference to accompanying drawing, embodiment of the present utility model is described now. In the case of any possible, the part that identical mark will be used to represent same or similar in all of the figs. In addition, although the term used in the utility model selects from public term, but some terms mentioned in the utility model specification sheets may be that applicant selects by his or her judgement, the explanation in the relevant part of description herein of its detailed meanings. In addition, it is desirable to the actual terms not only passing through to use, but also to be understood the utility model by the meaning that each term contains.
Fig. 1 schematically shows the sectional view of the food cooking machine that the present invention is suitable for. Fig. 2 shows the assembly structure schematic diagram of Fig. 1. As depicted in figs. 1 and 2, this food cooking machine mainly comprises: bowl cover assembly 1, cup body assembly 2 and base assembly 3. Cup body assembly 2 is suitable for being arranged on base assembly 3, and bowl cover assembly 1 is suitable for being covered on the cup mouth of glass body assembly 2. In addition, the side of cup body assembly 2 can arrange a glass body handle 4, to facilitate user to take a glass body assembly 2.
In the embodiment shown in fig. 1, this food cooking machine is provided with motor at lower formula, and namely drive-motor (not shown) is arranged in base assembly 3. Sharpener assembly is set in the bottom of cup body assembly 2, comprises quiet mill part 21, dynamic mill part 22 and axostylus axostyle permanent seat 23. Quiet mill part 21 is set on dynamic mill part 22, axostylus axostyle permanent seat 23 is arranged on a glass bottom for body assembly 2, one end of the axostylus axostyle 232 of axostylus axostyle permanent seat 23 coordinates with the output shaft of drive-motor downwards, the other end extends upwardly in dynamic mill part 22, and the rotary driving force of drive-motor is passed to dynamic mill part 22 by axostylus axostyle 231. Starting drive-motor, dynamic mill part 22 can rotate in quiet mill part, produces negative pressure, attracts to enter quiet mill part 21 with the liquid of material particles. Material particles upwards enters the gap between dynamic mill part 22 and quiet mill part 21, is also provided with grinding tooth, it is possible to ground by material particles, and discharge from the top of sharpener assembly between the gap of dynamic and static mill part 22,21.
On the other hand, it is possible at the near-bottom of cup body assembly 2 or heating component can also be arranged on the barrel of bottom heat with the food material to cup body assembly, endure and the operation such as boil.
Fig. 3 shows the structural representation of the first embodiment of quiet mill part of the present utility model. Fig. 4 is the stereographic map of Fig. 3. As shown in the figure, quiet mill part 21 is in hollow circle tube, and the barrel 211 of quiet mill part 21 is provided with opening for feed 212, and the top of quiet mill part 21 arranges disturbing flow device, and the bottom of quiet mill part 21 is provided with button bit groove 214. Disturbing flow device in the present embodiment refers to the multiple spoilers 215 upwards extended along quiet mill part 21 top, and the inner side of multiple spoiler 215 arranges projection 216, and projection 216 protrudes out towards the axle center of quiet mill part 21. Flow-disturbing opening 217 is formed between adjacent two spoilers 215. Owing to being provided with projection 216 so that disturbing flow device inside contracts at the top of quiet mill part 21 formation opening and towards the axle center of quiet mill part 21. Arranging like this and have two objects, an object prevents sharpener assembly dynamic mill part 22 in actual mechanical process from throwing away above quiet mill part 21, causes unexpected slippage; Another object is when the feed liquid toppling in food cooking machine, avoids dynamic mill part 22 to skid off from quiet mill part 21, thus causes unexpected injury. Goodly, distance between any two projections 216 is less than the external diameter of dynamic mill part 22.
Fig. 5 shows the structural representation of the 2nd embodiment of quiet mill part of the present utility model. In this embodiment, quiet mill part 21 is in hollow circle tube, and the barrel 211 of quiet mill part 21 is provided with opening for feed 212. The top of quiet mill part 21 arranges disturbing flow device, is provided with grinding internal tooth 213 inside the barrel 211 of quiet mill part 21, and the bottom of quiet mill part 21 is provided with button bit groove 214 '. Disturbing flow device in the present embodiment is the multiple spoilers 215 ' upwards extended along the top of the barrel 211 of quiet mill part 21, and multiple spoiler 215 ' bends inwards to the axle center of quiet mill part 21, forms flow-disturbing opening 217 between adjacent two spoilers 215 '. The open top of the quiet mill part 21 that this disturbing flow device is formed inside contracts towards the axle center of quiet mill part 21, and its effect has identical effect with the disturbing flow device of the first embodiment, skids off from quiet mill part 21 to limit dynamic mill part 22.
Fig. 6 shows the structural representation of the 3rd embodiment of quiet mill part of the present utility model. In this embodiment, quiet mill part 21 is in hollow circle tube, and the barrel 211 of quiet mill part 21 is provided with opening for feed 212. The top of quiet mill part 21 arranges disturbing flow device, is provided with grinding internal tooth 213 inside the barrel 211 of quiet mill part 21, and the bottom of quiet mill part 21 is provided with button bit groove 214 '. The disturbing flow device of the present embodiment is the overall flow-disturbing part 218 upwards extended and close up to axle center gradually in top of the barrel 211 along quiet mill part 21, has offered multiple flow-disturbing hole 219 on flow-disturbing part 218. The open top of the quiet mill part 21 that this disturbing flow device is formed, and inside contract towards the axle center of quiet mill part 21, its effect has identical effect with the disturbing flow device in above-mentioned two embodiments, skids off from quiet mill part 21 to limit dynamic mill part 22.
The effect of the disturbing flow device in Fig. 3 to 6 is the flow-disturbing effect playing feed liquid, feed liquid is discharged from the top of quiet mill part 21 after grinding, disturbing flow device impel grinding after material more fully mix with liquid, it is to increase the efficiency of circular grinding, grinding effect is better.
Goodly, grinding internal tooth 213 it is provided with inside the barrel 211 of quiet mill part 21.
Goodly, as shown in Figure 4, button bit groove 214 has been offered in the bottom of quiet mill part. Button bit groove 214 is T-shaped, comprises a horizontal groove 2141 and a vertical slot 2142, and vertical slot 2142 is connected with the bottom of quiet mill part 21. Forming notch 2143,2144 respectively in the both sides of horizontal groove 2141, this structure can allow the cooperation of quiet mill part be fixed on axostylus axostyle permanent seat, and particular content will describe in detail later.
Fig. 7 shows the structural representation of the first embodiment of dynamic mill part of the present utility model. Fig. 8 is the inversion structural perspective of Fig. 7. As shown in Figure 7 and Figure 8, dynamic mill part 22 under comprise rotary bistrique 221 successively, lead material screw thread 222 and connect post 223. Rotary bistrique 221 is in cylindrical shape, and the cylinder periphery in rotary bistrique 221 is provided with grinding tooth 224. When quiet mill part 21 interval is set on dynamic mill part 22, grinds grinding internal tooth 213 interval on tooth 224 and above-mentioned quiet mill part 21 relative, the material of two between cog can be ground.
Lead material screw thread 222 be arranged on the lower section of rotary bistrique 221 and extend downwards. Lead material screw thread 222 between formed one lead material track 225. In the process of lapping of material, material enters from the opening for feed 212 of quiet mill part 21, rises along leading material track 225 under the effect of negative pressure. Goodly, leading what material screw thread 222 was varying pitch, the pitch leading material screw thread 222 reduces from lower to upper gradually. In the structure shown here, the space between the inwall leading material track 225 and quiet mill part 21 from the bottom to top narrows from the width, material is mutually extruded in the traveling process led in material track 225, completing the corase grind step in grinding steps, after being conducive to, material completes fine milling step between grinding tooth 224 and grinding internal tooth 213.
Lead material screw thread arrange for 222 times connect post 223, connect post 223 bottom be provided with axial opening 226 upwards. Axial opening 226 coordinates with the axostylus axostyle 232 of axostylus axostyle permanent seat 23. Being appreciated that, axial opening 226 can be that upper end (near rotary bistrique one end) is closed, it is also possible to is through. When taking off dynamic mill part 22 and clean, through axial opening 226 is easily processed and is easy to clean.
The wind leaf 227 that a slice has flow-disturbing effect at least it is provided with at the top of the rotary bistrique 221 of the present embodiment. The effect of wind leaf 227 is similar with the effect of the disturbing flow device of quiet mill part, and feed liquid is carried out flow-disturbing by matching disturbance flow device, improves grinding effect further.
Goodly, wind leaf is multi-disc. As shown in Figure 7, it is provided with 4 wind leaves at the top of the dynamic mill part of the present embodiment, and independent separately.
Goodly, button groove 228 it is provided with in the bottom of the connection post of dynamic mill part. Button groove 228 coordinates fixing with the axostylus axostyle of axostylus axostyle permanent seat.
Fig. 9 shows the structural representation of the 2nd embodiment of dynamic mill part of the present utility model. As shown in the figure, dynamic mill part 22 under comprise rotary bistrique 221 successively, lead material screw thread 222 and connect post 223. Rotary bistrique 221 is in cylindrical shape, and the cylinder periphery in rotary bistrique 221 is provided with grinding tooth 224. When quiet mill part 21 interval is set on dynamic mill part 22, grinds described grinding internal tooth 213 interval on tooth 224 and quiet mill part 21 relative, the material of two between cog can be ground.
Lead material screw thread 222 be arranged on the lower section of rotary bistrique 221 and extend downwards. Lead material screw thread 222 between formed one lead material track 225. In the process of lapping of material, material enters from the opening for feed 212 of quiet mill part 21, rises along leading material track 225 under the effect of negative pressure. Goodly, leading material screw thread 222 ' is varying pitch, and the pitch leading material screw thread 222 ' reduces from lower to upper gradually. In the structure shown here, the space between the inwall leading material track 225 and quiet mill part 21 from the bottom to top narrows from the width, material is mutually extruded in the traveling process led in material track 225, completing the corase grind step in grinding steps, after being conducive to, material completes fine milling step between grinding tooth 224 and grinding internal tooth 213.
It is that 4 wind leaves 227 ' that the 2nd embodiment of dynamic mill part is arranged at the top of rotary bistrique 221 are interconnected at the axle center place near dynamic mill part 21 with the difference of the first embodiment of dynamic mill part. Interconnective wind leaf 227 ' is structurally more firm.
The axial opening 226 of the 2nd embodiment of dynamic mill part is through, and is oblate shape in the cross section at the top near rotary bistrique 221.
Figure 10 shows the assembly structure schematic diagram of the first embodiment of axostylus axostyle permanent seat of the present utility model. Figure 11 shows the part assembly structure schematic diagram of the first embodiment of axostylus axostyle permanent seat of the present utility model. Figure 12 shows the structural representation of the rivet of the first embodiment of axostylus axostyle permanent seat of the present utility model. Shown in composition graphs 10-12, axostylus axostyle permanent seat 23 comprises permanent seat 231 and axostylus axostyle 232, permanent seat 231 is axially arranged with through hole 2311, is provided with the button bit 23121 of outwardly convex at the top of permanent seat 231, and button bit 23121 coordinates fixing with the button bit groove 214 bottom quiet mill part 21. The lower outer periphery of permanent seat 231 is provided with outside screw 23145, and permanent seat 231 can be fixed on base assembly by rotation. Permanent seat 231 under comprise buckling plate 2312, fixing cap 2313 and permanent seat body 2314 successively.
Having offered open holes and center through hole respectively on buckling plate 2312, fixing cap 2313 and permanent seat body 2314, each open holes and each center through hole are corresponding up and down. Permanent seat also comprises rivet 2315, and rivet 2315 is arranged in the open holes of buckling plate 2312, fixing cap 2313 and permanent seat body 2314, buckling plate 2312, fixing cap 2313 and permanent seat body 2314 riveted joint is fixed as one. The upper surface of buckling plate 2312 is provided with the button bit 23121 of outwardly convex. Button bit 23121 coordinates with the button bit groove 214 being arranged on the T-shaped bottom quiet mill part 21. As shown in figure 12, rivet 2315 is sunk rivet, has offered tack hole 23151 in the bottom of rivet 2315, is easy to riveted joint stainless steel.
Goodly, rivet 2315, buckling plate 2312, fixing cap 2313 are stainless steel, and permanent seat body 2314 is aluminum alloy material. Unlike material split is adopted to arrange these parts, it is possible to effectively to reduce costs.
Return to Figure 11, first oil sealing 23141, bearing 23142, back-up ring 23143 and the 2nd oil sealing 23144 are set successively from top to down in the through hole of permanent seat body 2314, the first oil sealing 23141, bearing 23142, back-up ring 23143 and the 2nd oil sealing 23144 rotatable engagement are stretched in the bottom of axostylus axostyle 232, and axostylus axostyle 232 lower periphery is provided with the jump-ring slot 2321 with bearing fit. By the first oil sealing 23141 setting up and down in permanent seat 231 and the 2nd oil sealing 23144 so that take off whole axostylus axostyle permanent seat 23 from base and just can clean easily, dirt of deoiling, and do not worry that bearing 23142 enters water problem.
Goodly, arranging flat position portion 2322 in the upper end of axostylus axostyle 232, the lower end at axostylus axostyle arranges lower flat position portion 2323. Upper flat position portion 2322 can coordinate with the 2nd embodiment of dynamic mill part 22, and the cross section at axial opening 226 top of this dynamic mill part 21 is oblate shape. Lower flat position portion 2323 coordinates with the driving part of drive-motor. Upper and lower flat position 2322,2323 has more preferably gearing.
Figure 13 shows the subassembly schematic diagram of the 2nd embodiment of axostylus axostyle permanent seat of the present utility model. Axostylus axostyle permanent seat 23 comprises permanent seat 231 and axostylus axostyle 232. Permanent seat 231 under comprise buckling plate 2312, fixing cap 2313 and permanent seat body 2314 successively. Having offered open holes and center through hole respectively on buckling plate 2312, fixing cap 2313 and permanent seat body 2314, each open holes and each center through hole are corresponding up and down. Permanent seat also comprises rivet 2315, and rivet 2315 is arranged in the open holes of buckling plate 2312, fixing cap 2313 and permanent seat body 2314, three is fixed as one. The upper surface of buckling plate 2312 is provided with the button bit 23121 ' of outwardly convex. In the present embodiment, button bit 23121 ' is the convex button of the upper surface outwardly convex along buckling plate 2312. Convex button can coordinate fixing with the button bit groove 214 ' bottom quiet mill part 21. It is provided with outside screw in the bottom of permanent seat body 2314, a glass bottom for body assembly 2 can be fixed on by rotation. Buckling plate 2312, fixing cap 2313 use stainless steel, or oxidized aluminum alloy, or aluminium alloy spraying, and some can reach the material of food requirement. Rivet 2315 is stainless steel or oxidized aluminum alloy. Permanent seat 231 uses aluminum alloy materials. Goodly, axostylus axostyle 232 is radially provided with pivot pin 2324. The through hole 2311 of permanent seat 231 is stretched in the bottom of axostylus axostyle 232, with permanent seat 231 rotatable engagement, the top of axostylus axostyle 232 is stretched in the axial opening 226 of the connection post 223 of dynamic mill part 22 first embodiment, and pivot pin 2324 coordinates fixing with the groove 228 of buckleing of the connection post 223 of dynamic mill part 22.
Figure 14 shows the assembly structure schematic diagram of the first embodiment of sharpener assembly of the present utility model. Shown in composition graphs 3,4,9,10, sharpener assembly comprises quiet mill part 21, dynamic mill part 22 and axostylus axostyle permanent seat 23. The top of the axostylus axostyle 232 of axostylus axostyle permanent seat 23 is upwards inserted in the axial opening 226 of the connection post 223 of dynamic mill part 22 so that dynamic mill part 22 and axostylus axostyle permanent seat 23 transmission coordinate fixing. The axial opening 226 of dynamic mill part 21 is communicating pores, and the cross section at dynamic mill part 21 top is oblate shape, with the form fit in the upper flat position portion 2322 of axostylus axostyle 232 upper end, has more preferably gearing. Quiet mill part 21 interval is set on dynamic mill part 22, and the convex position 23121 on the buckling plate 2312 of axostylus axostyle permanent seat 23 enters the vertical slot 2142 of the T-shaped button bit groove 214 on quiet mill part 21, arrives the horizontal groove 2141 of button bit groove 214. Rotating quiet mill part 21, convex position 23121 can be fastened in arbitrary notch 2143,2144 of the both sides of horizontal groove 2141. When drive-motor drives load current excessive, drive-motor can reverse, and drives dynamic mill part 22 to reverse so that quiet mill part 21 also reverse rotation, convex position 23121 can be engaged to another from notch 2143,2144. Quiet mill part 21 can not be come off easily.
In working process, the lower end of the axostylus axostyle 232 of axostylus axostyle permanent seat 23 coordinates with the output shaft of drive-motor, and the rotary driving force of drive-motor is passed to dynamic mill part 22 by axostylus axostyle 232. Dynamic mill part 22 can rotate in quiet mill part 21, produces negative pressure, attracts to enter the opening for feed 212 on quiet mill part 21 with the liquid of material particles. The material track 225 of leading that first material particles upwards enters dynamic mill part 22 is roughly ground, and the gap then entered between dynamic mill part 22 and quiet mill part 21 carries out fine grinding. Grinding tooth 224 and grinding internal tooth 213 it is provided with, it is possible to material particles is carried out fine grinding, and discharges from the top of quiet mill part 21 between the gap of dynamic and static mill part 21,22. After feed liquid after grinding is carried out flow-disturbing by the disturbing flow device arranged at the top of dynamic and static mill part 21,22, feed liquid again enters from the opening for feed quiet mill part 21 after circulation, can obtain the better drink of mouthfeel through grinding repeatedly. When needs clean, rotating quiet mill part 21, convex position 23121 is separated with button kerve 214, quiet mill part 21 just can take off easily. The rotary bistrique 221 of dynamic mill part 22 is caught just can upwards to take out dynamic mill part 22. Like this, so that it may to clean dynamic and static mill part 21,22 and dirt of deoiling. Further, rotary shaft permanent seat 23 can also be cleaned by rear swivel taking off just.
Figure 15 shows the assembly structure schematic diagram of the 2nd embodiment of sharpener assembly of the present utility model. Shown in composition graphs 5,7,13, sharpener assembly comprises quiet mill part 21, dynamic mill part 22 and axostylus axostyle permanent seat 23. The top of the axostylus axostyle 232 of axostylus axostyle permanent seat 23 is upwards inserted in the axial opening 226 of the connection post 223 of dynamic mill part 22. Quiet mill part 21 interval is set on dynamic mill part 22, rotates quiet mill part 21 so that the button bit 23121 on axostylus axostyle permanent seat 23 coordinates fixing with the button kerve 214 ' bottom quiet mill part. The bottom of quiet mill part 21 is resisted against on the buckling plate of axostylus axostyle permanent seat 23, and pushes down rivet 2315, makes rivet 2315 difficult drop-off in long-time vibration working process. Button groove 228 it is provided with in the bottom of the connection post 223 of dynamic mill part 22. Button groove 228 coordinates fixing with the pivot pin 2324 on the axostylus axostyle 232 of axostylus axostyle permanent seat 23 so that moment of torsion can be passed to dynamic mill part 22 by axostylus axostyle 232 better. The principle of work of the present embodiment is identical with the first embodiment.
The utility model additionally provides a kind of food cooking machine as shown in Figure 1. This food cooking machine comprises bowl cover assembly 1, cup body assembly 2 and base assembly 3. Bowl cover assembly 1 is covered on the cup mouth of glass body assembly 2, and cup body assembly 2 is arranged on base assembly 3, arranges drive-motor (not shown) in base assembly 3, and cup body assembly 2 comprises any one sharpener assembly above-mentioned. Sharpener assembly is arranged on a glass bottom for body assembly 2, and drive-motor drives dynamic mill part 22 to work by axostylus axostyle permanent seat 23.
A kind of sharpener assembly and food cooking machine thereof being applicable to food cooking machine that the utility model provides, its structure is simple, and grinding effect is good, and is convenient to disassembly, cleaning.
Those skilled in the art can be obvious, above-mentioned exemplary embodiment of the present utility model can be carried out various modifications and variations and do not deviate spirit and scope of the present utility model. It is therefore intended that make the utility model cover drop on appended claims and equivalence technical scheme within the scope of to amendment of the present utility model and modification.

Claims (10)

1. one kind is applicable to the sharpener assembly of food cooking machine, comprise quiet mill part, dynamic mill part and axostylus axostyle permanent seat, described dynamic mill part and described axostylus axostyle permanent seat transmission coordinate fixing, described quiet mill part interval is set on described dynamic mill part, the bottom of described quiet mill part and described axostylus axostyle permanent seat coordinate fixing, it is characterized in that
Described axostylus axostyle permanent seat comprises permanent seat and axostylus axostyle, described permanent seat is axially arranged with through hole, the button bit of outwardly convex it is provided with at the top of described permanent seat, described button bit coordinates fixing with the bottom of described quiet mill part, described through hole is stretched in the bottom of described axostylus axostyle, with described permanent seat rotatable engagement, the top of described axostylus axostyle is stretched in described dynamic mill part, described permanent seat under comprise the buckling plate being fixed together, fixing cap and permanent seat body successively.
2. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 1, it is characterized in that, described buckling plate, described fixing cap and described permanent seat body open holes and center through hole have been offered, described permanent seat also comprises rivet, described rivet is arranged in order to described buckling plate, described fixing cap and described permanent seat body to be riveted together in described open holes, and the upper surface of described buckling plate is provided with the button bit of outwardly convex.
3. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 2, it is characterised in that, described button bit is the convex button of the upper surface outwardly convex of described buckling plate.
4. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 2, it is characterised in that, described rivet is sunk rivet, has offered tack hole in the bottom of described rivet.
5. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 2, it is characterised in that, described rivet, buckling plate, fixing cap are stainless steel, and described permanent seat body is aluminum alloy material.
6. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 1, it is characterized in that, in the described through hole of described permanent seat under the first oil sealing, bearing, back-up ring and the 2nd oil sealing are set successively, described first oil sealing, described bearing, described back-up ring and described 2nd oil sealing rotatable engagement are stretched in the bottom of described axostylus axostyle, and described axostylus axostyle lower periphery is provided with and the jump-ring slot of described bearing fit.
7. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 1, it is characterised in that, dynamic mill part top is provided with the wind leaf with flow-disturbing effect.
8. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 1, it is characterized in that, described quiet mill part is hollow circle tube, the barrel of described quiet mill part is provided with opening for feed, it is provided with grinding internal tooth inside the barrel of described quiet mill part, arranging disturbing flow device at the top of described quiet mill part, the open top of the described quiet mill part that described disturbing flow device is formed inside contracts to the axle center of described quiet mill part, skids off from described quiet mill part to limit described dynamic mill part.
9. it is applicable to the sharpener assembly of food cooking machine as claimed in claim 1, it is characterized in that, described dynamic mill part under comprise rotary bistrique successively, lead material screw thread and connect post, described rotary bistrique is cylindrical shape, cylinder periphery in described rotary bistrique is provided with grinding tooth, described in lead material screw thread and extend downwards along described rotary bistrique, described lead to be formed between material screw thread one lead material track, described lead material screw thread under connection post is set, be provided with axial opening upwards in the bottom of described connection post.
10. a food cooking machine, comprise bowl cover assembly, cup body assembly and base assembly, it is characterized in that, described bowl cover assembly is covered on the cup mouth of described cup body assembly, described cup body assembly is arranged on described base assembly, arranges drive-motor in described base assembly, and described cup body assembly comprises the arbitrary described sharpener assembly of claim 1-9, described sharpener assembly is arranged on the bottom of described cup body assembly, and described drive-motor drives the work of described dynamic mill part by described axostylus axostyle permanent seat.
CN201520894921.7U 2015-11-11 2015-11-11 Fine grinding ware subassembly and food processor suitable for food processor Active CN205267932U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106073544A (en) * 2016-08-19 2016-11-09 浙江绍兴苏泊尔生活电器有限公司 Grinding component and food processor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106073544A (en) * 2016-08-19 2016-11-09 浙江绍兴苏泊尔生活电器有限公司 Grinding component and food processor

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