A kind of deslagging structure of juice extractor
Technical field
The utility model relates to a kind of juice extractor, is specifically related to a kind of deslagging structure of juice extractor.
Background technology
The Along with people's growth in the living standard; Various small household appliances are come into every family successively, and mixer, egg-whisk, juice extractor etc., juice extractor are a kind of small household appliances that are used for squeezing fruits and vegetables group foods such as various fruit juice, vegetables; Powerful; Can be used for making various beverage made of fruits or vegetables, satisfy the needs of consumer's health diet, easy to use.
Traditional juice extractor generally include main frame, juice chamber,, cutter net, cutterhead, loam cake.Said main frame drives said cutter net, cutterhead and rotates, and said cutterhead is pulverized the fruits and vegetables that will process, and the food after the pulverizing gets rid of the juice separation of will squeezing the juice through said cutter net is centrifugal.
The structure that food is discharged is pulverized in the guiding that has no between existing cutterhead and charging aperture.Deficiency below existing is set like this: after food was pulverized in smear metal, the food of pulverizing often had a lot of bulks residual, caused complete machine vibrations and waste.Food can produce centrifugal motion along with the rotation of cutter; The food of chopping is easy to just fly out; The chopping probability of food reduces greatly, and large stretch of pulp of chopping is not prone to revolve liter along the filter screen inwall, produces centrifugal eddying motion; Make it the more difficult cutting that receives cutter of concentrating, greatly reduce the crushing juice rate of juice extractor.
Summary of the invention
The technical problem that the utility model solves provides a kind of deslagging structure of juice extractor, and slag is effectively separated with juice, improves crushing juice rate.
For solving the problems of the technologies described above; The technical scheme that the utility model adopts is: a kind of deslagging structure of juice extractor, comprise cutterhead body, filter screen and cutterhead, and the cutterhead body is located at filter screen bottom; Cutterhead is located on the cutterhead body; Wherein, the deslagging structure of juice extractor also is provided with flow-guiding structure, and the residue in the process of squeezing the juice flows out through flow-guiding structure.
Described flow-guiding structure is provided with guiding gutter, and guiding gutter is circular, and the residue in the process of squeezing the juice flows out through guiding gutter.Guiding gutter has certain angle of inclination, and the residue in the process of squeezing the juice can flow out along guiding gutter.
Described flow-guiding structure also comprises the short slot of being located at the guiding gutter edge, is located at the ledge structure on the guiding gutter, is located at the retaining muscle on the flow-guiding structure outer wall and is fixed in the pushing off the slag muscle on the guiding gutter.Ledge structure plays and hinders the effect that residue flows, and the pushing off the slag muscle stops residue, and short slot can be so that residue flows out flow-guiding structure; The retaining muscle is to play when squeezing excessive food; Near its muscle can be wiped off slag is more evenly distributed the interior slag of its filter screen, simultaneously can also be with the inertia of slag with its rotation; Slag is splashed to squeeze the juice covers, the prompting user has squeezed overfeeding.When the cutterhead body rotate to be forward or reverse the time, ledge structure, short slot or do not have short slot with the retaining muscle position opposite fully with direction.
Described flow-guiding structure bottom surface and cutterhead body upper surface distance are H, 0.8mm≤H≤2.0mm; Described flow-guiding structure inner surface and cutterhead body crowning distance are h, 0.8mm≤h≤2.0mm.Through the cooperation of such distance, can make residue flow out flow-guiding structure smoothly.
Described short slot width is a, 5mm≤a≤10mm or a=0; Described retaining muscle height is b, 2mm≤b≤8mm; Described guiding gutter is provided with water conservancy diversion angle c, 0 °≤c≤45 °.When a=0, promptly be equivalent to flow-guiding structure and be not provided with short slot.
Described cutterhead body comprises provided thereon plastic parts, and a plurality of protrusions are fixed on the cutterhead or are fixed on the plastic parts.Protrusion can be arranged on cutterhead or the plastic parts.
Described cutterhead body and filter screen are one-body molded, through the one-body molded parts that reduce, and can conveniently clean, and have practiced thrift cost simultaneously.
Optional, described cutterhead body is fixedly connected with the clutch of its underpart.Cutterhead body and filter screen are two independently parts, and can take apart from clutch, when cutterhead or cutterhead body receive breakage, can guarantee the mass effect of smear metal easily with changing.
Optional, described flow-guiding structure inner surface and cutterhead outer circumference surface distance are H, 0.8mm≤H≤2.0mm; Described flow-guiding structure inner surface and cutterhead body crowning distance are h, 0.8mm≤h≤2.0mm; Described flow-guiding structure bottom surface and cutterhead body upper surface distance are d, 0.5mm≤d≤3.5mm.Cooperation through above-mentioned distance can realize that equally residue flows out.
Compared with prior art, beneficial effect is: the deslagging structure of the juice extractor of the utility model also is provided with flow-guiding structure, and the residue in the process of squeezing the juice flows out through flow-guiding structure.Described flow-guiding structure can effectively be controlled the thickness that food shreds with the gap of structure formation each other, and it is more even to slag tap, and crushing juice rate improves greatly, has effectively controlled the vibrations of complete machine simultaneously and has reduced noise.
Description of drawings
Fig. 1 is the overall structure sketch map of the utility model embodiment one;
Fig. 2 is the fit structure sketch map of the utility model embodiment one;
Fig. 3 is the flow-guiding structure sketch map of the utility model embodiment one;
Fig. 4 is the flow-guiding structure schematic top plan view of the utility model embodiment one;
Fig. 5 is the flow-guiding structure cross-sectional schematic of the utility model embodiment one;
Fig. 6 is filter screen cutter head structure first sketch map of the utility model embodiment one;
Fig. 7 is filter screen cutter head structure second sketch map of the utility model embodiment one;
Fig. 8 is the overall structure sketch map of the utility model embodiment two;
Fig. 9 is cutterhead body construction first sketch map of the utility model embodiment two;
Figure 10 is cutterhead body construction second sketch map of the utility model embodiment two;
Figure 11 is overall structure first sketch map of the utility model embodiment three;
Figure 12 is fit structure first sketch map of the utility model embodiment three;
Figure 13 is overall structure second sketch map of the utility model embodiment three;
Figure 14 is fit structure second sketch map of the utility model embodiment three.
The specific embodiment
Embodiment one
Shown in Fig. 1-7, a kind of deslagging structure of juice extractor comprises cutterhead body 2, filter screen 3 and cutterhead 4; Cutterhead body 2 is located at filter screen 3 bottoms, and cutterhead 4 is located on the cutterhead body 2, wherein; The deslagging structure of juice extractor also is provided with flow-guiding structure 1, and the residue in the process of squeezing the juice flows out through flow-guiding structure 1.Described flow-guiding structure 1 is provided with guiding gutter 11, and guiding gutter 11 is circular, and the residue in the process of squeezing the juice flows out through guiding gutter 11.
Flow-guiding structure 1 also comprises the short slot 12 of being located at guiding gutter 11 edges, is located at the ledge structure 16 on the guiding gutter 11, is located at the retaining muscle 13 on flow-guiding structure 1 outer wall and is fixed in the pushing off the slag muscle 14 on the guiding gutter 11.In the process that residue flows out, ledge structure 16 plays and hinders the effect that residue flows, and pushing off the slag muscle 14 stops residue, and short slot 12 can be so that residue flows out flow-guiding structure 1, and retaining muscle 13 can be scraped slag, leads slag and splashes, and points out whether slag is excessive.When cutterhead body 2 rotate to be forward or reverse the time, ledge structure 16, short slot 12 or do not have short slot 12 with the retaining muscle 13 positions opposite fully with direction.
Flow-guiding structure 1 bottom surface and cutterhead body 2 upper surfaces distance are H, 0.8mm≤H≤2.0mm; Described flow-guiding structure 1 inner surface and cutterhead body 2 crownings distance are h, 0.8mm≤h≤2.0mm.Through the cooperation of such distance, can make residue flow out flow-guiding structure 1 smoothly.
Short slot 12 width are a, 5mm≤a≤10mm or a=0; Described retaining muscle 13 highly is b, 2mm≤b≤8mm; Described guiding gutter 11 is provided with water conservancy diversion angle c, 0 °≤c≤45 °.When a=0, promptly be equivalent to not be provided with in the flow-guiding structure 1 short slot 12.
Cutterhead body 2 comprises provided thereon plastic parts, and a plurality of protrusions 15 are fixed on the cutterhead 4 or are fixed on the plastic parts.Protrusion 15 can be arranged on cutterhead 4 or the plastic parts.Cutterhead body 2 is one-body molded with filter screen 3.Through the one-body molded parts that reduce, thereby practiced thrift cost and can conveniently clean.
Embodiment two
Like Fig. 8,9, shown in 10, cutterhead body 2 is fixedly connected with the clutch of its underpart.Cutterhead body 2 is two independently parts with filter screen 3, and can take apart from clutch, can guarantee the mass effect of smear metal at cutterhead 4 easily with changing when perhaps cutterhead body 2 receives breakage.Remaining structure is identical with embodiment one.
Embodiment three
Shown in Figure 11-14, described flow-guiding structure 1 inner surface and cutterhead 4 outer circumference surfaces distance are H, 0.8mm≤H≤2.0mm; Described flow-guiding structure 1 inner surface and cutterhead body 2 crownings distance are h, 0.8mm≤h≤2.0mm; Described flow-guiding structure 1 bottom surface and cutterhead body 2 upper surfaces distance are d, 0.5mm≤d≤3.5mm.Cooperation through above-mentioned distance can realize that equally deslagging evenly distributes.
The above only is the preferred implementation of the utility model; Should be understood that; For those skilled in the art, under the prerequisite that does not break away from the utility model principle, can do the improvement of some suitable actual conditions to the technical scheme of utility model.Therefore, the protection domain of the utility model is not limited thereto, and those of skill in the art are any to be included within the utility model protection domain based on non-material change on the utility model technical scheme.