CN204378906U - The head of soy bean milk making machine - Google Patents
The head of soy bean milk making machine Download PDFInfo
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- CN204378906U CN204378906U CN201420872833.2U CN201420872833U CN204378906U CN 204378906 U CN204378906 U CN 204378906U CN 201420872833 U CN201420872833 U CN 201420872833U CN 204378906 U CN204378906 U CN 204378906U
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Abstract
The utility model provides a kind of head of soy bean milk making machine, described head is arranged on the ladle body of described soy bean milk making machine, described head has rotating shaft, described rotating shaft is provided with crushing knife and flow-disturbing part, and described flow-disturbing part is sleeved on described rotating shaft and relatively described rotating shaft is rotatable; And described crushing knife drive the food materials in described ladle body rotate and described food materials drive described flow-disturbing part to rotate.According to the head of soy bean milk making machine of the present utility model, noise is low, and effects on slurry making is good.
Description
Technical field
The utility model relates to field of household appliances, more specifically, relates to a kind of head of soy bean milk making machine.
Background technology
Soy bean milk making machine utilizes motor as power part, drives the crushing knife High Rotation Speed in ladle body, to realize the pulverizing to the food materials in ladle body.But traditional soybean milk machine operationally noise is comparatively large, and the problem that effects on slurry making is poor, energy consumption is high, therefore exists the needs of improvement.
Utility model content
The application makes following problem and true consciousness and discovery based on inventor.
Soy bean milk making machine produces large noise when operating, reason is: crushing knife High Rotation Speed and mutually colliding with food materials, noise is produced while pulverizing food materials, and the crushing knife of High Rotation Speed drives food materials to rotate in ladle body, the inwall of food materials and ladle body clashes into generation noise mutually, thus the noise that soy bean milk making machine is operationally produced is very large.
In addition, also there is the crushing effect of not easy cleaning, food materials and effects on slurry making is poor, energy consumption is high problem in the soy bean milk making machine in correlation technique.
Document 1-CN1613410A proposes a kind of Are Easy to Clean Multi-Soya-Bean Milk Machine, wherein on head lower cover, is fixed with kuppe, so that cleaning.But this soy bean milk making machine is when operating, and the food materials rotated in ladle body and the kuppe be fixed on head collide, and increase the noise of soy bean milk making machine, and kuppe consume the kinetic energy of food materials, cause energy consumption high.
Document 2-CN102018053 discloses a kind of soy bean milk making machine, and this soy bean milk making machine comprises flow-disturbing frame and limited block, and flow-disturbing frame is set on motor output shaft, and limited block is located on the position relative with flow-disturbing frame, to stop flow-disturbing frame.When soy bean milk making machine operates, limited block stops that flow-disturbing frame rotates relative to ladle body with the food materials rotated in ladle body.Therefore, because flow-disturbing frame is motionless relative to ladle body, the same with document 1, in ladle body, the food materials of High Rotation Speed and flow-disturbing frame collide, and increase the noise of soy bean milk making machine, and the flow-disturbing frame static relative to ladle body consume the kinetic energy of food materials, causes energy consumption high.
Present inventor is found by large quantifier elimination, by flow-disturbing part is located in the ladle body of soy bean milk making machine rotationally relative to the rotating shaft and ladle body installing crushing knife, namely when soy bean milk making machine is run, rotating shaft drives crushing knife to rotate, to pulverize food materials in ladle body and to drive food materials to rotate in ladle body, food materials simultaneously in ladle body drive flow-disturbing frame to rotate (namely food materials drive upset frame to rotate relative to ladle body), simultaneously because the rotating speed of flow-disturbing frame is lower than the rotating speed of rotating shaft, therefore flow-disturbing frame also rotates relative to rotating shaft.
In other words, rotating shaft drives crushing knife High Rotation Speed, the crushing knife of High Rotation Speed drives food materials to rotate in ladle body, under the drive of food materials, flow-disturbing part absorb food materials part kinetic energy and with food materials rotating in same direction, due to flow-disturbing part rotating in same direction under the drive of food materials, the speed discrepancy of flow-disturbing part and food materials diminishes, the flow-disturbing part simultaneously rotated also can stir food materials stably, food materials being more evenly distributed in ladle body thus, the rotation of food materials is also more steady, the flow-disturbing effect of flow-disturbing part is then more remarkable, also reduce the noise that food materials and flow-disturbing part produce because speed discrepancy is comparatively large simultaneously, achieve the object to soy bean milk making machine noise reduction better.
In addition, under the drive of food materials, flow-disturbing part absorbs the part kinetic energy of food materials and with food materials rotating in same direction, food materials are under the effect of flow-disturbing part, kinetic energy diminishes, and rotating speed reduces, and the speed discrepancy of food materials and crushing knife becomes large, be equivalent to crushing knife cutting speed and become large, therefore, the effect of pulverizing can be better.
For this reason, the utility model provides the head of the little soy bean milk making machine of a kind of stirring to food materials noise that is steady, that produce.
Be arranged on the ladle body of described soy bean milk making machine according to the head of soy bean milk making machine of the present utility model, described head has rotating shaft, described rotating shaft is provided with crushing knife and flow-disturbing part, wherein said flow-disturbing part to be sleeved on described rotating shaft and can to rotate relative to described rotating shaft, and described crushing knife drives the food materials in described ladle body to rotate and described food materials drive described flow-disturbing part to rotate.
According to the head of soy bean milk making machine of the present utility model, the crushing knife of High Rotation Speed drives food materials to rotate in ladle body, under the drive of food materials, flow-disturbing part absorb food materials part kinetic energy and with food materials rotating in same direction, the speed discrepancy of flow-disturbing part and food materials diminishes, the flow-disturbing part simultaneously rotated also can stir food materials stably, food materials being more evenly distributed in ladle body thus, the rotation of food materials is also more steady, flow-disturbing part flow-disturbing effect is then more remarkable, also reduce the noise that food materials and flow-disturbing part produce because speed discrepancy is comparatively large simultaneously, achieve the object to soy bean milk making machine noise reduction better.
In addition, under the drive of food materials, flow-disturbing part absorbs the part kinetic energy of food materials and with food materials rotating in same direction, food materials are under the effect of flow-disturbing part, kinetic energy diminishes, and rotating speed reduces, and the speed discrepancy of food materials and crushing knife becomes large, be equivalent to crushing knife cutting speed and become large, therefore, the effect of pulverizing can be better.
In certain embodiments, the head of described soy bean milk making machine is also provided with damping piece, described damping piece is for hindering the rotation of flow-disturbing part described in damping.
In certain embodiments, described head comprises: head body; Head lower cover, below the below that described head lower cover is positioned at described head body and and be arranged in described head body, and surround accommodating chamber between described head body and described head lower cover; Motor, described motor to be arranged in described accommodating chamber and being connected with described rotating shaft of described motor, extend out to the below of described head lower cover under described axial rotary; Described crushing knife, is positioned at the below of described head lower cover and is fixedly mounted on described rotating shaft; With described flow-disturbing part, be positioned at the below of described head lower cover and be sleeved on rotationally on described rotating shaft.
In certain embodiments, described flow-disturbing part comprises: sleeve, and described sleeve set is on described rotating shaft and can rotate relative to described rotating shaft; With flow-disturbing body, described flow-disturbing body is positioned at the below of described head lower cover and is arranged on described sleeve.
In certain embodiments, described crushing knife is positioned at the below of described flow-disturbing body, and the upper end of described sleeve is positioned at described accommodating chamber.
In certain embodiments, described damping piece is positioned at described accommodating chamber and is sleeved on described sleeve, and the lower surface of described damping piece is resisted against on the interior diapire of described head lower cover.
In certain embodiments, described flow-disturbing body is downward opening bowl shape, and described crushing knife is positioned at the region that described opening surrounds.
In certain embodiments, described crushing knife is positioned at the inside of described flow-disturbing body.
In certain embodiments, described crushing knife is positioned at the outside of described flow-disturbing body.
Additional aspect of the present utility model and advantage become obvious by description part below, or are recognized by practice of the present utility model.
Accompanying drawing explanation
Above-mentioned and/or additional aspect of the present utility model and advantage will become obvious and easy understand from accompanying drawing below combining to the description of embodiment, wherein:
Fig. 1 is the partial schematic sectional view of the soy bean milk making machine of the head had according to the utility model embodiment.
Fig. 2 is the broken section structural representation of the head of soy bean milk making machine shown in Fig. 1.
Fig. 3 is the partial structurtes cross-sectional schematic of the head of soy bean milk making machine shown in Fig. 2.
Fig. 4 is another partial schematic sectional view of the soy bean milk making machine of the head had according to the utility model embodiment.
Reference numeral
Head 1, crushing knife 11, flow-disturbing part 12, sleeve 121, flow-disturbing body 122, rotating shaft 131, damping piece 14, head body 15, head lower cover 16, accommodating chamber 17, ladle body 2.
Detailed description of the invention
In order to more clearly understand above-mentioned purpose of the present utility model, feature and advantage, below in conjunction with the drawings and specific embodiments, the utility model is further described in detail.It should be noted that, when not conflicting, the feature in the embodiment of the application and embodiment can combine mutually.
Set forth a lot of detail in the following description so that fully understand the utility model; but; the utility model can also adopt other to be different from mode described here to implement, and therefore, protection domain of the present utility model is not by the restriction of following public specific embodiment.
As shown in Figures 1 to 4, be arranged on the ladle body 2 of soy bean milk making machine according to the head 1 of the soy bean milk making machine of the utility model embodiment, head 1 has rotating shaft 131, rotating shaft 131 is provided with crushing knife 11 and flow-disturbing part 12.
Flow-disturbing part 12 is sleeved on rotating shaft 131 and relative rotation axi 131 is rotatable.Crushing knife 11 drives the food materials in ladle body 2 to rotate in ladle body 12, and then food materials drive flow-disturbing part 12 to rotate (that is: flow-disturbing part 12 rotating in same direction under the drive of food materials).Here, be understandable that, food materials can be the mixture of " beans and water ", but are not limited thereto, such as, also can be other fluid mixture, the mixture of such as fruit or vegetables and water.In other words, here, " soy bean milk making machine " should be interpreted broadly, and is not limited to for pulverizing bean or pea.
Here, it will be appreciated that, flow-disturbing part rotatably refers to when installation crushing knife on the rotary shaft drives food materials to rotate in ladle body relative to rotating shaft, flow-disturbing part and rotating shaft all rotate relative to ladle body and flow-disturbing part rotates relative to rotating shaft simultaneously, in other words, when rotating shaft drives crushing knife to rotate, flow-disturbing part rotates relative to ladle body under the drive of food materials, and because the rotating speed of flow-disturbing part is lower than the rotating speed of rotating shaft, therefore flow-disturbing part also rotates relative to rotating shaft, flow-disturbing part rotates as freely to rotate relative to ladle body, and the angle of namely rotating is more than 360 degree.
What it will be appreciated by those skilled in the art that is, as mentioned above, in soy bean milk making machine disclosed in document 1, the kuppe with the soy bean milk making machine of kuppe is fixed on the head lower cover of soy bean milk making machine, namely kuppe cannot rotate under the drive of food materials, and the speed discrepancy of food materials and kuppe is very large, and the noise therefore produced is large, and food materials easily stick on kuppe, not easy cleaning.
There is disclosed in document 2 soy bean milk making machine of flow-disturbing frame, although flow-disturbing part rotates relative to the rotating shaft of head, but, owing to being provided with the limited block for stopping flow-disturbing part, when rotating shaft drives crushing knife to rotate, flow-disturbing part relative to the rotation of rotating shaft be rotating shaft rotate cause relatively rotate, flow-disturbing part self is static, do not rotate, namely do not rotate relative to ladle body, therefore, flow-disturbing part cannot absorb the part kinetic energy of food materials, still very large with the speed discrepancy of rotating shaft and food materials, noise is large thus, and food materials also easily stick on static flow-disturbing frame, flow-disturbing part is to the flow-disturbing of food materials and mixing effect difference and the crushing effect of crushing knife is poor.
Comparatively speaking, according to the head of the soy bean milk making machine of the utility model embodiment, rotating shaft drives crushing knife High Rotation Speed, the crushing knife of High Rotation Speed drives food materials to rotate in ladle body, under the drive of food materials, flow-disturbing part absorb food materials part kinetic energy and with food materials rotating in same direction, thus, the speed discrepancy of flow-disturbing part and food materials diminishes, the flow-disturbing part simultaneously rotated also can stir food materials stably, like this, food materials being more evenly distributed in ladle body, the rotation of food materials is also more steady, flow-disturbing part flow-disturbing effect is then more remarkable, also reduce the noise that food materials and flow-disturbing part produce because speed discrepancy is comparatively large simultaneously, achieve the object to soy bean milk making machine noise reduction better, in addition, food materials are under the effect of flow-disturbing part, and kinetic energy diminishes, and rotating speed reduces, and its speed discrepancy with crushing knife then becomes large, and be equivalent to crushing knife cutting speed and become large, therefore, the effect of pulverizing can be better.
In some preferred embodiments, head 1 is also provided with damping piece 14, damping piece 14 is for the rotation of damping flow-disturbing part 12, thus the rotating speed of flow-disturbing part 12 can be regulated as required, avoid flow-disturbing part 12 and food materials synchronous axial system, namely avoid the rotating speed of flow-disturbing part 12 identical with the rotating speed of food materials or closely, thus reduce impact velocity and the collision probability of food materials and crushing knife 11 and ladle body 2 better, realize the object of soy bean milk making machine being carried out under duty to noise reduction better.
In a specific embodiment, head 1 comprises head body 15, the below of head body 15 and the head lower cover 16 be arranged in head body 15 and motor (not shown).
Surround accommodating chamber 17 between head body 15 and head lower cover 16, motor is arranged in accommodating chamber 17 and the motor shaft of motor is connected with rotating shaft 13, and rotating shaft 13 extend out to the below of head lower cover 16 downwards.Here, what it will be appreciated by those skilled in the art that is, motor shaft and rotating shaft 13 can for two axles be connected with each other, also can be an axle, namely the motor shaft of motor extend out to the below of head lower cover 16 downwards in accommodating chamber 17, and now rotating shaft 13 also can be called it is rotating shaft or the output shaft of motor.
Crushing knife 11 to be fixedly mounted on rotating shaft 131 and to be positioned at the below of head lower cover 16.Flow-disturbing part 12 to be sleeved on rotationally on rotating shaft 131 and to be positioned at the below of described head lower cover 16.
In a concrete example, flow-disturbing part 12 comprises sleeve 121 and flow-disturbing body 122.Sleeve 121 to be sleeved on rotating shaft 131 and can to rotate by relative rotation axi 131, in other words, rotating shaft 131 through sleeve 121 and the two can relatively rotate.Flow-disturbing body 122 to be arranged on sleeve 121 and to be positioned at the below of head lower cover 16.
Sleeve in the present embodiment is connected by the form of welding with flow-disturbing body, also can be made into integral structure etc.
Preferably, bearing can be set between sleeve and rotating shaft, to reduce the wearing and tearing between sleeve and rotating shaft, reach the object extending head service life, the user demand of user can be met better.
Preferably, crushing knife 11 is positioned at the below of flow-disturbing body 122, and such as, crushing knife 11 is arranged on the lower end of rotating shaft 131, and the lower end of rotating shaft 131 extends to the below of flow-disturbing body 122.Here, crushing knife 11 is positioned at below flow-disturbing body 122 and refers to that crushing knife 11 is positioned at the below of the peak of flow-disturbing body 122.The upper end of sleeve 121 is positioned at accommodating chamber 17.
Alternatively, damping piece 14 can be fixed on the outer wall of sleeve, also can be the rotary shaft hole place passed for rotating shaft and sleeve be sleeved on head lower cover.
As shown in Figures 1 to 4, in certain embodiments, damping piece 14 is positioned at accommodating chamber 17 and is sleeved on sleeve 121, and the lower surface of damping piece 14 is resisted against on the interior diapire of head lower cover 16, and damping piece 14 also serves the effect of location to sleeve 121.
Damping piece 14 rotates for damping flow-disturbing part 12, to regulate the rotating speed of flow-disturbing part 12 according to specific needs, such as make the rotating speed of rotating speed lower than food materials of flow-disturbing part 12, to avoid food materials and flow-disturbing part 12 synchronous axial system, to reduce collision (or shock) speed and the collision probability of food materials and crushing knife 11 and ladle body 2 better, that is: realize the object of soy bean milk making machine being carried out under duty to noise reduction.
In some preferred embodiments, flow-disturbing body 122 is in downward opening bowl shape, crushing knife 11 is positioned at the region that described opening surrounds, here, it will be appreciated that, crushing knife is positioned at the region that opening surrounds and refers in plane projection, and the projection of crushing knife is positioned within the drop shadow spread of the opening of flow-disturbing body.
Certainly, flow-disturbing body 122 also can be disk-shaped or annular, and can offer the structure such as through hole, increase assistant on flow-disturbing body 122.
Preferably, as shown in Figure 1, crushing knife 11 is positioned at the inside of flow-disturbing body 122, and (that is: the lower end (minimum point) of crushing knife 11 higher than flow-disturbing body 122, the upper end (peak) lower than flow-disturbing body 122, to improve crushing effect and speed and flow-disturbing, stirring and effects on slurry making better.Alternatively, as shown in Figure 4, crushing knife 11 can be positioned at the outside of flow-disturbing body (that is: crushing knife 11 is lower than the lower end (minimum point) of flow-disturbing body 122.
Under the rotation of food materials, flow-disturbing part absorbs the part kinetic energy of food materials and rotates with food materials, and then food materials are under the effect of flow-disturbing part, kinetic energy diminishes, and rotating speed reduces, and the speed discrepancy of itself and crushing knife then becomes large, be equivalent to crushing knife cutting speed and become large, therefore, the effect of pulverizing can be better.
In some preferably embodiment, as shown in Figure 1, crushing knife 11 is positioned at flow-disturbing body interior, the bore Φ D of the lower ending opening of flow-disturbing the body 122 and diameter of phi d of crushing knife 11 (namely, when crushing knife 11 rotates formed maximum diameter of a circle) ratio be 1.06-7.25, the bore Φ D of flow-disturbing body 122 and the ratio of flow-disturbing body height H are 1-14.5, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 1-725 with the ratio of the distance h in ladle body 2 between diapire, the ratio of the rotating speed V1 of crushing knife 11 and the rotating speed V of flow-disturbing body 122 is greater than 10 and is less than or equal to 1500, distance t between crushing knife 11 and the interior diapire of soy bean milk making machine ladle body 2 (namely, the minimum point of crushing knife to ladle body interior diapire between distance) be not less than 10mm, crushing knife 11 is not higher than lower end more than the 60mm of flow-disturbing body 122, namely t1 is not more than 60mm.
In the concrete example of shown in Fig. 1, bore (diameter) the Φ D of flow-disturbing body 122 is 25-145mm, the diameter of phi d of crushing knife 11 is 20-80mm, the height H of flow-disturbing body 122 is 20-180mm, the rotating speed V of flow-disturbing body 122 is 10-1000r/min, motor speed V1 (that is: crushing knife 11 rotating speed) is 500-15000r/min, and flow-disturbing body 122 is 10-100mm with the distance h of the interior diapire of ladle body 2.
Present inventor found through experiments, and is as above arranged by the relevant parameter of soy bean milk making machine, can reduce noise further, improve effects on slurry making, reduce energy consumption.
Of the present utility modelly embodiment still provides a kind of soy bean milk making machine, in the embodiment of this soy bean milk making machine, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 1.06, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 1, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 1 with the ratio of the distance h in ladle body 2 between diapire, distance t between crushing knife 11 and the interior diapire of soy bean milk making machine ladle body 2 is 20mm, and crushing knife 11 is higher than the lower end 8mm (i.e. t1=8mm) of flow-disturbing body 122, and, bore (diameter) the Φ D of flow-disturbing body 122 is 112mm, the diameter of phi d of crushing knife 11 is 70mm, the height H of flow-disturbing body 122 is 112mm, the rotating speed V of flow-disturbing body 122 is 10r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 500r/min, flow-disturbing body 122 is 60mm with the distance h of the interior diapire of ladle body 2.
According to the soy bean milk making machine of another specific embodiment of the utility model, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 7.25, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 14.5, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 725 with the ratio of the distance h in described ladle body 2 between diapire, distance t between crushing knife 11 and the interior diapire of soy bean milk making machine ladle body 2 is 60.2mm, and crushing knife 11 is higher than the lower end 60mm of flow-disturbing body 122, namely t1 on the occasion of and be more than or equal to 60mm, and, bore (diameter) the Φ D of flow-disturbing body 122 is 145mm, the diameter of phi d of crushing knife 11 is 20mm, the height H of flow-disturbing body 122 is 10mm, the rotating speed V of flow-disturbing body 122 is 1500r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 15000r/min, flow-disturbing body 122 is 0.2mm with the distance h of the interior diapire of ladle body 2.
The soy bean milk making machine adopting the data of above-mentioned two embodiments to make, compares with the soy bean milk making machine in correlation technique, and its noise at least reduces 1-3dB.
In the embodiment shown in fig. 4, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 0.714-3.43, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 0.357-6, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 1.25-60 with the ratio of the distance h in ladle body 2 between diapire, the ratio of the rotating speed V1 of crushing knife 11 and the rotating speed V of flow-disturbing body 122 is greater than 1 and is less than or equal to 1300, and crushing knife 11 is not less than lower end more than the 20mm of flow-disturbing body 122.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 50-120mm, the diameter of phi d of crushing knife 11 is 35-70mm, the height H of flow-disturbing body 122 is 20-140mm, the rotating speed V of flow-disturbing body 122 is 100-1200r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 800-13000r/min, and flow-disturbing body 122 is 2-40mm with the distance h of the interior diapire of ladle body 2.
In certain embodiments, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 0.714, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 0.357, the bore Φ D of flow-disturbing body 122 and the lower end of flow-disturbing body 122 are 1.25 with the ratio of the distance h in described ladle body between diapire, crushing knife 11 is lower than the lower end 20mm of flow-disturbing body 122, namely t1 is-20mm, and, bore (diameter) the Φ D of flow-disturbing body 122 is 50mm, the diameter of phi d of crushing knife 11 is 70mm, the height H of flow-disturbing body 122 is 140mm, the rotating speed V of flow-disturbing body 122 is 1200r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 13000r/min, flow-disturbing body 122 is 40mm with the distance h of the interior diapire of ladle body 2.
In another specific embodiment, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 3.43, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 6, and the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 60 with the ratio of the distance h in ladle body 2 between diapire.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 120mm, the diameter of phi d of crushing knife 11 is 35mm, the height H of flow-disturbing body 122 is 20mm, the rotating speed V of flow-disturbing body 122 is 100r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 800r/min, and flow-disturbing body 122 is 2mm with the distance h of the interior diapire of ladle body 2.
Adopt the soy bean milk making machine that the data of above-described embodiment are made, compare with the soy bean milk making machine of correlation technique, its noise at least reduces 3-4dB.
In the another embodiment shown in Fig. 1, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 1.33-2.66, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 0.8-3.33, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 4-20 with the ratio of the distance h in described ladle body between diapire, the ratio of the rotating speed V1 of crushing knife 11 and the rotating speed V of flow-disturbing body 122 is 1.25-45, and crushing knife 11 is 5-30mm higher than the distance of the lower end of flow-disturbing body 122.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 80-100mm, the diameter of phi d of crushing knife 11 is 45-60mm, the height H of flow-disturbing body 122 is 30-100mm, the rotating speed V of flow-disturbing body 122 is 200-800r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 1000-9000r/min, and flow-disturbing body 122 is 5-20mm with the distance h of the interior diapire of ladle body 2.
In a specific embodiment, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 1.33, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 0.8, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 4 with the ratio of the distance h in ladle body 2 between diapire, and crushing knife 11 is 5mm higher than the distance of the lower end of flow-disturbing body 122.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 80, the diameter of phi d of crushing knife 11 is 60mm, the height H of flow-disturbing body 122 is 100mm, the rotating speed V of flow-disturbing body 122 is 200r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 9000r/min, and the distance h of the lower surface of flow-disturbing body 122 and the interior diapire of ladle body 2 is 20mm.
In some specific embodiments of soy bean milk making machine, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 2.66, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 3.33, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 20 with the ratio of the distance h in described ladle body between diapire, and crushing knife 11 is 30mm higher than the distance of the lower end of flow-disturbing body 122.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 100mm, the diameter of phi d of crushing knife 11 is 45mm, the height H of flow-disturbing body 122 is 30mm, the rotating speed V of flow-disturbing body 122 is 200r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 1000r/min, and flow-disturbing body 122 is 5mm with the distance h of the interior diapire of ladle body 2.
In other specific embodiments, the ratio of the bore Φ D of flow-disturbing body 122 and the diameter of phi d of crushing knife 11 is 1.8, the bore Φ D of flow-disturbing body 122 and the ratio of its height H are 1.9, the bore Φ D of flow-disturbing body 122 and the lower surface of flow-disturbing body 122 are 12 with the ratio of the distance h in described ladle body between diapire, and crushing knife 11 is 17mm higher than the distance of the lower end of flow-disturbing body 122.
In a concrete example, bore (diameter) the Φ D of flow-disturbing body 122 is 90mm, the diameter of phi d of crushing knife 11 is 50mm, the height H of flow-disturbing body 122 is 47.37mm, the rotating speed V of flow-disturbing body 122 is 500r/min, motor speed (that is: crushing knife 11 rotating speed) V1 is 5000r/min, and the distance h of the lower surface of flow-disturbing body 122 and the interior diapire of ladle body 2 is 7.5mm.
Adopt the soy bean milk making machine that the data of above-described embodiment are made, compare with the soy bean milk making machine of correlation technique, noise at least reduces 4-6dB.
According to the tables of data of the differential experiment 1 of the soy bean milk making machine of the utility model embodiment following (corresponding embodiment illustrated in fig. 1):
Wherein:
According to the tables of data of the differential experiment 2 of the soy bean milk making machine of the utility model embodiment following (corresponding embodiment illustrated in fig. 1):
As can be seen from above-mentioned tables of data, the slag yield of the soy bean milk making machine that the rotating ratio of crushing knife and flow-disturbing body is made when 800-1000 is better, and now the noise that produces of soy bean milk making machine is also relatively little, improves the performance of soy bean milk making machine better.
According to the tables of data of the differential experiment 3 of the soy bean milk making machine of the utility model embodiment following (corresponding embodiment illustrated in fig. 4):
Wherein:
As can be seen from above-mentioned tables of data, the slag yield of the soy bean milk making machine that the rotating speed of crushing knife is made when 8500-10000 is substantially better, and now the noise that produces of soy bean milk making machine is also relatively little, improves the performance of soy bean milk making machine better.
According to the tables of data of the differential experiment 4 of the soy bean milk making machine of the utility model embodiment following (corresponding embodiment illustrated in fig. 4):
In sum, according to the utility model example soy bean milk making machine head and there is the soy bean milk making machine of this head, the rotating shaft of head drives crushing knife High Rotation Speed, the crushing knife of High Rotation Speed drives food materials to rotate in ladle body, under the rotation of food materials, flow-disturbing part absorbs the part kinetic energy of food materials and the rotation carrying out in the same way with food materials, the speed discrepancy of flow-disturbing part and food materials diminishes, the flow-disturbing part simultaneously rotated also can stir food materials stably, like this, food materials being more evenly distributed in ladle body, the rotation of food materials is also more steady, flow-disturbing part flow-disturbing effect is then more remarkable, also reduce the noise that food materials and flow-disturbing part produce because speed discrepancy is comparatively large simultaneously, achieve the object to soy bean milk making machine noise reduction better.
In description of the present utility model, it will be appreciated that, term " " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", " on ", D score, " front ", " afterwards ", " left side ", " right side ", " vertically ", " level ", " top ", " end " " interior ", " outward ", " clockwise ", " counterclockwise ", " axis ", " radial direction ", orientation or the position relationship of the instruction such as " circumference " are based on orientation shown in the drawings or position relationship, only the utility model and simplified characterization for convenience of description, instead of indicate or imply that the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.
In addition, term " first ", " second " only for describing object, and can not be interpreted as instruction or hint relative importance or imply the quantity indicating indicated technical characteristic.Thus, be limited with " first ", the feature of " second " can express or impliedly comprise at least one this feature.In description of the present utility model, the implication of " multiple " is at least two, such as two, three etc., unless otherwise expressly limited specifically.
In the utility model, unless otherwise clearly defined and limited, the term such as term " installation ", " being connected ", " connection ", " fixing " should be interpreted broadly, and such as, can be fixedly connected with, also can be removably connect, or integral; Can be mechanical connection, also can be electrical connection or each other can communication; Can be directly be connected, also indirectly can be connected by intermediary, can be the connection of two element internals or the interaction relationship of two elements, unless otherwise clear and definite restriction.For the ordinary skill in the art, the concrete meaning of above-mentioned term in the utility model can be understood as the case may be.
In the utility model, unless otherwise clearly defined and limited, fisrt feature second feature " on " or D score can be that the first and second features directly contact, or the first and second features are by intermediary mediate contact.And, fisrt feature second feature " on ", " top " and " above " but fisrt feature directly over second feature or oblique upper, or only represent that fisrt feature level height is higher than second feature.Fisrt feature second feature " under ", " below " and " below " can be fisrt feature immediately below second feature or tiltedly below, or only represent that fisrt feature level height is less than second feature.
In the description of this description, specific features, structure, material or feature that the description of reference term " embodiment ", " some embodiments ", " example ", " concrete example " or " some examples " etc. means to describe in conjunction with this embodiment or example are contained at least one embodiment of the present utility model or example.In this manual, to the schematic representation of above-mentioned term not must for be identical embodiment or example.And the specific features of description, structure, material or feature can combine in one or more embodiment in office or example in an appropriate manner.In addition, when not conflicting, the feature of the different embodiment described in this description or example and different embodiment or example can carry out combining and combining by those skilled in the art.
Although illustrate and described embodiment of the present utility model above, be understandable that, above-described embodiment is exemplary, can not be interpreted as restriction of the present utility model, those of ordinary skill in the art can change above-described embodiment, revises, replace and modification in scope of the present utility model.
Claims (9)
1. a head for soy bean milk making machine, described head is arranged on the ladle body of described soy bean milk making machine, it is characterized in that, described head has rotating shaft, described rotating shaft is provided with crushing knife and flow-disturbing part, wherein:
Described flow-disturbing part is sleeved on described rotating shaft and relatively described rotating shaft is rotatable; And
Described crushing knife drives the food materials in described ladle body to rotate and described food materials drive described flow-disturbing part to rotate.
2. the head of soy bean milk making machine according to claim 1, is characterized in that,
The head of described soy bean milk making machine is also provided with damping piece, and described damping piece is used for the rotation of flow-disturbing part described in damping.
3. the head of soy bean milk making machine according to claim 2, is characterized in that, described head comprises:
Head body;
Head lower cover, described head lower cover to be positioned at below described head body and to be arranged in described head body, surrounds accommodating chamber between described head body and described head lower cover;
Motor, described motor is arranged in described accommodating chamber and described motor is connected with described rotating shaft, extend out to the below of described head lower cover under described axial rotary;
Described crushing knife is positioned at the below of described head lower cover and is fixedly mounted on described rotating shaft;
Described flow-disturbing part is positioned at the below of described head lower cover.
4. the head of soy bean milk making machine according to claim 3, is characterized in that, described flow-disturbing part comprises:
Sleeve, described sleeve set is on described rotating shaft and can rotate relative to described rotating shaft; With
Flow-disturbing body, described flow-disturbing body is positioned at the below of described head lower cover and is arranged on described sleeve.
5. the head of soy bean milk making machine according to claim 4, is characterized in that, described crushing knife is positioned at the below of described flow-disturbing body, and the upper end of described sleeve is positioned at described accommodating chamber.
6. the head of soy bean milk making machine according to claim 5, is characterized in that, described damping piece is positioned at described accommodating chamber and is sleeved on described sleeve, and the lower surface of described damping piece is resisted against on the interior diapire of described head lower cover.
7. the head of the soy bean milk making machine according to any one of claim 4 to 6, is characterized in that, described flow-disturbing body is downward opening bowl shape, and described crushing knife is positioned at the region that described opening surrounds.
8. the head of soy bean milk making machine according to claim 7, is characterized in that, described crushing knife is positioned at the inside of described flow-disturbing body.
9. the head of soy bean milk making machine according to claim 7, is characterized in that, described crushing knife is positioned at the outside of described flow-disturbing body.
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CN103654475B (en) * | 2013-04-22 | 2016-06-29 | 九阳股份有限公司 | It is provided with the soy bean milk making machine of little space crushing cover |
CN203379021U (en) * | 2013-06-08 | 2014-01-08 | 九阳股份有限公司 | Food processor |
CN203447136U (en) * | 2013-08-15 | 2014-02-26 | 九阳股份有限公司 | Soybean milk maker easy to wash |
CN203468332U (en) * | 2013-08-29 | 2014-03-12 | 九阳股份有限公司 | Soybean milk maker |
CN203493489U (en) * | 2013-09-02 | 2014-03-26 | 九阳股份有限公司 | Food processor with underneath motor |
CN203914532U (en) * | 2013-12-13 | 2014-11-05 | 杭州九阳小家电有限公司 | A kind of soy bean milk making machine |
CN105286635B (en) * | 2014-06-21 | 2018-10-19 | 广东美的生活电器制造有限公司 | food processor |
CN204378910U (en) * | 2014-12-31 | 2015-06-10 | 广东美的生活电器制造有限公司 | Food processor |
CN204378912U (en) * | 2014-12-31 | 2015-06-10 | 广东美的生活电器制造有限公司 | The head of food processor |
CN204378940U (en) * | 2014-12-31 | 2015-06-10 | 广东美的生活电器制造有限公司 | For the mill of food processor |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105167617A (en) * | 2014-06-21 | 2015-12-23 | 广东美的生活电器制造有限公司 | Machine head of soybean milk maker |
WO2017004940A1 (en) * | 2015-07-09 | 2017-01-12 | 中山市美斯特实业有限公司 | Flow-disturbing crushing device of food processor |
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