AU2017202583B2 - Juice extraction module for juicer - Google Patents

Juice extraction module for juicer Download PDF

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Publication number
AU2017202583B2
AU2017202583B2 AU2017202583A AU2017202583A AU2017202583B2 AU 2017202583 B2 AU2017202583 B2 AU 2017202583B2 AU 2017202583 A AU2017202583 A AU 2017202583A AU 2017202583 A AU2017202583 A AU 2017202583A AU 2017202583 B2 AU2017202583 B2 AU 2017202583B2
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Australia
Prior art keywords
crushing
screw
input port
container
extraction module
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AU2017202583A1 (en
Inventor
Jong Boo Kim
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Nuc Electronics Co Ltd
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Nuc Electronics Co Ltd
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Priority claimed from AU2013342295A external-priority patent/AU2013342295B2/en
Priority to AU2017202583A priority Critical patent/AU2017202583B2/en
Application filed by Nuc Electronics Co Ltd filed Critical Nuc Electronics Co Ltd
Publication of AU2017202583A1 publication Critical patent/AU2017202583A1/en
Priority to AU2018100086A priority patent/AU2018100086B4/en
Priority to AU2018200553A priority patent/AU2018200553B2/en
Publication of AU2017202583B2 publication Critical patent/AU2017202583B2/en
Application granted granted Critical
Priority to AU2020200479A priority patent/AU2020200479B2/en
Priority to AU2020101778A priority patent/AU2020101778B4/en
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  • Crushing And Pulverization Processes (AREA)

Abstract

Disclosed is a juice extraction module for a juicer, which includes a container 100 formed with a juice discharge port 101, a sieve 200 positioned inside of the container 100, 5 a screw 300 positioned inside of the sieve 200 to extract juice from a material, and a lid 400 coupled to a top end of the container 100 and formed with a input port 410 through which the material is input. The juice extraction module includes a crushing portion 500 formed on a top end of the screw 300 to be narrowed upward, the crushing portion 500 having a crushing blade 510 formed thereon; and a crushing processing portion 600 10 connected to the input port 410 and formed in a bottom of the lid 400 to be concave for accommodating the crushing portion 500.

Description

1. Field of the Invention
The present invention relates to a juice extraction module for a juicer, and more specifically, to a juice extraction module for a juicer having an improved structure, an embodiment of which may be capable of reducing or eliminating the inconvenience that a material should be chopped before the material is input into the juicer.
2, Description of the Related Art
In general, a juicer includes a main body, and a juice extraction module mounted onto the main body. The juice extraction module includes a container having a juice extraction space, a lid having an input port through which a material is input into the container, a screw for extracting juice from the material in the container, and a sieve for separating juice and residues from each other.
The main body includes a driving motor for rotating the screw, and a shaft of the driving motor is connected to the screw in the juice extraction module. In the conventional juicer, the material should be chopped into such a size that the screw can extract juice.
As an example, Korean Patent No. 10-0793852 discloses a juicer configured to
2017202583 10 Jul2019 cut or sever a material by a screw blade protruding from a central axis of a screw toward a lateral side of an uppermost end.
However, in the above technique, when a material has a size larger than the length of the screw blade, the material should be chopped in advance into a size smaller than the length of the screw blade.
In addition, Korean Patent No. 10-0966607 discloses a juicer having a grater provided in an entire upper surface over a screw to crush a material just before juice is extracted.
However, there are problems in that the crush using the grater is achieved at a 10 speed higher than an ordinary low speed of the juicer and also a user should press the material against the grater by a large force in order to prevent the rotation of the material due to the high speed of the grater.
Also, since the conventional juicer cuts the material and then mills the cut pieces of the material while they are pressed against a sieve in a juice extraction process, the sieve may be deformed in a moment by the pressed cut pieces.
Such deformation destroys a molding for holding a shape of the sieve or decreases the bond between the molding and the sieve to generate a gap between the molding and the sieve causing a leakage of residues and a decrease in juice extraction efficiency.
Any discussion of documents, acts, materials, devices, articles or the like which 20 has been included in the present specification is not to be taken as an admission that any or all of these matters form part of the prior art base or were common general knowledge in the field relevant to the present disclosure as it existed before the priority date of each claim of this application.
Throughout this specification the word comprise, or variations such as 25 comprises or comprising, will be understood to imply the inclusion of a stated element, integer or step, or group of elements, integers or steps, but not the exclusion of any other element, integer or step, or group of elements, integers or steps.
It would be advantageous to provide a juice extraction module for a juicer that reduces or eliminates the inconvenience of requiring that material for juicing be chopped or cut before being input into the juice extraction module.
2017202583 10 Jul2019
SUMMARY OF THE PRESENT DISCLOSURE
Disclosed herein is a structure for crushing a material in advance, the structure 5 being for use in a juice extraction module including a container having a juice extraction space, a sieve positioned inside of the container, a screw positioned inside of the container to extract juice from a material, and a lid coupled to a top end of the container and having an input port through which the material is input into the container, the structure for crushing a material in advance comprising:
a crushing portion formed on a top end of the screw to be narrowed upward and to extend above the top end of the container, the crushing portion having a crushing blade formed thereon, the lid having a crushing processing portion formed in a bottom thereof to define a recess that is gradually narrowed upward from a face of the lid coupled with the container, the recess accommodating the crushing portion, and the crushing processing portion being connected with the input port, and cooperating with the crushing portion to crush the material input through the input port in advance of the material passing below the top end of the container, wherein a bottom portion of the screw is accommodated within the sieve and rotation of the screw causes the material that has passed below the top end of the container to be pressed against the sieve to extract juice from the material.
Also disclosed herein is a structure for crushing a material in advance, the structure being for use in a juice extraction module including a container having a juice 25 extraction space, a screw for extracting juice from the material in the container and a lid having an input port through which the material is input into the container, the structure for crushing a material in advance comprising:
a crushing portion formed on a top end of the screw to be narrowed upward, the crushing portion having a crushing blade formed thereon, the lid having a crushing processing portion formed in a bottom of the lid to
2017202583 10 Jul2019 define a recess extending upward from a face of the lid coupled with the container, the recess accommodating the crushing portion, the crushing processing portion being connected with the input port, and cooperating with the crushing portion to crush the material input through the input port, and an inner surface of the crushing processing portion comprising a crushing processing surface formed to be increasingly close to the crushing blade in a direction in which the crushing blade runs from the input port.
Also disclosed herein is a juice extraction module for a juicer, the juice extraction module including:
a container formed with a juice discharge port; a sieve positioned inside of the container;
a screw to extract juice from a material, the screw being rotatable about a 15 rotational axis and having top and bottom portions spaced apart along the rotational axis, the bottom portion of the screw being accommodated within the sieve and the top portion of the screw extending from the sieve;
a lid coupled to a top end of the container, the lid having:
a top portion that includes an input port through which said material is 20 input into the juice extraction module in a direction substantially parallel to the rotational axis, a lower end of the input port being offset from the top portion of the screw in a direction perpendicular to the rotational axis, and a bottom portion that receives said material from the input port, wherein the top portion of the screw has a spiral blade formed thereon and 25 narrows toward a top end of the screw, wherein the bottom portion of the lid comprises a material guide surface that is inclined toward the rotational axis to guide said material from the lower end of the input port toward the top portion of the screw, wherein the input port is proportioned to accommodate material having a diameter 30 of greater than the shortest distance between the rotational axis and an inner
2017202583 10 Jul2019 circumferential surface of a top end of the sieve, wherein the bottom portion of the lid includes a screw accommodating portion configured to accommodate the top portion of the screw, wherein a first material processing zone for subjecting said material to a first processing action is defined between the top portion of the screw and the screw accommodating portion, and wherein a second material processing zone for subjecting said material to a second processing action is defined between the bottom portion of the screw and the sieve.
The first processing action may include said material being drawn into and 10 crushed in the first material processing zone. The second processing action may include juice being extracted from said material in the second material processing zone.
The first material processing zone may cover the entire lower end of the input port.
The lower end of the input port may be positioned within a semicircle region of a circle having the rotational axis as its centre and a diameter corresponding to that of the first material processing zone.
The first material processing zone may reduce in size between its upstream and downstream ends.
A downstream end of the material guide surface may conform to an inner surface of the sieve.
The material guide surface may have a spiral shape.
The first material processing zone may have a spiral shape.
Measured perpendicular to the rotational axis, the distance between the rotational axis and the screw accommodating portion at an upstream end of the first material processing zone may be greater than the distance between the rotational axis and the screw accommodating portion at a downstream end of the first material processing zone.
Also disclosed herein is a juice extraction module for a juicer, which includes a container formed with a juice discharge port, a sieve positioned inside of the container, a screw positioned inside of the sieve to extract juice from a material, and a lid coupled to a top end of the container and formed with a input port through which the material is input, the juice extraction module comprising:
2017202583 10 Jul2019 a crushing portion formed on a top end of the screw to be narrowed upward, the crushing portion having a crushing blade formed thereon; and a crushing processing portion connected to the input port and formed in a bottom of the lid to be concave for accommodating the crushing portion, wherein the crushing blade crushes the material in advance within the crushing processing portion.
Also disclosed herein is a juice extraction module for a juicer, comprising: a container formed with a residue discharge port and a juice discharge port; a sieve positioned inside of the container;
a screw positioned inside of the sieve to extract juice from a material, and a lid coupled to a top end of the container and formed with a input port through which the material is input, wherein a crushing portion is formed on a top end of the screw to be narrowed upward, the crushing portion having a crushing blade formed thereon, wherein the lid is formed with a crushing processing portion, the crushing processing portion being connected to the input port and accommodating the crushing portion, wherein the input port is disposed to be offset outwards from a central axis of the screw and has a width larger than the shortest distance from the central axis of the screw to an inner circumferential surface of a top end of the sieve, wherein the crushing processing portion is formed with a material guide surface for assisting guidance of the material from the input port to the sieve.
Also disclosed herein is a juice extraction module for a juicer, which includes a container formed with a juice discharge port, a sieve positioned inside of the container, a screw positioned inside of the sieve to extract juice from a material, and a lid coupled to a top end of the container and formed with a input port through which the material is input, the juice extraction module comprising:
a crushing portion formed on a top end of the screw to be narrowed upward, the crushing portion having a crushing blade formed thereon; and a crushing processing portion connected to the input port and formed in a bottom
2017202583 10 Jul2019 of the lid to be concave for accommodating the crushing portion, wherein an inner surface of the crushing processing portion comprises a crushing processing surface formed to be increasingly close to the crushing blade in a direction in which the crushing blade runs from the input port, and the crushing blade crushes the material in advance within the crushing processing portion.
Also disclosed herein is a juice extraction module for a juicer, which includes a container formed with a juice discharge port, a sieve positioned inside of the container, a screw positioned inside of the sieve to extract juice from a material, and a lid coupled to a top end of the container and formed with a input port through which the material is input, the juice extraction module comprising:
a crushing portion formed on a top end of the screw to be narrowed upward, the crushing portion having a crushing blade formed thereon; and a crushing processing portion connected to the input port and formed in a bottom of the lid to be concave for accommodating the crushing portion, wherein an inner surface of the crushing processing portion comprises a material guide surface continuing from the input port and formed to be inclined toward a central axis of the crushing portion, whereby the material guide surface guides the material so that a lateral side of the material begins to be crushed by the crushing blade, and the crushing blade crushes the material in advance within the crushing processing portion.
Also disclosed herein is a juice extraction module for a juicer, which includes a container formed with a juice discharge port, a sieve positioned inside of the container, a screw positioned inside of the sieve to extract juice from a material, and a lid coupled to a top end of the container and formed with a input port through which the material is input, the juice extraction module comprising:
a crushing portion formed on a top end of the screw, the crushing portion having a crushing blade formed thereon; and a crushing processing portion formed in the lid such that a material guide surface and a crushing processing surface of the crushing processing portion continue from the input port in a spiral shape, wherein the crushing blade crushes the material in advance within the crushing
2017202583 10 Jul2019 processing portion of the lid.
Also disclosed herein is a juice extraction module for a juicer, comprising: a container formed with a juice discharge port; a sieve positioned inside of the container;
a screw positioned inside of the sieve to extract juice from a material; and a lid coupled to a top end of the container and formed with a input port through which the material is input, wherein a crushing portion is formed on a top end of the screw, the crushing portion having a crushing blade formed thereon, and wherein the lid is formed with a crushing processing portion having a material guide surface and a crushing processing surface that extend from the input port in a spiral shape to guide the material from the input port to the sieve.
Also disclosed herein is a juice extraction module for a juicer comprising: a container formed with a juice discharge port;
a sieve positioned inside of the container;
a screw positioned inside of the sieve to rotate about a central axis and extract juice from a material, the screw including a crushing portion formed at a top end thereof which includes a crushing blade formed thereon; and a lid coupled to a top end of the container, the including an input port through which the material is input and a crushing processing portion having a material guide surface and a crushing processing surface that extend from the input port in a spiral shape to guide the material from the input port to the sieve.
Also disclosed herein is a juice extraction module for a juicer, which includes a container 100 formed with a juice discharge port 101, a sieve 200 positioned inside of the container 100, a screw 300 positioned inside of the sieve 200 to extract juice from a material, and a lid 400 coupled to a top end of the container 100 and formed with a input port 410 through which the material is input.
The juice extraction module includes a crushing portion 500 formed on a top end of the screw 300 to be narrowed upward, the crushing portion 500 having a crushing blade
510 formed thereon; and a crushing processing portion 600 connected to the input port 410
2017202583 10 Jul2019 and formed in a bottom of the lid 400 to be concave for accommodating the crushing portion 500, wherein the crushing blade 510 crushes the material in advance within the crushing processing portion 600.
According to one embodiment, the crushing blade 510 is formed so that the 5 material input through the input port 410 is crushed while a lateral side of the material is pushed outwards, and the crushing processing portion 600 is provided with an inner surface to hold the material pushed outwards by the crushing blade 510, whereby the material can be crushed between the crushing blade 510 and the inner surface of the crushing processing portion 600.
According to one embodiment, the crushing processing portion 600 is formed to cover an entire bottom region of the input port 410 at the height of the crushing processing portion 600 connected to a bottom end of the input port 410.
According to one embodiment, a bottom region of the input port 410 is positioned to be offset within a semicircle region of a circle having a diameter corresponding to a diameter of the crushing processing portion 600 with a central shaft 310 of the screw 300 as a center.
According to one embodiment, the inner surface of the crushing processing portion 600 comprises a crushing processing surface 610 formed to be increasingly close to the crushing blade 510 in a direction in which the crushing blade 510 runs from the input port 410.
According to one embodiment, the inner surface of the crushing processing portion 600 comprises a material guide surface 620 continuing from the input port 410 and formed to be inclined toward a central axis of the crushing portion 500, whereby the material guide surface 620 guides the material so that a lateral side of the material begins to be crushed by the crushing blade 510.
According to one embodiment, a bottom end of the material guide surface 620 may conform to an inner surface of the sieve 200.
According to one embodiment, the crushing portion 500 passes over a top end of the sieve 200 and is accommodated in the crushing processing portion 600, and the crushing blade 510 cooperates with the crushing processing portion 600 to crush the
2017202583 10 Jul2019 material.
Also disclosed herein is a juice extraction module for a juicer, which includes a container 100 formed with a residue discharge port 102 and a juice discharge port 101; a sieve 200 positioned inside of the container 100; a screw 300 positioned inside of the sieve
200 to extract juice from a material, and a lid 400 coupled to a top end of the container 100 and formed with a input port 410 through which the material is input, wherein a crushing portion 500 is formed on a top end of the screw 300 to be narrowed upward, the crushing portion 500 having a crushing blade 510 formed thereon, wherein the lid 400 is formed with a crushing processing portion 600, the crushing processing portion 600 being connected to the input port 410 and accommodating the crushing portion 500, wherein the input port 410 is disposed to be offset outwards from a central axis of the screw 300 and has a width larger than the shortest distance from the central axis of the screw 300 to an inner circumferential surface of a top end of the sieve 200, wherein the crushing processing portion 600 is formed with a material guide surface for assisting guidance of the material from the input port 410 to the sieve 200.
The crushing blade 510 and the crushing processing portion 600 are formed so that a distance between the crushing blade 510 and an inner surface of the crushing processing portion 600 is gradually reduced by the rotation of the crushing blade 510
The crushing processing portion 600 comprises a crushing processing surface 610, the crushing processing surface 610 is formed with at least one milling blade 630.
Also disclosed herein is a juice extraction module for a juicer, which includes a container 100 formed with a juice discharge port 101, a sieve 200 positioned inside of the container 100, a screw 300 positioned inside of the sieve 200 to extract juice from a material, and a lid 400 coupled to a top end of the container 100 and formed with a input port 410 through which the material is input, the juice extraction module comprising: a crushing portion 500 formed on a top end of the screw 300 to be narrowed upward, the crushing portion 500 having a crushing blade 510 formed thereon; and a crushing processing portion 600 connected to the input port 410 and formed in a bottom of the lid 400 to be concave for accommodating the crushing portion 500, wherein an inner surface of the crushing processing portion 600 includes a crushing processing surface 610 formed
2017202583 10 Jul2019 to be increasingly close to the crushing blade 510 in a direction in which the crushing blade 510 runs from the input port 410, and the crushing blade 510 crushes the material in advance within the crushing processing portion 600.
Also disclosed herein is a juice extraction module for a juicer, which includes a container 100 formed with a juice discharge port 101, a sieve 200 positioned inside of the container 100, a screw 300 positioned inside of the sieve 200 to extract juice from a material, and a lid 400 coupled to a top end of the container 100 and formed with a input port 410 through which the material is input, the juice extraction module including: a crushing portion 500 formed on a top end of the screw 300 to be narrowed upward, the crushing portion 500 having a crushing blade 510 formed thereon; and a crushing processing portion 600 connected to the input port 410 and formed in a bottom of the lid 400 to be concave for accommodating the crushing portion 500, wherein an inner surface of the crushing processing portion 600 comprises a material guide surface 620 continuing from the input port 410 and formed to be inclined toward a central axis of the crushing portion 500, whereby the material guide surface 620 guides the material so that a lateral side of the material begins to be crushed by the crushing blade 510, and the crushing blade 510 crushes the material in advance within the crushing processing portion 600.
A conventional juicer has inconvenience and difficulty in that an increase in length of a screw blade increases an entire outer diameter of a screw, and thus, a sieve, a container and a lid should be manufactured large so as to be fitted to the screw. However, according to the present disclosure, a material having a diameter larger than a length of a screw blade can be used, and the material can be crushed into a size suitable for extracting juice without increasing an outer diameter of a screw by a crushing processing portion formed to be concave in a bottom of a lid and a crushing portion accommodated in the crushing processing portion and cooperating with the crushing processing portion.
An embodiment of the present invention may reduce or eliminate the inconvenience and cumbersomeness that a user should chop a material before the material is input.
In addition, in an embodiment disclosed herein, a space between the crushing blade and the crushing processing portion may be gradually narrowed and the material may
2017202583 10 Jul2019 be caught and simultaneously dragged into between the crushing blade and the crushing processing portion, so that the material is effectively crushed while being automatically supplied to the screw without inconveniently pushing the material.
BRIEF DESCRIPTION OF THE DRAWINGS
Fig. 1 is a perspective view showing a juice extraction module for a juicer according to one embodiment of the present invention;
Fig. 2 is a sectional view showing the juice extraction module according to the 10 embodiment of the present invention;
Fig. 3 is a plan view showing a lid of the juice extraction module shown in Fig. 1;
Fig. 4 is a sectional view of the lid taken along line A-A of Fig. 3;
Fig. 5 is a sectional view of the lid taken along line B-B of Fig. 3; and
Fig. 6 is a front view showing a screw having a crushing portion provided on a top 15 end thereof as a portion of juice extraction module shown in Fig. 1.
DETAILED DESCRIPTION OF AN EMBODIMENT
Hereinafter, embodiments of the presently disclosed principles will be described 20 in detail with reference to the accompanying drawings.
The following embodiments are provided only for illustrative purposes so that those skilled in the art can fully understand the principles disclosed herein.
The present invention is not limited to the following embodiments but may be implemented in other forms.
In the drawings, the widths, lengths, thicknesses and the like of elements may be exaggerated for convenience of illustration.
Fig. 1 is a perspective view showing a juice extraction module for a juicer according to one embodiment of the present invention; Fig. 2 is a sectional view showing The juice extraction module according to the embodiment of the present invention; Fig. 3 is a plan view showing a lid of the juice extraction module shown in Fig. 1; Fig. 4 is a
2017202583 10 Jul2019 sectional view of the lid taken along line A-A of Fig. 3; Fig. 5 is a sectional view of the lid taken along line B-B of Fig. 3; and Fig. 6 is a front view showing a screw having a crushing portion provided on a top end thereof as a portion of juice extraction module shown in Fig. 1.
Referring to Figs. 1 to 6, a juice extraction module for a juicer according to one embodiment of the present invention includes a container 100 having a juice extraction space defined therein and having a juice discharge port 101 and a residue discharge port 102 respectively formed in one and another sides of an outer surface thereof, a sieve 200 installed inside of the container 100 to separate juice from material residues generated in juice extraction, a screw 300 installed inside of the sieve 200 to extract juice from the material, and a lid 400 installed to a top end of the container 100 and formed with an input port 410, through which a material is input.
Although not shown, an opening/closing means for selectively opening and closing the juice discharge port 101 of the container 100 may be applied to the juice extraction module.
As the opening/closing means, a cock valve may be used. The cock valve includes a valve body moving forward or backward in the juice discharge port 101, wherein a leading end of the valve body is preferably oriented toward the juice discharge port 101.
In addition, the cock valve may include a juice discharge cock, which may be selectively connected to the juice discharge port 101 by the valve body.
As a means for opening and closing the juice discharge port 101, a variety of means may be employed in addition to the above structure.
A crushing portion 500 is formed on a top end of the screw 300 to have a shape 25 narrowed upward.
The crushing portion 500 has further a crushing blade 510 formed thereon, wherein the crushing blade 510 extends in the shape of a spiral having a width gradually narrowed upward, more preferably toward a top apex of the crushing portion 500.
A central shaft 310 of the screw 300 may be formed on the top apex of the 30 crushing portion 500.
2017202583 10 Jul2019
The lid 400 has a crushing processing portion 600 formed in a bottom thereof to be concave upward from a face coupled with the container 100 in order to accommodate the crushing portion 500.
The crushing processing portion 600 has a shape gradually narrowed toward a top 5 apex corresponding to the crushing portion 500.
In addition, the top apex of the crushing processing portion 600 is formed with a shaft hole, into which the central shaft 310 of the screw 300 is rotatably fitted.
While being connected with the input port 410, the crushing processing portion 600 cooperates with the crushing portion 500 to serve to crush the material input through the input port 410.
The crushing blade 510 is inserted and positioned in the crushing processing portion 600, and the crushing blade 510 cooperates with a specific shape of an inner surface of the crushing processing portion 600 to crush the material.
The input port 410 is offset toward one side with respect to a central axis of the 15 screw 300 and simultaneously should have such a large bottom width W (or inner diameter) that a large-sized material such as an apple is allowed to be input without being chopped.
The sieve 200 has the largest inner diameter at the top end thereof, and thus, a distance from the central axis of the screw 300 to the sieve 200 is set up to be largest at the top end of the sieve 200.
The bottom width of the input port 410 is set up to be larger than the shortest distance from the central axis of the screw 300 to an inner circumferential surface of the top end of the sieve 200.
Accordingly, as viewed from the top, a region of the input port 410 partially 25 overlaps with a top end region of the sieve 200 and is out of the top end region of the sieve
200.
In contrast, a conventional juicer has a small-sized input port so as to be generally positioned inside of a region of a sieve.
Also, the crushing processing portion 600 is formed to cover the entire bottom 30 region of the input port 410 at the height of the crushing processing portion 600 connected
2017202583 10 Jul2019 to the bottom end of the input port 410.
Further, the input port 410 is within a circle region having a diameter corresponding to the diameter of the crushing processing portion 600 with the central shaft 310 of the screw 300 as the center, and more preferably, is positioned to be offset within one side of semicircle regions into which the circle region is divided by a line passing through the central shaft 310.
In addition, the inner surface of the crushing processing portion 600, particularly an inner crushing processing surface 610 is formed to be increasingly close to the crushing blade 510 of the crushing portion 500 in a direction in which the crushing blade 510 runs from the bottom end of the input port 410.
Accordingly, when the material is expelled out by the crushing blade 510, the material is held by the inner surface of the crushing processing portion 600, so that a lateral side of the material is crushed by the crushing blade 510, and the material is dragged into the crushing processing portion according to the rotation of the crushing portion.
This provides an effect of automatically crushing the material even if a user inputs the material and then does not push the material again.
The crushing portion 500 further has one or more auxiliary crushing blades formed thereon so that they assist the crushing blade 510 to crush the material more effectively.
In such a case, the crushing blade 510 first crushes the material, and the auxiliary crushing blades may crush the material more finely.
Also, as the material is dragged into the crushing processing portion, the force of pressing the screw downward is generated, so that there is an effect of suppressing the upward movement of the screw generated by permeation of material residues between a bottom surface of the screw and a floor surface of the container.
As mentioned above, since a portion of the input port 410 extends out of the top end region of the sieve 200, a material guide surface 620 is provided on the inner surface of the crushing processing portion 600 so that the material input through the input port 410 can be guided to the sieve 200.
That is, the material guide surface 620 is provided as an element for smoothly
2017202583 10 Jul2019 connecting the sieve 200 and the input port 410 extending to the outside to such an extent as to use an uncut apple as it is.
Also, the material guide surface 620 continues from the input port 410 while overlapping with the input port 410 and is formed to be inclined toward the central axis of the crushing portion 500, thereby causing a lateral side of the material to begin to be crushed by the crushing blade 510.
In order to improve crushing processibility, one or more milling blades 630 may be further formed on the crushing processing surface 610.
In this embodiment, the plurality of milling blades 630 are spaced apart from each 10 other and extend from an upper portion of the crushing processing surface 610 to a lower portion thereof, and each of the milling blades 630 is increasingly close to the crushing blade 510 as it goes from the upper portion toward the lower portion.
The crushing portion 500 passes over the top end of the container 100 and sieve 200 and is accommodated and positioned in the crushing processing portion 600 positioned in the lid 400. The crushing portion 500 and the crushing processing portion 600 cooperate with each other to fully crush the material input through the input port 410, thereby making it possible to smoothly extract juice from the material even if the user does not chop the material in advance.
Since the juice is extracted from the material fully crushed as above in the sieve
200, there is an effect of preventing the sieve 200 from being deformed.
In addition, a lateral side of the material is processed by the crushing blade 510, which can be performed only by forming the crushing portion 500 to have a length suitable for the height of the material. Thus, the protruding length of the screw blade need not extend in order to cut the material itself.
Further, a sieve insertion step 420 may be formed in a bottom of the crushing processing portion 600 to be snugly fitted to the top end of the sieve 200.
The bottom end of the material guide surface 620 meets the sieve insertion step 420 in a stepwise manner, wherein the bottom end of the material guide surface 620 is formed to conform to an inner surface of the top end of the sieve 200.
Accordingly, the material crushed through the crushing processing portion 600 is
2017202583 10 Jul2019 smoothly guided into the sieve 200 along the material guide surface 620.
As described above, it can be seen that the illustrated embodiments provide a juice extraction module for a juicer, in which a structure of crushing a material in advance is provided in a lid and a screw to reduce or eliminate an inconvenient procedure of chopping or cutting a material in advance before inputting the material.
2017202583 10 Jul2019
INDUSTRIAL APPLICABILITY
It is obvious to those skilled in the art that various modifications and applications can also be made without departing from the scope of the present invention.

Claims (18)

1. A structure for crushing a material in advance, the structure being for use in a juice extraction module including a container having a juice extraction space, a sieve
5 positioned inside of the container, a screw positioned inside of the container to extract juice from a material, and a lid coupled to a top end of the container and having an input port through which the material is input into the container, the structure for crushing a material in advance comprising:
a crushing portion formed on a top end of the screw to be narrowed upward and to
10 extend above the top end of the container, the crushing portion having a crushing blade formed thereon, the lid having a crushing processing portion formed in a bottom thereof to define a recess that is gradually narrowed upward from a face of the lid coupled with the container, the recess accommodating the crushing portion, and
15 the crushing processing portion being connected with the input port, and cooperating with the crushing portion to crush the material input through the input port in advance of the material passing below the top end of the container, wherein a bottom portion of the screw is accommodated within the sieve and rotation of the screw causes the material that has passed below the top end of the container
20 to be pressed against the sieve to extract juice from the material.
2. The structure for crushing a material in advance of claim 1, wherein the input port is offset toward one side with respect to a central axis of the screw.
25
3. The structure for crushing a material in advance of claim 1 or claim 2, wherein a bottom width of the input port is larger than a diameter of the screw.
4. The structure for crushing a material in advance of any one of the preceding claims, wherein the crushing processing portion comprises a material guide surface for
30 assisting guidance of the material from the input port to the crushing portion.
2017202583 10 Jul2019
5. The structure for crushing a material in advance of claim 1, wherein the material guide surface continues from the input port.
5
6. The structure for crushing a material in advance of any one of the preceding claims, wherein the crushing blade and the crushing processing portion are formed so that a space between the crushing blade and an inner surface of the crushing processing portion is gradually narrowed.
10
7. The structure for crushing a material in advance of any one of the preceding claims, wherein an inner surface of the crushing processing portion comprises a crushing processing surface formed to be increasingly close to the crushing blade in a direction in which the crushing blade runs from the input port.
15
8. The structure for crushing a material in advance of any one of the preceding claims, wherein a first distance defined between the central axis of the screw and a portion of the input port most remote from the central axis of the screw, the first distance being measured: (i) perpendicular to said axis; and (ii) at the bottom of the input port, is greater than a second distance defined between said axis and the inner surface of the crushing
20 processing portion, the second distance being measured: (i) perpendicular to said axis; and (ii) at the bottom of the crushing processing portion.
9. A juice extraction module for a juicer, the juice extraction module including: a container formed with a juice discharge port;
25 a sieve positioned inside of the container;
a screw to extract juice from a material, the screw being rotatable about a rotational axis and having top and bottom portions spaced apart along the rotational axis, the bottom portion of the screw being accommodated within the sieve and the top portion of the screw extending from the sieve;
a lid coupled to a top end of the container, the lid having:
2017202583 10 Jul2019 a top portion that includes an input port through which said material is input into the juice extraction module in a direction substantially parallel to the rotational axis, a lower end of the input port being offset from the top portion of the screw in a direction perpendicular to the rotational axis, and
5 a bottom portion that receives said material from the input port, wherein the top portion of the screw has a spiral blade formed thereon and narrows toward a top end of the screw, wherein the bottom portion of the lid comprises a material guide surface that is inclined toward the rotational axis to guide said material from the lower end of the input
10 port toward the top portion of the screw, wherein the input port is proportioned to accommodate material having a diameter of greater than the shortest distance between the rotational axis and an inner circumferential surface of a top end of the sieve, wherein the bottom portion of the lid includes a screw accommodating portion 15 configured to accommodate the top portion of the screw, wherein a first material processing zone for subjecting said material to a first processing action is defined between the top portion of the screw and the screw accommodating portion, and wherein a second material processing zone for subjecting said material to a second 20 processing action is defined between the bottom portion of the screw and the sieve.
10. The juice extraction module according to claim 9, wherein the first processing action includes said material being drawn into and crushed in the first material processing zone.
11. The juice extraction module according to claim 9 or 10, wherein the second processing action includes juice being extracted from said material in the second material processing zone.
30
12.
The juice extraction module according to any one of claims 9 to 11, wherein the
2017202583 10 Jul2019 first material processing zone covers the entire lower end of the input port.
13. The juice extraction module according to any one of claims 9 to 12, wherein the lower end of the input port is positioned within a semicircle region of a circle having the
5 rotational axis as its centre and a diameter corresponding to that of the first material processing zone.
14. The juice extraction module according to any one of claims 9 to 13, wherein the first material processing zone reduces in size between its upstream and downstream ends.
15. The juice extraction module according to any one of claims 9 to 14, wherein a downstream end of the material guide surface conforms to an inner surface of the sieve.
16. The juice extraction module according to any one of claims 9 to 15, wherein the
15 material guide surface has a spiral shape.
17. The juice extraction module according to any one of claims 9 to 16, wherein the first material processing zone has a spiral shape.
20 18. The juice extraction module according to any one of claims 9 to 17, wherein, measured perpendicular to the rotational axis, the distance between the rotational axis and the screw accommodating portion at an upstream end of the first material processing zone is greater than the distance between the rotational axis and the screw accommodating portion at a downstream end of the first material processing zone.
AU2017202583A 2012-11-09 2017-04-19 Juice extraction module for juicer Ceased AU2017202583B2 (en)

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AU2017202583A AU2017202583B2 (en) 2012-11-09 2017-04-19 Juice extraction module for juicer
AU2018100086A AU2018100086B4 (en) 2012-11-09 2018-01-18 Juice extraction module for juicer
AU2018200553A AU2018200553B2 (en) 2012-11-09 2018-01-23 Juice extraction module for juicer
AU2020200479A AU2020200479B2 (en) 2012-11-09 2020-01-23 Juice extraction module for juicer
AU2020101778A AU2020101778B4 (en) 2012-11-09 2020-08-12 Juice extraction module for juicer

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KR10-2012-0126516 2012-11-09
KR10-2012-0148417 2012-12-18
KR10-2013-0034337 2013-03-29
KR10-2013-0034357 2013-03-29
AU2013342295A AU2013342295B2 (en) 2012-11-09 2013-10-30 Juice extraction module for juicer
AU2014268259A AU2014268259A1 (en) 2012-11-09 2014-11-28 Juice extraction module for juicer
AU2017202583A AU2017202583B2 (en) 2012-11-09 2017-04-19 Juice extraction module for juicer

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AU2018100086A Expired AU2018100086B4 (en) 2012-11-09 2018-01-18 Juice extraction module for juicer
AU2018200553A Active AU2018200553B2 (en) 2012-11-09 2018-01-23 Juice extraction module for juicer
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AU2020200479A Active AU2020200479B2 (en) 2012-11-09 2020-01-23 Juice extraction module for juicer
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AU2014268259A1 (en) * 2012-11-09 2014-12-18 Kim, Ji Tae Juice extraction module for juicer
KR101270140B1 (en) 2012-11-09 2013-05-31 주식회사 엔유씨전자 Juice extraction module for juice
WO2019062330A1 (en) * 2017-09-28 2019-04-04 广东美的生活电器制造有限公司 Screw, food processing cup assembly and food processor

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AU2014101316A4 (en) 2014-12-04
AU2018100086B4 (en) 2018-09-27
AU2014268259A1 (en) 2014-12-18
AU2018200553A1 (en) 2018-02-15
AU2020200479A1 (en) 2020-02-13
AU2020101778B4 (en) 2021-07-08
AU2018200553B2 (en) 2019-10-31
AU2017202583A1 (en) 2017-05-11
AU2018100086A4 (en) 2018-02-15
AU2020200479B2 (en) 2022-05-12

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