WO2012086861A1 - Juicer - Google Patents

Juicer Download PDF

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Publication number
WO2012086861A1
WO2012086861A1 PCT/KR2010/009221 KR2010009221W WO2012086861A1 WO 2012086861 A1 WO2012086861 A1 WO 2012086861A1 KR 2010009221 W KR2010009221 W KR 2010009221W WO 2012086861 A1 WO2012086861 A1 WO 2012086861A1
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WO
WIPO (PCT)
Prior art keywords
juice
cylindrical portion
juicer
shaft portion
cylindrical
Prior art date
Application number
PCT/KR2010/009221
Other languages
French (fr)
Korean (ko)
Inventor
이문현
이몽룡
Original Assignee
Lee Mun Hyun
Lee Mong-Yong
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Lee Mun Hyun, Lee Mong-Yong filed Critical Lee Mun Hyun
Priority to PCT/KR2010/009221 priority Critical patent/WO2012086861A1/en
Publication of WO2012086861A1 publication Critical patent/WO2012086861A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N1/00Machines or apparatus for extracting juice
    • A23N1/02Machines or apparatus for extracting juice combined with disintegrating or cutting
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/02Citrus fruit squeezers; Other fruit juice extracting devices
    • A47J19/025Citrus fruit squeezers; Other fruit juice extracting devices including a pressing screw
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • B02C19/22Crushing mills with screw-shaped crushing means

Definitions

  • the present invention relates to a juicer for juice juice from vegetables or fruits, and more particularly, the structure is simple, easy to manufacture and reduced manufacturing cost, easy to manufacture with a large capacity juicer, simple maintenance
  • the present invention relates to a juicer capable of preventing the bearing rotatably supporting the shaft from being damaged by juice and preventing the internal accessory from being oxidized by the juice.
  • a juicer is a kind of green juice extracting juice by compressing various kinds of vegetables or fruits (hereinafter referred to as 'juice') and using a centrifugal separation method and a double gear method.
  • the centrifugal separation method is suitable as a juicer for extracting juices from fruits, etc.
  • the double gear method is configured to squeeze and squeeze the juice, or to squeeze the juice at the same time, and to extract juice from the juice.
  • the majority occupy this twin-gear juicer.
  • the pair-gear juicer is coupled to the driving unit 10 and the driving unit 10 to provide the electric force through the fastening means 50 to receive the electric power and compress the juice to compress the juice. It consists of a juice part.
  • the driving unit 10 is provided with a motor (not shown) on the inside, one end is connected to the motor through the drive housing 11 and the connection housing 13 provided with a connecting housing 13 in the axial direction outside. And the other end includes a rotating shaft 15 protruding in the axial direction in the connection housing 13 and a fixed shaft 17 provided in parallel with the rotation shaft 15 in the connection housing 13. It is composed.
  • the juicer comprises a pair of grinding roller parts in the form of a helical gear rotatably coupled to the drive unit 10 and a pair of the juice roller parts in the form of an Archimedes spiral. And a roller housing 30 which receives the roller 20 and is coupled to the driving unit 10.
  • the rollers 20 are engaged from each other by the rotation of the rotary shaft 15 to rotate, juice from the material by crushing and squeezing the juice to be injected, the juice produced by extracting from the juice Is discharged through the fine through-hole formed in the roller housing 30 while moving in the axial direction. And the juice extract juice (hereinafter referred to as 'juice residue') is conveyed to the end of the roller housing 30 and is discharged through a discharge opening (not shown) formed at the end of the roller housing 30.
  • the pair-gear juicer according to the prior art as described above is very difficult to manufacture the roller 20 in which the helical gear and the Archimedes spiral form are formed, which requires a professional processing device and requires precise processing, and the roller housing in which juice is discharged.
  • the present invention has been proposed to solve the above problems, and an object thereof is to provide a juicer that is simple in structure, easy to manufacture and maintain, and has a remarkably long maintenance cycle.
  • the present invention provides a juicer comprising a first juice body and a second juice body positioned inside the first tea juice body;
  • the third shaft portion, which is the axis of rotation of the first juice body, and the second shaft portion, which is the axis of rotation of the second juice body, are eccentric, and the juice introduced between the first juice and the second juice body is the first juice that rotates with a different axis of rotation. It provides a juicer that is pressurized between the sieve and the second juice.
  • the first juiced body has a cylindrical first cylindrical portion
  • the second juiced body has a cylindrical second cylindrical portion
  • the third shaft portion is a rotation axis of the first cylindrical portion and the second shaft portion Is the axis of rotation of the second cylindrical portion
  • the juice introduced between the first cylindrical portion and the second cylindrical portion that rotates with a different rotation axis is guided toward the narrower distance between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion It provides a juicer that is pressed between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion to be juiced.
  • the present invention there is provided with an injection unit for injecting the juice between the first cylindrical portion and the second cylindrical portion and a discharge portion for discharging the juice of the juice between the first cylindrical portion and the second cylindrical portion;
  • the first cylindrical portion is provided with a plurality of through-holes are formed when the juice is pressurized juice provides a juicer discharged through the through-holes formed in the first cylinder.
  • the input portion is located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and part of the hollow housing and exposed to the outside in the longitudinal direction of the first juice, and the rotatable in the input housing It is provided with a screw conveyor and a juicer consisting of a hollow hopper having a portion that is connected to the inner side of the inlet housing exposed to the outer side in the longitudinal direction of the first cylindrical portion and the diameter increases toward the upper portion. .
  • the present invention provides a juicer which is further provided radially spaced outward from the outer surface of the first cylindrical portion and injecting a fluid into the first cylindrical portion.
  • the discharge portion the discharge housing having an arc-shaped cross section located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and the first cylindrical portion exposed to the outer side in the longitudinal direction outside the first housing communicated with the discharge housing.
  • the discharge housing provides a juicer formed concave toward the injection means for injecting air.
  • the first juice is composed of a cylindrical first cylindrical portion, and an annular first annular portion for supporting the first cylindrical portion in the radial direction, and the first cylindrical portion from the inner diameter of the first annular portion; Connected to the third hollow shaft portion extending in the opposite direction and driven to rotate;
  • the second juice is cylindrical and is composed of a second cylindrical portion positioned inwardly of the first cylindrical portion, and at least one second annular portion provided longitudinally spaced and supporting the second cylindrical portion in a radial direction.
  • the second shaft portion provides a juicer located inwardly of the third shaft portion eccentrically with the third shaft portion.
  • the third shaft portion is a hollow shaft and the second shaft portion is located in the third shaft portion, the second shaft portion is a juice generated in the juice pressurized between the first juice and the second juice body is the second Guide means for preventing the flow along the shaft portion and toward the bearing for rotatably supporting the second shaft portion;
  • the guide means is provided with a first guide member coupled to the second shaft portion and rotated together with the second shaft portion, contacting the side surface of the first guide member or spaced apart from the side surface of the first guide member by a small distance. It provides a juicer consisting of a second guide member.
  • the inner surface of the first cylindrical portion provides a juicer which is further provided with a network formed with a plurality of micropores.
  • Juicer according to the present invention is simple in structure and easy to manufacture and maintenance, manufacturing cost is reduced and easy to enlarge, can prevent the bearing from being damaged by the juice produced in the juice, by the juice inside There is an effect that can sufficiently delay the oxidation of the part.
  • FIG. 1 is a partially exploded perspective view showing a double gear type juicer according to the prior art
  • FIG. 2 is a perspective view showing a juicer according to the present invention
  • Figure 3 is a schematic cross-sectional view for explaining the juicer according to the present invention.
  • FIG. 6 is a schematic cross-sectional view taken along the line A-A of FIG.
  • Figure 7 is a partial cross-sectional side view showing the inlet portion provided in the juicer of the present invention.
  • FIG. 8 is a schematic partial perspective view showing a discharge part provided in the juicer of the present invention.
  • FIG. 9 is a partial cross-sectional side view of the discharge part illustrated in FIG. 8;
  • FIG. 10 is an enlarged view of a portion “A” of FIG. 3.
  • Figure 11 is a schematic perspective view showing the guide means provided in the juicer of the present invention.
  • FIG. 12 is a schematic cross-sectional view of the guide means shown in FIG.
  • FIG. 2 is a perspective view showing a juicer according to the present invention
  • Figure 3 is a schematic cross-sectional view for explaining the juicer according to the present invention
  • Figures 4 and 5 to explain the structure of the juicer according to the present invention 6 is a schematic cross-sectional view taken along line AA of FIG. 3
  • FIG. 7 is a partially cutaway side cross-sectional view illustrating an input unit provided in the juicer of the present invention
  • FIG. 8 is provided in the juicer of the present invention.
  • 9 is a partial cross-sectional side view of the discharge part illustrated in FIG. 8
  • FIG. 10 is an enlarged view of a portion “A” of FIG. 3
  • FIG. 11 is provided with a juicer of the present invention.
  • FIG. 12 is a schematic perspective view showing the guide means
  • FIG. 12 is a schematic cross-sectional view of the guide means shown in FIG.
  • the horizontal direction of FIG. 3 is referred to as a 'length direction'.
  • the juicer 100 includes a base 110 serving as a support, a support means 130 fixed on the base 110, and the support means ( 130 is rotatably provided with a juice portion 150, an input portion 170 for supplying juice to the juice portion 150, and a discharge portion for discharging the juice residue from the juice portion 150 ( 180, and a driving unit 140 for rotationally driving the juicer 150.
  • a cover 120 accommodating some of the components therein.
  • the juice part 150 is composed of a first juice body 151 and a second juice body 155 positioned inside the first tea body 151.
  • the first juicer 151 is connected to the third shaft portion 1455 to be rotated
  • the second juicer 155 is connected to the second shaft portion 1453 to be driven to rotate.
  • the third shaft portion 1455 which is the rotation shaft of the first juice body 150
  • the second shaft portion 1453 which is the rotation shaft of the second juice body 155
  • the second shaft portion 1453 and the third shaft portion 1455 are provided in parallel. However, the present invention is not limited to the parallel and may be provided to have a small angle.
  • the support means 130 includes a first support 131, a second support 133, and a third support 121 that are spaced apart in the longitudinal direction on the base 110.
  • the first support 131 and the third support 121 are provided at both sides of the second support 133 in the longitudinal direction.
  • the third support 121 may serve as a cover covering an opening formed to one side of the cover 120.
  • the first support 131, the second support 133, and the third support 121 may be formed of a plate member, and may have a structure in which a plurality of plate members are connected to each other.
  • the lower end may further include at least one reinforcing support 123 fixed to the base 110 and laterally connected to the third support 121.
  • the support means 130 rotatably supports the first shaft portion 1451, the second shaft portion 1453, and the third shaft portion 1455 through a bearing.
  • the first juice member 151 is a first annular portion of the annular annular portion that is connected to the first cylindrical portion 1511 and the first cylindrical portion 1511 to support the first cylindrical portion 1511 in the radial direction 1513, the third shaft portion 1455 rotatably installed on the second support 133 via a bearing is connected to the first annular portion 1513.
  • the third shaft portion 1455 may be inserted into and connected to the inner diameter of the first annular portion 1513.
  • the third shaft portion 1455 extends in a direction opposite to the first cylindrical portion 1511 with respect to the first annular portion 1513.
  • the first juice body 151 is supported in the radial direction by connecting the first annular portion 1513 to the third shaft portion 1455 in one longitudinal direction.
  • the other side of the first cylindrical portion 1511 of the first juice body 151 is supported in the radial direction by one or more support rollers 161 rotatably installed on the third support 121.
  • the support roller 161 is protruded toward the first cylindrical portion 1511 on the third support 121 to rotatably support the first cylindrical portion 1511.
  • a support ring 1515 may be installed at the other end of the first cylindrical portion 1511, and the support ring 1515 may be rotatably contacted with the support roller 161 to support the first cylindrical portion 1511. have.
  • the support roller 161 is installed on the third support 121 so as to contact the lower outer side of the first cylindrical portion 1511.
  • the third shaft portion 1455 is formed of a hollow body, and the first juicer 151 is open toward the right in the longitudinal direction.
  • the second shaft portion 1453 serving as the rotating shaft of the second juice body 155 is rotatably supported by the first support 131 through the bearing, and the other side is connected to the third support 121 by the bearing. Rotationally supported by the media.
  • the second shaft portion 1453 is installed through the inner diameter of the hollow third shaft portion 1455, and as shown in FIGS. 3 and 6, the second shaft portion 1453 is connected to the first juicer 151.
  • the third shaft portion 1455 and its center are installed to be eccentric.
  • the second juice portion 155 is installed on the second shaft portion 1453 and rotates together with the second shaft portion 1453.
  • the second juice 155 is located in the first juice 151.
  • the second juicer 155 is formed of a cylindrical second cylindrical portion 1553 and a plurality of second annular portions 1551 spaced in the longitudinal direction and connected to the second cylindrical portion 1553 in an outer diameter.
  • the second shaft portion 1453 is connected to the second annular portion 1551 so as to rotate integrally with the second annular portion 1551.
  • the second shaft portion 1453 may be inserted into and connected to the second annular portion 1551.
  • the second juice 155 is located in the first juice 151.
  • the first cylindrical portion 1511 and the second cylindrical portion 1553 have rotation centers eccentric with each other, as shown in FIGS.
  • the interval between the first cylindrical portion 1511 and the second cylindrical portion 1553 is formed at the upper portion of the upper portion, and can be installed with a different rotation center so as to be formed smaller at the lower portion.
  • 1455a illustrates the center of rotation of the first juice 151
  • 1453a illustrates the center of rotation of the second juice 155
  • the second juice 155 The center of rotation 1453a is spaced apart from the center of rotation of the first juice body 151.
  • the interval formed between the first juicer 151 and the second juicer 155 at the upper part by varying the center of rotation is the first juicer 151 and the second juicer ( It may be formed larger than the gap formed between the 155.
  • the juice (S) is introduced into a portion formed with a large gap between the first cylindrical portion (1511) and the second cylindrical portion (1553), the added juice is rotated in the direction indicated by the arrow and the arrow in FIG.
  • the first juice 151 and the second juice 155 is guided downwardly formed with a small gap, is pressed between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 is juiced. .
  • the driving unit 140 may include a motor 141, a first gear 1471 and a third gear 1475 coupled to the first shaft portion 1451, and a second gear 1473 coupled to the second shaft portion 1453. And a fourth gear 1477 coupled to the third shaft portion 1455.
  • a motor 141 is installed on the base 110, and the second shaft portion 1453 and the third shaft portion 1455 are driven and rotated by the motor 141.
  • the first shaft portion 1451 is provided at one outer side of the third shaft portion 1455. One side of the first shaft portion 1451 is rotatably supported by the first support 131 through the bearing, and the other side is rotatably supported by the second support 133 through the bearing.
  • the first shaft portion 1451 may be spaced apart from the lower portion of the third shaft portion 1455 to the outside of the third shaft portion 1455.
  • the pulley is mounted on the shaft of the motor 141, the pulley is mounted on the left end of the first shaft portion 1451 in the longitudinal direction, and the rotation of the motor 141 is performed by connecting both pulleys with the belt 143. It can be delivered to the shaft (1451).
  • the first gear 1471 is provided at one side of the first shaft portion 1451, and the first gear 1471 is formed at a portion of the second shaft portion 1453 protruding from the third shaft portion 1455 to the left in the longitudinal direction.
  • the second gear 1473 is engaged with the gear.
  • a third gear 1475 is installed at the right end in the longitudinal direction of the first shaft portion 1451, and a fourth gear 1477 meshing with the third gear 1475 is installed at the third shaft portion 1455.
  • the first shaft portion 1451 is rotated by the belt 143 and the pulley, and the second shaft portion 1453 is connected by the first gear 1471 and the second gear 1473.
  • the third shaft portion 1455 rotates by the connection of the third gear 1475 and the fourth gear 1477.
  • the second juice 155 connected to the second shaft 1453 and the first juice 151 connected to the third shaft 1455 rotate.
  • the first juice 151 and the second juice 155 is rotated in the same direction as shown by the arrow in Figure 6, the first gear (1471), the second gear (1473), the third gear (
  • the gear ratio of 1475 and the fourth gear 1477 can be adjusted so that the circumferential speed is the same.
  • reference numeral 1331 denotes a housing provided in the second support 133 and the outer ring of the bearing is inserted
  • 1491 and 1493 denote second shaft portions 1453 on both sides of the second shaft portion 1453. It shows a pressing means for pressing downward.
  • the lower end of the pressing means is provided with a roller which rotates in contact with the second shaft portion 1453, and is provided with a spring for pressing the roller downward to act to press the second shaft portion 1453 downward.
  • the first cylindrical portion 1511 of the first juice 151 and the second juice 155 of the first juice 151 are eccentrically installed so that the interval of the upper portion is wider and the interval decreases toward the lower portion.
  • An input unit 170 for inputting a juice between the second cylindrical portion 1553 is provided.
  • the input unit 170 and the discharge unit 180 may be installed at an upper portion having a wide interval between the first cylindrical portion 1511 and the second cylindrical portion 1553.
  • the inlet unit 170 is a hollow inlet housing 173, a screw conveyor 177 rotatably provided in the inlet housing 173, and the first cylindrical portion 1511 are exposed outward in the longitudinal direction.
  • the input housing 173 is connected to communicate with the inside of the input housing 173, and consists of a hollow input hopper 171 having a portion that increases in diameter upward.
  • the input hopper 171 extends upwardly from the input housing 173.
  • the input unit 170 is preferably installed so as to be biased in the rotational direction of the first juice 151 and the second juice 155 from the center of the upper portion.
  • a portion of the input housing 173 is located between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion, and the remaining portion is a longitudinal outer side of the first cylindrical portion 1511 of the first juicer 151. Is exposed.
  • the input housing 173 is fixedly installed on the third support 121, a part of which is located to the left of the third support 121 in the longitudinal direction, and the other part of the input housing 173 to the right of the third support 121 in the longitudinal direction.
  • the input hopper 171 is connected to the input housing 173 located to the right of the third support 121.
  • the driving means 178 for rotating the screw conveyor 177 may be provided at the right end in the longitudinal direction of the input housing 173.
  • the screw conveyor 177 is rotatably supported at the left end in the longitudinal direction of the input housing 173.
  • a discharge hole 174 is formed downward in a portion of the input housing 173 positioned between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553.
  • the juice falling into the feeding housing 173 through the feeding hopper 171 rotates in the feeding housing 173. It is transferred to the left in the longitudinal direction by 177, and falls between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 through the discharge hole 174 formed in the input housing 173.
  • the dropped juice is guided to a narrow gap between the first cylindrical portion 1511 and the second cylindrical portion 1553 as shown in FIG. 6 and the inner surface of the first cylindrical portion 1511 and the second cylinder. Pressurized by the outer surface of the portion 1553 is juiced.
  • a plurality of through holes 1512 are formed in the first cylindrical portion 1511 provided in the first juice body 151 as shown in FIGS. 4 and 5.
  • the inner surface of the first cylindrical portion 1511 may be provided with a net body 153 is formed with a plurality of micropores.
  • the micro-pores are formed in a small size of the juice is discharged and the juice residue is not discharged, for example, when formed in a circular shape may be formed in a size of 0.5 mm or less in diameter, when formed in a square, the length of one side May be formed to a size of 0.5 mm or less.
  • the first cylindrical portion 1511 serves to support the net body 153.
  • the through hole 1512 formed in the first cylindrical portion 1511 may be formed sufficiently large as compared with the micropores.
  • the inventor conducted the juice experiment by forming the through hole 1512 in the circumferential length of 8 mm and the longitudinal width of 4 mm.
  • the juice generated by being pressed between the first cylindrical portion 1511 and the second cylindrical portion 1553 is discharged through the through holes 1512 formed in the first cylindrical portion 1511 and the micropores of the net, and the juice residue Some or all of the first cylindrical portion 1511 or the inside of the net body 153 is attached to the inside of the net body 153 is rotated together. Therefore, the separating means 189 for separating the juice residue attached to the inside is provided to be spaced apart from the first cylindrical portion 1511 to the outside of the first cylindrical portion 1511. The separating means 189 injects the fluid in an inward direction from the outside of the first cylindrical portion 1511.
  • the separating means 189 is connected to a cooling cycle (not shown) provided in an air conditioner or the like as an injection nozzle to inject a low temperature fluid (for example, air) to the first cylindrical portion 1511.
  • the separating means 189 may be formed of a spray nozzle having a nozzle hole extending in the longitudinal direction of the first cylindrical portion 1511.
  • the juice generated from the juice is discharged through the first cylindrical portion 1511 and falls downward, and is collected into a collecting portion (not shown) by the collection guide portion 157 provided below the first cylindrical portion 1511. .
  • the collection guide portion 157 is spaced apart from the lower portion of the first cylindrical portion 1511 and is inclined to one side so as to guide the juice falling from the first cylindrical portion 1511 and is formed to a sufficient size.
  • the collection guide portion 157 may be formed to be larger than the projected area of the first cylindrical portion 1511.
  • the discharge unit 180 is disposed between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 and extends outwardly in a longitudinal direction, and communicates with the discharge housing portion, and discharges from the discharge housing portion. And a downwardly extending discharge guide part 189 and a screw conveyor 188 rotatably provided in the discharge housing part.
  • the discharge housing portion has an arcuate discharge housing 183 having a circular cross section located between an inner surface of the first cylindrical portion 1511 and an outer surface of the second cylindrical portion 1553, and a first cylindrical portion 1511 from the discharge housing 183. It consists of a first discharge housing 185 extending in the longitudinal direction of the.
  • the discharge housing 183 and the first discharge housing 185 communicate with each other.
  • the discharge housing part may be fixedly installed on the third support 121, the discharge housing 183 may be extended to the inside of the third support 121, and the first discharge housing 185 may be extended to the outside.
  • the discharge guide 189 extends downward from the first discharge housing 185.
  • An inner end of the screw conveyor 188 may be rotatably supported by the discharge housing 183, and an outer end of the screw conveyor 188 may be rotatably supported by the first discharge housing 185.
  • the discharge housing 183 includes a cylindrical housing support 1183 at which an inner end of the screw conveyor 188 is rotatably inserted at an inner end thereof.
  • Driving means 188 for rotating the screw conveyor 188 may be provided at the right end in the longitudinal direction of the first discharge housing 185, the screw conveyors 178, 188 are connected to the motor 141. And may be driven.
  • the discharge housing 183 is positioned below the separating means 189 for injecting fluid and has a recessed portion toward the separating means 189.
  • the first discharge housing 185 may be formed of a hollow tube or may be formed in an arc shape.
  • the discharge part 180 may be installed to be deflected in a direction opposite to the rotation direction of the first juice 151 and the second juice 155 at the upper center portion.
  • the juice residue which is attached to the inner surface of the first cylindrical portion 1511 and rotated together after being juiced by the fluid sprayed from the separating means 189, is separated from the first cylindrical portion 1511 and discharged from the discharge housing part ( Falling toward 183, it is transported outward in the longitudinal direction by a screw conveyor 187 rotating in the discharge housing 183, and is discharged downward through the discharge guide unit 189 connected to the first discharge housing 185. .
  • the second shaft portion 1453 is inserted into and installed in the second annular portion 1553.
  • a screw thread is formed on the second shaft portion 1453 and fastened with a nut to be attached to one side or both sides.
  • the second annular portion 1553 of the second juice body 155 may be pressed from the outside to fix the second juice body 155 to the second shaft portion 1453.
  • Juice generated by the juice is pressurized in the juicer 100 of the present invention is discharged through the through-hole 1512 formed in the first cylindrical portion 1511, a portion flows along the outer surface of the second cylindrical portion 1553 Causes to fall to the second shaft portion 1453 and to continue to flow along the second shaft portion 1453 to reach the bearing rotatably supporting the second shaft portion 1453, thereby damaging the seal provided in the bearing and eventually damaging the bearing. Becomes
  • the guide means 190 for guiding the juice flowing along the second shaft portion 1453 to the body before reaching the bearing is provided.
  • the juice flowing along the inner surface of the second cylindrical portion 1553 may reach the first annular portion 1513 of the first juice body 151, but the third shaft portion 1455 is provided through the first annular portion 1513. Because of the flow to the inner surface of the possibility of damaging the bearing for supporting the third shaft portion 1455 is significantly lower.
  • the guide means 190 is coupled to the second shaft portion 1453 to rotate together with the second shaft portion 1453 and the first guide member 192. 1 is provided in contact with the side of the guide member 192 or spaced apart from the side of the first guide member 192 by a small distance (t) and is composed of a second guide member 191 fixed to the body.
  • the first guide member 192 is annular, and the second shaft portion 1453 is inserted into the first guide member 192 so that the first guide member 192 is installed on the second shaft portion 1453.
  • the first guide member 192 may be formed in a multi-stage shape, and may include a second ring portion 1921 having a small diameter, and a first ring portion 1923 having a large diameter and forming a stage with the second ring portion 1921. have.
  • the second guide member 191 is positioned below the first guide member 192, and the plate-shaped connector 1911 and the connector 1911 are fixed by fixing means 1915 such as screws. It consists of a support member 1913.
  • the support member 1913 is fixed to the body.
  • the body is meant to include a fixing structure provided in the base, such as the cover 120, the first support 131, the second support 133.
  • the connecting body 1911 may be provided in contact with the left or right side in the longitudinal direction of the first guide member 192 or by forming a micro gap between the side of the first guide member 192 as shown in FIG. 12. Can be.
  • the micro-gap means a gap up to an interval capable of contacting the juice flowing along the side of the first guide member 192.
  • the connector 1911 may be formed in a plate shape, and the material may be selected from metal, plastic, and the like, and may be formed to have a thin thickness to have elasticity.
  • the guide means 190 is installed on the left side in the longitudinal direction of the second shaft portion 1453.
  • the guide means 190 may be provided in plural places where it is possible to prevent the bearing from being damaged. Do.
  • the present invention provides a juicer that is easy to repair, simple to manufacture, and can be manufactured with a large-capacity juicer.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Polymers & Plastics (AREA)
  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The present invention relates to a juicer (100) which comprises a first juicing body (151) and a second juicing body (155) positioned inside the first juicing body (151); wherein a first shaft part (1455) constituting the rotational axis of the first juicing body (151) and a second shaft part (1453) constituting the rotational axis of the second juicing body (155) are eccentric, and the object to be juiced, which is introduced between the first juicing body (151) and second juicing body (155), is juiced by being compressed between the first juicing body (151) and the second juicing body (155) which rotate on different rotational axes; and the invention has the advantages that it is of simple construction and easy to produce and maintain, construction costs are reduced and it is easy to make in a large form.

Description

착즙기Juicer
본 발명은 채소나 과일 등으로부터 즙을 착즙하는 착즙기에 관한 것으로, 보다 상세하게는 구조가 간단하여 제작이 용이하고 제조 비용이 절감되며, 대용량의 착즙기로 제조하는 것이 용이하며, 유지 보수가 간단하며, 축을 회전 가능하게 지지하는 베어링이 착즙에 의하여 손상되는 것을 방지할 수 있으며, 내부 부속품이 착즙에 의하여 산화되는 것을 방지할 수 있는 착즙기에 관한 것이다.The present invention relates to a juicer for juice juice from vegetables or fruits, and more particularly, the structure is simple, easy to manufacture and reduced manufacturing cost, easy to manufacture with a large capacity juicer, simple maintenance The present invention relates to a juicer capable of preventing the bearing rotatably supporting the shaft from being damaged by juice and preventing the internal accessory from being oxidized by the juice.
일반적으로 착즙기란 각종 채소 또는 과일 등의 재료(이하에서 '착즙물'이라 한다)를 압착하여 즙을 추출하는 녹즙기의 일종으로 원심분리방식과 쌍 기어방식을 사용한다. Generally, a juicer is a kind of green juice extracting juice by compressing various kinds of vegetables or fruits (hereinafter referred to as 'juice') and using a centrifugal separation method and a double gear method.
원심분리방식은 과일 등으로부터 과즙을 추출하는 주서(Juicer) 등으로 적합하며, 쌍 기어방식은 착즙물을 세절 및 압착하거나 세절과 동시에 압착하여 착즙물로부터 착즙하는 구성으로 현재 착즙기 시장수요의 거의 대부분을 이 쌍 기어방식의 착즙기가 점유하고 있다.The centrifugal separation method is suitable as a juicer for extracting juices from fruits, etc., and the double gear method is configured to squeeze and squeeze the juice, or to squeeze the juice at the same time, and to extract juice from the juice. The majority occupy this twin-gear juicer.
이러한 쌍 기어방식의 착즙기는 도 1에 도시한 바와 같이, 전동력을 제공하는 구동부(10)와 상기 구동부(10)에 체결수단(50)을 통하여 결합되어 전동력을 제공받으며 착즙물을 압착하여 착즙하는 착즙부로 구성된다.As shown in FIG. 1, the pair-gear juicer is coupled to the driving unit 10 and the driving unit 10 to provide the electric force through the fastening means 50 to receive the electric power and compress the juice to compress the juice. It consists of a juice part.
상기 구동부(10)는 내측에 모터(미도시)가 구비되고, 축 방향 외측으로 연결하우징(13)이 구비된 구동하우징(11)과 상기 연결하우징(13)을 관통하여 일단부는 상기 모터에 연결되고 타단부는 상기 연결하우징(13)에 축 방향으로 돌출되어 구비된 회전축(15)과 상기 연결하우징(13)에 상기 회전축(15)과 나란하게 구비되어 고정된 고정축(17)을 포함하여 구성된다.The driving unit 10 is provided with a motor (not shown) on the inside, one end is connected to the motor through the drive housing 11 and the connection housing 13 provided with a connecting housing 13 in the axial direction outside. And the other end includes a rotating shaft 15 protruding in the axial direction in the connection housing 13 and a fixed shaft 17 provided in parallel with the rotation shaft 15 in the connection housing 13. It is composed.
착즙부는 도 1에 도시한 바와 같이, 상기 구동부(10)에 회동가능하게 결합되는 헬리컬(Helical) 기어 형태의 한 쌍의 분쇄롤러부와 아르키메데스(Archimedes) 나선 형태의 한 쌍의 착즙롤러부로 구성된 롤러(20) 및 상기 롤러(20)를 수용하여 상기 구동부(10)에 결합되는 롤러하우징(30)으로 구성된다.As shown in FIG. 1, the juicer comprises a pair of grinding roller parts in the form of a helical gear rotatably coupled to the drive unit 10 and a pair of the juice roller parts in the form of an Archimedes spiral. And a roller housing 30 which receives the roller 20 and is coupled to the driving unit 10.
상술한 바와 같이 착즙기가 구성되면, 상기 롤러(20)는 상기 회전축(15)의 회전에 의해 상호 맞물려 회전하면서, 투입되는 착즙물을 분쇄하고 압착시킴으로써 재료로부터 착즙하고, 착즙물로부터 추출 생성된 착즙은 축 방향 외측으로 이동되면서 롤러하우징(30)에 형성된 미세 통공을 통하여 배출된다. 그리고 착즙된 착즙물 찌꺼기(이하에서 '착즙 잔류물'이라 한다)는 롤러하우징(30)의 단부까지 이송되고 롤러하우징(30) 단부에 형성된 배출 개구부(도시하지 않음)를 통하여 배출된다.When the juicer is configured as described above, the rollers 20 are engaged from each other by the rotation of the rotary shaft 15 to rotate, juice from the material by crushing and squeezing the juice to be injected, the juice produced by extracting from the juice Is discharged through the fine through-hole formed in the roller housing 30 while moving in the axial direction. And the juice extract juice (hereinafter referred to as 'juice residue') is conveyed to the end of the roller housing 30 and is discharged through a discharge opening (not shown) formed at the end of the roller housing 30.
상기와 같은 종래 기술에 의한 쌍 기어방식 착즙기는 헤리컬 기어와 아르키메데스 나선 형태가 형성된 롤러(20)를 제조하는 것이 매우 어려워 전문적인 가공 장치가 필요하고 정밀 가공을 요하며, 착즙이 배출되는 롤러하우징(30)의 미세 통공이 착즙 잔류물에 의하여 막히는 현상이 자주 발생하며, 롤러하우징(30)의 구조가 길고 가는 형태이므로 세척이 어려운 문제점이 있었다. The pair-gear juicer according to the prior art as described above is very difficult to manufacture the roller 20 in which the helical gear and the Archimedes spiral form are formed, which requires a professional processing device and requires precise processing, and the roller housing in which juice is discharged. A phenomenon in which the micro-pores of the 30 are clogged by the juice residue frequently occurs, and the structure of the roller housing 30 is long and thin, which makes it difficult to clean.
본 발명은 상기와 같은 문제점을 해결하기 위하여 제안된 것으로서, 구조가 간단하여 제조와 유지 보수가 용이하며, 보수 주기가 현저하기 길어진 착즙기를 제공하는 것을 목적으로 한다.The present invention has been proposed to solve the above problems, and an object thereof is to provide a juicer that is simple in structure, easy to manufacture and maintain, and has a remarkably long maintenance cycle.
상기 목적을 달성하기 위하여 본 발명은 제1 착즙체와 상기 제1 차즙체 내측으로 위치하는 제2 착즙체로 이루어지는 착즙기에 있어서; 상기 제1 착즙체의 회전축인 제3 축부와 제2 착즙체의 회전축인 제2 축부는 편심되며, 상기 제1 착즙체와 제2 착즙체 사이로 투입된 착즙물은 회전축을 달리하여 회전하는 제1 착즙체와 제2 착즙체 사이에서 가압 착즙되는 착즙기를 제공한다.In order to achieve the above object, the present invention provides a juicer comprising a first juice body and a second juice body positioned inside the first tea juice body; The third shaft portion, which is the axis of rotation of the first juice body, and the second shaft portion, which is the axis of rotation of the second juice body, are eccentric, and the juice introduced between the first juice and the second juice body is the first juice that rotates with a different axis of rotation. It provides a juicer that is pressurized between the sieve and the second juice.
또한 본 발명은, 상기 제1 착즙체는 원통형의 제1 원통부를 구비하고, 상기 제2 착즙체는 원통형의 제2 원통부를 구비하며, 상기 제3 축부는 제1 원통부의 회전축으로 되며 제2 축부는 제2 원통부의 회전축으로 되며, 회전축을 달리하여 회전하는 제1 원통부와 제2 원통부 사이로 투입된 착즙물은 제1 원통부의 내면과 제2 원통부의 외면 사이의 간격이 좁아지는 쪽으로 안내되면서 제1 원통부의 내면과 제2 원통부의 외면 사이에서 가압되어 착즙되는 착즙기를 제공한다.In another aspect, the present invention, the first juiced body has a cylindrical first cylindrical portion, the second juiced body has a cylindrical second cylindrical portion, the third shaft portion is a rotation axis of the first cylindrical portion and the second shaft portion Is the axis of rotation of the second cylindrical portion, the juice introduced between the first cylindrical portion and the second cylindrical portion that rotates with a different rotation axis is guided toward the narrower distance between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion It provides a juicer that is pressed between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion to be juiced.
또한 본 발명은, 상기 제1 원통부와 제2 원통부 사이로 착즙물을 투입하는 투입부와 상기 제1 원통부와 제2 원통부 사이에서 착즙된 착즙물을 배출하는 배출부가 구비되며; 상기 제1 원통부에는 복수의 통공이 형성되어 착즙물이 가압될 때 생성되는 착즙은 제1 원통부에 형성된 통공을 통하여 배출되는 착즙기를 제공한다. In another aspect, the present invention, there is provided with an injection unit for injecting the juice between the first cylindrical portion and the second cylindrical portion and a discharge portion for discharging the juice of the juice between the first cylindrical portion and the second cylindrical portion; The first cylindrical portion is provided with a plurality of through-holes are formed when the juice is pressurized juice provides a juicer discharged through the through-holes formed in the first cylinder.
또한 본 발명은, 상기 투입부는 일부는 상기 제1 원통부의 내면과 제2 원통부의 외면 사이에 위치하고 일부는 제1 착즙체의 길이 방향 외측으로 노출된 중공의 투입하우징과, 상기 투입하우징 내에 회전 가능하게 구비된 스크루 컨베이어와, 상기 제1 원통부의 길이 방향 외측으로 노출된 투입하우징 부분에 투입하우징 내측으로 연통되도록 연결되며 상방으로 갈수록 지름이 증가하는 부분을 가지는 중공의 투입호퍼로 이루어지는 착즙기를 제공한다.In another aspect, the input portion is located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and part of the hollow housing and exposed to the outside in the longitudinal direction of the first juice, and the rotatable in the input housing It is provided with a screw conveyor and a juicer consisting of a hollow hopper having a portion that is connected to the inner side of the inlet housing exposed to the outer side in the longitudinal direction of the first cylindrical portion and the diameter increases toward the upper portion. .
또한 본 발명은, 상기 제1 원통부 외면으로부터 반경 방향으로 외측으로 이격 구비되며 제1 원통부의 내부로 유체를 분사하는 분사수단을 더 포함하는 착즙기를 제공한다. In another aspect, the present invention provides a juicer which is further provided radially spaced outward from the outer surface of the first cylindrical portion and injecting a fluid into the first cylindrical portion.
또한 본 발명은, 상기 배출부는 상기 제1 원통부 내면과 제2 원통부 외면 사이에 위치하는 단면이 원호형인 배출하우징과, 제1 원통부의 길이 방향 외측으로 노출되며 상기 배출하우징과 연통된 제1 배출하우징과, 상기 제1 배출하우징과 연통되며 제1 배출하우징으로부터 하향 연장된 배출안내부와, 상기 배출하우징과 제1 배출하우징 내에 회전 가능하게 구비된 스크루 컨베이어를 포함하여 구성되며; 상기 배출하우징은 공기를 분사하는 분사수단을 향하여 오목하게 형성된 착즙기를 제공한다.In addition, the discharge portion, the discharge housing having an arc-shaped cross section located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and the first cylindrical portion exposed to the outer side in the longitudinal direction outside the first housing communicated with the discharge housing. A discharge housing, a discharge guide portion in communication with the first discharge housing and extending downward from the first discharge housing, and a screw conveyor rotatably provided in the discharge housing and the first discharge housing; The discharge housing provides a juicer formed concave toward the injection means for injecting air.
또한 본 발명은, 상기 제1 착즙체는 원통형인 제1 원통부와, 상기 제1 원통부를 반경 방향으로 지지하는 환형의 제1 환형부로 이루어지며 상기 제1 환형부의 내경부로부터 제1 원통부와 반대 방향으로 연장 구비된 중공의 제3 축부에 연결되어 회전 구동되며; 상기 제2 착즙체는 원통형이며 상기 제1 원통부의 내측으로 위치하는 제2 원통부와, 길이 방향 이격되어 구비되며 상기 제2 원통부를 반경 방향을 지지하는 하나 이상의 제2 환형부로 이루어지며 상기 제2 환형부를 관통하여 구비된 제2 축부에 연결되어 회전 구동되며; 상기 제2 축부는 제3 축부와 편심되게 제3 축부의 내측으로 위치하는 착즙기를 제공한다.In another aspect, the present invention, the first juice is composed of a cylindrical first cylindrical portion, and an annular first annular portion for supporting the first cylindrical portion in the radial direction, and the first cylindrical portion from the inner diameter of the first annular portion; Connected to the third hollow shaft portion extending in the opposite direction and driven to rotate; The second juice is cylindrical and is composed of a second cylindrical portion positioned inwardly of the first cylindrical portion, and at least one second annular portion provided longitudinally spaced and supporting the second cylindrical portion in a radial direction. Connected to a second shaft portion provided through the annular portion and driven to rotate; The second shaft portion provides a juicer located inwardly of the third shaft portion eccentrically with the third shaft portion.
또한 본 발명은, 상기 제3 축부는 중공축이고 상기 제2 축부는 제3 축부 내로 위치하며, 제2 축부에는 제1 착즙체와 제2 착즙체 사이에서 가압되는 착즙물에서 생성되는 착즙이 제2 축부를 따라 흘러 제2 축부를 회전 가능하게 지지하는 베어링 쪽으로 흐르는 것을 방지하는 안내수단이 구비되며; 상기 안내수단은 제2 축부에 결합되어 제2 축부와 함께 회전하는 제1 안내부재와, 상기 제1 안내부재의 측면과 접촉하거나 제1 안내부재의 측면으로부터 미소 간격 이격되어 구비되며 몸체에 고정된 제2 안내부재로 이루어지는 착즙기를 제공한다.In another aspect, the present invention, the third shaft portion is a hollow shaft and the second shaft portion is located in the third shaft portion, the second shaft portion is a juice generated in the juice pressurized between the first juice and the second juice body is the second Guide means for preventing the flow along the shaft portion and toward the bearing for rotatably supporting the second shaft portion; The guide means is provided with a first guide member coupled to the second shaft portion and rotated together with the second shaft portion, contacting the side surface of the first guide member or spaced apart from the side surface of the first guide member by a small distance. It provides a juicer consisting of a second guide member.
또한 본 발명은, 상기 제1 원통부의 내면으로는 복수의 미세공이 형성된 망체가 더 구비되는 하는 착즙기를 제공한다.In another aspect, the present invention, the inner surface of the first cylindrical portion provides a juicer which is further provided with a network formed with a plurality of micropores.
본 발명에 따르는 착즙기는 구조가 간단하여 제조와 유지 보수가 용이하며, 제조 비용이 절감되고 대형화가 용이하며, 착즙물에서 생성되는 착즙에 의하여 베어링이 손상되는 것을 방지할 수 있으며, 착즙에 의하여 내부 부품이 산화되는 것을 충분히 지연시킬 수 있는 효과가 있다.Juicer according to the present invention is simple in structure and easy to manufacture and maintenance, manufacturing cost is reduced and easy to enlarge, can prevent the bearing from being damaged by the juice produced in the juice, by the juice inside There is an effect that can sufficiently delay the oxidation of the part.
도 1은 종래 기술에 의한 쌍기어 방식의 착즙기를 도시한 일부 분해 사시도이며,1 is a partially exploded perspective view showing a double gear type juicer according to the prior art,
도 2는 본 발명에 따르는 착즙기를 도시한 사시도이며,2 is a perspective view showing a juicer according to the present invention,
도 3은 본 발명에 따르는 착즙기를 설명하기 위하여 개략적으로 도시한 단면도이며,Figure 3 is a schematic cross-sectional view for explaining the juicer according to the present invention,
도 4 및 도 5는 본 발명에 따르는 착즙기의 구조를 설명하기 위하여 도시한 개략적인 사시도이며,4 and 5 is a schematic perspective view for explaining the structure of the juicer according to the present invention,
도 6은 도 3의 A-A선에 따르는 개략적인 단면도이며,6 is a schematic cross-sectional view taken along the line A-A of FIG.
도 7은 본 발명 착즙기에 구비되는 투입부를 도시한 일부 절개 측면 단면도이며,Figure 7 is a partial cross-sectional side view showing the inlet portion provided in the juicer of the present invention,
도 8은 본 발명 착즙기에 구비되는 배출부를 도시한 개략적인 일부 사시도이며,8 is a schematic partial perspective view showing a discharge part provided in the juicer of the present invention;
도 9는 도 8에 도시한 배출부의 일부 절개 측면 단면도이며,FIG. 9 is a partial cross-sectional side view of the discharge part illustrated in FIG. 8;
도 10은 도 3의 "A"부를 확대 도시한 것이며,FIG. 10 is an enlarged view of a portion “A” of FIG. 3.
도 11은 본 발명 착즙기에 구비되는 안내수단을 도시한 개략적인 사시도이며,Figure 11 is a schematic perspective view showing the guide means provided in the juicer of the present invention,
도 12는 도 11에 도시한 안내수단의 개략적인 단면도이다.12 is a schematic cross-sectional view of the guide means shown in FIG.
이하에서 도면을 참조하여 본 발명에 따르는 착즙기의 실시 예를 상세하게 설명한다.Hereinafter, with reference to the drawings will be described in detail an embodiment of a juicer according to the present invention.
도 2는 본 발명에 따르는 착즙기를 도시한 사시도이며, 도 3은 본 발명에 따르는 착즙기를 설명하기 위하여 개략적으로 도시한 단면도이며, 도 4 및 도 5는 본 발명에 따르는 착즙기의 구조를 설명하기 위하여 도시한 개략적인 사시도이며, 도 6은 도 3의 A-A선에 따르는 개략적인 단면도이며, 도 7은 본 발명 착즙기에 구비되는 투입부를 도시한 일부 절개 측면 단면도이며, 도 8은 본 발명 착즙기에 구비되는 배출부를 도시한 개략적인 일부 사시도이며, 도 9는 도 8에 도시한 배출부의 일부 절개 측면 단면도이며, 도 10은 도 3의 "A"부를 확대 도시한 것이며, 도 11은 본 발명 착즙기에 구비되는 안내수단을 도시한 개략적인 사시도이며, 도 12는 도 11에 도시한 안내수단의 개략적인 단면도이다.Figure 2 is a perspective view showing a juicer according to the present invention, Figure 3 is a schematic cross-sectional view for explaining the juicer according to the present invention, Figures 4 and 5 to explain the structure of the juicer according to the present invention 6 is a schematic cross-sectional view taken along line AA of FIG. 3, FIG. 7 is a partially cutaway side cross-sectional view illustrating an input unit provided in the juicer of the present invention, and FIG. 8 is provided in the juicer of the present invention. 9 is a partial cross-sectional side view of the discharge part illustrated in FIG. 8, FIG. 10 is an enlarged view of a portion “A” of FIG. 3, and FIG. 11 is provided with a juicer of the present invention. FIG. 12 is a schematic perspective view showing the guide means, and FIG. 12 is a schematic cross-sectional view of the guide means shown in FIG.
이하의 설명에서 도 3의 가로 방향을 '길이방향'이라 한다.In the following description, the horizontal direction of FIG. 3 is referred to as a 'length direction'.
도 2 내지 도 9에 도시한 바와 같이 본 발명에 따르는 착즙기(100)는 지지대로서 작용하는 베이스(110)와, 상기 베이스(110) 상에 고정된 지지수단(130)과, 상기 지지수단(130)에 회전 가능하게 구비된 착즙부(150)와, 상기 착즙부(150)로 착즙물을 공급하는 투입부(170)와, 상기 착즙부(150)로부터 착즙 잔류물을 배출시키는 배출부(180)와, 상기 착즙부(150)를 회전 구동시키는 구동부(140)를 포함하여 구성된다. 그리고 상기 구성들의 일부를 내부에 수용하는 커버(120)를 구비한다. As shown in FIGS. 2 to 9, the juicer 100 according to the present invention includes a base 110 serving as a support, a support means 130 fixed on the base 110, and the support means ( 130 is rotatably provided with a juice portion 150, an input portion 170 for supplying juice to the juice portion 150, and a discharge portion for discharging the juice residue from the juice portion 150 ( 180, and a driving unit 140 for rotationally driving the juicer 150. And a cover 120 accommodating some of the components therein.
도 3 및 도 6에 도시한 바와 같이, 상기 착즙부(150)는 제1 착즙체(151)와 상기 제1 차즙체(151) 내측으로 위치하는 제2 착즙체(155)로 이루어지며, 상기 제1 착즙체(151)는 제3 축부(1455)에 연결되어 회전 구동되며, 상기 제2 착즙체(155)는 제2 축부(1453)에 연결되어 회전 구동된다. 상기 제1 착즙체(150)의 회전축인 제3 축부(1455)와 제2 착즙체(155)의 회전축인 제2 축부(1453)는 편심되게 설치된다. 상기 제2 축부(1453)와 제3 축부(1455)은 평행하게 구비된다. 그러나 평행한 것에 한정되는 것은 아니며 미소의 각도를 가지도록 구비될 수 있다.As shown in FIG. 3 and FIG. 6, the juice part 150 is composed of a first juice body 151 and a second juice body 155 positioned inside the first tea body 151. The first juicer 151 is connected to the third shaft portion 1455 to be rotated, and the second juicer 155 is connected to the second shaft portion 1453 to be driven to rotate. The third shaft portion 1455, which is the rotation shaft of the first juice body 150, and the second shaft portion 1453, which is the rotation shaft of the second juice body 155, are eccentrically installed. The second shaft portion 1453 and the third shaft portion 1455 are provided in parallel. However, the present invention is not limited to the parallel and may be provided to have a small angle.
상기 지지수단(130)은 베이스(110) 위에 길이 방향으로 이격되어 구비된 제1 지지대(131), 제2 지지대(133) 및 제3 지지대(121)로 이루어진다. 상기 제2 지지대(133)의 길이방향 양측으로 제1 지지대(131)와 제3 지지대(121)가 구비된다. 상기 제3 지지대(121)는 커버(120)의 일측으로 형성된 개구부를 덮는 덮개로 작용할 수 있다. 상기 제1 지지대(131), 제2 지지대(133) 및 제3 지지대(121)는 판상 부재로 이루어질 수 있으며, 복수의 판상 부재가 서로 연결된 구조로 이루어질 수 있다. 상기 제3 지지대(121)를 보강 지지하기 위하여 하단이 베이스(110)에 고정되며 측방으로 제3 지지대(121)에 연결된 하나 이상의 보강지지대(123)를 더 포함할 수 있다.The support means 130 includes a first support 131, a second support 133, and a third support 121 that are spaced apart in the longitudinal direction on the base 110. The first support 131 and the third support 121 are provided at both sides of the second support 133 in the longitudinal direction. The third support 121 may serve as a cover covering an opening formed to one side of the cover 120. The first support 131, the second support 133, and the third support 121 may be formed of a plate member, and may have a structure in which a plurality of plate members are connected to each other. In order to reinforce the third support 121, the lower end may further include at least one reinforcing support 123 fixed to the base 110 and laterally connected to the third support 121.
상기 지지수단(130)은 베어링을 매개로 제1 축부(1451), 제2 축부(1453) 및 제3 축부(1455)를 회전 가능하게 지지한다. The support means 130 rotatably supports the first shaft portion 1451, the second shaft portion 1453, and the third shaft portion 1455 through a bearing.
상기 제1 착즙체(151)는 원통형의 제1 원통부(1511)와, 상기 제1 원통부(1511)에 연결되어 반경 방향으로 제1 원통부(1511)를 지지하는 환형의 제1 환형부(1513)로 이루어지며, 제2 지지대(133)에 베어링을 매개로 회전 가능하게 설치된 제3 축부(1455)가 제1 환형부(1513)에 연결된다. 상기 제3 축부(1455)가 제1 환형부(1513)의 내경으로 삽입되어 연결될 수 있다. 상기 제3 축부(1455)는 제1 환형부(1513)에 대하여 제1 원통부(1511)와 반대 방향으로 연장 연결된다. 상기 제1 착즙체(151)는 길이 방향 일측으로 상기 제1 환형부(1513)가 제3 축부(1455)에 연결되어 반경 방향으로 지지된다. 상기 제1 착즙체(151)의 제1 원통부(1511) 타측 은 제3 지지대(121)에 회전 가능하게 설치된 하나 이상의 지지롤러(161)에 의하여 반경 방향으로 지지된다. 상기 지지롤러(161)는 제3 지지대(121)에 제1 원통부(1511)를 향하여 돌출 설치되어 제1 원통부(1511)를 회전 가능하게 지지한다. 상기 제1 원통부(1511)의 타측 단부에 지지링(1515)을 설치하고, 지지링(1515)이 지지롤러(161)와 회전 가능하게 접촉함으로써 제1 원통부(1511)가 지지되도록 할 수 있다. 도 6에 도시한 바와 같이, 상기 제1 원통부(1511)의 하부 외측에서 접촉되도록 지지롤러(161)를 제3 지지대(121)에 설치한다. 상기 제3 축부(1455)는 중공체로 이루어지며, 상기 제1 착즙체(151)는 길이 방향 우측을 향하여 개구된 구조로 된다.The first juice member 151 is a first annular portion of the annular annular portion that is connected to the first cylindrical portion 1511 and the first cylindrical portion 1511 to support the first cylindrical portion 1511 in the radial direction 1513, the third shaft portion 1455 rotatably installed on the second support 133 via a bearing is connected to the first annular portion 1513. The third shaft portion 1455 may be inserted into and connected to the inner diameter of the first annular portion 1513. The third shaft portion 1455 extends in a direction opposite to the first cylindrical portion 1511 with respect to the first annular portion 1513. The first juice body 151 is supported in the radial direction by connecting the first annular portion 1513 to the third shaft portion 1455 in one longitudinal direction. The other side of the first cylindrical portion 1511 of the first juice body 151 is supported in the radial direction by one or more support rollers 161 rotatably installed on the third support 121. The support roller 161 is protruded toward the first cylindrical portion 1511 on the third support 121 to rotatably support the first cylindrical portion 1511. A support ring 1515 may be installed at the other end of the first cylindrical portion 1511, and the support ring 1515 may be rotatably contacted with the support roller 161 to support the first cylindrical portion 1511. have. As shown in FIG. 6, the support roller 161 is installed on the third support 121 so as to contact the lower outer side of the first cylindrical portion 1511. The third shaft portion 1455 is formed of a hollow body, and the first juicer 151 is open toward the right in the longitudinal direction.
제2 착즙체(155)의 회전축으로 되는 제2 축부(1453)의 일측은 상기 제1 지지대(131)에 의하여 베어링을 매개로 회전 가능하게 지지되고, 타측은 제3 지지대(121)에 베어링을 매개로 회전 가능하게 지지된다. 상기 제2 축부(1453)는 중공의 제3 축부(1455) 내경을 관통하여 설치되며, 도 3 및 도 6에 도시한 바와 같이 상기 제2 축부(1453)는 제1 착즙체(151)가 연결된 제3 축부(1455)와 그 중심이 편심되도록 설치된다.One side of the second shaft portion 1453 serving as the rotating shaft of the second juice body 155 is rotatably supported by the first support 131 through the bearing, and the other side is connected to the third support 121 by the bearing. Rotationally supported by the media. The second shaft portion 1453 is installed through the inner diameter of the hollow third shaft portion 1455, and as shown in FIGS. 3 and 6, the second shaft portion 1453 is connected to the first juicer 151. The third shaft portion 1455 and its center are installed to be eccentric.
상기 제2 축부(1453)에는 제2 착즙체(155)가 설치되어, 제2 축부(1453)와 함께 회전한다. 상기 제2 착즙체(155)는 제1 착즙체(151) 내에 위치한다. 상기 제2 착즙체(155)는 원통형의 제2 원통부(1553)와, 길이 방향으로 이격되며 외경이 상기 제2 원통부(1553)에 연결된 복수의 제2 환형부(1551)로 이루어진다. 상기 제2 축부(1453)는 제2 환형부(1551)에 제2 환형부(1551)와 일체로 회전하도록 연결된다. 상기 제2 축부(1453)는 제2 환형부(1551)에 삽입되어 연결될 수 있다. The second juice portion 155 is installed on the second shaft portion 1453 and rotates together with the second shaft portion 1453. The second juice 155 is located in the first juice 151. The second juicer 155 is formed of a cylindrical second cylindrical portion 1553 and a plurality of second annular portions 1551 spaced in the longitudinal direction and connected to the second cylindrical portion 1553 in an outer diameter. The second shaft portion 1453 is connected to the second annular portion 1551 so as to rotate integrally with the second annular portion 1551. The second shaft portion 1453 may be inserted into and connected to the second annular portion 1551.
상기 제2 착즙체(155)는 제1 착즙체(151) 내에 위치한다. 그리고 상기 제1 원통부(1511)와 제2 원통부(1553)는 도 3 및 도 6에 도시한 바와 같이 서로 편심된 회전 중심을 가져 회전 중심을 달리한다. 도 6에 도시한 바와 같이 제1 원통부(1511)와 제2 원통부(1553)의 간격은 상부에서 크게 형성되고, 하부에서 작게 형성되도록 회전 중심을 달리하여 설치하는 것이 가능하다. 도 6에서 1455a는 제1 착즙체(151)의 회전 중심을 도시한 것이며, 1453a는 제2 착즙체(155)의 회전 중심을 도시한 것으로, 도 6에 도시한 바와 같이 제2 착즙체(155)의 회전 중심(1453a)은 제1 착즙체(151)의 회전 중심보다 하방으로 이격되어 위치한다. 도 6에 도시한 바와 같이 회전 중심을 달리함으로써 상부에서 제1 착즙체(151)와 제2 착즙체(155) 사이에서 형성되는 간격은 하부에서 제1 착즙체(151)와 제2 착즙체(155) 사이에서 형성되는 간격보다 크게 형성될 수 있다.The second juice 155 is located in the first juice 151. The first cylindrical portion 1511 and the second cylindrical portion 1553 have rotation centers eccentric with each other, as shown in FIGS. As shown in FIG. 6, the interval between the first cylindrical portion 1511 and the second cylindrical portion 1553 is formed at the upper portion of the upper portion, and can be installed with a different rotation center so as to be formed smaller at the lower portion. In FIG. 6, 1455a illustrates the center of rotation of the first juice 151, and 1453a illustrates the center of rotation of the second juice 155, and as shown in FIG. 6, the second juice 155. The center of rotation 1453a is spaced apart from the center of rotation of the first juice body 151. As shown in FIG. 6, the interval formed between the first juicer 151 and the second juicer 155 at the upper part by varying the center of rotation is the first juicer 151 and the second juicer ( It may be formed larger than the gap formed between the 155.
착즙물(S)은 제1 원통부(1511)와 제2 원통부(1553) 사이의 간격이 크게 형성된 부분으로 투입되며, 투입된 착즙물은 중력과 도 6에 화살표로 표시한 방향으로 회전하는 제1 착즙체(151)와 제2 착즙체(155)에 의하여 간격이 작게 형성된 하방으로 안내되면서, 제1 원통부(1511)의 내면과 제2 원통부(1553)의 외면 사이에서 가압되어 착즙된다.The juice (S) is introduced into a portion formed with a large gap between the first cylindrical portion (1511) and the second cylindrical portion (1553), the added juice is rotated in the direction indicated by the arrow and the arrow in FIG. The first juice 151 and the second juice 155 is guided downwardly formed with a small gap, is pressed between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 is juiced. .
상기 구동부(140)는 모터(141), 제1 축부(1451)에 결합된 제1 기어(1471) 및 제3 기어(1475), 제2 축부(1453)에 결합된 제2 기어(1473), 제3 축부(1455)에 결합된 제4 기어(1477)를 포함하여 이루어진다.The driving unit 140 may include a motor 141, a first gear 1471 and a third gear 1475 coupled to the first shaft portion 1451, and a second gear 1473 coupled to the second shaft portion 1453. And a fourth gear 1477 coupled to the third shaft portion 1455.
상기 베이스(110)에는 모터(141)가 설치되며, 상기 제2 축부(1453)와 제3 축부(1455)는 모터(141)에 의하여 구동되어 회전한다. 상기 제3 축부(1455)의 외측 일측으로 제1 축부(1451)가 구비된다. 상기 제1 축부(1451)의 일측은 베어링을 매개로 제1 지지대(131)에 의하여 회전 가능하게 지지되고, 타측은 베어링을 매개로 제2 지지대(133)에 의하여 회전 가능하게 지지된다. 상기 제1 축부(1451)는 제3 축부(1455) 외측으로 제3 축부(1455) 하부로 이격되어 구비될 수 있다.A motor 141 is installed on the base 110, and the second shaft portion 1453 and the third shaft portion 1455 are driven and rotated by the motor 141. The first shaft portion 1451 is provided at one outer side of the third shaft portion 1455. One side of the first shaft portion 1451 is rotatably supported by the first support 131 through the bearing, and the other side is rotatably supported by the second support 133 through the bearing. The first shaft portion 1451 may be spaced apart from the lower portion of the third shaft portion 1455 to the outside of the third shaft portion 1455.
상기 모터(141)의 축에 풀리가 장착되고, 상기 제1 축부(1451)의 길이 방향 좌측 단부에 풀리가 장착되며, 양 풀리를 벨트(143)로 연결하여 모터(141)의 회전이 제1 축부(1451)로 전달되도록 할 수 있다.The pulley is mounted on the shaft of the motor 141, the pulley is mounted on the left end of the first shaft portion 1451 in the longitudinal direction, and the rotation of the motor 141 is performed by connecting both pulleys with the belt 143. It can be delivered to the shaft (1451).
상기 제1 축부(1451)에는 풀리 일측으로 제1 기어(1471)가 설치되고, 상기 제3 축부(1455)로부터 길이 방향 좌측으로 돌출된 제2 축부(1453) 부분에 상기 제1 기어(1471)와 치합하는 제2 기어(1473)가 설치된다. 상기 제1 축부(1451)의 길이 방향 우측 단부에는 제3 기어(1475)가 설치되고 상기 제3 축부(1455)에는 상기 제3 기어(1475)와 치합하는 제4 기어(1477)가 설치된다.The first gear 1471 is provided at one side of the first shaft portion 1451, and the first gear 1471 is formed at a portion of the second shaft portion 1453 protruding from the third shaft portion 1455 to the left in the longitudinal direction. The second gear 1473 is engaged with the gear. A third gear 1475 is installed at the right end in the longitudinal direction of the first shaft portion 1451, and a fourth gear 1477 meshing with the third gear 1475 is installed at the third shaft portion 1455.
상기 모터(141)가 구동되면, 벨트(143)와 풀리에 의하여 제1 축부(1451)가 회전하고, 제1 기어(1471)와 제2 기어(1473)의 연결에 의하여 제2 축부(1453)가 회전하며, 제3 기어(1475)와 제4 기어(1477)의 연결에 의하여 제3 축부(1455)가 회전하게 된다. 그리고 제2 축부(1453)에 연결된 제2 착즙체(155)와 제3 축부(1455)에 연결된 제1 착즙체(151)가 회전하게 된다. 상기 제1 착즙체(151)와 제2 착즙체(155)는 도 6에 화살표로 도시한 바와 같이 같은 방향으로 회전하며, 제1기어(1471), 제2 기어(1473), 제3 기어(1475) 및 제4 기어(1477)의 기어비를 조정하여 원주 속도가 같도록 할 수 있다.When the motor 141 is driven, the first shaft portion 1451 is rotated by the belt 143 and the pulley, and the second shaft portion 1453 is connected by the first gear 1471 and the second gear 1473. Rotates, and the third shaft portion 1455 rotates by the connection of the third gear 1475 and the fourth gear 1477. The second juice 155 connected to the second shaft 1453 and the first juice 151 connected to the third shaft 1455 rotate. The first juice 151 and the second juice 155 is rotated in the same direction as shown by the arrow in Figure 6, the first gear (1471), the second gear (1473), the third gear ( The gear ratio of 1475 and the fourth gear 1477 can be adjusted so that the circumferential speed is the same.
도 3에서 도면부호 1331은 상기 제2 지지대(133)에 구비되며, 베어링의 외륜이 삽입되는 하우징을 도시한 것이며, 1491과 1493은 상기 제2 축부(1453)의 양측에서 제2 축부(1453)를 하방으로 가압하는 가압수단을 도시한 것이다. 상기 가압수단의 하단부에는 제2 축부(1453)와 접촉하여 회전하는 롤러가 구비되며, 상기 롤러를 하방으로 가압하는 스프링이 구비되어 제2 축부(1453)를 하방으로 가압하도록 작용한다.In FIG. 3, reference numeral 1331 denotes a housing provided in the second support 133 and the outer ring of the bearing is inserted, and 1491 and 1493 denote second shaft portions 1453 on both sides of the second shaft portion 1453. It shows a pressing means for pressing downward. The lower end of the pressing means is provided with a roller which rotates in contact with the second shaft portion 1453, and is provided with a spring for pressing the roller downward to act to press the second shaft portion 1453 downward.
도 3 내지 도 6에 도시한 바와 같이, 상부의 간격이 넓고 하부로 갈수록 간격이 감소하도록 편심되게 설치된 제1 착즙체(151)의 제1 원통부(1511)와 제2 착즙체(155)의 제2 원통부(1553) 사이로 착즙물을 투입하는 투입부(170)가 구비된다. 그리고 착즙 후 상기 제1 원통부(1551)와 제2 원통부(1553) 사이에 잔류한 착즙 잔류물을 배출하기 위한 배출부(180)가 구비된다. 상기 투입부(170)와 배출부(180)는 제1 원통부(1511)와 제2 원통부(1553) 사이의 간격이 넓은 상부로 설치할 수 있다.As shown in FIGS. 3 to 6, the first cylindrical portion 1511 of the first juice 151 and the second juice 155 of the first juice 151 are eccentrically installed so that the interval of the upper portion is wider and the interval decreases toward the lower portion. An input unit 170 for inputting a juice between the second cylindrical portion 1553 is provided. And after the juice is provided with a discharge unit 180 for discharging the residue of juice remaining between the first cylindrical portion (1551) and the second cylindrical portion (1553). The input unit 170 and the discharge unit 180 may be installed at an upper portion having a wide interval between the first cylindrical portion 1511 and the second cylindrical portion 1553.
상기 투입부(170)는 중공의 투입하우징(173)과, 상기 투입하우징(173) 내에 회전 가능하게 구비된 스크루 컨베이어(177)와, 상기 제1 원통부(1511)의 길이 방향 외측으로 노출된 투입하우징(173) 부분에서 투입하우징(173) 내측으로 연통되도록 연결되며 상방으로 갈수록 지름이 증가하는 부분을 가지는 중공의 투입호퍼(171)로 이루어진다. 상기 투입호퍼(171)는 투입하우징(173)으로부터 상부로 향하여 연장된다. 상기 투입부(170)는 상부의 중심으로부터 제1 착즙체(151)와 제2 착즙체(155)의 회전 방향으로 편향되게 설치하는 것이 바람직하다.The inlet unit 170 is a hollow inlet housing 173, a screw conveyor 177 rotatably provided in the inlet housing 173, and the first cylindrical portion 1511 are exposed outward in the longitudinal direction. The input housing 173 is connected to communicate with the inside of the input housing 173, and consists of a hollow input hopper 171 having a portion that increases in diameter upward. The input hopper 171 extends upwardly from the input housing 173. The input unit 170 is preferably installed so as to be biased in the rotational direction of the first juice 151 and the second juice 155 from the center of the upper portion.
상기 투입하우징(173)의 일부는 상기 제1 원통부(1511)의 내면과 제2 원통부의 외면 사이에 위치하고 나머지 부분은 제1 착즙체(151)의 제1 원통부(1511)의 길이 방향 외측으로 노출된다. 상기 투입하우징(173)은 제3 지지대(121)에 고정 설치되어, 일부는 길이 방향으로 제3 지지대(121) 좌측으로 위치하고, 나머지 부분은 길이 방향으로 제3 지지대(121)의 우측으로 위치한다. 상기 투입호퍼(171)는 제3 지지대(121)의 우측으로 위치한 투입하우징(173) 부분에 연결된다. 상기 투입하우징(173)의 길이 방향 우측 단부에 상기 스크루 컨베이어(177)를 회전시키기 위한 구동수단(178)이 구비될 수 있다. 상기 투입하우징(173)의 길이 방향 좌측 단부에서 상기 스크루 컨베이어(177)를 회전 가능하게 지지한다. 제1 원통부(1511) 내면과 제2 원통부(1553) 외면 사이에 위치하는 상기 투입하우징(173) 부분에 하방으로 배출공(174)이 형성된다.A portion of the input housing 173 is located between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion, and the remaining portion is a longitudinal outer side of the first cylindrical portion 1511 of the first juicer 151. Is exposed. The input housing 173 is fixedly installed on the third support 121, a part of which is located to the left of the third support 121 in the longitudinal direction, and the other part of the input housing 173 to the right of the third support 121 in the longitudinal direction. . The input hopper 171 is connected to the input housing 173 located to the right of the third support 121. The driving means 178 for rotating the screw conveyor 177 may be provided at the right end in the longitudinal direction of the input housing 173. The screw conveyor 177 is rotatably supported at the left end in the longitudinal direction of the input housing 173. A discharge hole 174 is formed downward in a portion of the input housing 173 positioned between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553.
상기 구동수단(178)을 구동시키면서 투입호퍼(171)로 착즙물을 투입하면, 투입호퍼(171)를 통하여 투입하우징(173)으로 낙하한 착즙물은 투입하우징(173) 내에서 회전하는 스크루 컨베이어(177)에 의하여 길이 방향 좌측으로 이송되고, 투입하우징(173)에 형성된 배출공(174)을 통하여 상기 제1 원통부(1511)의 내면과 제2 원통부(1553)의 외면 사이로 낙하하게 되며, 낙하한 착즙물은 도 6에 도시한 바와 같이 제1 원통부(1511)와 제2 원통부(1553) 사이의 간격이 좁은 부분으로 안내되면서 제1 원통부(1511)의 내면과 제2 원통부(1553)의 외면에 의하여 가압되어 착즙된다.When the juice is introduced into the feeding hopper 171 while driving the driving means 178, the juice falling into the feeding housing 173 through the feeding hopper 171 rotates in the feeding housing 173. It is transferred to the left in the longitudinal direction by 177, and falls between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 through the discharge hole 174 formed in the input housing 173. The dropped juice is guided to a narrow gap between the first cylindrical portion 1511 and the second cylindrical portion 1553 as shown in FIG. 6 and the inner surface of the first cylindrical portion 1511 and the second cylinder. Pressurized by the outer surface of the portion 1553 is juiced.
도 6에서와 같이 제2 착즙체(155)가 하방으로 편심된 경우, 착즙물은 하방으로 갈수록 가압되면서 착즙되고 하중 중심부에서 최대로 가압되며, 하중 중심부를 지나면서 착즙물에 가해지는 가압력은 점차 감소하게 된다.As shown in FIG. 6, when the second juice 155 is eccentrically downward, the juice is juiced downward while being pressed downward, and the maximum pressure is applied at the load center, and the pressing force applied to the juice while passing through the load center is gradually increased. Will decrease.
상기 제1 착즙체(151)에 구비된 제1 원통부(1511)에는 도 4 및 도 5에 도시한 바와 같이 복수의 통공(1512)이 형성된다. 그리고 상기 제1 원통부(1511)의 내면에는 복수의 미세공이 형성된 망체(153)가 구비될 수 있다. 상기 미세공은 착즙은 배출되고 착즙 잔류물은 배출되지 않는 작은 크기로 형성되며, 예를 들어 원형으로 형성되는 경우 지름이 0.5㎜ 이하의 크기로 형성될 수 있으며, 사각형으로 형성되는 경우 한 변의 길이가 0.5㎜ 이하의 크기로 형성될 수 있다. 이때 상기 제1 원통부(1511)는 상기 망체(153)를 지지하는 작용을 한다. 상기 제1 원통부(1511)의 내면으로 복수의 미세공이 형성된 망체(153)가 구비되는 경우 제1 원통부(1511)에 형성된 통공(1512)은 미세공에 비하여 충분히 크게 형성하는 것이 가능하며, 발명자는 통공(1512)을 도 4에서 원주 방향의 길이를 8㎜로 하고, 길이 방향 폭을 4㎜로 형성하여 착즙 실험을 하였다.A plurality of through holes 1512 are formed in the first cylindrical portion 1511 provided in the first juice body 151 as shown in FIGS. 4 and 5. And the inner surface of the first cylindrical portion 1511 may be provided with a net body 153 is formed with a plurality of micropores. The micro-pores are formed in a small size of the juice is discharged and the juice residue is not discharged, for example, when formed in a circular shape may be formed in a size of 0.5 mm or less in diameter, when formed in a square, the length of one side May be formed to a size of 0.5 mm or less. At this time, the first cylindrical portion 1511 serves to support the net body 153. When the mesh 153 having a plurality of micropores is provided on the inner surface of the first cylindrical portion 1511, the through hole 1512 formed in the first cylindrical portion 1511 may be formed sufficiently large as compared with the micropores. The inventor conducted the juice experiment by forming the through hole 1512 in the circumferential length of 8 mm and the longitudinal width of 4 mm.
상기 제1 원통부(1511)와 제2 원통부(1553) 사이에서 가압되어 생성된 착즙은 제1 원통부(1511)에 형성된 통공(1512)과 망체의 미세공을 통하여 배출되며, 착즙 잔류물의 일부 또는 전부는 제1 원통부(1511)의 내측 또는 망체(153)를 구비하는 경우 망체(153) 내측에 부착되어 함께 회전하게 된다. 따라서 내측으로 부착된 착즙 잔류물을 분리하기 위한 분리수단(189)이 제1 원통부(1511)의 외측으로 제1 원통부(1511)로부터 이격되어 구비된다. 상기 분리수단(189)은 제1 원통부(1511)의 외측으로부터 내향 방향으로 유체를 분사한다. 상기 분리수단(189)은 분사노즐로서 에어컨 등에 구비되는 도시하지 않은 냉각사이클에 연결되어 저온의 유체(예를 들면, 공기)를 제1 원통부(1511)로 분사한다. 상기 분리수단(189)은 제1 원통부(1511)의 길이 방향으로 연장된 노즐공을 가진 분사노즐로 이루어질 수 있다. 저온의 유체를 분사함으로써 착즙에 의하여 착즙기(100)를 이루는 구성들이 산화되는 것을 억제할 수 있다.The juice generated by being pressed between the first cylindrical portion 1511 and the second cylindrical portion 1553 is discharged through the through holes 1512 formed in the first cylindrical portion 1511 and the micropores of the net, and the juice residue Some or all of the first cylindrical portion 1511 or the inside of the net body 153 is attached to the inside of the net body 153 is rotated together. Therefore, the separating means 189 for separating the juice residue attached to the inside is provided to be spaced apart from the first cylindrical portion 1511 to the outside of the first cylindrical portion 1511. The separating means 189 injects the fluid in an inward direction from the outside of the first cylindrical portion 1511. The separating means 189 is connected to a cooling cycle (not shown) provided in an air conditioner or the like as an injection nozzle to inject a low temperature fluid (for example, air) to the first cylindrical portion 1511. The separating means 189 may be formed of a spray nozzle having a nozzle hole extending in the longitudinal direction of the first cylindrical portion 1511. By spraying a low temperature fluid, the components constituting the juicer 100 can be suppressed from being oxidized by juice.
착즙물로부터 생성된 착즙은 상기 제1 원통부(1511)를 통하여 배출되어 하방으로 낙하하며 상기 제1 원통부(1511) 하부로 구비된 수집안내부(157)에 의하여 도시하지 않은 수집부로 모이게 된다. 상기 수집안내부(157)는 제1 원통부(1511)의 하부로 이격되어 위치하며 제1 원통부(1511)로부터 낙하하는 착즙을 안내할 수 있도록 일측으로 경사지며 충분한 크기로 형성된다. 상기 수집안내부(157)는 제1 원통부(1511)의 투영 면적보다 크게 형성하는 것이 바람직하다.The juice generated from the juice is discharged through the first cylindrical portion 1511 and falls downward, and is collected into a collecting portion (not shown) by the collection guide portion 157 provided below the first cylindrical portion 1511. . The collection guide portion 157 is spaced apart from the lower portion of the first cylindrical portion 1511 and is inclined to one side so as to guide the juice falling from the first cylindrical portion 1511 and is formed to a sufficient size. The collection guide portion 157 may be formed to be larger than the projected area of the first cylindrical portion 1511.
상기 배출부(180)는 상기 제1 원통부(1511) 내면과 제2 원통부(1553) 외면 사이에 위치하며 길이 방향 외측으로 연장된 배출하우징부와, 배출하우징부와 연통되며 배출하우징부로부터 하향 연장된 배출안내부(189)와, 상기 배출하우징부 내에 회전 가능하게 구비된 스크루 컨베이어(188)를 포함하여 구성된다. 상기 배출하우징부는 상기 제1 원통부(1511) 내면과 제2 원통부(1553) 외면 사이에 위치한 단면이 원호형인 배출하우징(183)과, 상기 배출하우징(183)으로부터 제1 원통부(1511)의 길이 방향 외측으로 연장된 제1 배출하우징(185)으로 이루어진다. 상기 배출하우징(183)과 제1 배출하우징(185)은 서로 연통된다. 상기 배출하우징부는 제3 지지대(121)에 고정 설치될 수 있으며, 제3 지지대(121)의 내측으로 배출하우징(183)이 연장되며, 외측으로 제1 배출하우징(185)이 연장될 수 있다. 상기 배출안내부(189)는 제1 배출하우징(185)으로부터 하향 연장된다.The discharge unit 180 is disposed between the inner surface of the first cylindrical portion 1511 and the outer surface of the second cylindrical portion 1553 and extends outwardly in a longitudinal direction, and communicates with the discharge housing portion, and discharges from the discharge housing portion. And a downwardly extending discharge guide part 189 and a screw conveyor 188 rotatably provided in the discharge housing part. The discharge housing portion has an arcuate discharge housing 183 having a circular cross section located between an inner surface of the first cylindrical portion 1511 and an outer surface of the second cylindrical portion 1553, and a first cylindrical portion 1511 from the discharge housing 183. It consists of a first discharge housing 185 extending in the longitudinal direction of the. The discharge housing 183 and the first discharge housing 185 communicate with each other. The discharge housing part may be fixedly installed on the third support 121, the discharge housing 183 may be extended to the inside of the third support 121, and the first discharge housing 185 may be extended to the outside. The discharge guide 189 extends downward from the first discharge housing 185.
상기 스크루 컨베이어(188)의 내측 단부는 배출하우징(183)에 의하여 회전 가능하게 지지되며, 외측 단부는 제1 배출하우징(185)에 의하여 회전 가능하게 지지될 수 있다. 상기 배출하우징(183)은 내측 단부에 상기 스크루컨베이어(188)의 내측 단부가 회전 가능하게 삽입되는 원통형의 하우징지지부(1831)를 구비한다.An inner end of the screw conveyor 188 may be rotatably supported by the discharge housing 183, and an outer end of the screw conveyor 188 may be rotatably supported by the first discharge housing 185. The discharge housing 183 includes a cylindrical housing support 1183 at which an inner end of the screw conveyor 188 is rotatably inserted at an inner end thereof.
상기 제1 배출하우징(185)의 길이 방향 우측 단부에 상기 스크루 컨베이어(188)를 회전시키기 위한 구동수단(188)이 구비될 수 있으며, 상기 스크루 컨베이어(178, 188)는 모터(141)에 연결되어 구동될 수도 있다. 상기 배출하우징(183)은 유체를 분사하는 분리수단(189)의 하부로 위치하며 분리수단(189)을 향하여 오목하게 형성된 부분을 가진다. 상기 제1 배출하우징(185)은 중공의 관체로 형성할 수도 있고 원호형으로 형성하는 것도 가능하다.Driving means 188 for rotating the screw conveyor 188 may be provided at the right end in the longitudinal direction of the first discharge housing 185, the screw conveyors 178, 188 are connected to the motor 141. And may be driven. The discharge housing 183 is positioned below the separating means 189 for injecting fluid and has a recessed portion toward the separating means 189. The first discharge housing 185 may be formed of a hollow tube or may be formed in an arc shape.
상기 배출부(180)는 도 6에 도시한 바와 같이 상부 중심부에서 제1 착즙체(151)와 제2 착즙체(155)의 회전 방향과 반대 방향으로 편향되게 설치하는 것이 바람직하다.As shown in FIG. 6, the discharge part 180 may be installed to be deflected in a direction opposite to the rotation direction of the first juice 151 and the second juice 155 at the upper center portion.
상기 분리수단(189)으로부터 분사되는 유체에 의하여 착즙 후 제1 원통부(1511)의 내면에 부착되어 함께 회전하여 온 착즙 잔류물은 제1 원통부(1511)로부터 분리되어 배출하우징부의 배출하우징(183)으로 향하여 낙하하며, 배출하우징(183) 내에서 회전하는 스크루 컨베이어(187)에 의하여 길이 방향 외측으로 이송되며, 제1 배출하우징(185)에 연결된 배출안내부(189)를 통하여 하향 배출된다.The juice residue, which is attached to the inner surface of the first cylindrical portion 1511 and rotated together after being juiced by the fluid sprayed from the separating means 189, is separated from the first cylindrical portion 1511 and discharged from the discharge housing part ( Falling toward 183, it is transported outward in the longitudinal direction by a screw conveyor 187 rotating in the discharge housing 183, and is discharged downward through the discharge guide unit 189 connected to the first discharge housing 185. .
본 발명 착즙기(100)에서 제2 축부(1453)가 제2 환형부(1553)에 삽입되어 설치되는 구조로 하고, 제2 축부(1453)에 나사산을 형성하고 너트로 체결하여 일측 또는 양측의 외측에서 제2 착즙체(155)의 제2 환형부(1553)를 가압하여 제2 착즙체(155)를 제2 축부(1453)에 고정 결합할 수 있다.In the juicer 100 of the present invention, the second shaft portion 1453 is inserted into and installed in the second annular portion 1553. A screw thread is formed on the second shaft portion 1453 and fastened with a nut to be attached to one side or both sides. The second annular portion 1553 of the second juice body 155 may be pressed from the outside to fix the second juice body 155 to the second shaft portion 1453.
본 발명 착즙기(100)에서 착즙물이 가압되어 생성된 착즙은 제1 원통부(1511)에 형성된 통공(1512)을 통하여 배출되나, 일부는 제2 원통부(1553)의 외면을 따라 흘러 제2 축부(1453)로 낙하하고, 제2 축부(1453)를 따라 계속 흘러 제2 축부(1453)를 회전 가능하게 지지하는 베어링에 도달하여 베어링에 구비된 씰을 손상시키고 결국 베어링을 손상시키게 되는 원인이 된다.Juice generated by the juice is pressurized in the juicer 100 of the present invention is discharged through the through-hole 1512 formed in the first cylindrical portion 1511, a portion flows along the outer surface of the second cylindrical portion 1553 Causes to fall to the second shaft portion 1453 and to continue to flow along the second shaft portion 1453 to reach the bearing rotatably supporting the second shaft portion 1453, thereby damaging the seal provided in the bearing and eventually damaging the bearing. Becomes
본 발명에서는 상기와 같이 착즙에 의하여 베어링이 손상되는 것을 방지하기 위하여, 제2 축부(1453)를 따라 흐르는 착즙이 베어링에 도달하기 전에 몸체로 안내하는 안내수단(190)이 구비된다. 제2 원통부(1553)의 내면을 따라 흐르는 착즙은 제1 착즙체(151)의 제1 환형부(1513)에도 도달할 수 있으나, 제1 환형부(1513)를 통하여 제3 축부(1455)의 내면으로 흐르게 되므로 제3 축부(1455)를 지지하는 베어링을 손상시킬 가능성은 현저하게 낮게 된다.In the present invention, in order to prevent the bearing from being damaged by the juice as described above, the guide means 190 for guiding the juice flowing along the second shaft portion 1453 to the body before reaching the bearing is provided. The juice flowing along the inner surface of the second cylindrical portion 1553 may reach the first annular portion 1513 of the first juice body 151, but the third shaft portion 1455 is provided through the first annular portion 1513. Because of the flow to the inner surface of the possibility of damaging the bearing for supporting the third shaft portion 1455 is significantly lower.
상기 안내수단(190)은 도 3, 도 10 내지 도 12에 도시한 바와 같이 제2 축부(1453)에 결합되어 제2 축부(1453)와 함께 회전하는 제1 안내부재(192)와, 상기 제1 안내부재(192)의 측면과 접촉하거나 제1 안내부재(192)의 측면으로부터 미소 간격(t) 이격되어 구비되며 몸체에 고정된 제2 안내부재(191)로 이루어진다.As shown in FIGS. 3 and 10 to 12, the guide means 190 is coupled to the second shaft portion 1453 to rotate together with the second shaft portion 1453 and the first guide member 192. 1 is provided in contact with the side of the guide member 192 or spaced apart from the side of the first guide member 192 by a small distance (t) and is composed of a second guide member 191 fixed to the body.
상기 제1 안내부재(192)는 환형으로서, 제2 축부(1453)가 제1 안내부재(192)로 삽입되어 제1 안내부재(192)가 제2 축부(1453)에 설치된다. 상기 제1 안내부재(192)는 다단 형태로 형성될 수 있으며 지름이 작은 제2 링부(1921)와, 제2 링부(1921)와 단을 이루며 큰 지름을 가지는 제1 링부(1923)로 이루어질 수 있다.The first guide member 192 is annular, and the second shaft portion 1453 is inserted into the first guide member 192 so that the first guide member 192 is installed on the second shaft portion 1453. The first guide member 192 may be formed in a multi-stage shape, and may include a second ring portion 1921 having a small diameter, and a first ring portion 1923 having a large diameter and forming a stage with the second ring portion 1921. have.
상기 제2 안내부재(191)는 상기 제1 안내부재(192)의 하부로 위치하며 판상의 연결체(1911)와, 상기 연결체(1911)가 나사 등과 같은 고정수단(1915)에 의하여 고정된 지지부재(1913)로 이루어진다. 상기 지지부재(1913)는 몸체에 고정된다. 상기에서 몸체는 커버(120), 제1 지지대(131), 제2 지지대(133) 등과 같이 베이스에 구비된 고정 구조물을 포함하는 의미이다.The second guide member 191 is positioned below the first guide member 192, and the plate-shaped connector 1911 and the connector 1911 are fixed by fixing means 1915 such as screws. It consists of a support member 1913. The support member 1913 is fixed to the body. In the above, the body is meant to include a fixing structure provided in the base, such as the cover 120, the first support 131, the second support 133.
상기 연결체(1911)는 제1 안내부재(192)의 길이방향 좌측 또는 우측 측면에 접촉하거나 도 12에 도시한 바와 같이 제1 안내부재(192)의 측면과의 사이에 미소 틈새를 형성하여 구비될 수 있다. 상기에서 미소 틈새는 제1 안내부재(192)의 측면을 따라 흐르는 착즙과 접촉할 수 있는 간격까지의 틈새를 의미한다. 상기 연결체(1911)는 판상으로 형성할 수 있으며, 재질은 금속, 플라스틱 등으로부터 선택하는 것이 가능하며, 탄력성을 가지도록 두께가 얇게 형성될 수 있다. The connecting body 1911 may be provided in contact with the left or right side in the longitudinal direction of the first guide member 192 or by forming a micro gap between the side of the first guide member 192 as shown in FIG. 12. Can be. In the above, the micro-gap means a gap up to an interval capable of contacting the juice flowing along the side of the first guide member 192. The connector 1911 may be formed in a plate shape, and the material may be selected from metal, plastic, and the like, and may be formed to have a thin thickness to have elasticity.
도 12에 도시한 바와 같이, 제2 축부(1453)를 따라 흘러온 착즙이 제1 안내부재(192)에 이르면, 제2 축부(1453)와 함께 회전하는 제1 안내부재(192)의 하향 방향으로 제1 안내부재(192) 측면을 따라 흐르게 되나 제1 안내부재(192)는 회전하므로 하향하는 착즙은 제1 안내부재(192)의 회전에 따라 제1 안내부재(192)와 함께 상방으로 위치하게 되어 결국 제1 안내부재(192)를 넘어 다시 제2 축부(1453)에 이를 수 있게 된다. 이때 상기 제1 안내부재(192)와 접촉하거나 미소 틈새를 형성하는 연결체(1911)를 가지는 제2 안내부재(191)에 의하여 착즙은 제1 안내부재(192)를 넘어 다시 제2 축부(1453)에 이르기 전에 연결체(1911)로 전달되어 연결체(1911)를 따라 하향하게 된다. 따라서 제2 축부(1453)를 회전 가능하게 지지하는 베어링에 이르지 못하게 된다.As shown in FIG. 12, when the juice flowing along the second shaft portion 1453 reaches the first guide member 192, in a downward direction of the first guide member 192 rotating together with the second shaft portion 1453. The first guide member 192 flows along the side, but since the first guide member 192 rotates, the downward juice is located upward with the first guide member 192 according to the rotation of the first guide member 192. As a result, it is possible to cross the first guide member 192 and reach the second shaft portion 1453 again. At this time, by the second guide member 191 having the connecting member 1911 in contact with the first guide member 192 or forming a micro gap, the juice passes over the first guide member 192 again and the second shaft portion 1453. Before being delivered to the connector 1911 and down along the connector 1911. Therefore, it is impossible to reach the bearing for rotatably supporting the second shaft portion 1453.
도 3에서는 제2 축부(1453)의 길이 방향 좌측에 안내수단(190)이 설치된 것을 도시하고 있으나, 안내수단(190)은 필요에 따라 베어링의 손상을 방지할 있는 개소에 복수 개 설치하는 것도 가능하다. In FIG. 3, the guide means 190 is installed on the left side in the longitudinal direction of the second shaft portion 1453. However, the guide means 190 may be provided in plural places where it is possible to prevent the bearing from being damaged. Do.
본 발명은 보수가 용이하며, 제조가 간단하며, 대용량의 착즙기로 제조할 수 있는 착즙기를 제공한다.The present invention provides a juicer that is easy to repair, simple to manufacture, and can be manufactured with a large-capacity juicer.

Claims (9)

  1. 제1 착즙체와 상기 제1 차즙체 내측으로 위치하는 제2 착즙체로 이루어지는 착즙기에 있어서; 상기 제1 착즙체의 회전축인 제3 축부와 제2 착즙체의 회전축인 제2 축부는 편심되며, 상기 제1 착즙체와 제2 착즙체 사이로 투입된 착즙물은 회전축을 달리하여 회전하는 제1 착즙체와 제2 착즙체 사이에서 가압 착즙되는 것을 특징으로 하는 착즙기.A juicer comprising a first juice body and a second juice body positioned inside the first tea juice body; The third shaft portion, which is the axis of rotation of the first juice body, and the second shaft portion, which is the axis of rotation of the second juice body, are eccentric, and the juice introduced between the first juice and the second juice body is the first juice that rotates with a different axis of rotation. Juicer, characterized in that the pressurized juice between the sieve and the second juice.
  2. 제1 항에 있어서, 상기 제1 착즙체는 원통형의 제1 원통부를 구비하고, 상기 제2 착즙체는 원통형의 제2 원통부를 구비하며, 상기 제3 축부는 제1 원통부의 회전축으로 되며 제2 축부는 제2 원통부의 회전축으로 되며, 회전축을 달리하여 회전하는 제1 원통부와 제2 원통부 사이로 투입된 착즙물은 제1 원통부의 내면과 제2 원통부의 외면 사이의 간격이 좁아지는 쪽으로 안내되면서 제1 원통부의 내면과 제2 원통부의 외면 사이에서 가압되어 착즙되는 것을 특징으로 하는 착즙기.The method of claim 1, wherein the first juiced body has a cylindrical first cylindrical portion, the second juiced body has a cylindrical second cylindrical portion, the third shaft portion is a rotation axis of the first cylindrical portion and the second The shaft portion becomes a rotation axis of the second cylindrical portion, and the juice introduced between the first cylindrical portion and the second cylindrical portion rotating with different rotation axes is guided toward a narrower gap between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion. Juicer, characterized in that the pressing is pressed between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion.
  3. 제2 항에 있어서, 상기 제1 원통부와 제2 원통부 사이로 착즙물을 투입하는 투입부와 상기 제1 원통부와 제2 원통부 사이에서 착즙된 착즙물을 배출하는 배출부가 구비되며; 상기 제1 원통부에는 복수의 통공이 형성되어 착즙물이 가압될 때 생성되는 착즙은 제1 원통부에 형성된 통공을 통하여 배출되는 것을 특징으로 하는 착즙기. According to claim 2, An injection portion for introducing the juice between the first cylindrical portion and the second cylindrical portion and the discharge portion for discharging the juice of the juice between the first cylindrical portion and the second cylindrical portion is provided; The first cylindrical portion is formed with a plurality of through the juice is generated when the juice is pressed juice is characterized in that the juice is discharged through the through hole formed in the first cylinder.
  4. 제3 항에 있어서, 상기 투입부는 일부는 상기 제1 원통부의 내면과 제2 원통부의 외면 사이에 위치하고 일부는 제1 착즙체의 길이 방향 외측으로 노출된 중공의 투입하우징과, 상기 투입하우징 내에 회전 가능하게 구비된 스크루컨베이어와, 상기 제1 원통부의 길이 방향 외측으로 노출된 투입하우징 부분에 투입하우징 내측으로 연통되도록 연결되며 상방으로 갈수록 지름이 증가하는 부분을 가지는 중공의 투입호퍼로 이루어지는 것을 특징으로 하는 착즙기.According to claim 3, wherein the input portion is located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and the hollow housing of the exposed portion in the longitudinal direction outside of the first juice body, and rotates in the input housing And a hollow feeding hopper which is connected to communicate with the inside of the input housing in an input housing portion exposed to the longitudinally outer side of the first cylindrical portion, and has a portion that increases in diameter upward. Juicer.
  5. 제3 항에 있어서, 상기 제1 원통부 외면로부터 반경 방향으로 외측으로 이격 구비되며 제1 원통부의 내부로 유체를 분사하는 분사수단을 더 포함하는 것을 특징으로 하는 착즙기.The juicer according to claim 3, further comprising spraying means spaced radially outward from the outer surface of the first cylindrical portion and injecting a fluid into the first cylindrical portion.
  6. 제5 항에 있어서, 상기 배출부는 상기 제1 원통부 내면과 제2 원통부 외면 사이에 위치하는 단면이 원호형인 배출하우징과, 제1 원통부의 길이 방향 외측으로 노출되며 상기 배출하우징과 연통된 제1 배출하우징과, 상기 제1 배출하우징과 연통되며 제1 배출하우징으로부터 하향 연장된 배출안내부와, 상기 배출하우징과 제1 배출하우징 내에 회전 가능하게 구비된 스크루컨베이어를 포함하여 구성되며; 상기 배출하우징은 공기를 분사하는 분사수단을 향하여 오목하게 형성된 것을 특징으로 하는 착즙기.6. The gas discharging unit of claim 5, wherein the discharge unit has an arcuate discharge housing having a circular cross section located between the inner surface of the first cylindrical portion and the outer surface of the second cylindrical portion, and is exposed to the outer side in the longitudinal direction of the first cylindrical portion and communicates with the discharge housing. A discharge housing, a discharge guide portion communicating with the first discharge housing and extending downward from the first discharge housing, and a screw conveyor rotatably provided in the discharge housing and the first discharge housing; The discharge housing is a juicer, characterized in that formed concave toward the injection means for injecting air.
  7. 제1 항에 있어서, 상기 제1 착즙체는 원통형인 제1 원통부와, 상기 제1 원통부를 반경 방향으로 지지하는 환형의 제1 환형부로 이루어지며 상기 제1 환형부의 내경부로부터 제1 원통부와 반대 방향으로 연장 구비된 중공의 제3 축부에 연결되어 회전 구동되며; 상기 제2 착즙체는 원통형이며 상기 제1 원통부의 내측으로 위치하는 제2 원통부와, 길이 방향 이격되어 구비되며 상기 제2 원통부를 반경 방향을 지지하는 하나 이상의 제2 환형부로 이루어지며 상기 제2 환형부를 관통하여 구비된 제2 축부에 연결되어 회전 구동되며; 상기 제2 축부는 제3 축부와 편심되게 제3 축부의 내측으로 위치하는 것을 특징으로 하는 착즙기.According to claim 1, wherein the first juice is composed of a cylindrical first cylindrical portion, and an annular first annular portion for supporting the first cylindrical portion in the radial direction and the first cylindrical portion from the inner diameter of the first annular portion A rotational drive is connected to a third hollow shaft portion extending in the opposite direction to the hollow shaft; The second juice is cylindrical and is composed of a second cylindrical portion positioned inwardly of the first cylindrical portion, and at least one second annular portion provided longitudinally spaced and supporting the second cylindrical portion in a radial direction. Connected to a second shaft portion provided through the annular portion and driven to rotate; The second shaft portion is juicer, characterized in that located in the third shaft portion eccentric with the third shaft portion.
  8. 제1 항에 있어서, 상기 제3 축부는 중공축이고 상기 제2 축부는 제3 축부 내로 위치하며, 제2 축부에는 제1 착즙체와 제2 착즙체 사이에서 가압되는 착즙물에서 생성되는 착즙이 제2 축부를 따라 흘러 제2 축부를 회전 가능하게 지지하는 베어링 쪽으로 흐르는 것을 방지하는 안내수단이 구비되며; 상기 안내수단은 제2 축부에 결합되어 제2 축부와 함께 회전하는 제1 안내부재와, 상기 제1 안내부재의 측면과 접촉하거나 제1 안내부재의 측면으로부터 미소 간격 이격되어 구비되며 몸체에 고정된 제2 안내부재로 이루어지는 것을 특징으로 하는 착즙기.According to claim 1, wherein the third shaft portion is a hollow shaft and the second shaft portion is located in the third shaft portion, the second shaft portion is a juice produced in the juice pressurized between the first juice and the second juice body Guide means for preventing the flow along the two shaft portions and toward the bearing for rotatably supporting the second shaft portion; The guide means is provided with a first guide member coupled to the second shaft portion and rotated together with the second shaft portion, contacting the side surface of the first guide member or spaced apart from the side surface of the first guide member by a small distance. Juicer, characterized in that consisting of a second guide member.
  9. 제2 항에 있어서, 상기 제1 원통부의 내면으로는 복수의 미세공이 형성된 망체가 더 구비되는 것을 특징으로 하는 착즙기.The juicer according to claim 2, further comprising a network having a plurality of micropores formed on an inner surface of the first cylindrical portion.
PCT/KR2010/009221 2010-12-22 2010-12-22 Juicer WO2012086861A1 (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101680986B1 (en) 2015-12-31 2016-11-30 김점두리 A large capacity juicer
CN107752711A (en) * 2017-11-02 2018-03-06 瞿珠薇 A kind of juice extractor
KR20180085488A (en) * 2017-01-19 2018-07-27 이문현 A large capacity juicer
CN109431237A (en) * 2018-11-05 2019-03-08 广东博智林机器人有限公司 Eccentric electromagnetic cylinder heating device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR960014850B1 (en) * 1994-04-20 1996-10-21 김종길 Apparatus for extracting juice
KR0126561Y1 (en) * 1995-08-18 1998-09-15 우종섭 Juicer for vegetables
KR100209320B1 (en) * 1996-03-27 1999-07-15 장용석 Crushing apparatus
KR20000058881A (en) * 2000-07-04 2000-10-05 김성원 Two step juicer and juice making method thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR960014850B1 (en) * 1994-04-20 1996-10-21 김종길 Apparatus for extracting juice
KR0126561Y1 (en) * 1995-08-18 1998-09-15 우종섭 Juicer for vegetables
KR100209320B1 (en) * 1996-03-27 1999-07-15 장용석 Crushing apparatus
KR20000058881A (en) * 2000-07-04 2000-10-05 김성원 Two step juicer and juice making method thereof

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3398455A4 (en) * 2015-12-31 2019-07-03 Chom Tu I Kim Large-capacity juicer
WO2017116056A1 (en) * 2015-12-31 2017-07-06 김점두리 Large-capacity juicer
US10827776B2 (en) 2015-12-31 2020-11-10 Chom Tu I Kim High-capacity juice extractor
KR101680986B1 (en) 2015-12-31 2016-11-30 김점두리 A large capacity juicer
CN108430238A (en) * 2015-12-31 2018-08-21 金点斗理 Large capacity juice extractor
AU2016380513B2 (en) * 2015-12-31 2020-07-02 Chom Tu I Kim Large-capacity juicer
RU2723354C2 (en) * 2015-12-31 2020-06-10 Чхом Тху И КИМ High-power extractor for juices
KR20180085488A (en) * 2017-01-19 2018-07-27 이문현 A large capacity juicer
KR101925840B1 (en) 2017-01-19 2019-02-26 이문현 A large capacity juicer
EP3571936A4 (en) * 2017-01-19 2020-10-28 Mun Hyun Lee Large-capacity juicing machine
CN107752711A (en) * 2017-11-02 2018-03-06 瞿珠薇 A kind of juice extractor
CN109431237A (en) * 2018-11-05 2019-03-08 广东博智林机器人有限公司 Eccentric electromagnetic cylinder heating device
CN109431237B (en) * 2018-11-05 2020-10-27 广东智源机器人科技有限公司 Eccentric electromagnetic roller heating device

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