WO2019035567A1 - Machine à tasses de glace - Google Patents

Machine à tasses de glace Download PDF

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Publication number
WO2019035567A1
WO2019035567A1 PCT/KR2018/008095 KR2018008095W WO2019035567A1 WO 2019035567 A1 WO2019035567 A1 WO 2019035567A1 KR 2018008095 W KR2018008095 W KR 2018008095W WO 2019035567 A1 WO2019035567 A1 WO 2019035567A1
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WO
WIPO (PCT)
Prior art keywords
ice
panel
core
cup
ice crystals
Prior art date
Application number
PCT/KR2018/008095
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English (en)
Korean (ko)
Inventor
최영환
Original Assignee
최영환
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 최영환 filed Critical 최영환
Publication of WO2019035567A1 publication Critical patent/WO2019035567A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C5/00Working or handling ice
    • F25C5/14Apparatus for shaping or finishing ice pieces, e.g. ice presses
    • F25C5/142Apparatus for shaping or finishing ice pieces, e.g. ice presses extrusion of ice crystals
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C1/00Producing ice
    • F25C1/04Producing ice by using stationary moulds
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C2400/00Auxiliary features or devices for producing, working or handling ice
    • F25C2400/08Auxiliary features or devices for producing, working or handling ice for different type of ice
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C2500/00Problems to be solved
    • F25C2500/08Sticking or clogging of ice
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C2600/00Control issues
    • F25C2600/04Control means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C2700/00Sensing or detecting of parameters; Sensors therefor

Definitions

  • the present invention relates to an ice-making machine. And more particularly, to an ice-making machine for forming an ice-cup by pressurizing, molding and extracting ice crystals.
  • Ice cups which can be referred to as ice cups, are made of ice, for example, in order to cool drinks such as beer or carbonated water in the summer. These ice cups are made of pure ice, There is no risk of risk.
  • Such an ice cup is manufactured, for example, through an ice cup maker which inserts and pressurizes ice crystals into an ice cup.
  • the ice-making machine includes, for example, an upper mold, a lower mold, and a driving unit.
  • FIG. 1 is a cross-sectional view of a conventional ice cup manufacturing apparatus.
  • a conventional ice cup manufacturing apparatus includes a lower mold 20 in which a mixture of ice crystals and water is placed, And the mixture is pressurized by driving any one of the upper mold 10 and the upper and lower molds 10 and 20 in which a plurality of discharge flow paths EP for communicating the inside and the outside are formed, The mixture is pressurized by the upper and lower molds 10 and 20 so that water and air are discharged from the inside of the molding region where the mixture is molded in the ice cup through the plurality of discharge channels EP And is discharged to the outside.
  • the ice cubes are not formed properly due to the non-uniform shrinkage of the water located inside the molding region.
  • the ice cup manufacturing apparatus has a problem in that when the ice crystals IP are supplied to the lower mold 20 with little or no amount, defects easily occur and the quality of the ice cup is deteriorated.
  • the ice-making machine includes a storage space in which ice crystals supplied from an ice maker are stored, and a hopper having a discharge port for discharging the ice crystals to the outside, ;
  • a metering unit disposed at a lower portion of the hopper and having a top communicating with an outlet for metering and discharging the supply amount of the ice crystals;
  • a slide panel provided at an upper portion of the metering device for opening and closing an outlet, a slide panel slidably installed at a lower portion of the opening / closing device with a metering device interposed therebetween and provided with a slot for dropping ice crystals,
  • a first driver including a first ball screw connected to the first driving motor and interlocked with the first driving motor;
  • the first ball screw and the first driving motor are installed at the lower part of the hopper so that the weighing device and the slide panel are installed on the upper part. Ice crystals falling through the inlet are passed through the ice cup, A guide panel having an opening portion to be drawn out;
  • An ice cup cavity disposed in the lower portion of the guide panel for receiving and storing ice crystals passing through the opening, and a mold plate provided at the lower portion of the molding die, );
  • a molding unit including a core disposed at an upper portion of the mold unit so as to be able to move up and down to press the ice crystals stored in the cavity into an ice cup and a core plate having the core installed at a lower portion thereof;
  • a second driving unit disposed on a side surface of the forming unit and including a gripping device for gripping the ice cup extracted from the core, a second ball screw connected to the gripping device through the second connecting part and interlocked with the second driving motor, And
  • a third ball screw installed in the cylinder and rotated in conjunction with the third drive motor to move up and down in the vertical direction, and a third ball screw installed in the lower end of the third ball screw,
  • a third driving unit including a driving plate connected to the core plate through a vertical guide;
  • the metering device may include an accommodation space provided in the slide panel for temporarily accommodating the ice crystals supplied through the discharge port, A first metering panel for interlocking the opening and closing device;
  • a second weighing panel assembled to the first weighing panel to form and change a receiving space, a second weighing panel having a hook at one end thereof for interlocking with the first weighing panel;
  • the opening / closing device may include a separating bar installed at one end in an upward direction to separate the ice crystals stored in the storage space so that they do not stick to each other;
  • an ice cube manufacturing machine wherein the mold part is interposed between a molding die and a mold plate, a drain hole through which the ice water drained from the cavity is drained from the outside, An auxiliary space having an inner space communicating the hole and the cavity;
  • a return spring installed in the inner space
  • An extraction device for extracting the ice cup from the cavity while lifting and lowering through the return spring
  • the forming unit may include a stopper pin installed on the core plate so that both ends are exposed to the outside;
  • a coil spring interposed between the upper end of the stopper pin and the core plate;
  • a height restricting panel disposed on the top of the stopper pin
  • a stripper assembled slidably in a vertical direction on the upper portion of the core and connected to a lower end of the stopper pin to descend along the stopper pin when the height of the stopper pin is restricted through the height limiting panel to peel the ice cup from the core;
  • the upper end of the core plate is exposed to the outside of the core plate and the lower end of the core plate is protruded to the outside of the core, A venting auxiliary device;
  • the entrance and exit of the gripping device is formed, and the upper and lower doors, through which the ice cup held by the gripping device, A rotatably installed ice cup discharge case;
  • an upper horizontal frame for supporting the mold plate, a lower horizontal frame connected through the upper horizontal frame and the first vertical frame, and a lower horizontal frame connected to the upper horizontal frame
  • An outer frame including a second vertical frame with a height restricting panel mounted thereon;
  • the molding die it is possible to supply the molding die with a predetermined amount of ice crystals as much as necessary for forming the ice cup through the metering device, thereby preventing unnecessary waste of the ice crystals.
  • the ice crystals are pressurized and pressed into the ice cup while vertically moving the cores through the first, second and third drive units driven by the driving motor and the ball screw combination method, By discharging it to the outside, an ice cup can be easily manufactured and provided.
  • FIG. 1 is a cross-sectional view of a conventional ice-making apparatus.
  • FIG. 2 is a perspective view of an ice-making machine according to an embodiment of the present invention.
  • FIGS. 3 to 4 are perspective views showing essential parts of an ice-making machine according to an embodiment of the present invention.
  • FIGS. 5 to 6 are cross-sectional views showing a part of a main part of an ice-making cup according to an embodiment of the present invention.
  • FIG. 7 to 9 are enlarged views showing a main part of an ice-making machine according to an embodiment of the present invention.
  • FIG. 10 is a perspective view of an ice cube maker according to an embodiment of the present invention.
  • FIG. 2 is a perspective view of an ice-making machine according to an embodiment of the present invention.
  • the forming unit 50 is disposed on an upper portion of the first driving unit 30 and a third driving unit 53 And the second driving portion 44 is disposed on the side surface thereof.
  • FIG. 3 and 4 are perspective views of the main part of the ice-making machine according to the embodiment of the present invention.
  • the metering part 20 is assembled to the first driving part 30 and the upper part of the first driving part 30 In which the storage unit 10 is disposed.
  • FIG. 5 is a cross-sectional view of a major part of an ice-making machine according to an embodiment of the present invention.
  • a weighing unit 20 and a storage unit 10 are assembled to a first driving unit 30, 1 drive unit 30 and the mold unit 40 is disposed at the lower portion of the molding unit 50.
  • the mold unit 50 is disposed at the upper portion of the first drive unit 30,
  • the ice-making machine includes a storage unit 10 for storing ice crystals generated and supplied from a conventional ice maker, And a metering section 20 for metering and discharging the supply amount of the ice crystals.
  • the storage unit 10 includes a storage space 11a for storing ice crystals supplied from an ice maker and a hopper 11 having a discharge port 11b for discharging ice crystals to the outside.
  • the metering unit 20 is disposed below the hopper 11.
  • the metering unit 20 is connected to the outlet 11b and communicates with the outlet 11b to supply a predetermined amount of ice crystals necessary for forming the ice cup, (21).
  • the ice crystals produced in the icemaker are stored in the storage unit 10 through the hopper 11, and are metered through the metering device 21, To the mold section (40), thereby forming an ice cup.
  • the icemaker according to an embodiment of the present invention including the metering section 20 and the storage section 10 includes a first driving section 30 for horizontally sliding the metering device 21.
  • the first driving unit 30 includes an opening and closing device 31 disposed at a lower portion of the hopper 11 to open and close the outlet 11b and a sliding device 31 disposed below the opening and closing device 31, A slide panel 32 provided with an inlet 32a for dropping ice crystals and a first connection portion 34 which can be implemented by an LM guide (Linear Motion Guide), for example, on the outside of the slide panel 32 And a first ball screw connected to the first drive motor 35 by a belt or a chain or the like and connected to the first drive motor 35 that can be operated by a normal servo motor or a step motor .
  • LM guide Linear Motion Guide
  • the opening and closing device 31 is formed in the form of a rectangular panel having a size capable of opening and closing the discharge port 11b and a separating rod 31a is installed at one end in the upward direction to allow the ice crystals stored in the storage space 11a to communicate with each other It can be separated so that it does not stick.
  • the slide panel 32 is moved in the horizontal direction so that the opening and closing device 31 including the metering device 21 and the separating bar 31a is horizontally slidably moved A certain amount of ice crystals are introduced into the cavity 41a and the ice crystals stored in the storage space 11a are separated through the separating rod 31a so as not to stick together.
  • the weighing device 21 includes first and second weighing panels 21a and 21b forming an accommodation space 22 for temporarily accommodating the ice crystals supplied through the outlet 11b.
  • the first metering panel 21a is formed on the upper part of the slide panel 32 and has a semicircular front end so as to form, for example, an elliptical receiving space 22, and the rear end thereof is connected to the opening /
  • the opening / closing device 31 is interlocked.
  • the assembly part 21c is formed on both sides of the front end so that the second metering panel 21b can be easily assembled.
  • the second metering panel 21b is formed in a semicircular shape at its front end so as to form a receiving space 22 together with the first metering panel 21a and the receiving space 22 can be changed from an elliptical shape to a circular shape
  • an engaging protrusion 21e is formed at the distal end of the extended portion 21d so that the slide is interlocked with the first weighing panel 21a, .
  • the accommodation space 22 formed through the first and second metering panels 21a and 21b is formed, for example, in an elliptical shape to temporarily store ice crystals.
  • 21d When the ice crystals are charged, 21d so that the ice crystals are introduced into the ice cubes through the first metering device 21 which is slid along the ice cubes 21d.
  • the supply amount of the ice crystals according to the size of the ice cup can be measured and adjusted through the metering device 21, and it is possible to supply the ice crystals as much as necessary for forming the ice cup , Unnecessary waste of ice crystals can be prevented.
  • the ice-making machine includes a mold 40 and a guide panel 42 for molding ice crystals into ice cups.
  • the mold part 40 is disposed below the opening part 42a formed in the guide panel 42 and communicates with the opening part 42a to form an ice cup shaped cavity 41a for receiving and storing ice crystals And a mold plate 41b mounted on the lower portion of the molding die 41 to support the molding die 41.
  • the guide panel 42 is horizontally installed at a lower portion of the hopper 11 so that the weighing device 21 and the slide panel 32 are installed on the upper part of the hopper 11 and the first ball screw 33 and the first drive motor 35 are installed at the lower part through a normal bracket or the like and the ice crystals falling through the inlet port 32a pass therethrough and at the same time the ice crystals extracted from the cavity 41a, An opening 42a through which the cup is drawn is formed at one end located on the opposite side of the metering device 21.
  • the mold part 40 is interposed between the molding die 41 and the mold plate 41b and discharges the ice water discharged from the cavity 41a during the molding process of the ice cup to drain holes 70a And a return spring 71 provided in the inner space 70b and an inner space 70b formed in the inner space 70b to communicate with the cavity 41a, And an extracting device 72 for extracting the ice cup from the cavity 41a while raising and lowering the ice cubes through the ice cubes 71.
  • the ice cup having a clean and smooth surface with the drainage hole 70a by discharging the ice water discharged in the molding process of the ice cup through the drain hole 70a, It is possible to easily extract the ice cup from the cavity 41a through the outside air and the extraction device 72, which is effective in terms of manufacturing convenience.
  • FIG. 6 is a sectional view of the third driving part 53 according to an embodiment of the present invention.
  • the cylinder 54 is provided below the mold plate 41b, and the inside of the cylinder 54
  • the third ball screw 55 is installed to be movable up and down and the driving plate 56a is installed at the lower end of the third ball screw 55.
  • FIG. 7 is a perspective view illustrating a state in which the forming unit 50 is disposed on the upper portion of the first driving unit 30 according to the embodiment of the present invention and the second driving unit 44 is disposed below the forming unit 50 The relationship is shown in cross-section with some incisions.
  • FIG. 8 is a cross-sectional perspective view showing a part of the coupling relationship between the core 51 and the stripper 52 constituting the forming part 50 according to the embodiment of the present invention and the constitution of the ice- Respectively.
  • the ice-making machine includes a molding unit 50 including a core 51 for manufacturing ice crystals injected into the mold unit 40 into ice cups, A second driving part 44 including a gripping device 43 for gripping the formed ice cup, and a third driving part 53 for moving up and down the forming part 50.
  • the forming unit 50 includes a core plate 51a and a core 51 is disposed under the core plate 51a.
  • the core 51 is disposed on the upper part of the mold part 40 so as to be able to move up and down so that the ice crystals stored in the cavity 41a are pressed and molded into an ice cup.
  • the core 51 is formed to correspond to the cavity 41a and is formed smaller than the cavity 41a so that the ice crystals are formed between the core 51 and the cavity 41a when the ice crystals are pressed, .
  • the molding section 50 is provided in the lower part of the mold plate 41b with a cylinder 54 provided through a flange 54a and inside the cylinder 54.
  • a third driving motor 56 and a belt A third ball screw 55 which is vertically connected and connected to the third ball screw 55 by a chain or the like and a vertical guide 56b having a circular cross section and installed at the lower end of the third ball screw 55, And is vertically raised and lowered through a third driving unit 53 including a driving plate 56a connected to the plate 51a.
  • the cylinder 54 includes a flange 54a and is integrally or separately formed so that a third ball screw 55 is axially assembled therein and the third ball screw 55 is axially assembled through a third drive motor 56, By rotating the screw 55 in one direction, the driving plate 56a provided at the lower end of the third ball screw 55 is moved up and down.
  • the core plate 51a whose corners are connected to each other through the vertical guides 56b, moves up and down according to the rise and fall of the driving plate 56a, and consequently the core 51 is lifted and lowered, Is formed.
  • the forming unit 50 includes a stopper pin A coil spring 58 interposed between the stopper pin 57 and the core plate 51a and a height restricting panel 51b disposed on the stopper pin 57.
  • the molding part 50 is assembled to be vertically slidable on the upper part of the core 51 and connected to the lower end 57a of the stopper pin 57 to remove the ice cup from the core 51. [ (52).
  • the stopper 52 descends along the stopper pin 57 descending simultaneously with the compression of the coil spring 58 when the height of the stopper pin 57 through the height restricting panel 51b is lowered, The cup is peeled off.
  • the forming unit 50 may further include a take-out assisting device 59 provided on the core 51 for peeling the ice cup together with the stripper 52.
  • the takeout assisting device 59 includes an auxiliary stopper pin 59a provided at the center of the core 51 so that the lower end thereof can be raised and lowered and an upper end exposed to the core plate 51a, An auxiliary coil spring 59b interposed between the core plate 51a and an auxiliary stripper 59c assembled at the lower end of the auxiliary stopper pin 59a and protruding through the lower end of the core 51 do.
  • the take-out assisting device 59 is provided on the auxiliary stopper pin 59a to descend along the auxiliary stopper pin 59a at the same time as the compression of the auxiliary coil spring 58 when the height of the auxiliary stopper pin 57 through the height- 59c to remove the ice cup from the core 51.
  • the embodiment of the present invention by restricting the elevation height of the core 51 through the stopper pin 57, it is possible to prevent a safety accident that may occur in forming the ice cup, It is possible to easily extract the formed ice cup from the core 51 through the take-out assisting device 59, which is effective in terms of manufacturing convenience.
  • FIG. 9 is an enlarged view of a second driving unit 44 according to an embodiment of the present invention.
  • the second ball screw 46 is connected to the second driving motor 47, and the second ball screw 46 And the second connection portion 45 is connected to the second connection portion.
  • FIG. 10 illustrates a lower horizontal frame 80b connected to the upper horizontal frame 80a through the first vertical frame 80c so that the ice cup discharge case 60 according to an embodiment of the present invention forms a skeleton of the ice- And a second vertical frame 80d provided on the upper surface of the upper horizontal frame 80a and provided with a height restricting panel 51b and an ice cup discharge case 60.
  • the second driving part 44 according to an embodiment of the present invention is disposed on a side surface of the forming part 50 and is connected through a second connecting part 45 which can be implemented, for example, by an LM guide And a second ball screw 46 connected to the second driving motor 47 by a belt, a chain, or the like.
  • the gripping device 43 is formed at the central portion with a storage portion 43a for gripping the ice cup extracted from the core 51.
  • the accommodating portion 43a is formed, for example, in a diagonal cross section so that the ice cup can be easily gripped.
  • the second ball screw 46 for driving the gripping device 43 is vertically arranged in at least one pair, for example, a pair of gears connected to each other through a gear module.
  • the second ball screw 46 is connected to the gripping device 43 While interlocking with the second driving motor 47, the gripping device 43 is discharged to the outside.
  • the ice-cube discharging case 60 may further include an ice-cube discharging case 60 for easily providing the ice-cube to the consumer through the second driving unit 44.
  • the ice cup discharge case 60 has an inlet and an outlet path 61 through which the gripping device 43 enters and exits and an ice cup held by the gripping device 43 at the upper and lower portions of the entrance and exit path 61
  • the upper and lower door openings 62 and the lower door openings 63 are rotatably installed.
  • the upper and lower doors 62 and 63 may be rotatably installed in the ice cup discharge case 60 through a normal hinge, and may be installed in a side-by-side manner.
  • the lower door 63 may interlock with a partition provided inside the ice cup discharge case 60 to discharge the ice cup to the outside.
  • the icemaker discharge case 60 may be installed in an outer frame 80 constituting a frame of the ice-making machine according to an embodiment of the present invention.
  • the outer frame 80 includes an upper horizontal frame 80a for supporting the mold plate 41b, a lower horizontal frame 80b connected to the upper horizontal frame 80a through the first vertical frame 80c, And a second vertical frame 80d provided on the upper surface of the horizontal frame 80a and having a height restricting panel 51b and an ice cup discharge case 60 installed thereon.
  • the ice cup making machine can be stably constructed through the outer frame 80, and the ice cup can be formed safely without the risk of safety accident.
  • the ice cup according to the embodiment of the present invention can manufacture the ice cup through the following molding method. It should be noted, however, that this is not necessarily limited to only one example.
  • the ice crystals stored in the hopper 11 are supplied to the cavity 41a from the metering device 21 through slide movement of the metering device 21 in the horizontal direction through the first driving part 30. [ Since the weighing device 21 is hermetically closed by the guide panel 42, a predetermined amount of ice crystals are temporarily received through the accommodation space 22, and then the opening portion 42a ).
  • the metering device 21 can be slid while maintaining an elliptical shape due to a predetermined amount of ice crystal bodies temporarily accommodated in the accommodation space 22 when the slide device moves horizontally through the first drive part 30,
  • the accommodation space 22 is changed to a circular shape so that the ice crystals temporarily accommodated in the cavity 41a are completely introduced.
  • the weighing device 21 is returned to the lower position of the hopper 11 while the core 51 is lowered through the third driving part 53 by driving in the direction opposite to the first driving part 30,
  • the ice crystals of the ice crystals 41a are pressed and formed into ice cups.
  • the core 51 is lifted through the third driving part 53 and the holding device 43 is moved horizontally through the second driving part 44 And is disposed under the core 51 by sliding.
  • the ice cup separated from the core 51 is discharged to the outside through the slide movement in the direction of the ice cup discharge case 60 through the second drive unit 44 in a state where the gripper 43 grips the ice cup.
  • the embodiment of the present invention it is possible to supply the ice crystals as much as the amount required for forming the ice cup to the cavity 41a through the metering device 21, and to form the ice cups so that unnecessary waste of the ice crystals And the ice crystals are pressed and lifted in the vertical direction of the core 51 to form the ice crystals into an ice cup and the formed ice cup is discharged to the outside to effectively manufacture and provide the ice cup It is possible.
  • the present invention relates to a manufacturing machine for producing an ice cup capable of consuming beverage, and it is possible to prevent unnecessary waste of ice crystals by supplying a predetermined amount of ice crystals to a molding die through a metering device, The crystal is pressurized and formed into an ice cup, and then the formed ice cup is discharged through the holding device, whereby the ice cup can be mass-produced.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Production, Working, Storing, Or Distribution Of Ice (AREA)

Abstract

La présente invention concerne une machine à tasses de glace. La machine à tasses de glace, selon un mode de réalisation de la présente invention, stocke, dans un espace de stockage d'une trémie, des cristaux de glace fournis par une machine à glaçons, et injecte une quantité fixe de cristaux de glace dans des cavités d'un moule de formage à l'aide d'un dispositif de mesure disposé dans la partie inférieure de la trémie de telle sorte que les cristaux de glace peuvent être mis sous pression, moulés et extraits à travers un cœur de façon à être facilement moulés et fabriqués sous forme de tasses de glace. De plus, lorsque le moulage des tasses de glace est terminé, les tasses de glace séparées du cœur sont maintenues à travers un dispositif de maintien et sont évacuées vers l'extérieur. Par conséquent, étant donné qu'une quantité fixe de cristaux de glace nécessaires pour mouler des tasses de glace peut être injectée, des déchets inutiles de cristaux de glace peuvent être évités, et les tasses de glace peuvent être facilement fabriquées et fournies en faisant monter et descendre verticalement le cœur au moyen d'un procédé d'entraînement constitué d'une combinaison d'un moteur d'entraînement et d'une vis à billes et par coulissement du dispositif de mesure et du dispositif de maintien.
PCT/KR2018/008095 2017-08-14 2018-07-18 Machine à tasses de glace WO2019035567A1 (fr)

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KR10-2017-0103125 2017-08-14
KR1020170103125A KR101979407B1 (ko) 2017-08-14 2017-08-14 아이스 컵 제조기

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110579052A (zh) * 2019-09-16 2019-12-17 安徽一诺青春工业设计有限公司 一种冰块加工设备

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KR20150109695A (ko) * 2014-03-20 2015-10-02 최영환 얼음용기 성형장치
JP2016202014A (ja) * 2015-04-15 2016-12-08 森永乳業株式会社 粒状物の定量配置方法及び定量配置装置

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