WO2024000702A1 - Réfrigérateur - Google Patents

Réfrigérateur Download PDF

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Publication number
WO2024000702A1
WO2024000702A1 PCT/CN2022/107128 CN2022107128W WO2024000702A1 WO 2024000702 A1 WO2024000702 A1 WO 2024000702A1 CN 2022107128 W CN2022107128 W CN 2022107128W WO 2024000702 A1 WO2024000702 A1 WO 2024000702A1
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WO
WIPO (PCT)
Prior art keywords
ice
box
mounting base
side wall
storage box
Prior art date
Application number
PCT/CN2022/107128
Other languages
English (en)
Chinese (zh)
Inventor
姚惠民
朱嘉伟
范艳武
许锦潮
陆景胜
李鹏
张溪
Original Assignee
海信容声(广东)冰箱有限公司
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
Priority claimed from CN202210762903.8A external-priority patent/CN117366970A/zh
Priority claimed from CN202210756796.8A external-priority patent/CN117366965A/zh
Priority claimed from CN202210760112.1A external-priority patent/CN117366966A/zh
Application filed by 海信容声(广东)冰箱有限公司 filed Critical 海信容声(广东)冰箱有限公司
Publication of WO2024000702A1 publication Critical patent/WO2024000702A1/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
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers

Definitions

  • the present disclosure relates to the technical field of household appliances, and in particular to a refrigerator.
  • the device used to make ice in the refrigerator is the ice maker.
  • the ice maker is usually installed in the lower temperature freezer compartment of the refrigerator. It is a refrigeration device that cools water into ice through the refrigeration system.
  • a refrigerator including a box body, a door body, a mounting base ice making machine assembly, an ice transmission device and an ice storage box.
  • a freezing chamber is defined within the box.
  • the door body includes a freezing chamber door configured to open or close the freezing chamber.
  • the mounting seat is fixedly connected to a side wall of the freezer door close to the box.
  • the ice maker assembly is fixedly connected to the mounting base and includes an ice maker configured to make ice cubes.
  • the ice transmission device is fixedly connected to the mounting base; the ice transmission device is located below the ice making machine assembly and is spaced apart from the ice making machine assembly.
  • the ice storage box is connected to the mounting base and is located between the ice making machine assembly and the ice transmission device; the ice storage box is configured to receive the ice cubes taken by the ice making machine.
  • Figure 1 is a structural diagram of a refrigerator according to some embodiments.
  • Figure 2 is a structural diagram of a refrigerator door in an open state according to some embodiments
  • Figure 3 is a cross-sectional view of an ice making system of a refrigerator according to some embodiments.
  • Figure 4 is a perspective view of a refrigerator door and an ice making system according to some embodiments
  • Figure 5 is a perspective view of an ice making system of a refrigerator according to some embodiments.
  • Figure 6 is a perspective view of an ice making system of a refrigerator without the ice making machine assembly according to some embodiments
  • Figure 7 is a perspective view of an ice making system of a refrigerator without the ice making machine assembly and the ice storage box according to some embodiments;
  • Figure 8 is a perspective view of an ice storage box of a refrigerator according to some embodiments.
  • Figure 9 is an assembly diagram of the ice storage box and the mounting base of the refrigerator according to some embodiments.
  • Figure 10 is a perspective view of an ice making system of a refrigerator without an ice storage box according to some embodiments
  • Figure 11 is a partial enlarged view of circle A in Figure 10;
  • Figure 12 is a partial enlarged view of circle B in Figure 11;
  • Figure 13 is another perspective view of an ice storage box of a refrigerator according to some embodiments.
  • Figure 14 is another perspective view of an ice storage box of a refrigerator according to some embodiments.
  • Figure 15 is a perspective view of an ice maker of a refrigerator according to some embodiments.
  • Figure 16 is an exploded view of an ice maker of a refrigerator according to some embodiments.
  • Figure 17 is another exploded view of an ice maker of a refrigerator according to some embodiments.
  • Figure 18 is a perspective view of the ice crushing mechanism of the refrigerator according to some embodiments.
  • Figure 19 is another perspective view of the ice crushing mechanism of the refrigerator according to some embodiments.
  • Figure 20 is a perspective view of the ice crushing mechanism and transmission mechanism of the refrigerator according to some embodiments.
  • Figure 21 is a perspective view of an ice making system of a refrigerator with the ice storage box and casing removed, according to some embodiments;
  • Figure 22 is a connection structural diagram of the ice crushing mechanism, transmission mechanism and stirring device of the refrigerator according to some embodiments.
  • Figure 23 is a perspective view of another ice making system (including a window portion) of a refrigerator according to some embodiments.
  • Figure 24 is a perspective view of another ice making system of a refrigerator without the ice making machine assembly according to some embodiments.
  • Figure 25 is a partial enlarged view of circle C in Figure 24;
  • Figure 26 is an assembly diagram of another ice storage box and mounting base of the refrigerator according to some embodiments.
  • Figure 27 is a perspective view of another ice making system of the refrigerator without the ice storage box according to some embodiments.
  • Figure 28 is a partial enlarged view of circle D in Figure 27;
  • Figure 29 is a perspective view of another ice storage box of the refrigerator according to some embodiments.
  • Figure 30 is a partial enlarged view of the circle E in Figure 29;
  • Figure 31 is a left side view of another ice storage box of the refrigerator according to some embodiments.
  • first and second are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of indicated technical features. Therefore, features defined as “first” and “second” may explicitly or implicitly include one or more of these features. In the description of the embodiments of the present disclosure, unless otherwise specified, "plurality" means two or more.
  • At least one of A, B and C has the same meaning as “at least one of A, B or C” and includes the following combinations of A, B and C: A only, B only, C only, A and B The combination of A and C, the combination of B and C, and the combination of A, B and C.
  • a and/or B includes the following three combinations: A only, B only, and a combination of A and B.
  • parallel includes absolutely parallel and approximately parallel, and the acceptable deviation range of approximately parallel may be, for example, a deviation within 5°;
  • perpendicular includes absolutely vertical and approximately vertical, and the acceptable deviation range of approximately vertical may also be, for example, Deviation within 5°.
  • equal includes absolute equality and approximate equality, wherein the difference between the two that may be equal within the acceptable deviation range of approximately equal is less than or equal to 5% of either one, for example.
  • the orientation expressions of up, down, left, right, front, and back in this disclosure refer to the state of the refrigerator in use.
  • the side of the refrigerator that faces the user when in use is the front side, and the side opposite to it is the rear side.
  • the height direction of the refrigerator is up and down.
  • the left-right direction of the refrigerator is opposite to the left-right direction of the user.
  • the left side of the refrigerator is the user's right side
  • the right side of the refrigerator is the user's left side.
  • the refrigerator 1 includes a box body 100 and a door body 200.
  • the box 100 includes a storage space, and the door 200 is configured to open and close the storage space.
  • the box 100 includes longitudinal partitions 101 .
  • the longitudinal partition plate 101 is disposed in the middle of the box 100 in the length direction and extends along the height direction of the box 100 .
  • the longitudinal partition board 101 is configured to divide the storage space into two storage compartments.
  • the storage space is divided into a left storage room and a right storage room by the longitudinal partition board 101 .
  • the left storage chamber is used as a refrigeration chamber 110 for storing food in a refrigeration mode
  • the right storage chamber is used as a freezing chamber for storing food in a freezing mode.
  • Room 120 the left storage chamber is used as a refrigeration chamber 110 for storing food in a refrigeration mode
  • the right storage chamber is used as a freezing chamber for storing food in a freezing mode.
  • the door body 200 includes a refrigerating compartment door 210 and a freezing compartment door 220.
  • the refrigerating compartment door 210 can pivot to open or close the refrigerating chamber 110, and the freezing compartment door 220 can pivot to open or close the freezing chamber 120.
  • the refrigerator 1 further includes an ice making system 1000 .
  • the ice making system 1000 includes a mounting base 300, an ice making machine assembly 400, an ice storage bin 500, an ice transport device 600, an ice channel 700, and a dispenser 800.
  • the mounting base 300 is fixedly connected to the side wall (inner wall) of the freezer door 220 close to the box 100.
  • the ice maker assembly 400, the ice storage box 500 and the ice transport device 600 are arranged from top to bottom. Set on the mounting base 300 in sequence.
  • the mounting base 300 can be fixedly connected to the freezer door 220 through screws or bolts, or the mounting base 300 can be fixedly connected to the freezer door 220 in other ways, which is not limited in this disclosure.
  • Ice maker assembly 400 includes an ice maker 410 .
  • the ice maker 410 is fixedly connected to the mounting base 300 and is configured to make ice cubes and make the ice cubes fall downward.
  • the ice storage box 500 includes a first ice receiving port 501 with an opening facing the ice making machine 410 (that is, facing upward) to receive the ice cubes falling from the ice making machine 410 .
  • the ice machine 410 is disposed inside the freezing chamber door 220, that is, when the freezing chamber door 220 is closed, the ice making machine 410 is located in the freezing chamber 120. Therefore, the ice making machine 410 can directly utilize the freezing chamber.
  • the cold energy in the chamber 120 is used to produce ice cubes, so that the structure of the refrigerator 1 can be simplified.
  • the refrigerator 1 further includes a refrigeration device that provides cooling capacity for the ice maker 410.
  • the refrigeration device includes a cold air delivery pipe, one end of the cold air delivery pipe is located at the ice maker 410, and the cold air delivery pipe The other end of the conveying pipe is connected to the space where the evaporator is located, so that the cold air near the evaporator can be directly conveyed to the ice making machine 410, which is beneficial to increasing the ice making speed of the ice making machine 410.
  • a portion of the cold air delivery pipe can be buried in the door body 200 . In this way, not only can the cold air delivery pipe be insulated, but the cold air delivery pipe will not occupy space in the storage room. space.
  • the refrigeration device may also include other devices used to provide cooling capacity for the ice making machine 410, which is not limited in this disclosure.
  • the ice storage box 500 is connected to the mounting base 300 .
  • the lower end of the ice storage box 500 is connected to the ice transport device 600, and the ice storage box 500 is configured to store the ice cubes dropped from the ice making machine 410, and transport the ice cubes to the ice transport device under the action of gravity. Device 600.
  • the ice transport device 600 is fixedly connected to the mounting base 300.
  • the lower end of the ice transport device 600 is connected to one end of the ice channel 700 , and the ice transport device 600 is configured to exert force on the ice cubes and push the ice cubes to the ice channel 700 .
  • the ice channel 700 is in the shape of a funnel with a wide top and a narrow bottom, and the other end of the ice channel 700 is connected to one end of the distributor 800 .
  • the distributor 800 is disposed in the door body of the freezing chamber door 220 and penetrates the freezing chamber door 220 along the thickness direction of the freezing chamber door 220.
  • the one end of the distributor 800 is located on the inner wall of the freezer door 220 and is connected to the other end of the ice channel 700 .
  • the other end of the distributor 800 is located on the outer wall of the freezer door 220 . In this way, the ice cubes in the ice channel 700 enter the distributor 800 under the action of the thrust of the ice transport device 600 and gravity.
  • the ice making machine 410 makes the ice cubes and makes the ice cubes fall downward. Then, the ice cubes pass through the ice storage box 500, the ice transport device 600 and the ice channel 700 in sequence, and Enter dispenser 800. In this way, the user can directly obtain ice cubes through the dispenser 800 without opening the freezer door 220 , which is beneficial to saving the cooling capacity in the box 100 and reducing the energy consumption of the refrigerator 1 .
  • the user can also open the freezer door 220 and obtain the ice cubes directly from the ice storage box 500, which is not limited in this disclosure.
  • the mounting base 300 includes a mounting plate 310 and a limiting ring 320 .
  • the mounting plate 310 is attached to the inner side wall of the freezing chamber door 220 and is fixedly connected to the inner side wall of the freezing chamber door 220 .
  • the limiting ring 320 is provided on the side of the mounting plate 310 away from the freezing chamber door 220 .
  • the limiting ring 320 extends along the edge of the mounting plate 310 and protrudes in a direction away from the freezer door 220 .
  • the ice maker assembly 400 , the ice storage box 500 and the ice transport device 600 are all located inside the limiting ring 320 .
  • the mounting base 300 further includes a slide rail 330 and a mounting opening 340 .
  • the slide rail 330 is disposed on a side wall of the mounting base 300 away from the freezer door 220 and is located between the ice making machine assembly 400 and the ice transport device 600 .
  • the slide rail 330 extends in the horizontal direction.
  • the installation opening 340 is provided in the left or right side wall of the limiting ring 320 and is located between the ice making machine assembly 400 and the ice transport device 600 .
  • the installation opening 340 penetrates the ring wall of the limiting ring 320 along the thickness direction of the ring wall, and is open in a direction away from the freezer door 220 .
  • the size of the installation opening 340 is approximately the same as the size of the ice storage box 500.
  • the ice storage box 500 includes a box body 510 and a slide track 520 .
  • the slide track 520 is provided on a side wall of the box body 510 close to the mounting base 300 and corresponds to the position of the slide rail 330 .
  • the slideway 520 cooperates with the slide rail 330.
  • the ice storage box 500 can enter the limiting ring 320 from the installation opening 340 and move along the width direction of the refrigerator 1 ( That is, the left and right directions) are installed to the mounting base 300 or detached from the mounting base 300, thereby simplifying the installation and disassembly of the ice storage box 500.
  • the ice storage box 500 and the mounting base 300 can be connected by screws or bolts. Fixed connection.
  • the fixed connection between the ice storage box 500 and the mounting base 300 can also be achieved through other methods, which is not limited in this disclosure.
  • the ice storage box 500 when the slide 520 is slidably connected to the slide rail 330, the ice storage box 500 can be limited on the mounting base 300 in the front and rear directions, thereby improving the connection between the ice storage box 500 and the mounting base 300. reliability.
  • the longitudinal section of the slide rail 330 is a trapezoid, and the shorter base of the trapezoid is connected to the mounting plate 310.
  • the longitudinal section of the slide rail 520 is a trapezoidal groove that matches the trapezoid. In this way, by sliding the slide rail 330 into the slide channel 520 in the left and right direction, the ice storage box 500 can be limited on the mounting base 300 in the front and rear direction.
  • the longitudinal cross-sections of the slide rail 330 and the slide track 520 may also have other shapes, as long as the ice storage box 500 can be limited on the mounting base 300 in the front-rear direction, which is not limited in this disclosure.
  • the box body 510 includes a first box side wall 511 and a second box side wall 512 .
  • the first box side wall 511 is one of the left and right side walls of the box 510
  • the second box side wall 512 is the other of the left and right side walls of the box 510 .
  • the ice storage box 500 further includes a first extension 530 .
  • the first extension part 530 is plate-shaped.
  • the first extension part 530 is connected to one end of the first box side wall 511 close to the freezing chamber door 220 , and extends in a direction close to the freezing chamber door 220 .
  • the first extension part 530 cooperates with the installation opening 340.
  • the first extension part 530 is located in the installation opening 340 and blocks the installation opening 340.
  • the mounting base 300 further includes a second extension 350 .
  • the second extension part 350 is connected to the right side wall or the left side wall of the limiting ring 320 and extends in a direction away from the freezer door 220 .
  • the second extension part 350 is located between the ice maker assembly 400 and the ice transport device 600 and is opposite to the position of the installation opening 340 .
  • the second extension 350 is provided on the right side wall of the limiting ring 320 ; when the installation opening 340 is provided on the right side of the limiting ring 320 When in the side wall, the second extension part 350 is provided on the left side wall of the limiting ring 320 .
  • the second box side wall 512 contacts the second extension portion 350, which is beneficial to improving the stability of the connection between the ice storage box 500 and the mounting base 300.
  • the limiting ring 320 and the slide rail 330 are fixedly connected to the mounting plate 310 by welding or riveting, and the second extension 350 and the limiting ring 320 are fixedly connected to the mounting plate 310 by welding or riveting.
  • the limiting ring 320, the slide rail 330, the second extension part 350 and the mounting plate 310 are integrally formed, which is not limited in this disclosure.
  • the ice storage box 500 further includes a first protrusion 540 .
  • the first protruding portion 540 is disposed on the second box side wall 512 and protrudes in a direction away from the first box side wall 511 .
  • the mounting base 300 further includes a positioning hole 380 that penetrates the plate body of the second extension part 350 along the thickness direction of the second extension part 350 .
  • the positioning hole 380 corresponds to the position of the first protruding portion 540 .
  • the ice storage box 500 includes a plurality of first protrusions 540 (eg, two first protrusions 540), and correspondingly, the second extension portion 350 includes a plurality of positioning holes 380 (eg, two first protrusions 540). positioning holes 380), this disclosure does not limit this.
  • the refrigerator 1 further includes a stirring device 900 .
  • the stirring device 900 includes a stirring rod 910, a fixed base 920, and a transmission mechanism (ie, a second transmission mechanism 930).
  • the second box side wall 512 includes a fixing hole 5121.
  • the fixing seat 920 is cylindrical with a hollow interior, is inserted into the fixing hole 5121, and is rotationally connected to the second box side wall 512. That is to say, one axial end of the fixed seat 920 is located inside the ice storage box 500, and the other axial end of the fixed seat 920 is located outside the ice storage box 500, and the other axial end of the fixed seat 920 is in contact with the transmission Mechanically fixed connections.
  • the stirring rod 910 includes a stirring shaft 911 and stirring teeth 912 .
  • One end of the stirring shaft 911 is inserted into the fixed base 920 and is fixedly connected to the fixed base 920 .
  • the other end of the stirring shaft 911 is rotatably connected to the side wall 511 of the first box. In this way, when the transmission mechanism drives the fixed base 920 to rotate, the fixed base 920 can drive the stirring shaft 911 to rotate.
  • the stirring teeth 912 are provided on the stirring shaft 911 and extend toward the radial outer side of the stirring shaft 911 .
  • the second extension part 350 includes a connection hole 3501 that penetrates the second extension part 350 along the thickness direction of the second extension part 350 .
  • the connection hole 3501 corresponds to the position of the fixing base 920 . In this way, when the ice storage box 500 is installed to the mounting base 300 along the width direction of the refrigerator 1, the other axial end of the fixing base 920 is inserted into the connection hole 3501 and is fixedly connected to the transmission mechanism, so that It is beneficial to improve the reliability of the installation of the ice storage box 500.
  • the stirring rod 910 includes a plurality of stirring teeth 912.
  • the plurality of stirring teeth 912 are spaced apart along the length direction of the stirring shaft 911, so that the distance between the stirring rod 910 and the stirring rod 910 can be increased.
  • the contact area of the ice cubes prevents freezing between multiple ice cubes due to low temperature.
  • the ice storage box 500 further includes a handle 503, which is disposed outside the first box side wall 511, the second box side wall 512, or the third box side wall 513. On the side, in this way, the ice storage box 500 can be installed on the mounting base 300 by holding the handle 503, which is beneficial to improving the convenience of installing the ice storage box 500.
  • ice transfer device 600 includes a housing 610 and a transfer mechanism 620.
  • the housing 610 is fixedly connected to the mounting base 300, and the housing 610 is covered outside the transmission mechanism 620, so that the transmission mechanism 620 is located between the mounting base 300 and the housing 610, thereby improving the working stability of the transmission mechanism 620.
  • the housing 610 includes a top wall 611 and a first clamping portion 612 .
  • the first clamping portion 612 is provided on the top wall 611 of the housing.
  • the first engaging portion 612 is close to the side wall of the housing 610 away from the freezer door 220 and extends along the width direction of the housing top wall 611 .
  • the first clamping portion 612 includes a third extension portion 6121 and a fourth extension portion 6122 .
  • One end of the third extension part 6121 is connected to the top wall 611 of the shell, and the other end of the third extension part 6121 extends upward.
  • One end of the fourth extension part 6122 is connected to the other end of the third extension part 6121 , and the other end of the fourth extension part 6122 extends toward the direction close to the freezer door 220 .
  • the housing 610 further includes a snap-in groove 613, and the shell top wall 611, the third extension portion 6121 and the fourth extension portion 6122 jointly define the snap-in slot 613.
  • the side of the latching groove 613 away from the second extension part 350 is open, and the side of the latching groove 613 facing the freezer door 220 is open.
  • the box body 510 further includes a third box body side wall 513 , a box body bottom wall 514 and a second clamping portion 515 .
  • the third box side wall 513 is the side wall of the box 510 away from the freezer door 220 .
  • the box bottom wall 514 is connected to the side of the third box side wall 513 close to the freezer door 220, and in the height direction of the refrigerator 1, the side of the box bottom wall 514 close to the third box side wall 513 is higher.
  • the box body 510 also includes a receiving space 516.
  • the box bottom wall 514 and the third box side wall 513 jointly define the receiving space 516.
  • the second clamping part 515 is provided on the lower side of the bottom wall 514 of the box corresponding to the first clamping part 612 and is located in the accommodation space 516 .
  • the second engaging portion 515 cooperates with the first engaging portion 612 and is engaged in the engaging groove 613 along the width direction of the refrigerator 1 .
  • the second box side wall 512 also includes a through hole 5122 that penetrates the second box side wall 512 along the thickness direction of the second box side wall 512 , and the through hole 5122 corresponds to the position of the accommodation space 516 .
  • the through hole 5122 is open downward.
  • the second box side wall 512 is parallel to the left side wall of the refrigerator 1 .
  • the plane where the second box side wall 512 is located is defined as the first reference plane, and the orthographic projection of the first clamping portion 612 on the first reference plane is located at the orthogonal projection of the through hole 5122 on the first reference plane. inside, and the orthographic projection of the through hole 5122 on the first reference plane is located inside the orthographic projection of the accommodation space 516 on the first reference plane.
  • the first engaging portion 612 relatively enters the accommodating space 516 through the through hole 5122, and engages with the second engaging portion located in the accommodating space 516.
  • the connecting portion 515 cooperates with the clamping, that is, the second clamping portion 515 is clamped in the clamping groove 613, thereby achieving a fixed connection between the ice storage box 500 and the housing 610, which is beneficial to improving the reliability of the installation of the ice storage box 500. .
  • the ice storage box 500 and the housing 610 are integrally formed, and together with the housing 610 form an ice storage bucket.
  • the ice storage bucket is configured to receive the ice cubes produced by the ice making machine 410 and transport the ice cubes to the one end of the ice channel 700 under the action of the transmission mechanism 620 .
  • the box body 510 includes a plurality of second latching parts 515 , and the plurality of second latching parts 515 are spaced along the width direction of the refrigerator 1 and corresponding to the first latching parts 612 It is provided on the lower side of the bottom wall 514 of the box body.
  • the plurality of second locking portions 515 are locked in the locking grooves 613, thereby further improving the installation reliability of the ice storage box 500.
  • the housing 610 further includes a second protrusion 614 .
  • the second protruding portion 614 extends upward along the upper end surface of the housing 610 and is close to the mounting plate 310 .
  • the ice storage box 500 further includes a mounting groove.
  • the installation groove corresponds to the position of the second protruding portion 614 .
  • the mounting groove matches the second protruding portion 614 , that is, the inner contour of the longitudinal section of the mounting groove is substantially the same as the outer contour of the longitudinal section of the second protruding portion 614 .
  • the second protruding portion 614 can be configured in any shape.
  • a side of the second protruding portion 614 away from the second extension portion 350 can be a curved surface, or the second protruding portion 614 can be a curved surface as a whole. is a square prism.
  • the mounting groove matches the second protruding portion 614. That is to say, as long as the inner contour of the longitudinal section of the mounting groove is approximately the same as the outer contour of the longitudinal section of the second protruding portion 614. The same should be within the protection scope of the present disclosure, and the present disclosure does not limit this.
  • the ice maker assembly 400 also includes an ice maker housing 420 .
  • the ice machine outer cover 420 is fixedly connected to the mounting base 300, and the cover is located outside the ice machine 410, so that the ice machine 410 is located between the mounting base 300 and the ice machine outer cover 420, thereby improving the working efficiency of the ice making machine 410. stability.
  • the ice making machine 410 includes a support frame 411 , an ice making driving mechanism 412 and an ice making box 413 .
  • the support frame 411 is fixedly connected to the mounting base 300 and extends along the width direction of the refrigerator 1 .
  • the ice making driving mechanism 412 includes an ice making driving motor 4121 and an ice making driving shaft 4122.
  • the ice making driving motor 4121 can drive the ice making driving shaft 4122 to rotate.
  • the ice making driving mechanism 412 is provided in the support frame 411.
  • the ice making driving mechanism 412 is fixedly connected to the support frame 411 and is located at one end of the support frame 411 .
  • the ice-making box 413 is horizontally arranged in the support frame 411.
  • One end of the ice-making box 413 is fixedly connected to the ice-making drive shaft 4122, and the other end of the ice-making box 413 is rotationally connected to the other end of the support frame 411.
  • the ice-making driving motor 4121 drives the ice-making driving shaft 4122 to rotate
  • the ice-making driving shaft 4122 will drive the ice-making box 413 to rotate, so that the ice cubes condensed in the ice-making box 413 can be discharged from the ice-making box 413 Take it out and drop it into the ice storage box 500.
  • the ice making box 413 includes an ice making tray 4131, the side walls of the ice making tray 4131 are inclined, so that the side walls of the ice cubes condensed in the ice making tray 4131 are inclined. , so that the ice cubes can easily come out of the ice making tray 4131.
  • the ice making box 413 includes a plurality of ice making trays 4131 arranged in at least one row and at least one column.
  • the plurality of ice making trays 4131 are arranged in two rows and five columns.
  • the refrigerator 1 further includes a water supply device configured to supply water to the ice maker 410 .
  • the water supply device includes a water tank and a water treatment device.
  • the ice maker 410 further includes a generally circular wheel plate 414 .
  • the wheel plate 414 is attached to the left side wall or the right side wall of the ice making box 413 and is fixedly connected with the left side wall or the right side wall of the ice making box 413 .
  • the wheel plate 414 includes a stop opening 4141, which is located on the peripheral side of the wheel plate 414, and the stop opening 4141 is a right-angled gap.
  • the ice machine 410 also includes a water blocking mechanism 415 .
  • the water blocking mechanism 415 includes a water blocking plate 4151, a water blocking rotating shaft 4152, a torsion spring 4153 and a water blocking protrusion 4154.
  • the water-blocking rotating shaft 4152 is rotationally connected to the support frame 411.
  • One end of the water blocking plate 4151 is connected to the circumferential side of the water blocking rotating shaft 4152, and the other end extends downward to the front side of the ice box 413. Therefore, when the water blocking rotating shaft 4152 rotates, the water blocking plate 4151 will be driven to block the water rotating shaft.
  • 4152 is used as the axis to rotate, so that the other end of the water baffle 4151 is in contact with the front side of the ice box 413.
  • the torsion spring 4153 is sleeved on the outer peripheral side of the water-retaining rotating shaft 4152, and the water-retaining rotating shaft 4152 can rotate under the torsion of the torsion spring 4153.
  • the water blocking shaft 4152 drives the water blocking plate 4151 to rotate under the action of the torsion spring 4153, so that the water blocking plate 4151 abuts the front side wall of the ice making box 413, so that the water supply device moves into the ice making box 413.
  • water droplets can be prevented from splashing out of the ice box 413.
  • the water blocking protrusion 4154 is located in the stopper opening 4141, thereby limiting the ice making box 413, so that the ice making box 413 is filled with water during the process. It is less likely to shake, which is beneficial to improving the reliability of the ice machine 410.
  • the ice making driving mechanism 412 drives the ice making box 413 to rotate, and the ice making box 413 tilts toward the front side, so that the water retaining convex strip 4154 overcomes the torsion of the torsion spring 4153 and moves out of the stop opening 4141. It comes out and comes into contact with the peripheral side of the wheel plate 414. At this time, the water baffle 4151 is not in contact with the ice box 413 , so that the ice cubes in the ice box 413 can escape from the ice box 413 .
  • the ice machine 410 further includes an ice probe 416 .
  • the ice making driving mechanism 412 also includes an ice detection motor and an ice detection rotating shaft.
  • One end of the ice detection rotating shaft is rotationally connected to the ice detection motor, the other end of the ice detection rotating shaft is connected to one end of the ice detection rod 416, and the other end of the ice detection rod 416 extends into the ice storage through the first ice connection port 501. Box of 500.
  • the ice detection motor can drive the ice detection rotating shaft to rotate back and forth, thereby driving the ice detection rod 416 to swing back and forth to detect the height of the ice cubes stored in the ice storage box 500 .
  • the ice making machine 410 further includes a temperature sensor, which is disposed on the lower side of the ice making box 413 to detect the temperature of the ice making box 413 to determine whether the water or ice in the ice making box 413 is temperature.
  • the ice transfer device 600 further includes a second ice receiving port 601 .
  • the ice storage box 500 further includes a first ice outlet 502 , and the first ice outlet 502 corresponds to the position of the second ice receiving port 601 .
  • the ice storage box 500 is connected to the housing 610 of the ice transmission device 600 through the first ice outlet 502 and the second ice receiving port 601. That is to say, the ice cubes in the ice storage box 500 are affected by gravity and the stirring rod 910. Under the action of thrust, it enters the shell 610 through the first ice outlet 502 and the second ice receiving port 601 in sequence.
  • the ice transport device 600 further includes a driving mechanism disposed in the mounting base 300 and corresponding to the position of the housing 610 .
  • the driving mechanism includes a driving motor and a driving shaft.
  • the driving rotating shaft is substantially perpendicular to the freezer door 220 .
  • the driving rotating shaft may be the output shaft of the driving motor, or one end of the driving rotating shaft is fixedly connected to one end of the output shaft of the driving motor, so that the driving motor can drive the driving rotating shaft to rotate.
  • the driving mechanism and transmission mechanism 620 may be provided in the mounting base 300 , or the driving mechanism and transmission mechanism 620 may also be provided on the door lining of the freezer door 220 .
  • the transmission mechanism 620 includes a transmission shaft 621 .
  • the other end of the driving shaft is connected to one end of the transmission shaft 621 to drive the transmission shaft 621 to rotate.
  • the driving shaft and the transmission shaft 621 may be coaxial or non-axial.
  • the transmission rotating shaft 621 is perpendicular to the freezing chamber door 220 .
  • the driving mechanism further includes a driving coupling 602
  • the transmission mechanism 620 further includes a transmission coupling 622 .
  • the driving coupling 602 is sleeved on the other end of the driving shaft and is fixedly connected to the driving shaft.
  • the transmission coupling 622 is sleeved on the one end of the transmission shaft 621 and is fixedly connected to the transmission shaft 621 .
  • the driving coupling 602 is engaged with the transmission coupling 622 to achieve a coaxial connection between the driving shaft and the transmission shaft 621 .
  • the transmission coupling 622 is sleeved on the outside of the transmission shaft 621 and can slide relative to the transmission shaft 621 .
  • the transmission mechanism 620 further includes a spring 623 and an abutment.
  • the spring 623 is sleeved on the outside of the transmission shaft 621 and is further away from the one end of the transmission shaft 621 than the transmission coupling 622 .
  • the contact portion is provided on the outer circumferential side of the transmission shaft 621 and extends toward the meridional outer side of the transmission shaft 621 .
  • One end of the spring 623 is in contact with the contact portion, the other end of the spring 623 is in contact with the transmission coupling 622, and the spring 623 is in a compressed state.
  • the spring 623 can exert force on the transmission coupling 622, causing the transmission coupling 622 to move in a direction closer to the driving coupling 602, thereby realizing the bite connection between the driving coupling 602 and the transmission coupling 622. , so that the drive coupling 602 can drive the transmission coupling 622 to rotate.
  • the ice transmission device 600 further includes a first transmission mechanism
  • the first transmission mechanism includes a first transmission gear and a second transmission gear meshed with the first transmission gear.
  • the driving shaft is connected to the first transmission gear
  • the transmission shaft 621 is connected to the second transmission gear.
  • the driving motor drives the driving shaft to rotate
  • the driving shaft can pass through the first transmission gear.
  • the second transmission gear drives the transmission shaft 621 to rotate.
  • the ice transport device 600 further includes a screw, which is connected to the transmission shaft 621 and rotates under the drive of the transmission shaft 621, so that the ice cubes can be transported.
  • the ice transfer device 600 also includes a rotating shaft mounting plate 630.
  • the rotating shaft mounting plate 630 corresponds to the position of the transmission rotating shaft 621, and both ends of the rotating shaft mounting plate 630 are respectively connected with the limiting ring 320.
  • the left and right side walls are fixedly connected.
  • the housing 610 is covered on the outside (eg, the left side, the right side and the rear side) of the rotating shaft mounting plate 630 .
  • the other end of the transmission shaft 621 is rotatably connected to the shaft mounting plate 630 , thereby improving the stability of the transmission shaft 621 .
  • the two ends of the mounting plate 630 can be fixedly connected to the left side wall and the right side wall of the limiting ring 320 respectively through screws or bolts, which is not limited in this disclosure.
  • first clamping portion 612 can also be provided on the rotating shaft mounting plate 630, which is not limited in this disclosure.
  • the ice transport device 600 also has an ice crushing function.
  • the ice transport device 600 further includes an ice crushing mechanism 640 .
  • the ice crushing mechanism 640 is configured to crush the ice cubes in the housing 610 into crushed ice cubes and transport the crushed ice cubes to the ice channel 700 .
  • the ice crushing mechanism 640 includes a first ice blade 641 , a second ice blade 642 and a third ice blade 643 .
  • the first ice blade 641 is sleeved on the outer peripheral side of the transmission shaft 621 and is fixedly connected to the transmission shaft 621. That is, when the transmission shaft 621 rotates, the first ice blade 641 will be driven to rotate.
  • the second ice blade 642 and the third ice blade 643 are fixed relative to the housing 610 and are sleeved on the outer peripheral side of the transmission shaft 621. That is, when the transmission shaft rotates, the second ice blade 642 and the third ice blade 643 remain stationary.
  • the third ice blade 643 is a blunt ice blade.
  • the transmission shaft 621 drives the first ice blade 641 to rotate in the first direction or the second direction.
  • the first direction is opposite to the second direction.
  • the transmission shaft 621 drives the first ice blade 641 to rotate in the first direction
  • the ice cubes in the housing 610 are broken under the shear of the first ice blade 641 and the second ice blade 642, thereby realizing the ice transmission device 600 ice crushing function.
  • the transmission shaft 621 drives the first ice blade 641 to rotate in the second direction
  • the plurality of ice cubes frozen together in the housing 610 are separated by the cooperative impact of the first ice blade 641 and the third ice blade 643, so that Preventing the plurality of ice cubes frozen together from blocking the ice outlet channel is beneficial to improving the ice making efficiency of the ice making system 1000 .
  • the ice breaking mechanism 640 further includes an ice blade holder 644 .
  • the ice blade holder 644 is fixedly connected to the inner wall of the housing 610 .
  • One end of the second ice blade 642 is sleeved on the outer peripheral side of the transmission shaft 621 , and the other end of the second ice blade 642 is fixed in the ice blade fixing seat 644 .
  • one end of the third ice blade 643 is fixedly connected to the one end of the second ice blade 642 , and the other end of the third ice blade 643 extends in a direction away from the ice blade holder 644 .
  • the ice transport device 600 further includes a second ice outlet through which the housing 610 communicates with the ice channel 700 .
  • the ice crushing mechanism 640 also includes an ice outlet door 645 .
  • the ice outlet door 645 is provided inside the housing 610 and located below the other end of the third ice blade 643 .
  • the ice exit door 645 includes a plurality of ice exit rails 6451. After the ice cubes are broken into crushed ice cubes, the crushed ice cubes are driven by the first ice blade 641 and fall on the ice outlet door 645, and slide down along the plurality of ice outlet rails 6451 to the ice cubes.
  • the second ice outlet enters the ice channel 700 through the second ice outlet.
  • the ice transporting device 600 is in the freezing chamber door 220.
  • the size in the thickness direction is smaller, so that the thickness of the freezer door 220 can be reduced, thereby reducing the thickness of the refrigerator 1 .
  • the transmission shaft 621 is also connected to the mixing rod 910 through the second transmission mechanism 930 , and drives the mixing rod 910 to rotate through the second transmission mechanism 930 .
  • the second transmission mechanism 930 includes a first gear 931 , a second gear 932 , a third gear 933 , a fourth gear 934 and a fifth gear 935 .
  • the first gear 931 is fixedly connected to the transmission shaft 621 and is coaxial with the transmission shaft 621 .
  • the second gear 932 meshes with the first gear 931 and is closer to the one end of the stirring shaft 911 than the first gear 931 .
  • the third gear 933 meshes with the second gear 932 and is closer to the one end of the stirring shaft 911 than the second gear 932 .
  • the fourth gear 934 is fixedly connected to the third gear 933 and is coaxial with the third gear 933 .
  • the fifth gear 935 meshes with the fourth gear 934.
  • the fifth gear 935 is fixedly connected to the one end of the stirring shaft 911 and is coaxial with the stirring shaft 911.
  • the second gear 932 and the third gear 933 are both rotationally connected to the mounting base 300 through a rotating shaft.
  • the transmission shaft 621 is perpendicular to the freezer door 220 and the stirring shaft 911 is parallel to the freezer door 220, that is, the transmission shaft 621 is substantially perpendicular to the stirring shaft 911. Therefore, the first gear 931, the second gear 932 and The third gear 933 is a cylindrical gear, and the fourth gear 934 and the fifth gear 935 are bevel gears.
  • the stirring device 900 can not only prevent the ice cubes in the ice storage box 500 from freezing through stirring, but also does not need to be equipped with an additional power source (such as a motor), thereby helping to reduce the thickness of the freezer door 220 .
  • the ice storage box 500 further includes a window portion 550 .
  • the upper end of the window part 550 is connected to the ice machine cover 420 , and the lower end of the window part 550 is connected to the box body 510 .
  • the window part 550 is made of a transparent material (such as acrylic material). Therefore, the user can observe the remaining amount of ice cubes inside the ice storage box 500 through the window part 550, which is beneficial to improving the user's experience.
  • the window portion 550 includes a first window 551 , a second window 552 , and a third window 553 .
  • the second window 552 and the third window 553 are respectively located on both sides of the first window 551 .
  • the lower end of the second window 552 is fixedly connected to the first box side wall 511
  • the lower end of the third window 553 is fixedly connected to the second box side wall 512
  • the upper ends of the second window 552 and the third window 553 are both connected to
  • the ice machine outer cover 420 is fixedly connected.
  • the first window 551 is located between the third box side wall 513 and the ice machine outer cover 420, and the upper end of the first window 551 is rotationally connected to the second window 552 and the third window 553 through a rotating shaft, so that the first window 551 The lower end can rotate about the rotating shaft.
  • the first window 551 may also be fixedly connected to the third box side wall 513, the ice machine outer cover 420, the second window 552 and the third window 553.
  • the viewing window portion 550 further includes an ice taking flap, and the first viewing window 551 includes an ice taking opening.
  • the ice taking port penetrates the first window 551 along the thickness direction of the first window 551 .
  • the ice taking flap matches the ice taking port and is arranged in the ice taking port.
  • the upper end of the ice taking flap is rotationally connected to the first viewing window 551 through the rotating shaft.
  • the ice taking port can be opened or closed.
  • the user can take out the ice in the ice storage box 500 through the ice taking port. block, thus helping to improve the user experience.
  • the ice taking flap includes a first buckle, and the first buckle is provided at the lower end of the ice taking flap.
  • the first window 551 includes a second buckle, the position of the second buckle corresponds to the first buckle, and the second buckle cooperates with the first buckle. . Therefore, when the ice-taking flap closes the ice-taking port, the ice-taking flap can be relatively fixed to the first window 551 through the first buckle and the second buckle. Therefore, when the user opens or closes the freezing chamber door 220, the ice taking flap will not shake with the rotation of the freezing chamber door 220.
  • rotating shaft between the ice taking flap and the first viewing window 551 can also be arranged on the left, lower or right side of the ice taking flap, which is not limited in this disclosure.
  • the ice storage box 500 can also be installed to the mounting base 300 from top to bottom.
  • the mounting base 300 includes a first connecting part
  • the ice storage box 500 includes a second connecting part that matches the first connecting part.
  • the second connecting portion is provided on a side wall of the ice storage box 500 close to the mounting base 300 .
  • the second connection part can slide up and down in the first connection part, so that the ice storage box 500 can be installed to the mounting base 300 along the height direction of the refrigerator 1 through the second connection part and the first connection part. , or removed from the mounting base 300.
  • the first connection part includes a first rail part extending along the height direction of the refrigerator 1, and the second connection part includes a first chute part extending in the same direction as the first rail part.
  • the first rail part can cooperate with the first chute part and slide relatively in the first chute part. That is to say, the ice storage box 500 can be connected to the first chute part through the first chute part.
  • the first rail part is installed to the mounting base 300 along the height direction of the refrigerator 1 or is detached from the mounting base 300 .
  • the mounting base 300 further includes a limiting pin 360 .
  • the limiting pin 360 is provided on a side of the mounting plate 310 away from the freezer door 220 .
  • the limiting pin 360 includes a third connecting portion 361 and a bending portion 362 .
  • One end of the third connecting portion 361 is connected to a side surface of the mounting plate 310 away from the freezing chamber door 220 , and the other end of the third connecting portion 361 extends in a direction away from the freezing chamber door 220 .
  • the lower surface of the third connecting portion 361 abuts the upper end of the first box side wall 511 .
  • One end of the bent portion 362 is connected to the other end of the third connecting portion 361 , and the other end of the bent portion 362 extends downward.
  • the first box side wall 511 includes a step 5111 corresponding to the position of the bending portion 362 .
  • the lower surface of the third connecting part 361 abuts the upper end of the first box side wall 511, and the bent part 362 is located in the step 5111, so that it can be
  • the upper and lower limits of the ice storage box 500 prevent the ice storage box 500 from shaking when the door 200 is opened or closed, which is beneficial to improving the user experience.
  • the mounting base 300 includes two limiting pins 360 , and accordingly, the second box side wall 512 also includes a step 5111 .
  • the two limiting pins 360 are located on the two steps 5111 respectively.
  • the ice storage box 500 can also be installed to the mounting base 300 in a direction perpendicular to the freezer door 220 (the direction shown by the arrow in the figure).
  • the mounting base 300 further includes a first mounting part 370
  • the ice storage box 500 further includes a second mounting part 560 (see Figure 29) that cooperates with the first mounting part 370.
  • the first mounting portion 370 includes a plurality of second chute portions, which are spaced apart on the inner wall of the limiting ring 320 and located between the ice making machine assembly 400 and the ice transport device. Between 600. The second chute portion extends along the thickness direction of the freezer door 220 .
  • the second mounting part 560 includes a plurality of second rail parts, a part of the plurality of second rail parts is provided on the outer surface of the first box side wall 511, and another part of the plurality of second rail parts is provided on the outer surface of the first box side wall 511. On the outer surface of the second box side wall 512.
  • the plurality of second track portions correspond to the plurality of second chute portions and cooperate with the plurality of second chute portions.
  • the ice storage box 500 can be positioned and connected to the plurality of second chute portions through the plurality of second rail portions, so that it can be quickly and firmly connected to the mounting base 300 .
  • the first mounting portion 370 includes a hanging portion 371 .
  • the hanging portion 371 is provided on the inner wall of the limiting ring 320 and protrudes toward the inner side of the limiting ring 320 .
  • the hanger 371 is located between the ice maker assembly 400 and the ice transfer device 600 .
  • the hanging portion 371 has a substantially hexahedral shape.
  • the second mounting part 560 includes a hook 561 .
  • the hook 561 is provided on a side wall of the box body 510 close to the freezer door 220 and corresponding to the position of the hanging portion 371 .
  • the hook 561 cooperates with the hanging part 371.
  • the ice storage box 500 can be installed to the mounting base in a direction perpendicular to the freezer door 220.
  • the hook 561 includes a first hook part 5611 and a second hook part 5612 .
  • One end of the first hook portion 5611 is connected to a side wall of the box body 510 close to the freezer door 220 , and the other end thereof extends in a direction close to the freezer door 220 .
  • One end of the second hook part 5612 is connected to the other end of the first hook part 5611, and the other end of the second hook part 5612 extends downward.
  • the lower side of the first hook part 5611 abuts the upper side of the hanging part 371, and the side of the second hook part 5612 away from the freezer door 220 abuts the hanging part 371
  • the side close to the freezer door 220 is beneficial to improving the stability of the installation of the ice storage box 500.
  • the first mounting part 370 includes a plurality of suspension parts 371 , and some of the plurality of suspension parts 371 are spaced apart on the inside of the left side wall of the limiting ring 320 . Another part of the portion 371 is symmetrical to a part of the plurality of suspension portions 371 and is provided inside the right side wall of the limiting ring 320 .
  • the second mounting part 560 includes a plurality of hooks 561 corresponding to the plurality of hanging parts 371 .
  • the side of the second hook portion 5612 away from the freezer door 220 is configured as a first wavy surface
  • the side of the hanging portion 371 close to the freezer door 220 is configured as a first wavy surface.
  • a second corrugated surface configured to cooperate with said first corrugated surface.
  • the first mounting part 370 further includes a plug-in slot
  • the second mounting part 560 further includes a plug-in part corresponding to the plug-in slot.
  • the plug-in part matches the plug-in slot.
  • first installation part 370 may include a plurality of plug-in slots
  • second installation part 560 may include a plurality of plug-in parts corresponding to the plurality of plug-in slots.
  • the box body 510 further includes two grooves 517 .
  • the two grooves 517 are disposed on a side wall of the box body 510 close to the freezer door 220 , and move away from the side wall of the box body 510 .
  • the direction of the freezer door 220 is recessed.
  • the two grooves 517 correspond to the left side wall and the right side wall of the limiting ring 320 respectively. That is to say, when the ice storage box 500 is installed to the mounting base 300 in a direction perpendicular to the freezer door 220, The left side wall and the right side wall of the limiting ring 320 are located in the two grooves 517 respectively, which is beneficial to improving the installation stability of the ice storage box 500 .
  • the refrigerator 1 further includes a cover 103 .
  • the cover 103 covers the lower part of the mounting base 300 so that a part of the ice making system 1000 is located between the cover 103 and the mounting base 300, thereby not only preventing the ice making system 1000 from being contaminated by the outside world, but also raising the freezer door 220.
  • the aesthetics of the inside are not only preventing the ice making system 1000 from being contaminated by the outside world, but also raising the freezer door 220.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

La présente invention concerne un réfrigérateur comprenant un corps de réfrigérateur, un corps de porte, une base de montage, un ensemble machine à glace, un dispositif de transport de glace et une boîte de stockage de glace, un compartiment congélateur étant délimité dans le corps de réfrigérateur ; le corps de porte comprenant une porte de compartiment congélateur, la porte de compartiment congélateur étant conçue pour ouvrir ou fermer le compartiment congélateur ; la base de montage étant raccordée à demeure à la paroi latérale de la porte de compartiment congélateur à proximité du corps de réfrigérateur ; l'ensemble machine à glace étant raccordé à demeure à la base de montage et comprenant une machine à glace, la machine à glace étant conçue pour fabriquer des blocs de glace ; le dispositif de transport de glace étant raccordé à demeure à la base de montage ; le dispositif de transport de glace étant situé au-dessous de l'ensemble machine à glace et étant disposé à distance de l'ensemble machine à glace ; la boîte de stockage de glace étant raccordée à la base de montage et située entre l'ensemble machine à glace et le dispositif de transport de glace ; la boîte de stockage de glace étant conçue pour recevoir les blocs de glace fabriqués par la machine à glace.
PCT/CN2022/107128 2022-06-30 2022-07-21 Réfrigérateur WO2024000702A1 (fr)

Applications Claiming Priority (10)

Application Number Priority Date Filing Date Title
CN202210762903.8A CN117366970A (zh) 2022-06-30 2022-06-30 冰箱
CN202221672275.6 2022-06-30
CN202210756796.8A CN117366965A (zh) 2022-06-30 2022-06-30 冰箱
CN202221672338 2022-06-30
CN202221672338.8 2022-06-30
CN202210760112.1A CN117366966A (zh) 2022-06-30 2022-06-30 冰箱
CN202210760112.1 2022-06-30
CN202210756796.8 2022-06-30
CN202221672275 2022-06-30
CN202210762903.8 2022-06-30

Publications (1)

Publication Number Publication Date
WO2024000702A1 true WO2024000702A1 (fr) 2024-01-04

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090133428A1 (en) * 2007-11-26 2009-05-28 Samsung Electronics Co., Ltd. Ice supply device and refrigerator having an ice container capable of being separated from an ice breaking unit
CN105444484A (zh) * 2015-12-31 2016-03-30 海信容声(广东)冰箱有限公司 一种碎冰装置及冰箱
CN105466096A (zh) * 2015-12-31 2016-04-06 海信容声(广东)冰箱有限公司 一种制冰装置及冰箱
CN108050757A (zh) * 2018-01-22 2018-05-18 海信容声(广东)冰箱有限公司 一种具有制冰功能的冰箱
CN113776244A (zh) * 2021-09-24 2021-12-10 Tcl家用电器(合肥)有限公司 制冰装置及冰箱
CN215983399U (zh) * 2021-09-24 2022-03-08 Tcl家用电器(合肥)有限公司 制冰装置及冰箱

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090133428A1 (en) * 2007-11-26 2009-05-28 Samsung Electronics Co., Ltd. Ice supply device and refrigerator having an ice container capable of being separated from an ice breaking unit
CN105444484A (zh) * 2015-12-31 2016-03-30 海信容声(广东)冰箱有限公司 一种碎冰装置及冰箱
CN105466096A (zh) * 2015-12-31 2016-04-06 海信容声(广东)冰箱有限公司 一种制冰装置及冰箱
CN108050757A (zh) * 2018-01-22 2018-05-18 海信容声(广东)冰箱有限公司 一种具有制冰功能的冰箱
CN113776244A (zh) * 2021-09-24 2021-12-10 Tcl家用电器(合肥)有限公司 制冰装置及冰箱
CN215983399U (zh) * 2021-09-24 2022-03-08 Tcl家用电器(合肥)有限公司 制冰装置及冰箱

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