CN211290659U - Automatic ice discharging machine - Google Patents

Automatic ice discharging machine Download PDF

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Publication number
CN211290659U
CN211290659U CN201921515206.2U CN201921515206U CN211290659U CN 211290659 U CN211290659 U CN 211290659U CN 201921515206 U CN201921515206 U CN 201921515206U CN 211290659 U CN211290659 U CN 211290659U
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China
Prior art keywords
ice
opening
bucket
ice making
water box
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CN201921515206.2U
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Chinese (zh)
Inventor
张念发
庞春林
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Zhejiang Jiujing Refrigeration Equipment Co ltd
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Zhejiang Jiujing Refrigeration Equipment Co ltd
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Abstract

An automatic ice discharging machine comprises an ice making main body and an ice discharging guide groove; an ice bucket is arranged in the ice making main body; the ice bucket is provided with a motor mounting frame at the second opening, a driving motor is mounted on the motor mounting frame, and an ice conveying screw rod is arranged in the ice bucket; an ice making unit is arranged at the top of the inner side of the ice bucket; the ice making unit comprises a water box, a water spraying unit, a plurality of ice making molds, a refrigerating pipe and a plurality of sliding rods obliquely arranged between the water spraying unit and the ice making molds; the bottom of one side of the water box facing the second opening is provided with a third opening, and the water box is rotatably provided with a plurality of first baffles above the third opening. So have a plurality of cavities and the opening part of inboard cavity is provided with the baffle, cold insulation effect is better, reduce the power consumption, improve energy-conserving effect.

Description

Automatic ice discharging machine
Technical Field
The utility model relates to an ice making technical field, especially an automatic ice maker.
Background
In order to facilitate ice discharge, an ice discharge opening is generally directly formed in an ice making unit in an existing ice maker, so that ice cubes made can be discharged through the ice discharge opening conveniently. Due to the fact that the ice outlet is large, cold insulation effect in the ice making unit is poor, energy consumption is large, and energy saving effect is poor.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides an automatic ice maker that opening part that has a plurality of cavities and inboard cavity is provided with baffle, cold insulation effect better, reduce the power consumption, improve energy-conserving effect to solve above-mentioned problem.
An automatic ice discharging machine comprises an ice making main body and an ice discharging guide groove arranged in the middle of one side of the ice making main body; an ice bucket is arranged in the ice making main body; the top of the ice bucket is provided with a first opening, one side of the ice bucket is provided with a second opening, one side of the bottom of the ice bucket, which is close to the second opening, is provided with an ice outlet groove, and the ice outlet groove is communicated with the ice outlet guide groove; the ice bucket is provided with a motor mounting frame at the second opening, a driving motor is mounted on the motor mounting frame, an ice conveying screw rod is arranged in the ice bucket, a first end of the ice conveying screw rod is connected with an output shaft of the driving motor, and a second end of the ice conveying screw rod is connected with one side of the ice bucket, far away from the second opening, through a bearing; an ice making unit is arranged at the top of the inner side of the ice bucket and is far away from the second opening; the ice making unit comprises a water box, a water spraying unit arranged in the water box, a plurality of ice making molds arranged at the top of the water box, a refrigerating pipe arranged outside the ice making molds, and a plurality of sliding rods obliquely arranged between the water spraying unit and the ice making molds; a third opening is formed in the bottom of one side, facing the second opening, of the water box, and a plurality of first baffle plates are rotatably arranged above the third opening of the water box; the first end of the sliding rod is located between the ice making top plate and the water spraying unit and is far away from the third opening, and the second end of the sliding rod is located at a position close to the bottom of the third opening.
Furthermore, a bottom bracket and a top bracket positioned above the bottom bracket are arranged in the ice making main body, and an ice bucket is hung on the top bracket.
Further, the bottom of the ice bucket is provided with an inclined accommodating part at one side far away from the second opening, and the ice feeding screw is obliquely arranged in the ice bucket and at least partially positioned in the accommodating part.
Furthermore, the middle parts of two opposite inner side walls of the ice bucket close to the second opening are provided with hanging grooves, and the hanging grooves are communicated with the first opening; a step groove is formed in the inner side wall of the ice bucket far away from the second opening; the water box is provided with a suspension lug part corresponding to the suspension groove in a protruding mode, a suspension convex strip corresponding to the step groove in a protruding mode, the suspension lug part is located in the suspension groove, and the suspension convex strip is located in the step groove.
Furthermore, an ice making top plate is arranged at the top of the water box, a plurality of mounting openings are formed in the ice making top plate, and an ice making mold is mounted at the mounting openings.
Furthermore, the two sides of the water box above the third opening are respectively provided with a hook, a rotating shaft is arranged in the hook in a rotating mode, the first end of the first baffle is connected with the rotating shaft, and the second end of the first baffle movably covers the third opening.
Furthermore, a top cross bar is transversely arranged between the ice making top plate and the water spraying unit and at a position far away from the third opening of the water box, and a bottom cross bar is transversely arranged at a position close to the bottom of the third opening in the water box; the first end of the sliding rod is connected with the top cross rod, and the second end of the sliding rod is connected with the bottom cross rod.
Furthermore, the sliding rods are arranged in parallel, and the distance between every two adjacent sliding rods is smaller than the width of the ice making mold.
Furthermore, a second baffle plate is rotatably connected to the inner part of the ice outlet guide groove above the opening of the ice outlet groove.
Further, a water receiving box is arranged below the ice outlet guide groove.
Compared with the prior art, the automatic ice discharging machine comprises an ice making main body and an ice discharging guide groove arranged in the middle of one side of the ice making main body; an ice bucket is arranged in the ice making main body; the top of the ice bucket is provided with a first opening, one side of the ice bucket is provided with a second opening, one side of the bottom of the ice bucket, which is close to the second opening, is provided with an ice outlet groove, and the ice outlet groove is communicated with the ice outlet guide groove; the ice bucket is provided with a motor mounting frame at the second opening, a driving motor is mounted on the motor mounting frame, an ice conveying screw rod is arranged in the ice bucket, a first end of the ice conveying screw rod is connected with an output shaft of the driving motor, and a second end of the ice conveying screw rod is connected with one side of the ice bucket, far away from the second opening, through a bearing; an ice making unit is arranged at the top of the inner side of the ice bucket and is far away from the second opening; the ice making unit comprises a water box, a water spraying unit arranged in the water box, a plurality of ice making molds arranged at the top of the water box, a refrigerating pipe arranged outside the ice making molds, and a plurality of sliding rods obliquely arranged between the water spraying unit and the ice making molds; a third opening is formed in the bottom of one side, facing the second opening, of the water box, and a plurality of first baffle plates are rotatably arranged above the third opening of the water box; the first end of the sliding rod is located between the ice making top plate and the water spraying unit and is far away from the third opening, and the second end of the sliding rod is located at a position close to the bottom of the third opening. So have a plurality of cavities and the opening part of inboard cavity is provided with the baffle, cold insulation effect is better, reduce the power consumption, improve energy-conserving effect.
Drawings
Embodiments of the present invention are described below with reference to the accompanying drawings, in which:
fig. 1 is a schematic perspective view of the automatic ice dispenser according to the present invention.
Fig. 2 is a schematic perspective view of the automatic ice dispenser provided by the present invention after the outer shell is removed.
Fig. 3 is a schematic side view of the automatic ice dispenser according to the present invention.
Fig. 4 is a perspective view of the ice bucket of fig. 3.
Fig. 5 is a side sectional view of the ice-making unit in fig. 3.
Fig. 6 is a first perspective view of the ice making roof, the ice making mold, the cooling tube, the sliding bar, and the first baffle in fig. 5.
Fig. 7 is a second perspective view of the ice making roof, the ice making mold, the cooling tube, the sliding bar, and the first baffle of fig. 5.
Detailed Description
The following describes in further detail specific embodiments of the present invention based on the drawings. It should be understood that the description herein of embodiments of the invention is not intended to limit the scope of the invention.
Referring to fig. 1, the present invention provides an automatic ice maker including an ice making body 10, an ice guide groove 20 disposed at a middle portion of one side of the ice making body 10, a control unit 30 located above the ice guide groove 20, and a water receiving box 40 located below the ice guide groove 20.
Referring to fig. 2, the ice making main body 10 is provided therein with a bottom bracket 111 and a top bracket 112 positioned above the bottom bracket 111.
An ice bucket 12 is suspended from the top bracket 112.
Referring to fig. 3 and 4, the top of the ice bucket 12 has a first opening 1201, one side of the ice bucket 12 has a second opening 1202, one side of the bottom of the ice bucket 12 away from the second opening 1202 has an inclined accommodating portion 121, and one side of the bottom of the ice bucket 12 close to the second opening 1202 is horizontally provided with an ice outlet slot 122. The ice discharge chute 122 communicates with the ice discharge chute 20.
The ice bucket 12 is provided with a motor mounting frame 15 at the second opening 1202, a driving motor is mounted on the motor mounting frame 15, an ice feeding screw 14 is obliquely arranged in the ice bucket 12, a first end of the ice feeding screw 14 is connected with an output shaft of the driving motor, and a second end of the ice feeding screw is connected with one side of the ice bucket 12 far away from the second opening 1202 through a bearing. The ice feed screw 14 is at least partially located in the housing 121.
An ice making unit 13 is provided at the top of the inside of the ice bucket 12 at a position away from the second opening 1202.
In this embodiment, the middle of two opposite inner side walls of the ice bucket 12 close to the second opening 1202 is provided with a suspension groove 1203, and the suspension groove 1203 is communicated with the first opening 1201; a stepped groove 1203 is provided on an inner side wall of the ice bucket 12 far from the second opening 1202. The ice making unit 13 is provided with hanging lugs corresponding to the hanging grooves 1203 in a protruding manner, hanging convex strips corresponding to the step grooves 1203 are provided in a protruding manner, the hanging lugs are located in the hanging grooves 1203, and the hanging convex strips are located in the step grooves 1203.
Referring to fig. 5, the ice making unit 13 includes a water box 131, a water spraying unit 132 disposed in the water box 131, a plurality of ice making molds 133 disposed at the top of the water box 131, a refrigerating pipe 134 disposed outside the ice making molds 133, a plurality of sliding bars 135 obliquely disposed between the water spraying unit 132 and the ice making molds 133, and a first barrier 136.
The water box 131 partitions an inner space of the ice bucket 12 into an inner chamber inside the water box 131 and an outer chamber outside the water box 131.
An ice making top plate is arranged at the top of the water box 131, a plurality of mounting holes 1311 are formed in the ice making top plate, and the ice making mold 133 is mounted at the mounting holes 1311. The ice making mold 133 is provided with a groove, and a side having the groove faces the bottom of the water bucket 131.
A third opening 1312 is opened in the bottom of the water box 131 on the side facing the second opening 1202. Hooks 1313 are respectively disposed on two sides of the water box 131 above the third opening 1312, a rotating shaft 1361 is rotatably disposed on the hooks 1313, a plurality of first blocking plates 136 are connected to the rotating shaft 1361, a first end of each first blocking plate 136 is connected to the rotating shaft 1361, and a second end of each first blocking plate 136 can partially cover the third opening 1312 in a movable manner. The first plurality of baffles 136 acting together may completely cover the third opening 1312.
The bottom of the water box 131 is protruded upward to form a water spraying bracket 1315, the water spraying unit 132 is disposed on the water spraying bracket 1315, and the water spraying port of the water spraying unit 132 is disposed toward the ice making roof, so that the water spraying unit 132 sprays water toward the ice making molds 133 and the water forms ice cubes in the ice making molds 133 under the refrigerating effect of the refrigerating pipe 134.
Referring to fig. 6 and 7, a top rail 1351 is transversely disposed between the ice making top plate and the water spray unit 132 and far from the third opening 1312 in the water box 131, and a bottom rail 1352 is transversely disposed near the bottom of the third opening 1312 in the water box 131. A first end of the slide bar 135 is connected, e.g., welded, to the top rail 1351; the second end of the slide bar 135 is connected to the bottom rail 1352. The plurality of sliding bars 135 are arranged in parallel and a distance between adjacent sliding bars 135 is smaller than a width of the ice making mold 133.
The ice cubes falling from the ice making mold 133 fall on the slide bar 135, then slide along the slide bar 135 and push the first barrier 136 to rotate, and then slide out of the third opening 1312 into the ice bucket 12.
Referring to fig. 3 again, a second baffle 21 is rotatably connected to the inside of the ice outlet channel 20 above the opening of the ice outlet slot 122. The ice cubes pass through the ice discharge groove 122 by the ice feed screw 14, and push the second shutter 21 to rotate, and are discharged through the ice discharge channel 20. A cup may be placed under the ice chute 20 to receive ice.
The water receiving box 40 may receive the leaked ice cubes or water.
Referring to fig. 3 and 5, a recovery pipe 41 is connected to the rear side of the water receiving box 40, and a water feeding pipe 1314 is connected to the rear side of the water receiving box 131, through which water is fed to the water receiving box 131.
In other embodiments, the first recycling pipe 41 may be connected to the second recycling pipe 1314 through a connecting pipe and a water pump, so as to recycle water. Because the pollution to the water received by the water receiving box 40 can be ignored, the quality of ice blocks can not be influenced.
The control unit 30 is directly or indirectly connected to the driving motor and the refrigerating pipe 134, and serves to control the temperature of refrigeration and ice delivery.
Compared with the prior art, the automatic ice maker of the utility model comprises an ice making main body 10 and an ice outlet guide groove 20 arranged in the middle of one side of the ice making main body 10; an ice bucket 12 is provided inside the ice making body 10; the top of the ice bucket 12 is provided with a first opening 1201, one side of the ice bucket 12 is provided with a second opening 1202, one side of the bottom of the ice bucket 12 close to the second opening 1202 is provided with an ice outlet groove 122, and the ice outlet groove 122 is communicated with the ice outlet guide groove 20; the ice bucket 12 is provided with a motor mounting rack 15 at the second opening 1202, a driving motor is mounted on the motor mounting rack 15, an ice feeding screw 14 is arranged in the ice bucket 12, a first end of the ice feeding screw 14 is connected with an output shaft of the driving motor, and a second end of the ice feeding screw is connected with one side of the ice bucket 12 far away from the second opening 1202 through a bearing; an ice making unit 13 is arranged at the top of the inner side of the ice bucket 12 and far away from the second opening 1202; the ice making unit 13 includes a water box 131, a water spraying unit 132 disposed in the water box 131, a plurality of ice making molds 133 disposed at the top of the water box 131, a refrigerating pipe 134 disposed outside the ice making molds 133, and a plurality of sliding bars 135 obliquely disposed between the water spraying unit 132 and the ice making molds 133; a third opening 1312 is formed in the bottom of one side, facing the second opening 1202, of the water box 131, and a plurality of first baffles 136 are rotatably arranged above the third opening 1312 of the water box 131; the slide bar 135 has a first end located between the ice making roof and the water spray unit 132 and distant from the third opening 1312, and a second end located near the bottom of the third opening 1312. So have a plurality of cavities and the opening part of inboard cavity is provided with the baffle, cold insulation effect is better, reduce the power consumption, improve energy-conserving effect.
The above description is only for the preferred embodiment of the present invention and should not be construed as limiting the scope of the present invention, and any modification, equivalent replacement or improvement within the spirit of the present invention is encompassed by the claims of the present invention.

Claims (10)

1. An automatic ice maker is characterized in that: the ice making machine comprises an ice making main body and an ice outlet guide groove arranged in the middle of one side of the ice making main body; an ice bucket is arranged in the ice making main body; the top of the ice bucket is provided with a first opening, one side of the ice bucket is provided with a second opening, one side of the bottom of the ice bucket, which is close to the second opening, is provided with an ice outlet groove, and the ice outlet groove is communicated with the ice outlet guide groove; the ice bucket is provided with a motor mounting frame at the second opening, a driving motor is mounted on the motor mounting frame, an ice conveying screw rod is arranged in the ice bucket, a first end of the ice conveying screw rod is connected with an output shaft of the driving motor, and a second end of the ice conveying screw rod is connected with one side of the ice bucket, far away from the second opening, through a bearing; an ice making unit is arranged at the top of the inner side of the ice bucket and is far away from the second opening; the ice making unit comprises a water box, a water spraying unit arranged in the water box, a plurality of ice making molds arranged at the top of the water box, a refrigerating pipe arranged outside the ice making molds, and a plurality of sliding rods obliquely arranged between the water spraying unit and the ice making molds; a third opening is formed in the bottom of one side, facing the second opening, of the water box, and a plurality of first baffle plates are rotatably arranged above the third opening of the water box; the first end of the sliding rod is located between the ice making top plate and the water spraying unit and is far away from the third opening, and the second end of the sliding rod is located at a position close to the bottom of the third opening.
2. The automatic ice dispenser of claim 1, wherein: the ice making main body is internally provided with a bottom bracket and a top bracket positioned above the bottom bracket, and the ice bucket is hung on the top bracket.
3. The automatic ice dispenser of claim 1, wherein: the bottom of the ice bucket is provided with an inclined accommodating part at one side far away from the second opening, and the ice feeding screw is obliquely arranged in the ice bucket and at least partially positioned in the accommodating part.
4. The automatic ice dispenser of claim 1, wherein: the middle parts of two opposite inner side walls of the ice bucket close to the second opening are provided with suspension grooves, and the suspension grooves are communicated with the first opening; a step groove is formed in the inner side wall of the ice bucket far away from the second opening; the water box is provided with a suspension lug part corresponding to the suspension groove in a protruding mode, a suspension convex strip corresponding to the step groove in a protruding mode, the suspension lug part is located in the suspension groove, and the suspension convex strip is located in the step groove.
5. The automatic ice dispenser of claim 1, wherein: the top of water box is provided with the ice-making roof, has seted up a plurality of installing ports on the ice-making roof, and the ice-making mould is installed in installing port department.
6. The automatic ice dispenser of claim 1, wherein: the water box is provided with the couple respectively in the both sides of third opening top, and the couple internal rotation is provided with the pivot, and the first end and the pivot of first baffle are connected, and second end movably covers the third opening.
7. The automatic ice dispenser of claim 1, wherein: a top cross rod is transversely arranged between the ice making top plate and the water spraying unit in the water box at a position far away from the third opening, and a bottom cross rod is transversely arranged in the water box at a position close to the bottom of the third opening; the first end of the sliding rod is connected with the top cross rod, and the second end of the sliding rod is connected with the bottom cross rod.
8. The automatic ice dispenser of claim 7, wherein: the sliding rods are arranged in parallel, and the distance between every two adjacent sliding rods is smaller than the width of the ice making mold.
9. The automatic ice dispenser of claim 1, wherein: and a second baffle is rotatably connected above the opening of the ice outlet groove in the ice outlet guide groove.
10. The automatic ice dispenser of claim 1, wherein: and a water receiving box is arranged below the ice outlet guide groove.
CN201921515206.2U 2019-09-11 2019-09-11 Automatic ice discharging machine Active CN211290659U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921515206.2U CN211290659U (en) 2019-09-11 2019-09-11 Automatic ice discharging machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921515206.2U CN211290659U (en) 2019-09-11 2019-09-11 Automatic ice discharging machine

Publications (1)

Publication Number Publication Date
CN211290659U true CN211290659U (en) 2020-08-18

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ID=72014569

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921515206.2U Active CN211290659U (en) 2019-09-11 2019-09-11 Automatic ice discharging machine

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CN (1) CN211290659U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112460870A (en) * 2020-11-03 2021-03-09 杭州以勒上云机器人科技有限公司 Ice making machine
CN112682991A (en) * 2020-12-23 2021-04-20 六安索伊电器制造有限公司 Ice cube making equipment for intelligent coffee machine
CN113669971A (en) * 2021-07-05 2021-11-19 浙江久景制冷设备股份有限公司 Built-in bullet ice machine of making ice of water pump
CN115388588A (en) * 2022-08-23 2022-11-25 滁州东菱电器有限公司 Ice making machine

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112460870A (en) * 2020-11-03 2021-03-09 杭州以勒上云机器人科技有限公司 Ice making machine
CN112460870B (en) * 2020-11-03 2022-05-10 杭州以勒上云机器人科技有限公司 Ice making machine
CN112682991A (en) * 2020-12-23 2021-04-20 六安索伊电器制造有限公司 Ice cube making equipment for intelligent coffee machine
CN113669971A (en) * 2021-07-05 2021-11-19 浙江久景制冷设备股份有限公司 Built-in bullet ice machine of making ice of water pump
CN115388588A (en) * 2022-08-23 2022-11-25 滁州东菱电器有限公司 Ice making machine
CN115388588B (en) * 2022-08-23 2023-10-03 滁州东菱电器有限公司 Ice machine

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