Flaky ice machine capable of efficiently producing

By introducing a double water film and double ice blade design into the flake ice machine, the problems of low ice output efficiency and unstable ice blade caused by a single water film in the evaporator are solved, achieving efficient production and safe operation.

CN223755626UActive Publication Date: 2026-01-02禹城大禹圣农食品有限公司
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Patent Information

Application Number
CN202421724746.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2026-01-02
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The existing flake ice machine has a single type of water film formation in the evaporator, which affects the ice output efficiency and yield. In addition, the ice blades are unstable and have a short service life.

Method used

It adopts a built-in double water film production mechanism and a double ice blade design. Two water films are formed through a liquid separation ring, and the ice flakes are cut by double ice blades, so as to achieve efficient production and stable operation.

Benefits of technology

This increased ice output, improved production efficiency, and ensured the stability and safety of the ice skates.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223755626U_ABST
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Abstract

The utility model relates to the technical field of slice ice machines, in particular to a slice ice machine capable of efficiently producing. According to the technical scheme, the device comprises a top cover, an outer cylinder, an inner cylinder and a transverse plate, an outer flow cylinder is embedded in the inner wall of the outer cylinder, the inner cylinder is fixed to the middle of the interior of the outer cylinder, an inner flow cylinder is embedded in the outer side of the inner cylinder, a rotating shaft is rotationally installed in the middle of the interior of the inner cylinder, and the lower end of the rotating shaft is fixed to the transverse plate; a liquid separation ring is embedded in the top end of the interior of the outer cylinder, the top cover is fixed to the upper end of the outer cylinder, a driving box is fixed to the middle of the interior of the top cover, the upper end of a rotating shaft is connected into the driving box, and a first built-in box and a second built-in box are fixed to the two sides of the interior of the top cover correspondingly; and liquid injection pipes and return pipes are mounted on the two sides of the outer flow cylinder and the inner flow cylinder in a penetrating manner. The double-water-film ice maker has the advantages that the double-water-film production mechanism is arranged in the ice maker, the ice outlet amount is increased, the double ice blades operate stably, and the use safety is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a flaked ice machine technical field, concretely is a flaked ice machine of high -efficient production. BACKGROUND

[0002] The flaked ice machine is one kind of ice maker, and can be divided into fresh water flaked ice machine and seawater flaked ice machine according to water source, and is generally industrial ice maker.The flaked ice machine adopts evaporator to carry out refrigeration operation.Water enters the water distribution disc from the water inlet of the flaked ice machine evaporator, and is evenly sprayed on the inner wall of the evaporator through the water spraying pipe to form a water film;The water film exchanges heat with the refrigerant in the evaporator flow channel, and the temperature is rapidly reduced to form a thin layer of ice on the inner wall of the evaporator, which is crushed into flaked ice under the extrusion of the ice knife, and falls into the ice storage through the ice outlet.

[0003] The function of the existing flaked ice machine mainly depends on the function of the evaporator, but the single water film formed in the existing evaporator affects the ice production efficiency in the processing process, and the yield is low;And the stability of the single ice crusher is poor when the existing evaporator is crushed, and high load is easy to produce, which affects the service life of the ice knife. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a flaked ice machine of high -efficient production, has the advantages of built -in double water film production mechanism, increases the ice output and the stable operation of double ice knives, and ensures the use safety, solves the problems in the above background technology.

[0005] To achieve the above object, the utility model provides the following technical scheme: a flaked ice machine of high -efficient production, including top cover, outer tube, inner tube and horizontal plate, the inner wall of outer tube is embedded with outer flow tube, the inner tube is fixed at the inside middle part of outer tube, and the outer side of inner tube is embedded with inner flow tube, the inside middle part of inner tube is rotatably installed with rotating shaft, and the lower end of rotating shaft is fixed on the horizontal plate, the inside top end of outer tube is embedded with liquid distribution ring, the top cover is fixed on the upper end of outer tube, the inside middle part of top cover is fixed with drive box, and the upper end of rotating shaft is connected in drive box, the both sides in the inside of top cover are respectively fixed with first built -in box and second built -in box, and the inside middle part of first built -in box and second built -in box is fixed with baffle, the both sides of outer flow tube and inner flow tube are all installed with liquid injection pipe and backflow pipe, and the upper end of liquid injection pipe is connected with first built -in box, and the upper end of backflow pipe is connected with second built -in box.

[0006] When the high-efficiency flake ice machine is used, the device is assembled on the flake ice machine, the brine is introduced into the inside lower end space of the first built-in box and the second built-in box through the two liquid inlet pipes, then the brine enters the inside of the distribution ring, and the brine is discharged to the inside of the outer flow cylinder and the outside of the inner flow cylinder through the openings on the lower sides of the distribution ring, so that two water films are formed, the refrigerant is introduced into the upper side of the first built-in box through the refrigerant inlet pipe, then the refrigerant is introduced into the inside of the outer flow cylinder and the inner flow cylinder through the liquid injection pipe, the refrigerant exchanges heat to cool the water film, so that the water film is frozen, and the refrigerant is returned to the upper side of the second built-in box through the backflow pipe after being filled, and then is discharged through the refrigerant discharge pipe to form a cycle, and when the water film is frozen, the motor in the drive box is started, the motor drives the horizontal plate to rotate through the rotating shaft, the horizontal plate drives the ice knife to rotate and displace, and the ice knife cuts the ice between the two pieces of ice to form ice flakes which are discharged from the lower opening.

[0007] Preferably, the horizontal plate is located on the lower side of the outer cylinder and the inner cylinder, the ice knives are rotatably installed on the upper sides of the two ends of the horizontal plate, and the ice knives are located between the outer cylinder and the inner cylinder. The horizontal plate drives the ice knives to displace through rotation, and the ice knives cut the ice condensed by the water film.

[0008] Preferably, the lower end face of the distribution ring is provided with distribution ports on the inside and the outside, the distribution ports correspond to the outer flow cylinder and the inner flow cylinder, and the upper opening of the distribution ring is in communication with the inside bottom ends of the first built-in box and the second built-in box. The brine on the lower sides in the first built-in box and the second built-in box is introduced into the distribution ring, and then is guided to the outer flow cylinder and the inner flow cylinder through the distribution ports to form water films.

[0009] Preferably, the upper end face of the top cover is provided with the refrigerant inlet pipe and the refrigerant discharge pipe which are respectively installed on the two sides, and the lower ends of the refrigerant inlet pipe and the refrigerant discharge pipe are connected to the interiors of the first built-in box and the second built-in box. The refrigerant inlet pipe and the refrigerant discharge pipe are used for introducing and returning the refrigerant in the interiors of the first built-in box and the second built-in box respectively.

[0010] Preferably, the partition plate divides the interiors of the first built-in box and the second built-in box into upper intervals and lower intervals, and the liquid injection pipe, the backflow pipe, the refrigerant inlet pipe and the refrigerant discharge pipe are connected to the corresponding upper intervals. The liquid injection pipe and the backflow pipe are used for connecting the first built-in box and the second built-in box with the outer flow cylinder and the inner flow cylinder, and the refrigerant inlet pipe and the refrigerant discharge pipe are used for realizing the circulation of the refrigerant.

[0011] Preferably, the upper end face of the top cover is provided with the liquid inlet pipes which are installed on the two sides, and the lower ends of the liquid inlet pipes are connected to the lower intervals in the interiors of the first built-in box and the second built-in box. The liquid inlet pipes are used for introducing the brine into the interiors of the first built-in box and the second built-in box.

[0012] Compared with the prior art, the beneficial effects of the device are as follows: the device is assembled on the flake ice machine, the brine is introduced into the inside lower end space of the first built-in box and the second built-in box through two liquid inlet pipes respectively, then the brine enters the inside of the distribution ring, and the brine is discharged to the inside of the outflow cylinder and the outside of the inflow cylinder through the openings on the lower sides of the distribution ring, forming two water films, the refrigerant is introduced into the upper side of the first built-in box through the refrigerant inlet pipe, then the refrigerant is introduced into the inside of the outflow cylinder and the inflow cylinder through the liquid injection pipe, the refrigerant exchanges heat to cool the water film, so that the water film freezes, and the refrigerant is filled and returned to the upper side of the second built-in box through the reflux pipe, and then discharged through the refrigerant discharge pipe to form a cycle, when the water film is frozen, the motor in the drive box is started, the motor drives the horizontal plate to rotate through the rotating shaft, the horizontal plate drives the ice knife to rotate and displace, the ice knife cuts the ice between the two ice pieces to make the ice pieces be discharged from the lower opening, the device has simple structure and convenient operation, the capacity is increased by forming double water films, and the ice pieces are efficiently produced, meanwhile, the stability is ensured by the ice knife operating in a bilateral balance mode, and safe production is realized. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a front view structural schematic diagram of the utility model;

[0014] Figure 2 It is a front view structural schematic diagram of the utility model Figure 1 It is an enlarged structural schematic diagram;

[0015] Figure 3 It is an appearance structural schematic diagram of the utility model;

[0016] Figure 4 It is an outer cylinder cross-sectional structural schematic diagram of the utility model.

[0017] In the drawing: 1, top cover; 2, liquid injection pipe; 3, outer cylinder; 4, outflow cylinder; 5, inflow cylinder; 6, inner cylinder; 7, horizontal plate; 8, rotating shaft; 9, reflux pipe; 10, drive box; 11, first built-in box; 12, refrigerant inlet pipe; 13, liquid inlet pipe; 14, second built-in box; 15, partition plate; 16, distribution ring; 17, refrigerant discharge pipe; 18, ice knife. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0019] Embodiment one

[0020] Please refer to Figures 1 to 4The utility model provides an embodiment: a piece ice machine of high -efficient production, including top 1, outer tube 3, inner tube 6 and crossbeam 7, the inner wall of outer tube 3 is embedded and is installed with outer flow cylinder 4, inner tube 6 is fixed at the inside intermediate place of outer tube 3, and the outside of inner tube 6 is embedded and is installed with inner flow cylinder 5, the inside intermediate place of inner tube 6 is rotatably installed with rotating shaft 8, and the lower end of rotating shaft 8 is fixed on crossbeam 7, and crossbeam 7 is located at the downside of outer tube 3 and inner tube 6, and the both ends upside of crossbeam 7 are rotatably installed with ice knife 18, and ice knife 18 is located between outer tube 3 and inner tube 6, and ice knife 18 is displaced by the rotation of crossbeam 7, and ice knife 18 cuts the ice of water film condensation, and the inside top end of outer tube 3 is embedded and is installed with distribution ring 16, and the lower end surface of distribution ring 16 is provided with distribution port, and the distribution port corresponds with outer flow cylinder 4 and inner flow cylinder 5, and the upper end opening of distribution ring 16 is connected with the inside bottom end of first built -in box 11 and second built -in box 14, and the brine of the inside downside of first built -in box 11 and second built -in box 14 is introduced into distribution ring 16, and then is guided to outer flow cylinder 4 and inner flow cylinder 5 through distribution port to form water film.

[0021] Embodiment two

[0022] Please refer to Figures 1 to 4 The utility model provides an embodiment: a piece ice machine of high -efficient production, including top 1, outer tube 3, inner tube 6 and crossbeam 7, top 1 is fixed at the upper end of outer tube 3, and the inside intermediate place of top 1 is fixed with drive box 10, and rotating shaft 8 upper end connects drive box 10, and the both sides of the inside of top 1 are respectively fixed with first built -in box 11 and second built -in box 14, and the inside intermediate place of first built -in box 11 and second built -in box 14 is respectively fixed with baffle 15, and the both sides of outer flow cylinder 4 and inner flow cylinder 5 are respectively installed with liquid injection pipe 2 and backflow pipe 9, and the upper end of liquid injection pipe 2 is connected with first built -in box 11, and the upper end of backflow pipe 9 is connected with second built -in box 14, and the both sides of the upper end surface of top 1 are respectively installed with inlet pipe 12 and exhaust pipe 17, and the lower end of inlet pipe 12 and exhaust pipe 17 is respectively connected with the inside of first built -in box 11 and second built -in box 14, and the inside of first built -in box 11 and second built -in box 14 is realized refrigerant import and backflow operation respectively through inlet pipe 12 and exhaust pipe 17, and the inside of first built -in box 11 and second built -in box 14 is separated into upper interval and lower interval by baffle 15, and liquid injection pipe 2, backflow pipe 9, inlet pipe 12 and exhaust pipe 17 are connected with corresponding upper interval, and the communication of first built -in box 11 and second built -in box 14 and outer flow cylinder 4 and inner flow cylinder 5 is realized through liquid injection pipe 2 and backflow pipe 9, and then cooperate inlet pipe 12 and exhaust pipe 17 realize the circulation of refrigerant, and the both sides of the upper end surface of top 1 are installed with liquid inlet pipe 13, and the lower end of liquid inlet pipe 13 is connected with the lower interval of the inside of first built -in box 11 and second built -in box 14, and the brine is introduced into the inside downside of first built -in box 11 and second built -in box 14 through liquid inlet pipe 13.

[0023] The utility model discloses a work, the device is assembled on the ice flake machine, and the brine is introduced into the inside lower end space of first built -in box 11 and second built -in box 14 respectively through two liquid inlet pipes 13, then the brine enters the inside of liquid distribution ring 16, and the brine is discharged to the inside of outer flow cylinder 4 and the outside of inner flow cylinder 5 through the opening of the both sides of liquid distribution ring 16 downside, forms two water films, and then the refrigerant is introduced into the upside of first built -in box 11 through cold agent pipe 12, then the refrigerant is introduced into the inside of outer flow cylinder 4 and inner flow cylinder 5 through liquid injection pipe 2, and the refrigerant heat exchange is cooled to water film, makes it freeze, and the refrigerant fills and returns to the upside of second built -in box 14 through backflow pipe 9, and then is discharged through cold agent pipe 17 and forms circulation, when water film freezes, starts the motor in drive box 10, and the motor drives horizontal plate 7 to rotate through rotating shaft 8, and horizontal plate 7 drives ice knife 18 to rotate displacement, and ice knife 18 is cut between two ice displacement and makes it form ice flake and discharge from the downside opening.

[0024] Although the embodiments of the utility model have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A high-efficiency flake ice machine comprising a top cover (1), an outer cylinder (3), an inner cylinder (6) and a cross plate (7), characterized in that: The inner wall of the outer cylinder (3) is embedded with an outer flow cylinder (4), the inner cylinder (6) is fixed in the middle of the inner part of the outer cylinder (3), and the outer side of the inner cylinder (6) is embedded with an inner flow cylinder (5), the middle of the inner part of the inner cylinder (6) is rotatably installed with a rotating shaft (8), and the lower end of the rotating shaft (8) is fixed on the horizontal plate (7), the inner top end of the outer cylinder (3) is embedded with a distribution ring (16), the top cover (1) is fixed on the upper end of the outer cylinder (3), the inner middle of the top cover (1) is fixed with a drive box (10), and the upper end of the rotating shaft (8) is connected in the drive box (10), the inner sides of the top cover (1) are respectively fixed with a first built-in box (11) and a second built-in box (14), and the inner middle of the first built-in box (11) and the second built-in box (14) is fixed with a partition (15), the two sides of the outer flow cylinder (4) and the inner flow cylinder (5) are respectively provided with a liquid injection pipe (2) and a return pipe (9), and the upper end of the liquid injection pipe (2) is connected with the first built-in box (11), and the upper end of the return pipe (9) is connected with the second built-in box (14).

2. A high efficiency flake ice maker as claimed in claim 1 wherein: The horizontal plate (7) is located below the outer cylinder (3) and the inner cylinder (6), the two ends of the horizontal plate (7) are rotatably installed with an ice knife (18), and the ice knife (18) is located between the outer cylinder (3) and the inner cylinder (6).

3. The high-efficiency flaked ice machine according to claim 1, characterized in that: The lower end surface of the distribution ring (16) is provided with a distribution port, and the distribution port corresponds to the outer flow cylinder (4) and the inner flow cylinder (5), the upper end opening of the distribution ring (16) is in communication with the inner bottom end of the first built-in box (11) and the second built-in box (14).

4. The high-efficiency flaked ice machine according to claim 1, characterized in that: The upper end surface of the top cover (1) is respectively provided with a cold agent inlet pipe (12) and a cold agent outlet pipe (17), and the lower ends of the cold agent inlet pipe (12) and the cold agent outlet pipe (17) are respectively connected with the inner parts of the first built-in box (11) and the second built-in box (14).

5. A high efficiency flaked ice machine as claimed in claim 4 wherein: The partition (15) divides the inner parts of the first built-in box (11) and the second built-in box (14) into upper and lower intervals, and the liquid injection pipe (2), the return pipe (9), the cold agent inlet pipe (12) and the cold agent outlet pipe (17) are connected with the corresponding upper interval.

6. A high efficiency flaked ice machine as claimed in claim 5 wherein: The upper end surface of the top cover (1) is respectively provided with a cold agent inlet pipe (12) and a cold agent outlet pipe (17), and the lower ends of the cold agent inlet pipe (12) and the cold agent outlet pipe (17) are respectively connected with the inner parts of the first built-in box (11) and the second built-in box (14). The upper end surface of the top cover (1) is respectively provided with a cold agent inlet pipe (12) and a cold agent outlet pipe (17), and the lower ends of the cold agent inlet pipe (12) and the cold agent outlet pipe (17) are respectively connected with the inner parts of the first built-in box (11) and the second built-in box (14).