Food processing device

By setting a wall-breaking tool and a stirring tool in the ice cream machine, the wall-breaking and stirring functions can be performed separately, solving the problem of poor taste caused by the single function of the ice cream machine, ensuring that the taste of each part of the ice cream is uniform, and saving time.

CN223391930UActive Publication Date: 2025-09-30SHENZHEN QIANYAN TECH LTD +1
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Patent Information

Application Number
CN202422572850.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-09-30
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

The existing ice cream machine has a single function, resulting in a poor taste of ice cream.

Method used

A food processing device is designed, comprising a shell, a drive mechanism, a storage container, a wall-breaking knife and a stirring knife, and is provided with a first processing area and a second processing area spaced apart from each other. The wall-breaking knife and the stirring knife are detachably connected to the drive mechanism, and a refrigeration module is arranged in the second processing area to realize separate wall-breaking and stirring functions.

Benefits of technology

Through separate wall breaking and stirring processes, the solid matter in the ice cream liquid is ensured to be evenly mixed, and the taste of each part of the formed ice cream is roughly the same, saving time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to food processing equipment which comprises a shell, a driving mechanism, a storage container, a wall breaking cutter, a stirring cutter and a refrigeration module, and the shell is provided with a first processing area and a second processing area which are spaced from each other; the driving mechanism is arranged on the shell, and the driving mechanism is provided with a switching part for outputting power; the storage container is detachably installed in the first machining area or the second machining area, and the storage container is provided with a machining inner cavity; the wall breaking cutter is arranged in the processing inner cavity and is used for being detachably connected to the switching part so as to be in transmission connection to the driving mechanism; the stirring cutter is arranged in the processing inner cavity and is used for being detachably connected to the wall breaking cutter so as to be in transmission connection to the driving mechanism through the wall breaking cutter; at least part of the structure of the refrigeration module is arranged in the second machining area. Under the action of the embodiment, the food processing equipment can have multiple functions, and the taste of ice cream is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of food processing devices, and in particular to a food processing device. Background Art

[0002] In the summer, the temperature is high, and people's demand for cold drinks, popsicles, ice cream and other cooling foods gradually increases, and thus the demand for ice cream machines also gradually increases. Ice cream machines can cool the ice cream concentrate to make it solid ice cream.

[0003] However, the existing ice cream machine has a single function, which makes the taste of the ice cream poor. Utility Model Content

[0004] The present application provides a food processing device, which includes a shell, a driving mechanism, a storage container, a wall-breaking tool, a stirring tool and a refrigeration module. The shell is provided with a first processing area and a second processing area spaced apart from each other; the driving mechanism is arranged in the shell, and the driving mechanism is provided with a connecting portion for outputting power; the storage container is detachably mounted in the first processing area or detachably mounted in the second processing area, and the storage container has a processing inner cavity; the wall-breaking tool is arranged in the processing inner cavity and is detachably connected to the connecting portion to be transmission-connected to the driving mechanism; the stirring tool is arranged in the processing inner cavity and is detachably connected to the wall-breaking tool to be transmission-connected to the driving mechanism through the wall-breaking tool; at least part of the structure of the refrigeration module is arranged in the second processing area.

[0005] Among them, in some optional embodiments, the wall-breaking tool includes a first rotating shaft and a wall-breaking blade. The first rotating shaft passes through the storage container, one end of the first rotating shaft is located outside the storage container for transmission connection with the adapter, and the wall-breaking blade is arranged in the processing inner cavity and connected to the first rotating shaft.

[0006] Among them, in some optional embodiments, the storage container has an opening connected to the processing cavity and a bottom wall opposite to the opening, and the first rotating shaft is passed through the bottom wall; the food processing equipment also includes a cover body, which covers the opening, and one end of the stirring tool is rotatably mounted on the cover body, and the other end is detachably connected to the first rotating shaft to prevent rotation.

[0007] In some optional embodiments, the stirring tool includes a second rotating shaft and a stirring blade, the second rotating shaft is arranged in the processing inner cavity, the second rotating shaft is detachably connected to the first rotating shaft, and the stirring blade is connected to the second rotating shaft.

[0008] In some optional embodiments, the food processing equipment further includes a first heat exchange tube, a second heat exchange tube and a heating module, the first heat exchange tube is installed in the first processing area, and the second heat exchange tube is installed in the second processing area; the heating module is connected to the first heat exchange tube, the refrigeration module is connected to the second heat exchange tube, and the storage container is detachably installed on the first heat exchange tube or detachably installed on the second heat exchange tube.

[0009] In some optional embodiments, when the storage container is disposed in the first heat exchange tube, the first rotating shaft passes through the bottom of the first heat exchange tube; and the heating module is installed on the outer surface of the bottom of the first heat exchange tube.

[0010] Among them, in some optional embodiments, the number of driving mechanisms is two, and the two driving mechanisms include a first driving mechanism and a second driving mechanism; the first driving mechanism is arranged in the first processing area, and when the storage container is installed in the first processing area, the first rotating shaft is sequentially passed through the storage container and the first heat exchange tube and is detachably connected to the adapter part of the first driving mechanism; the second driving mechanism is arranged in the second processing area, and when the storage container is installed in the second processing area, the first rotating shaft is sequentially passed through the storage container and the second heat exchange tube and is detachably connected to the adapter part of the second driving mechanism.

[0011] Among them, in some optional embodiments, the first heat exchange tube and the second heat exchange tube are arranged side by side inside the shell, the first heat exchange tube has a first access port connected to the interior of the first heat exchange tube, and the first access port is exposed relative to the shell, and the second heat exchange tube has a second access port connected to the interior of the second heat exchange tube, and the second access port is exposed relative to the shell.

[0012] Among them, in some optional embodiments, the food processing equipment also includes a mating piece, which is arranged on the outside of the storage container and connected to the wall-breaking knife; the mating piece includes a plurality of mating keys, which are arranged in sequence and at intervals; the adapter includes a plurality of mating grooves, and the plurality of mating keys and the plurality of mating grooves are arranged one-to-one and fit together.

[0013] Among them, in some optional embodiments, one end of the wall-breaking tool is passed through the bottom wall of the storage container to be transmission-connected with the adapter part, the other end of the wall-breaking tool is provided with a transmission part, and the stirring tool is provided with a matching part, and the matching part and the transmission part are detachably engaged and anti-rotationally connected.

[0014] The present application provides a food processing device, comprising a housing, a drive mechanism, a storage container, a wall-breaking blade, a stirring blade, and a refrigeration module. The housing is provided with a first processing area and a second processing area spaced apart from each other, the drive mechanism is disposed in the housing, the drive mechanism being provided with a transfer portion for outputting power, the storage container being detachably mounted in the first processing area or the second processing area, the storage container having a processing inner cavity; the wall-breaking blade being disposed in the processing inner cavity and being detachably connected to the transfer portion for transmission connection to the drive mechanism; the stirring blade being disposed in the processing inner cavity and being detachably connected to the wall-breaking blade for transmission connection to the drive mechanism via the wall-breaking blade, and at least a portion of the structure of the refrigeration module being disposed in the second processing area.

[0015] In this embodiment, the food processing device incorporates both a wall-breaking blade and a stirring blade within the storage container, enabling the device to perform multiple functions, including wall-breaking and stirring. This allows the solids in the ice cream stock to be broken up and evenly mixed with the ice cream stock, resulting in a roughly uniform texture across all portions of the formed ice cream. In this embodiment, the wall-breaking and stirring processes are performed separately, allowing the user to select whether to perform the wall-breaking process based on the specific composition of the ice cream stock, saving time. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the implementation. Obviously, the drawings described below are only some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0017] Figure 1 It is a structural schematic diagram of the food processing equipment provided in an embodiment of the present application.

[0018] Figure 2 yes Figure 1 Schematic diagram of the exploded structure of the food processing equipment shown.

[0019] Figure 3 yes Figure 1 A cross-sectional view of a food processing apparatus is shown.

[0020] Figure 4 yes Figure 1 The structure diagram of the wall-breaking cutter of the food processing equipment shown is to penetrate the storage container.

[0021] Figure 5 yes Figure 1 The schematic diagram of the structure of the stirring knife and the wall breaking knife of the food processing equipment is shown.

[0022] Figure 6 yes Figure 1 The schematic diagram of the structure of the adapter and matching parts of the food processing equipment is shown.

[0023] Figure numbers: 100, food processing equipment, 10, shell, 11, first processing area, 12, second processing area, 20, storage container, 21, processing cavity, 22, bottom wall, 23, opening, 30, driving mechanism, 31, adapter, 311, matching groove, 33, first driving mechanism, 34, second driving mechanism, 40, wall-breaking tool, 41, first rotating shaft, 411, transmission part, 42, wall-breaking blade, 50, stirring tool, 51, second rotating shaft, 511, matching part, 52, stirring blade, 60, refrigeration module, 61, evaporating tube, 62, compressor, 70, heating module, 80, matching part, 81, matching key, 90, cover, 91, first heat exchange cylinder, 911, first take-in and put-out port, 92, second heat exchange cylinder, 921, second take-in and put-out port, 922, cylinder. DETAILED DESCRIPTION

[0024] In order to enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.

[0025] See also Figure 1 An embodiment of the present application provides a food processing device 100, which is used to assist a user in processing food ingredients or producing ready-to-eat food. As an example, the food processing device 100 may be a blender, which is used to produce minced meat or chopped vegetables. As another example, the food processing device 100 may be a bread maker, which can blend flour into dough and bake the dough into bread. In this embodiment, the food processing device 100 is an ice cream maker, which can cool and blend the ice cream concentrate to form solid ice cream.

[0026] See also Figure 2 and Figure 3In this embodiment, the food processing device 100 includes a shell 10, a storage container 20, a wall-breaking knife 40, a stirring knife 50 and a driving mechanism 30. The storage container 20 is arranged in the shell 10, and the storage container 20 has a processing inner cavity 21. The processing inner cavity 21 is used to hold the ice cream concentrate and provide space for the ice cream concentrate to condense into ice cream. The driving mechanism 30 is arranged in the shell 10, and the driving mechanism 30 has a connecting portion 31. The connecting portion 31 is used to output power. The wall-breaking knife 40 is arranged in the storage container 20, and the wall-breaking knife 40 can be detachably connected to the driving mechanism 30 so that the wall-breaking knife 40 can break the wall of larger solid ingredients (such as nuts, ice cubes, fruits, etc.) in the ice cream concentrate, so that the various components of the ice cream concentrate are evenly distributed. The stirring tool 50 is also arranged in the processing cavity 21. The stirring tool 50 is detachably connected to the wall-breaking tool 40 so that the stirring tool 50 is connected to the driving mechanism 30 through the wall-breaking tool 40. During the cooling process of the ice cream concentrate, the stirring tool 50 can stir the ice cream concentrate so that the ice cream is evenly condensed and has a fluffy taste.

[0027] In this embodiment, the food processing apparatus 100 further includes a refrigeration module 60. The housing 10 has a first processing area 11 and a second processing area 12, with at least a portion of the refrigeration module 60 disposed in the second processing area 12. The storage container 20 can be detachably mounted in either the first processing area 11 or the second processing area 12. When the storage container 20 is mounted in the first processing area 11, the wall-breaking blade 40, driven by the drive mechanism 30, rapidly rotates to shred the solid ingredients in the ice cream concentrate. During the wall-breaking process, the stirring blade 50 can be detachably attached to the wall-breaking blade 40 to stir the liquefied ice cream concentrate. Alternatively, the stirring blade 50 can be removed from the wall-breaking blade 40 to reduce the load on the drive mechanism 30. When the storage container 20 is mounted in the second processing area 12, the refrigeration module 60 transfers cold air to the storage container 20 to lower the temperature of the ice cream concentrate, allowing it to condense. The stirring blade 50, driven by the drive mechanism 30, rotates to uniformly condense the ice cream, ensuring a well-formed ice cream. In actual application scenarios, the output power of the driving mechanism 30 during the stirring process is lower than the output power during the wall breaking process, so as to avoid the stirring blade 50 and the gradually solidified ice cream concentrate being squeezed against each other, thereby causing damage to the stirring blade 50 or the driving mechanism 30.

[0028] In summary, the food processing device 100 in this embodiment includes a housing 10, a driving mechanism 30, a storage container 20, a wall-breaking knife 40, a stirring knife 50, and a refrigeration module 60. The housing 10 is provided with a first processing area 11 and a second processing area 12 spaced apart from each other. The driving mechanism 30 is arranged in the housing 10. The driving mechanism 30 is provided with a connecting portion 31 for outputting power. The storage container 20 is detachably mounted in the first processing area 11 or detachably mounted in the second processing area 12. The storage container 20 has a processing cavity 21. The wall-breaking knife 40 is arranged in the processing cavity 21 and is used to be detachably connected to the connecting portion 31 for transmission connection to the driving mechanism 30. The stirring knife 50 is arranged in the processing cavity 21 and is used to be detachably connected to the wall-breaking knife 40 so as to be transmission connected to the driving mechanism 30 through the wall-breaking knife 40. At least part of the structure of the refrigeration module 60 is arranged in the second processing area 12.

[0029] In this embodiment, the food processing device 100 is provided with a wall-breaking blade 40 and a stirring blade 50 within the storage container 20, enabling the food processing device 100 to perform multiple functions, including wall-breaking and stirring. This allows the solid matter in the ice cream stock to be broken up and evenly mixed with the ice cream stock, resulting in a roughly uniform taste across all portions of the formed ice cream. In this embodiment, the wall-breaking and stirring processes are performed separately, allowing the user to select whether to perform the wall-breaking process based on the specific composition of the ice cream stock, saving time.

[0030] See also Figure 4 and Figure 5 In this embodiment, the wall-breaking tool 40 is rotatably mounted on the storage container 20. The wall-breaking tool 40 includes a first rotating shaft 41 and a wall-breaking blade 42. The first rotating shaft 41 passes through the storage container 20. One end of the first rotating shaft 41 extends outside the storage container 20 and is in transmission connection with the adapter 31 of the drive mechanism 30. The wall-breaking blade 42 is disposed in the processing cavity 21 and is connected to the portion of the first rotating shaft 41 located in the processing cavity 21. One end of the first rotating shaft 41 located in the processing cavity 21 is detachably connected to the stirring tool 50, so that the stirring tool 50 rotates with the wall-breaking tool 40. In this embodiment, the wall-breaking tool 40 is fixedly mounted on the storage container 20. The first rotating shaft 41 is in sealing engagement with the storage container 20, so as to reduce the steps of assembling the wall-breaking tool 40 and improve work efficiency.

[0031] In the present embodiment, the food processing device 100 is arranged on a substantially horizontal application platform, and a straight line in the vertical direction is substantially perpendicular to the application platform. In the present embodiment, the storage container 20 has an opening 23 and a bottom wall 22 opposite to the opening 23, the opening 23 is located at the top of the storage container 20 in the vertical direction, and the bottom wall 22 is located at the bottom of the storage container 20 in the vertical direction. In the present embodiment, the first rotating shaft 41 of the wall-breaking tool 40 is passed through the bottom wall 22 and extends out of the storage container 20. Correspondingly, when the driving mechanism 30 and the wall-breaking tool 40 are in a state of transmission connection, the driving mechanism 30 is located below the storage container 20 to prevent the lubricating oil on the driving mechanism 30 from flowing along the first rotating shaft 41 to the processing inner cavity 21. The food processing device 100 in the present embodiment also includes a cover body 90 (please refer to Figure 1 ), the cover 90 is connected to the storage container 20 and seals the opening 23 to prevent dust or foreign matter from entering the processing cavity 21.

[0032] In this embodiment, the stirring tool 50 has two ends in its axial direction, one end of the stirring tool 50 is detachably connected to the first rotating shaft 41, and the other end is rotatably mounted on the cover body 90. Under the setting of this embodiment, the two ends of the stirring tool 50 are restricted so that the stirring tool 50 is relatively stable when the stirring tool 50 is in a rotating state. The rotation-stop connection between the stirring tool 50 and the first rotating shaft 41 should be understood as: the stirring tool 50 is relatively fixed to the first rotating shaft 41 of the wall-breaking tool 40, and the stirring tool 50 can rotate with the rotation of the first rotating shaft 41 and stop rotating when the first rotating shaft 41 stops rotating. Specifically, the stirring tool 50 in this embodiment includes a second rotating shaft 51 and a stirring blade 52, and the stirring blade 52 is connected to the second rotating shaft 51. The second rotating shaft 51 is rotatably arranged in the processing inner cavity 21, and the axis of the second rotating shaft 51 roughly coincides with the axis of the first rotating shaft 41. The second rotating shaft 51 defines the rotation axis of the stirring tool 50. In actual applications, one end of the second rotating shaft 51 is detachably fixedly connected to the first rotating shaft 41, and the other end is engaged with the cover 90. In this embodiment, the cover 90 is provided with a groove on the side facing the processing cavity 21, and the end of the second rotating shaft 51 facing away from the first rotating shaft 41 is rotatably embedded in the groove. In this embodiment, the stirring blade 52 can be a plurality of stirring blades or a stirring paddle, or a single stirring paddle to provide greater strength to overcome resistance during the stirring process and avoid deformation.

[0033] See also Figure 2 and Figure 3In this embodiment, the food processing apparatus 100 further includes a first heat exchange barrel 91 and a heating module 70. The first heat exchange barrel 91 is mounted in the first processing area 11 and is used to mount the storage container 20. The first heat exchange barrel 91 has a first access opening 911 communicating with its interior. The storage container 20 is removably mounted within the first heat exchange barrel 91 via the first access opening 911. In this embodiment, when the storage container 20 is mounted in the first heat exchange barrel 91, the outer wall of the storage container 20 at least partially abuts the inner wall of the first heat exchange barrel 91. The heating module 70 is connected to the first heat exchange barrel 91 and is connected to the outer surface of the first heat exchange barrel 91. The heating module 70 transfers heat to the storage container 20 through the first heat exchange barrel 91, ensuring uniform heating of the storage container 20 and the ice cream concentrate, thereby preventing excessive temperatures in certain areas of the storage container 20 that could cause the ice cream concentrate to burn. In this embodiment, the first heat exchange tube 91 can be made of a high-temperature resistant material with good thermal conductivity, such as steel alloy, copper alloy, etc., and the storage container 20 can be made of a food-grade material with good thermal conductivity, high temperature resistance, and stable structure, such as food-grade stainless steel, copper alloy, tempered glass, etc.

[0034] As previously mentioned, the first rotating shaft 41 extends through the bottom wall 22 of the storage container 20. Therefore, when the storage container 20 is mounted on the first heat exchange cylinder 91, the first rotating shaft 41 extends through the bottom wall 22 of the storage container 20 and then through the bottom of the first heat exchange cylinder 91. In this embodiment, when the storage container 20 is mounted on the first heat exchange cylinder 91, the bottom of the first heat exchange cylinder 91 abuts against the bottom wall 22 of the storage container 20. The heating module 70 is disposed on the outer surface of the bottom of the first heat exchange cylinder 91. When the storage container 20 is mounted on the first heat exchange cylinder 91, the storage container 20 is heated evenly. In this embodiment, the heating module 70 transfers heat from the bottom of the storage container 20 to the storage container 20, that is, the heating module 70 heats the storage container 20 from the bottom of the storage container 20, thereby evenly heating the ice cream concentrate. In this embodiment, the heating module 70 may include a heating plate or a heating tube.

[0035] In this embodiment, the food processing apparatus 100 further includes a second heat exchange barrel 92, which is mounted in the second processing area 12 and spaced apart from the first heat exchange barrel 91. The second heat exchange barrel 92 has a second access opening 921 communicating with the interior thereof. The second heat exchange barrel 92 is used to mount the storage container 20, which is detachably mounted to the second heat exchange barrel 92 via the second access opening 921. In this embodiment, when the storage container 20 is installed in the second heat exchange tube 92, the outer wall of the storage container 20 is at least partially in contact with the inner wall of the second heat exchange tube 92. At least part of the structure of the refrigeration module 60 located in the second processing area 12 is set on the outer surface of the second heat exchange tube 92. The refrigeration module 60 transfers cold energy to the storage container 20 through the second heat exchange tube 92, so that the temperature of various parts of the storage container 20 is uniformly cooled, and the temperature of various parts of the ice cream concentrate is uniformly reduced, thereby preventing the local temperature of the storage container 20 from being too low, causing the ice formed by the ice cream concentrate to adhere more tightly to the inner wall of the storage container 20.

[0036] In this embodiment, the second heat exchange tube 92 includes a barrel 922. The barrel 922 is a complete, surrounding structure in its circumferential direction. The barrel 922 has two ports in its axial direction, one of which is at least partially covered, and the other port defines a second access opening 921. In this embodiment, the first heat exchange tube 91 and the second heat exchange tube 92 are arranged side by side within the housing 10. The orientation of the first access opening 911 and the orientation of the second access opening 921 are both away from the horizontal application plane. The first access opening 911 is exposed relative to the housing 10, and the second access opening 921 is exposed relative to the housing 10. That is, the housing 10 is hollowed out to expose the first opening 23 and the second opening 23.

[0037] The refrigeration module 60 in this embodiment includes an evaporator 61, a compressor 62, and a condenser (not shown). The compressor 62 is mounted inside the housing 10, and the condenser is located inside the housing. The condenser has a flow channel inside. The evaporator 61 is located in the second processing area 12. The two ends of the evaporator 61 are connected to the compressor 62 and one end of the condenser's flow channel, respectively. The other end of the condenser's flow channel is connected to the compressor 62, thereby forming a circulating flow path. A refrigerant flows within this flow path. The refrigerant is at a low temperature when it flows through the evaporator 61. The refrigerant absorbs heat from the storage container 20 to cool the storage container 20, reaching a high temperature. The refrigerant then flows through the condenser and exchanges heat with the outside air, dissipating the heat and becoming low temperature. It then flows to the compressor 62 and is pumped back into the evaporator 61 for the next round of cooling. In this embodiment, the evaporator 61 is distributed on the outer surface of the cylinder 922. In some embodiments, the evaporator 61 can also be distributed on the outer surface of the bottom of the second heat exchange cylinder 92, increasing the contact area between the evaporator 61 and the second heat exchange cylinder 92 and improving the cooling efficiency. In other embodiments, the refrigeration module 60 may include structures such as semiconductor refrigeration fins, and the semiconductor refrigeration fins may be installed on the outer surface of the second heat exchange tube 92 .

[0038] This embodiment does not limit the number of drive mechanisms 30, and can be specifically configured according to actual circumstances. As an example, the number of drive mechanisms 30 is one, and the drive mechanism 30 is movably disposed within the housing 10. When the storage container 20 is installed in the first processing area 11, the drive mechanism 30 can be moved to the first processing area 11 and detachably connected to the wall-breaking cutter 40. When the storage container 20 is transferred to the second processing area 12, the drive mechanism 30 can be moved to the second processing area 12 and detachably connected to the wall-breaking cutter 40.

[0039] In this embodiment, there are two drive mechanisms 30. For ease of distinction, the two drive mechanisms 30 are defined as a first drive mechanism 33 and a second drive mechanism 34. The first drive mechanism 33 is installed in the first processing area 11 and is located below the first heat exchange cylinder 91. The second drive mechanism 34 is installed in the second processing area 12 and is located below the second heat exchange cylinder 92. When the storage container 20 is installed in the first processing area 11, the first rotating shaft 41 of the wall-breaking cutter 40 is sequentially inserted through the storage container 20 and the first heat exchange cylinder 91. The end of the first rotating shaft 41 extending from the storage container 20 is detachably connected to the adapter portion 31 of the first drive mechanism 33. When the storage container 20 is installed in the second processing area 12, the first rotating shaft 41 of the wall-breaking cutter 40 is sequentially inserted through the storage container 20 and the first heat exchange cylinder 92. The end of the first rotating shaft 41 extending from the storage container 20 is detachably connected to the adapter portion 31 of the second drive mechanism 34. In this embodiment, when the storage container 20 is undergoing wall-breaking processing in the first processing area 11, the wall-breaking blades 40 and the stirring blades 50, driven by the first drive mechanism 33, rotate at a relatively high speed to break up solid ingredients such as nuts and fruit in the ice cream concentrate. When the storage container 20 is undergoing condensation processing in the second processing area 12, the wall-breaking blades 40 and the stirring blades 50, driven by the second drive mechanism 34, rotate at a slower speed than that driven by the first drive mechanism 33 to stir the gradually solidified ice cream concentrate and prevent deformation of the stirring blades 50 due to excessive rotational speed. In this embodiment, the drive mechanism 30 may include a servo motor, a stepper motor, or the like.

[0040] See also Figure 4 and Figure 6 In this embodiment, the food processing device 100 further includes a mating member 80, through which the wall-breaking cutter 40 is detachably connected to the adapter portion 31 of the first drive mechanism 33 or the adapter portion 31 of the second drive mechanism 34. Specifically, the mating member 80 is disposed outside the storage container 20. One end of the first rotating shaft 41 passes through the storage container 20 and extends out of the storage container 20. This end is connected to the mating member 80 (welded, threaded, pinned, etc.). In this embodiment, the adapter portion 31 of the first drive mechanism 33 and the adapter portion 31 of the second drive mechanism 34 are roughly two identical structures, and each adapter portion 31 can be detachably connected to the wall-breaking cutter 40.

[0041] In this embodiment, the mating member 80 includes a plurality of mating keys 81, which are arranged in a circumferential manner at intervals. Correspondingly, each adapter portion 31 is provided with a plurality of mating slots 311, and the plurality of mating slots 311 of each adapter portion are arranged in a circumferential manner at intervals. The number of mating slots 311 of each adapter portion 31 is the same as the number of mating keys 81. The plurality of mating keys 81 are arranged in a one-to-one correspondence with the plurality of mating slots 311. When the mating member 80 is in a detachable transmission connection with one of the adapter portions 31, each mating key 81 of the mating member 80 is embedded in a corresponding mating slot 311. Under the arrangement of this embodiment, the mating member 80 and the adapter portion 31 can be stably transmission-connected. In other embodiments, the adapter portion 31 and the mating member 80 can be electromagnets, and by energizing and de-energizing the adapter portion 31, it becomes magnetic to attract the mating member 80.

[0042] See also Figure 5 In this embodiment, one end of the wall-breaking cutter 40 is provided through the bottom wall 22 of the storage container 20 to be transmission-connected to the adapter portion 31 of the drive mechanism 30. The other end of the wall-breaking cutter 40 is provided with a transmission portion 411, and the stirring cutter 50 is provided with a matching portion 511. The matching portion 511 and the transmission portion 411 are detachably engaged and rotationally fixed. Specifically, one end of the first rotating shaft 41 is provided through the storage container 20 and is located outside the storage container 20. The other end of the wall-breaking rotating shaft is provided with the transmission portion 411. One end of the second rotating shaft 51 is provided with a matching portion 511. The transmission portion 411 and the matching portion 511 are detachably engaged and rotationally fixed. In this embodiment, the matching portion 511 is a groove structure, and the transmission portion 411 is a pin or key structure. In other embodiments, the matching portion 511 is a pin or key structure, and the transmission portion 411 is a groove structure. Under the setting of this embodiment, the stirring blade 50 and the wall-breaking blade 40 are connected and transmission-connected by the interlocking cooperation between the transmission part 411 and the matching part 511. The connection method is relatively simple and easy to operate.

[0043] The present embodiment provides a food processing device 100, which includes a housing 10, a drive mechanism 30, a storage container 20, a wall-breaking blade 40, a stirring blade 50, and a refrigeration module 60. The housing 10 is provided with a first processing area 11 and a second processing area 12 spaced apart from each other. The drive mechanism 30 is disposed in the housing 10 and is provided with a connecting portion 31 for outputting power. The storage container 20 is detachably mounted in the first processing area 11 or the second processing area 12, and the storage container 20 has a processing cavity 21. The wall-breaking blade 40 is disposed in the processing cavity 21 and is detachably connected to the connecting portion 31 for transmission connection to the drive mechanism 30. The stirring blade 50 is disposed in the processing cavity 21 and is detachably connected to the wall-breaking blade 40 for transmission connection to the drive mechanism 30 via the wall-breaking blade 40. At least part of the structure of the refrigeration module 60 is disposed in the second processing area 12.

[0044] In this embodiment, the food processing device 100 is provided with a wall-breaking blade 40 and a stirring blade 50 within the storage container 20, enabling the food processing device 100 to perform multiple functions, including wall-breaking and stirring. This allows the solid matter in the ice cream stock to be broken up and evenly mixed with the ice cream stock, resulting in a roughly uniform taste across all portions of the formed ice cream. In this embodiment, the wall-breaking and stirring processes are performed separately, allowing the user to select whether to perform the wall-breaking process based on the specific composition of the ice cream stock, saving time.

[0045] In the specification of this application, certain words are used to refer to specific components in the specification and claims. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in name as a way to distinguish components, but use the difference in function of the components as the criterion for distinction. For example, "including" mentioned throughout the specification and claims is an open term and should be interpreted as "including but not limited to"; "substantially" means that those skilled in the art can solve the technical problem within a certain error range and basically achieve the technical effect.

[0046] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "inside", etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. They are only used to simplify the description for the convenience of describing this application, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limitations on this application.

[0047] In this application, unless otherwise expressly specified or limited, terms such as "mounted," "connected," "connect," and "fixed" should be interpreted broadly. For example, these terms may refer to fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; internal communication between two components; or mere surface contact. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0048] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification and features of different embodiments or examples without contradiction.

[0049] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of such features. Throughout the description of this application, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.

[0050] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A food processing device, characterized in that: include: a housing, wherein the housing is provided with a first processing area and a second processing area spaced apart from each other; A driving mechanism, the driving mechanism being disposed on the housing and provided with a connecting portion for outputting power; a storage container, the storage container being detachably mounted on the first processing area or the second processing area, the storage container having a processing inner cavity; a wall-breaking tool, the wall-breaking tool being arranged in the processing inner cavity and being detachably connected to the adapter portion so as to be transmission-connected to the driving mechanism; A stirring tool, which is arranged in the processing cavity and is detachably connected to the wall-breaking tool so as to be connected to the driving mechanism through the wall-breaking tool; as well as A refrigeration module, at least part of the structure of the refrigeration module is arranged in the second processing area.

2. The food processing device according to claim 1, wherein The wall-breaking tool includes a first rotating shaft and a wall-breaking blade. The first rotating shaft passes through the storage container. One end of the first rotating shaft is located outside the storage container for transmission connection with the adapter. The wall-breaking blade is arranged in the processing inner cavity and connected to the first rotating shaft.

3. The food processing device according to claim 2, wherein The storage container has an opening connected to the processing cavity and a bottom wall opposite to the opening, and the first rotating shaft is passed through the bottom wall; the food processing equipment also includes a cover body, which covers the opening, and one end of the stirring tool is rotatably mounted on the cover body, and the other end is detachably connected to the first rotating shaft to prevent rotation.

4. The food processing device according to claim 2, wherein The stirring tool comprises a second rotating shaft and a stirring blade. The second rotating shaft is arranged in the processing inner cavity. The second rotating shaft is detachably connected to the first rotating shaft in a non-rotatable manner. The stirring blade is connected to the second rotating shaft.

5. The food processing device according to any one of claims 2 to 4, characterized in that The food processing equipment further includes a first heat exchange cylinder, a second heat exchange cylinder and a heating module, wherein the first heat exchange cylinder is installed in the first processing area, and the second heat exchange cylinder is installed in the second processing area; The heating module is connected to the first heat exchange tube, the cooling module is connected to the second heat exchange tube, and the storage container is detachably mounted on the first heat exchange tube or detachably mounted on the second heat exchange tube.

6. The food processing device according to claim 5, characterized in that When the storage container is disposed in the first heat exchange tube, the first rotating shaft is passed through the bottom of the first heat exchange tube; and the heating module is installed on the outer surface of the bottom of the first heat exchange tube.

7. The food processing device according to claim 5, wherein There are two driving mechanisms, and the two driving mechanisms include a first driving mechanism and a second driving mechanism; The first driving mechanism is disposed in the first processing area. When the storage container is installed in the first processing area, the first rotating shaft passes through the storage container and the first heat exchange cylinder in sequence and is detachably connected to the adapter portion of the first driving mechanism. The second driving mechanism is arranged in the second processing area. When the storage container is installed in the second processing area, the first rotating shaft is sequentially passed through the storage container and the second heat exchange cylinder and is detachably connected to the adapter part of the second driving mechanism.

8. The food processing device according to claim 5, wherein The first heat exchange tube and the second heat exchange tube are arranged side by side inside the shell. The first heat exchange tube has a first access port connected to the interior of the first heat exchange tube, and the first access port is exposed relative to the shell. The second heat exchange tube has a second access port connected to the interior of the second heat exchange tube, and the second access port is exposed relative to the shell.

9. The food processing device according to claim 1, wherein The food processing device further comprises a matching piece, which is arranged outside the storage container and connected to the wall-breaking cutter; The mating piece includes a plurality of mating keys, which are sequentially and spaced apart and arranged around; the transition portion includes a plurality of mating grooves, which are arranged in a one-to-one correspondence with the plurality of mating keys and engaged with the plurality of mating grooves.

10. The food processing device according to claim 1, wherein One end of the wall-breaking tool is passed through the bottom wall of the storage container to be transmission-connected to the adapter part, the other end of the wall-breaking tool is provided with a transmission part, and the stirring tool is provided with a matching part, and the matching part is detachably engaged with the transmission part and is rotation-proof connected.