Flash freezing temperature regulating assembly and flash freezer

CN224801921UActive Publication Date: 2026-09-25GUANGZHOU BINGQUAN REFRIGERATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522079177.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-25
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0004]基于此,有必要针对传统技术中速冻机因内部温度与食物种类不匹配而影响食物的品质的问题,提供一种速冻温度调节组件及速冻机

Benefits of technology

[0018]另一个实施例提供了一种速冻机,所述速冻机包括如上述的速冻温度调节组件,所述速冻温度调节组件设于所述速冻机的制冷腔内。

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a quick-freezing temperature adjusting assembly and a quick-freezing machine, which comprise a mounting piece and a wind-blocking piece. The mounting piece is arranged in a refrigeration cavity of the quick-freezing machine. The wind-blocking piece is arranged on the mounting piece and is provided with a wind-blocking side. The wind-blocking side is arranged towards an air outlet of the quick-freezing machine. The wind-blocking piece can reciprocate along a first direction of the quick-freezing temperature adjusting assembly, so that the overlapping area between the wind-blocking side and the mounting piece is increased or reduced. Compared with the prior art, the quick-freezing temperature adjusting assembly adjusts the effective wind-blocking area of the wind-blocking side by moving the wind-blocking piece on the mounting piece, controls the flow of cold air output by the air outlet in the refrigeration cavity, adjusts the quick-freezing temperature of the quick-freezing machine on food, avoids the occurrence of the freezing crack phenomenon, and improves the quality of the food after quick freezing.
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Description

Technical Field

[0001] This application relates to the technical field of quick-freezing equipment, and in particular to a quick-freezing temperature control component and a quick-freezing machine. Background Technology

[0002] A quick-freezing machine is a device that rapidly freezes food. It can quickly lower the temperature of food below the temperature at which microorganisms grow, thereby significantly extending the food's shelf life while preserving its original flavor.

[0003] The optimal freezing temperature varies depending on the type of food being frozen. For example, a relatively low freezing temperature is required when freezing large-volume foods such as chicken breast. However, if the temperature is too low when freezing small-volume foods such as mung beans, the food may crack due to freezing, affecting its quality. Utility Model Content

[0004] Therefore, it is necessary to provide a quick-freezing temperature control component and a quick-freezing machine to address the problem that the quality of food is affected by the mismatch between the internal temperature and the type of food in traditional quick-freezing machines.

[0005] The technical solution is as follows:

[0006] One embodiment provides a quick-freezing temperature control assembly, comprising:

[0007] Mounting component, the mounting component being installed inside the refrigeration chamber of the quick-freezing machine;

[0008] A wind deflector is provided on the mounting component and has a wind deflector side. The wind deflector side is positioned toward the air outlet of the quick-freezing machine. The wind deflector is capable of reciprocating along a first direction of the quick-freezing temperature regulating component to increase or decrease the overlap area between the wind deflector side and the mounting component.

[0009] The aforementioned quick-freezing temperature regulating component has an mounting component installed inside the refrigeration chamber of the quick-freezing machine. A baffle is mounted on the mounting component and can reciprocate along a first direction of the quick-freezing temperature regulating component. This allows the overlap area between the baffle side and the mounting component to increase or decrease. When the overlap area increases, the effective baffle area decreases, weakening the obstruction effect of the baffle on the cold air output from the outlet. This results in a larger flow rate of cold air within the refrigeration chamber, leading to a lower quick-freezing temperature for the food. Conversely, when the overlap area decreases, the effective baffle area decreases. The increased effective windbreak area on the wind side strengthens the obstruction of cold air output from the air outlet, resulting in a smaller flow rate of cold air within the refrigeration chamber. This reduces the flow rate of cold air from the air outlet within the refrigeration chamber, leading to a higher freezing temperature for the food. Compared to traditional technologies, the aforementioned quick-freezing temperature adjustment component adjusts the effective windbreak area on the wind side by moving the windbreak component on the mounting bracket, thereby controlling the flow rate of cold air output from the air outlet within the refrigeration chamber. This adjusts the quick-freezing temperature of the food, preventing freezing cracks and improving the quality of the frozen food.

[0010] In one embodiment, the quick-freezing temperature regulating component further includes a guide member disposed on the mounting member, and the windproof member is provided with a guide engagement portion, which guides and engages with the guide member.

[0011] In one embodiment, the guide fitting portion has a strip-shaped hole that extends along the first direction, and the guide member passes through the strip-shaped hole and is capable of reciprocating along the first direction.

[0012] In one embodiment, the guide includes a bolt and a nut, the mounting member has a mounting hole, the bolt passes through the mounting hole and the slotted hole and is screwed to the nut.

[0013] In one embodiment, the guide further includes an operating part disposed on the outer side wall of the nut.

[0014] In one embodiment, at least two strip holes are provided, and the at least two strip holes are spaced apart along a second direction of the quick-freezing temperature regulating component, the second direction forming an angle with the first direction, and at least two guide members are provided and are provided in a one-to-one correspondence with the strip holes.

[0015] In one embodiment, the quick-freezing temperature regulating component further includes a grip member disposed on the windproof member.

[0016] In one embodiment, the mounting member includes a first arc-shaped plate, and the windbreak member includes a second arc-shaped plate, wherein the outer arc surface of the first arc-shaped plate is disposed toward the air outlet, and the outer arc surface of the second arc-shaped plate is the windbreak side.

[0017] In one embodiment, the mounting component further includes a first limiting portion and a second limiting portion, the first limiting portion and the second limiting portion being spaced apart on the first arc-shaped plate along a second direction of the quick-freezing temperature regulating component, the second direction forming an angle with the first direction, the first limiting portion abutting against one side of the second arc-shaped plate along the second direction, and the second limiting portion abutting against the other side of the second arc-shaped plate along the second direction.

[0018] Another embodiment provides a quick-freezing machine, the quick-freezing machine including the quick-freezing temperature regulating component as described above, the quick-freezing temperature regulating component being disposed within the refrigeration chamber of the quick-freezing machine.

[0019] In the aforementioned quick-freezing machine, the mounting component is installed within the refrigeration chamber of the quick-freezing machine. A baffle is installed on the mounting component and can reciprocate along a first direction of the quick-freezing temperature adjustment assembly. This allows the overlap area between the baffle side and the mounting component to increase or decrease. When the overlap area increases, the effective baffle area decreases, weakening the obstruction effect of the baffle on the cold air output from the outlet. This results in a larger flow rate of cold air within the refrigeration chamber, leading to a lower quick-freezing temperature for the food. Conversely, when the overlap area decreases, the effective baffle area decreases. The increased effective windbreak area on the wind side strengthens the obstruction of the cold air output from the air outlet, resulting in a smaller flow rate of cold air within the refrigeration chamber. This reduces the flow rate of cold air from the air outlet within the refrigeration chamber, leading to a higher freezing temperature for the food. Compared to traditional technologies, the aforementioned refrigeration machine adjusts the effective windbreak area on the wind side by moving the wind baffle on the mounting components, thereby controlling the flow rate of cold air from the air outlet within the refrigeration chamber. This adjusts the freezing temperature of the food, preventing cracking and improving the quality of the frozen food. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the quick-freezing temperature control component in one embodiment of this application.

[0022] Figure 2This is a front view of a quick-freezing temperature control component in one embodiment of this application.

[0023] Figure 3 This is a side view of a quick-freezing temperature control component in one embodiment of this application.

[0024] Attached image annotations:

[0025] 100. Mounting component; 110. Mounting hole; 120. First limiting part; 130. Second limiting part; 200. Windshield component; 210. Windshield side; 220. Guide mating part; 221. Strip hole; 300. Guide component; 310. Bolt; 320. Nut; 330. Operating part; 400. Grip component. Detailed Implementation

[0026] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0027] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0028] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0029] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0030] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0031] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.

[0032] Please see Figures 1 to 3 One embodiment of this application provides a quick-freezing temperature regulating component, including a mounting member 100 and a baffle member 200. The mounting member 100 is disposed in the refrigeration chamber of a quick-freezing machine. The baffle member 200 is disposed on the mounting member 100 and has a baffle side 210. The baffle side 210 is disposed toward the air outlet of the quick-freezing machine. The baffle member 200 can reciprocate along a first direction of the quick-freezing temperature regulating component to increase or decrease the overlap area between the baffle side 210 and the mounting member 100.

[0033] The aforementioned quick-freezing temperature regulating component includes a mounting member 100 installed within the refrigeration chamber of a quick-freezing machine. A baffle member 200 is mounted on the mounting member 100 and can reciprocate along a first direction of the quick-freezing temperature regulating component. This allows the overlapping area between the baffle side 210 of the baffle member 200 and the mounting member 100 to increase or decrease. When the overlapping area between the baffle side 210 and the mounting member 100 increases, the effective baffle area of ​​the baffle side 210 decreases, weakening its blocking effect on the cold air output from the air outlet. This results in a larger flow rate of cold air within the refrigeration chamber, leading to a lower quick-freezing temperature for the food. When the overlapping area between the baffle side 210 and the mounting member 100 decreases, the effective baffle area of ​​the baffle side 210 decreases, weakening its blocking effect on the cold air output from the air outlet. This results in a larger flow rate of cold air within the refrigeration chamber, thus lowering the quick-freezing temperature of the food. When the overlapping area between the two is reduced, the effective wind-blocking area of ​​the wind-blocking side 210 increases, and the blocking effect of the wind-blocking side 210 on the cold air output from the air outlet becomes stronger, resulting in a smaller flow rate of cold air flowing in the refrigeration chamber. This reduces the flow rate of cold air output from the air outlet of the quick-freezing machine in the refrigeration chamber, thereby achieving a higher quick-freezing temperature for the food. Compared with traditional technology, the above-mentioned quick-freezing temperature adjustment component adjusts the effective wind-blocking area of ​​the wind-blocking side 210 by moving the wind-blocking component 200 on the mounting component 100, thereby controlling the flow rate of cold air output from the air outlet in the refrigeration chamber, adjusting the quick-freezing temperature of the quick-freezing machine for the food, avoiding freezing cracking, and improving the quality of the food after quick-freezing.

[0034] Furthermore, in the above embodiment, the first direction forms an angle with the air outlet direction of the quick-freezing machine, so as to effectively block the cold air output from the air outlet.

[0035] As an example, the first direction is Figure 2 In the direction A.

[0036] In some embodiments, the mounting member 100 is disposed on the side wall of the refrigeration chamber. In other embodiments, the mounting member 100 may also be disposed on the top wall of the refrigeration chamber. When the wind deflector 200 moves on the mounting member 100, it can approach or move away from the top wall of the refrigeration chamber to realize the installation of the quick-freezing temperature regulating component.

[0037] For explanation, the effective windproof area of ​​the windproof side 210 refers to the area of ​​the windproof side 210 minus the area of ​​overlap between the windproof side 210 and the mounting part 100. By adjusting the effective windproof area of ​​the windproof side 210, the flow rate of cold air in the refrigeration chamber can be adjusted, thereby adjusting the quick-freezing temperature.

[0038] Please see Figures 1 to 3 In one embodiment, both the mounting member 100 and the windbreak member 200 are plate-shaped. The plate-shaped windbreak member 200 can move along the plane where the plate-shaped mounting member 100 is located to adjust the overlapping area between the two, thereby adjusting the effective windbreak area of ​​the windbreak side 210.

[0039] Please see Figures 1 to 3In one embodiment, the quick-freezing temperature regulating component further includes a guide 300, which is disposed on the mounting component 100. The wind deflector 200 is provided with a guide mating part 220, which guides and mates with the guide 300.

[0040] The windbreak 200 moves relative to the mounting part 100 through the guiding engagement between the guide member 300 and the guide mating part 220.

[0041] Furthermore, the guide member 300 can take the form of a guide rail, guide groove, etc., and the guide mating part 220 is guided and mated with the guide member 300 to move back and forth on the guide member 300, thereby realizing the reciprocating movement of the windshield member 200 along the first direction.

[0042] Furthermore, the guide fitting part 220 can be a moving block, guide wheel, etc., as long as it can guide and fit with the guide member 300 and drive the windshield member 200 to move. No specific limitation is made here.

[0043] In one embodiment, the guide member 300 extends along a first direction so that the guide mating part 220 drives the windbreak member 200 to reciprocate along the first direction.

[0044] Understandably, in other embodiments, the guide mating part 220 may take the form of a guide rail, guide groove, etc., and the guide member 300 may be a guide block, guide wheel, or other component that can guide and mate with the guide mating part 220, which will not be described in detail here.

[0045] Please see Figures 1 to 3 In one embodiment, the guide fitting part 220 has a strip hole 221, which extends along a first direction. The guide member 300 passes through the strip hole 221 and can reciprocate along the first direction.

[0046] With this configuration, the wind deflector 200 can reciprocate along the first direction under the guidance of the strip hole 221, thereby making the wind deflector 200 reciprocate relative to the mounting part 100 along the first direction. The movement process is stable and the implementation cost is low.

[0047] Please see Figures 1 to 3 In one embodiment, the guide 300 includes a bolt 310 and a nut 320, and the mounting member 100 has a mounting hole 110. The bolt 310 passes through the mounting hole 110 and the strip hole 221 and is screwed to the nut 320.

[0048] Bolt 310 passes through mounting hole 110 of mounting member 100 and through strip hole 221 of windbreak member 200. In this way, windbreak member 200 can reciprocate relative to mounting member 100 along the radial direction of strip hole 221 to adjust the effective windbreak area of ​​windbreak side 210. After adjustment, bolt 310 and nut 320 are tightened. The head of bolt 310 and nut 320 can squeeze and generate friction on mounting member 100 and windbreak member 200 to position mounting member 100 and windbreak member 200 and prevent changes in effective windbreak area.

[0049] Understandably, in some embodiments, the end of the bolt 310 away from the screw head passes through the mounting hole 110 and the slotted hole 221 in sequence, and the nut 320 is located on the side of the slotted hole 221 away from the mounting hole 110 and is used to abut against the outer periphery of the slotted hole 221; in other embodiments, the end of the bolt 310 away from the screw head passes through the slotted hole 221 and the mounting hole 110 in sequence, and the nut 320 is located on the side of the mounting hole 110 away from the slotted hole 221 and is used to abut against the outer periphery of the mounting hole 110.

[0050] exist Figures 1 to 3 In the embodiment shown, the end of the bolt 310 away from the screw head passes through the strip hole 221 and the mounting hole 110 in sequence. The mounting hole 110 is circular to position the shank of the bolt 310, thereby improving the installation stability of the bolt 310.

[0051] Optionally, the nut 320 in the above embodiments can be a hexagonal nut, a round nut, a square nut, or a wing nut, etc., and no specific limitation is made here.

[0052] Please see Figures 1 to 3 In one embodiment, the guide 300 further includes an operating part 330, which is disposed on the outer side wall of the nut 320.

[0053] With this configuration, the operator can rotate the nut 320 via the operating unit 330 to tighten or loosen the nut 320, so as to adjust the position of the windshield 200.

[0054] Further, please refer to Figures 1 to 3 The operating part 330 includes at least two operating wings, which are spaced apart along the circumference of the nut 320 on the outer side wall of the nut 320. Thus, the operator can rotate the operating part 330 by applying a thrust to the operating wings, thereby achieving a labor-saving effect.

[0055] exist Figure 3 In the embodiment shown, there are two operating wings, which are symmetrically arranged on the outer side wall of the nut 320 along the axial direction of the nut 320, so that the operator can manually operate and rotate the nut 320.

[0056] Please see Figures 1 to 3 In one embodiment, at least two strip holes 221 are provided, and the at least two strip holes 221 are spaced apart along the second direction of the quick-freezing temperature regulating component. The second direction forms an angle with the first direction. The guide member 300 is provided with at least two and is provided in a one-to-one correspondence with the strip holes 221.

[0057] The guide members 300 are inserted one-to-one through the strip holes 221. This arrangement can improve the stability of the wind deflector 200 when it moves relative to the mounting member 100, and also improve the overall strength of the quick-freezing temperature regulating component.

[0058] Furthermore, the radial directions of at least two of the strip holes 221 are parallel to the first direction, so that the radial directions of all the strip holes 221 are parallel to each other, thereby providing a more stable guiding effect for the windbreak 200.

[0059] Furthermore, the mounting holes 110 are also provided with at least two holes, which are set one-to-one with the strip holes 221.

[0060] For explanation, when the windshield 200 is a rectangular plate, the first direction is the width direction of the rectangular plate; when the windshield 200 is an arc-shaped plate, the first direction is the direction parallel to the arc of the arc-shaped plate, that is... Figure 2 In the diagram, direction A is the direction of the windshield 200, and the second direction is the length direction of the windshield 200, that is... Figure 2 In the B direction, the second direction is perpendicular to the first direction, which will not be elaborated here.

[0061] Please see Figures 1 to 3 In one embodiment, the quick-freezing temperature regulating assembly further includes a grip 400 disposed on the wind deflector 200.

[0062] The grip 400 is provided for the staff to hold, so that the staff can move the windshield 200 after holding the grip 400, thereby achieving the effect of saving effort.

[0063] Furthermore, the grip 400 is located on the side of the wind deflector 200 facing away from the wind deflector side 210, that is, on the side of the wind deflector 200 away from the air outlet of the quick-freezing machine, in order to prevent it from affecting the flow of cold air and thus affecting the quick-freezing effect on food.

[0064] Please see Figures 1 to 3 In one embodiment, the grip 400 includes a grip rod and a first connecting portion and a second connecting portion disposed on opposite sides of the grip rod. The opposite ends of the grip rod are connected to the windshield 200 through the first connecting portion and the second connecting portion, respectively. The grip rod is used for workers to grip.

[0065] Please see Figures 1 to 3In one embodiment, the grip 400 is provided with at least two grips and is spaced apart from the windshield 200 to further facilitate the movement of the windshield 200 by the staff.

[0066] Specifically, please refer to Figures 1 to 3 Two grips 400 are provided and spaced apart along the second direction on the windshield 200 to facilitate operation by the operator's hands.

[0067] Please see Figures 1 to 3 In one embodiment, the mounting member 100 includes a first arc-shaped plate, and the wind deflector 200 includes a second arc-shaped plate. The outer arc surface of the first arc-shaped plate is arranged facing the air outlet, and the outer arc surface of the second arc-shaped plate is the wind deflector side 210.

[0068] The outer arc surfaces of the first and second arc plates are both oriented towards the air outlet. The shapes of the first and second arc plates can reduce the resistance to the cold air produced by the air outlet, thereby reducing the energy consumption of the air outlet. In addition, they can also make the cold air converge into a stable airflow when it comes into contact with the first and second arc plates, thereby forming a guiding effect, which allows the cold air to blow on the food at a specific angle and improve the quick-freezing effect.

[0069] Further, please refer to Figures 1 to 3 The first and second arc-shaped plates combine to form a complete arc-shaped structural plate, which can reduce the resistance to the cold air produced by the air outlet, thereby improving the quick-freezing effect.

[0070] Furthermore, since both the first and second arc-shaped plates are arc-shaped structures, when the second arc-shaped plate moves relative to the first arc-shaped plate, the direction of the cold air will also change. This allows the quick-freezing temperature control component to adjust the air supply angle, thereby solving the problem of freezing dead corners in the corners or stacked areas of the quick-freezing chamber and reducing batch-to-batch quality differences.

[0071] For illustrative purposes, in the above embodiments, the outer arc surface of the first arc plate refers to the convex surface of the first arc plate. Similarly, the outer arc surface of the second arc plate also refers to the convex surface of the second arc plate, which will not be elaborated further here.

[0072] Please see Figures 1 to 3 In one embodiment, the mounting component 100 further includes a first limiting portion 120 and a second limiting portion 130. The first limiting portion 120 and the second limiting portion 130 are spaced apart on the first arc-shaped plate along the second direction of the quick-freezing temperature regulating component. The second direction forms an angle with the first direction. The first limiting portion 120 abuts against one side of the second arc-shaped plate along the second direction, and the second limiting portion 130 abuts against the other side of the second arc-shaped plate along the second direction.

[0073] The first limiting part 120 and the second limiting part 130 can respectively limit the relative sides of the second arc plate along the second direction to restrict the movement of the windbreak 200 along the second direction, thereby improving the installation strength and reliability of the quick-freezing temperature regulating component.

[0074] Further, please refer to Figures 1 to 3 In one embodiment, the first limiting part 120 includes a first limiting protrusion, and the second limiting part 130 includes a second limiting protrusion. The first limiting protrusion and the second limiting protrusion are respectively disposed on opposite sides of the first arc-shaped plate along the second direction, and both the first limiting protrusion and the second limiting protrusion protrude toward the side away from the air outlet and extend along the first direction to limit the second arc-shaped plate.

[0075] In one embodiment, the first direction is the width direction of the windbreak 200, and the second direction is the length direction of the windbreak 200. The second direction is perpendicular to the first direction, which will not be elaborated here.

[0076] Another embodiment provides a quick-freezing machine, which includes a quick-freezing temperature regulating component as described above, the quick-freezing temperature regulating component being disposed within the refrigeration chamber of the quick-freezing machine.

[0077] In the aforementioned quick-freezing machine, the mounting component 100 is installed inside the refrigeration chamber of the quick-freezing machine. The baffle 200 is installed on the mounting component 100 and can reciprocate along a first direction of the quick-freezing temperature regulating component. This allows the overlap area between the baffle side 210 of the baffle 200 and the mounting component 100 to increase or decrease. Thus, when the overlap area between the baffle side 210 and the mounting component 100 increases, the effective baffle area of ​​the baffle side 210 decreases, and the blocking effect of the baffle side 210 on the cold air output from the air outlet weakens, resulting in a larger flow rate of cold air within the refrigeration chamber, thereby lowering the quick-freezing temperature of the food. When the overlap area between the baffle side 210 and the mounting component 100 decreases, the effective baffle area of ​​the baffle side 210 decreases, and the blocking effect of the baffle side 210 on the cold air output from the air outlet weakens, resulting in a larger flow rate of cold air within the refrigeration chamber, and consequently, a lower quick-freezing temperature for the food. When the overlapping area between the two is reduced, the effective wind-blocking area of ​​the wind-blocking side 210 increases, and the blocking effect of the wind-blocking side 210 on the cold air output from the air outlet becomes stronger, resulting in a smaller flow rate of cold air in the refrigeration chamber. This reduces the flow rate of cold air output from the air outlet of the quick-freezing machine in the refrigeration chamber, thereby achieving a higher quick-freezing temperature for the food. Compared with traditional technology, the above-mentioned quick-freezing machine adjusts the effective wind-blocking area of ​​the wind-blocking side 210 by moving the wind-blocking component 200 on the mounting component 100, thereby controlling the flow rate of cold air output from the air outlet in the refrigeration chamber, adjusting the quick-freezing temperature of the food, preventing freezing cracks, and improving the quality of the food after quick-freezing.

[0078] The aforementioned quick-freezing machine uses a quick-freezing temperature regulation component to adjust the airflow of cold air, enabling the machine to be adjusted to the optimal quick-freezing temperature for different ingredients such as meat, seafood, fruits, and vegetables. This reduces ice crystal formation, preserves cell structure, and maintains taste, nutrition, and appearance. The same quick-freezing machine can process products of different specifications without the need for additional investment in other quick-freezing equipment, thereby improving production line utilization.

[0079] In addition, for sensitive ingredients such as berries or leafy vegetables, the airflow of cold air is adjusted by the quick-freezing temperature control component to reduce surface moisture evaporation or damage, and to prevent freezing spots or drying.

[0080] Furthermore, by adjusting the airflow of the cold air using the quick-freezing temperature control component, frequent start-stop of the compressor can be avoided, extending the life of the quick-freezing machine and reducing energy consumption.

[0081] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0082] The above embodiments merely illustrate several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A quick-freezing temperature control component, characterized in that, include: Mounting component, the mounting component being installed inside the refrigeration chamber of the quick-freezing machine; A wind deflector is provided on the mounting component and has a wind deflector side. The wind deflector side is positioned toward the air outlet of the quick-freezing machine. The wind deflector is capable of reciprocating along a first direction of the quick-freezing temperature regulating component to increase or decrease the overlap area between the wind deflector side and the mounting component.

2. The quick-freezing temperature regulating component according to claim 1, characterized in that, The quick-freezing temperature regulating component also includes a guide member, which is disposed on the mounting component. The windproof component is provided with a guide mating part, which guides and mates with the guide member.

3. The quick-freezing temperature regulating component according to claim 2, characterized in that, The guide fitting part has a strip-shaped hole that extends along the first direction. The guide member passes through the strip-shaped hole and can reciprocate along the first direction.

4. The quick-freezing temperature regulating component according to claim 3, characterized in that, The guide component includes a bolt and a nut. The mounting component has a mounting hole. The bolt passes through the mounting hole and the strip hole and is screwed to the nut.

5. The quick-freezing temperature regulating component according to claim 4, characterized in that, The guide also includes an operating part, which is located on the outer side wall of the nut.

6. The quick-freezing temperature regulating component according to claim 3, characterized in that, The strip-shaped holes are provided in at least two, and the at least two strip-shaped holes are arranged at intervals along the second direction of the quick-freezing temperature regulating component. The second direction forms an angle with the first direction. The guide members are provided in at least two and are arranged in a one-to-one correspondence with the strip-shaped holes.

7. The quick-freezing temperature regulating component according to claim 1, characterized in that, The quick-freezing temperature regulating component also includes a grip, which is disposed on the windproof component.

8. The quick-freezing temperature regulating component according to claim 1, characterized in that, The mounting component includes a first arc-shaped plate, and the windproof component includes a second arc-shaped plate. The outer arc surface of the first arc-shaped plate is arranged facing the air outlet, and the outer arc surface of the second arc-shaped plate is the windproof side.

9. The quick-freezing temperature regulating component according to claim 8, characterized in that, The mounting component further includes a first limiting part and a second limiting part, which are spaced apart on the first arc-shaped plate along the second direction of the quick-freezing temperature regulating component. The second direction forms an angle with the first direction. The first limiting part abuts against one side of the second arc-shaped plate along the second direction, and the second limiting part abuts against the other side of the second arc-shaped plate along the second direction.

10. A quick-freezing machine, characterized in that, The quick-freezing machine includes a quick-freezing temperature regulating component as described in any one of claims 1-9, wherein the quick-freezing temperature regulating component is disposed within the refrigeration chamber of the quick-freezing machine.