A type of ice cream machine
By integrating the ice-making pan and popsicle-making components into one unit, and combining elastic protrusions and a sealed design, the problem of limited functionality and inconvenient cold release judgment in existing ice-making machines is solved, enabling the multi-functional production of a variety of cold drinks and efficient cooling effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN MIQI ELECTRIC APPLIANCE CO LTD
- Filing Date
- 2025-07-17
- Publication Date
- 2026-06-30
AI Technical Summary
Existing non-electric ice cream makers have limited functionality and cannot make popsicles. Furthermore, the release of cold liquid depends on time, which lacks convenience and accuracy.
The ice-making pan and popsicle-making components are integrated into the same body. The combination of elastic protrusions and sealing design ensures stable heat exchange between the cold storage liquid and the ice-making pan. The popsicles are shaped with the help of ice molds, providing a popsicle-making function.
It expands the functionality of the ice cream machine, enabling the diversified production of various cold drinks, improving user experience and equipment efficiency, and avoiding the inconvenience and cost waste of purchasing multiple pieces of equipment.
Smart Images

Figure CN224434773U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of food refrigeration and processing, specifically to a fried ice machine. Background Technology
[0002] The non-electric ice cream maker mainly consists of an ice cream pan and a cooling liquid. The ice cream pan is used to hold ingredients such as yogurt and chocolate chips. The cooling liquid below the ice cream pan cools the surface of the pan rapidly through efficient heat exchange, causing the ingredients to solidify. Users can continuously stir the ingredients on the ice cream pan during the heat exchange process, allowing the yogurt and chocolate chips to mix and solidify into delicate frozen blocks. It can make flavorful cold drinks and desserts without electricity.
[0003] This ice cream maker has only one function and cannot be used to make popsicles. In addition, the cold storage liquid is placed in the refrigerator to absorb the cold energy of the refrigerator and then release the cold energy to the ice cream maker, but the user can only judge whether the cold storage liquid has absorbed enough cold energy by time. Utility Model Content
[0004] This utility model proposes a stir-fried ice machine that integrates the stir-fried ice plate and popsicle making components into the same body, greatly expanding the functionality of the stir-fried ice machine.
[0005] A stir-fried ice machine designed for this purpose includes a main body and also includes:
[0006] A frying pan, used to hold raw materials, is fixedly mounted on the machine body;
[0007] A cold storage liquid, which is encapsulated inside the machine body and used to absorb heat and conduct low temperature to the ice-frying pan, so as to achieve solidification and stir-frying of raw materials on the ice-frying pan;
[0008] Popsicle making components, the popsicle making components including an ice mold for shaping popsicles;
[0009] The ice-making tray and popsicle-making components are integrated and set on the same machine body.
[0010] The ice-frying pan has a recessed area for forming a frying zone. The ice-frying pan also has a support block spaced apart from the recessed area. The support block has a cavity that extends downward along the lower part of the support block and forms an ice mold that is in contact with the cold storage liquid.
[0011] The machine body is provided with a fixed plate, and the fixed plate is provided with a container for holding and installing the coolant. The bottom wall of the container is provided with an elastic protrusion that acts on the coolant. When the coolant freezes, it acts on the elastic protrusion to prevent the container from bulging or deforming.
[0012] The elastic protrusions are arranged in an undulating manner on the bottom wall of the receiving groove, and there are two or more elastic protrusions arranged at intervals between each other on the bottom wall of the receiving groove.
[0013] The ice-frying pan is fixed on the top of the fixed plate, and a sealing element is provided at the mating point between the ice-frying pan and the fixed plate; a sealing groove for installing the sealing element is provided on the top of the fixed plate, the ice-frying pan covers the opening of the receiving groove of the fixed plate, and the ice-frying pan is sealed to the fixed plate through the sealing element, so that the cold storage liquid is placed in a sealed space.
[0014] The fixed plate has a connecting edge portion that is fixedly connected to the ice-frying plate. The ice-frying plate has a decorative piece for covering the fixed connection between the fixed plate and the ice-frying plate. The fixed plate has fasteners that pass through the connecting edge portion and the decorative piece from bottom to top, so that the decorative piece and the ice-frying plate are both fixedly connected to the connecting edge portion of the fixed plate.
[0015] The ice-frying pan has a clearance notch for the corresponding fastener.
[0016] The machine body is provided with a receiving compartment for accommodating the mounting plate, and a deformation gap is provided between the bottom wall of the receiving compartment and the outer side of the bottom of the mounting plate for elastic protrusion deformation.
[0017] The bottom wall of the container is provided with a drain hole for draining condensate.
[0018] The popsicle making assembly also includes a material rod inserted into the ice mold. The material rod is provided with a material removal sleeve for assisting in the demolding of the formed popsicle. The material removal sleeve is sleeved on the outside of the material rod and is threadedly connected to the material rod.
[0019] The material taking sleeve has a cavity for cooperating with the material bar, and the cavity extends through the material taking sleeve from top to bottom. The material taking sleeve has a protective outer layer on the outer side of the cavity.
[0020] The beneficial technical effects of this utility model are as follows:
[0021] This stir-fried ice machine integrates the stir-fried ice pan and popsicle making components into a single unit, greatly expanding its functionality. Users can not only create various textured stir-fried ices using the pan—such as mixing yogurt and chocolate chips to create smooth frozen chunks—but also make popsicles using the ice molds in the popsicle making component. This multi-functional integrated design meets diverse cold drink preparation needs, providing a more convenient and comprehensive solution. It effectively enhances the equipment's value and user experience, avoiding the inconvenience and cost waste of previously requiring separate equipment for various cold drink preparation methods. Attached Figure Description
[0022] Figure 1 This is a three-dimensional cross-sectional structural diagram of an embodiment of the ice cream maker of this utility model.
[0023] Figure 2 for Figure 1 Enlarged view of point A in the middle.
[0024] Figure 3 for Figure 1 Enlarged view of section B in the middle.
[0025] Figure 4 This is a three-dimensional cross-sectional structural diagram of another embodiment of the ice cream maker of this utility model.
[0026] Figure 5 This is a schematic diagram showing the assembly and disassembly structure of an ice-frying machine according to an embodiment of the present invention. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. In order to make the above-mentioned objects, features and advantages of the present application more apparent and understandable, many specific details are set forth in the following description in order to provide a full understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.
[0028] See Figures 1-5 A type of ice cream maker, including a body 1, and further including:
[0029] Ice-frying tray 2, which is used to hold raw materials and is fixedly installed on the machine body 1;
[0030] Cooling liquid 3, which is encapsulated inside the body 1 and used to absorb heat and conduct low temperature to the ice-frying pan 2, so as to achieve solidification and stir-frying of raw materials on the ice-frying pan 2;
[0031] Popsicle making component 4, the popsicle making component 4 including ice mold 5 for shaping popsicles;
[0032] The ice-frying plate 2 and the popsicle making component 4 are integrated and set on the same body 1.
[0033] The stir-fried ice machine in this technical solution integrates the stir-fried ice tray 2 and the popsicle making component 4 onto the same machine body 1, greatly expanding the machine's functionality. Users can not only use the stir-fried ice tray 2 to create various textured stir-fried ice, such as mixing and stirring yogurt and chocolate chips to create delicate frozen blocks, but also use the ice mold 5 in the popsicle making component 4 to make popsicles. This multi-functional integrated design meets users' diverse needs for making cold drinks, providing a more convenient and comprehensive solution, effectively enhancing the equipment's value and user experience, and avoiding the inconvenience and cost waste of previously requiring the purchase of multiple devices to make various cold drinks.
[0034] The ice-frying pan 2 is provided with a recess 6 forming a frying area. The ice-frying pan 2 is also provided with a support block 7 spaced apart from the recess 6. The support block 7 is provided with a cavity 8. The cavity 8 extends downward along the lower part of the support block 7 and forms an ice mold 5 in contact with the cold storage liquid 3.
[0035] The recess 6 on the ice-frying pan 2 forms a stirring zone, providing reasonable space for stirring the ingredients and helping users to operate the ingredients more conveniently and efficiently. A cavity 8 is provided on the support block 7, spaced apart from the recess 6. The cavity 8 extends downwards along the lower part of the support block 7 and forms an ice mold 5 that contacts the cold storage liquid 3. When ice pop ingredients are placed in the ice mold 5 of the popsicle making component 4, and the ice-frying machine and popsicle making component 4 are placed in the refrigerator, the freezing of the ice pop ingredients in the ice mold 5 helps to inform the user that the cold storage liquid 3 in the ice-frying machine has absorbed enough cold. The user does not need to rely on the time the ice-frying machine is placed in the refrigerator to judge whether the cold storage liquid 3 has absorbed enough cold. The ice mold 5 and the recess 6 are spaced apart, and the ice mold 5 and the recess 6 forming the stirring zone will not interfere with each other.
[0036] The body 1 is provided with a fixed plate 9, and the fixed plate 9 is provided with a receiving tank 10 for accommodating and installing the cold storage liquid 3. The bottom wall of the receiving tank 10 is provided with an elastic protrusion 11 that acts on the cold storage liquid 3. The cold storage liquid 3 continuously contacts the ice frying pan 2 through the elastic protrusion 11, effectively maintaining a stable heat exchange state between the cold storage liquid 3 and the ice frying pan 2, so that the cold storage liquid 3 can effectively absorb heat and conduct low temperature to the ice frying pan 2.
[0037] The elastic protrusions 11 are undulatingly arranged on the bottom wall of the receiving tank 10, and there are two or more elastic protrusions 11 arranged at intervals between each other on the bottom wall of the receiving tank 10. When the coolant 3 freezes, it acts on the elastic protrusions 11 to prevent the receiving tank 3 from bulging or deforming.
[0038] The undulating elastic protrusions 11 can provide support and elastic force to the coolant 3 at different positions, making the contact between the coolant 3 and the ice-frying pan 2 more comprehensive and tight, and improving the heat exchange efficiency between the coolant 3 and the ice-frying pan 2.
[0039] The material of the ice frying plate 2 is metal.
[0040] The ice-frying pan 2 is fixed on the top of the fixed plate 9, and a sealing element 12 is provided at the mating point between the ice-frying pan 2 and the fixed plate 9; a sealing groove 13 for installing the sealing element 12 is provided on the top of the fixed plate 9, the ice-frying pan 2 covers the opening of the receiving groove 10 of the fixed plate 9, and the ice-frying pan 2 is sealed to the fixed plate 9 through the sealing element 12, so that the cold storage liquid 3 is placed in a sealed space.
[0041] The coolant 3 is placed in a sealed space, which reduces the intrusion of external heat into the fixed plate 9 and improves the cooling efficiency of the coolant 3 on the ice frying pan 2. This allows the ice frying pan 2 to effectively exchange heat with the coolant 3 that absorbs cold energy. The sealed environment also reduces the loss of cold energy in the coolant 3 to the outside, ensuring that the cold energy released by the coolant 3 can be effectively transferred to the ice frying pan 2.
[0042] The top of the fixed plate 9 is provided with a ring-shaped sealing groove 13 that surrounds the opening of the receiving groove 10. The ice frying plate 2 covers the opening of the sealing groove 13 and the receiving groove 10. The ice frying plate 2 is fixedly connected to the fixed plate 9 by screws.
[0043] The fixed plate 9 is provided with a connecting edge portion 19 that is fixedly connected to the ice frying plate 2. The ice frying plate 2 is provided with a decorative piece 20 for covering the fixed connection between the fixed plate 9 and the ice frying plate 2. The fixed plate 9 is provided with a fastener 21 that passes through the connecting edge portion 19 and the decorative piece 20 from bottom to top, so that the decorative piece 20 and the ice frying plate 2 are both fixedly connected to the connecting edge portion 19 of the fixed plate 9.
[0044] The ice-frying plate 2 has an avoidance notch 22 on the corresponding fastener 21.
[0045] A sealing groove 13 is provided on the connecting edge 19, and the top of the ice frying pan 2 is fixedly connected to the connecting edge 19 by a first screw. The decorative part 20 is provided with a connecting post passing through the clearance notch 22, and the connecting edge 19 is provided with a connecting hole. The connecting post and the connecting hole are fixedly connected by a fastener, which is a second screw. The first screw is inserted into the ice frying pan 2 and the connecting edge 19 from top to bottom. After the decorative part 20 covers the first screw, the second screw is inserted into the connecting edge 19 and the decorative part 20 from bottom to top. In this way, the user will not see the screw on the decorative part 20, and the ice frying machine looks beautiful.
[0046] The body 1 is provided with a receiving compartment 14 for accommodating the mounting plate 9. A deformation gap 15 is provided between the bottom wall of the receiving compartment 14 and the outer side of the bottom of the mounting plate 9 for the elastic protrusion 11 to deform.
[0047] After the coolant in the storage liquid 3 absorbs the cold energy, its expansion rate is small, but it will still squeeze the elastic protrusion 11. Therefore, the deformation gap 15 provides appropriate deformation space for the elastic protrusion 11.
[0048] The inner bottom wall of the receiving chamber 14 is provided with a drain hole 16 for draining condensate. During the heat exchange process of the external cold storage liquid 3, the fixed plate 9 generates condensate, which is discharged outside the receiving chamber 14 through the drain hole 16 to prevent water accumulation inside the receiving chamber 14.
[0049] The cold storage liquid 3 is placed in the refrigerator, where it efficiently absorbs and stores the cold energy. When used in a frying ice machine, it quickly transfers the stored cold energy to the frying ice tray 2, rapidly cooling it and causing the ingredients on the tray to solidify quickly. This encapsulated form of cold storage liquid 3 offers advantages such as large cold storage capacity, fast cooling speed, and reusability, providing a stable and reliable cooling source for the frying ice machine, meeting users' needs for quickly making cold drinks, and reducing operating costs.
[0050] The popsicle making component 4 also includes a material rod 17 inserted into the ice mold 5. The material rod 17 is provided with a material taking sleeve 18 for assisting in demolding the formed popsicle. The material taking sleeve 18 is sleeved on the outside of the material rod 17 and is threadedly connected to the material rod 17.
[0051] After the popsicle solidifies inside the ice mold 5, the take-up sleeve 18 is fitted onto the outside of the material rod 17, and the take-up sleeve 18 is threadedly connected to the outside of the material rod 17. The take-up sleeve 18 rotates and moves downwards along the material rod 17, at which point its bottom contacts the open end face of the ice mold 5. When the user rotates the take-up sleeve 18, because it is blocked by the end face of the ice mold 5 and cannot move synchronously with the rotation, the threaded connection forces the material rod 17 to move upwards along the thread in a linear axial direction. This gradually overcomes the adhesion between the popsicle and the inner wall of the ice mold 5, ultimately causing the popsicle to smoothly detach from the ice mold 5. This design, relying solely on the axial movement of the take-up sleeve 18 along the material rod 17, effectively avoids damage to the popsicle and facilitates demolding.
[0052] The material taking sleeve 18 has a cavity 23 for cooperating with the material rod 17. The cavity 23 passes through the material taking sleeve 18 from top to bottom. The outer side of the material taking sleeve 18 corresponding to the cavity 23 is provided with a protective outer layer 24. The protective outer layer 24 can protect the human hand and the human hand can grasp the protective outer layer 24.
[0053] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A stir-fried ice machine, comprising a body (1), characterized in that, Also includes: The ice-frying tray (2) is used to hold raw materials and is fixedly installed on the machine body (1); The cold storage liquid (3) is encapsulated in the body (1) and used to absorb heat and conduct low temperature on the ice-frying pan (2) so as to achieve solidification and stir-frying of raw materials on the ice-frying pan (2); Popsicle making component (4), the popsicle making component (4) includes an ice mold (5) for shaping popsicles; The ice frying plate (2) and the popsicle making component (4) are integrated and set on the same body (1).
2. The ice cream maker according to claim 1, characterized in that: The ice frying pan (2) is provided with a recess (6) forming a frying area. The ice frying pan (2) is also provided with a support block (7) spaced apart from the recess (6). The support block (7) is provided with a cavity (8). The cavity (8) extends downward along the lower part of the support block (7) and forms an ice mold (5) in contact with the cold storage liquid (3).
3. The ice cream maker according to claim 1, characterized in that: The body (1) is provided with a fixed plate (9), and the fixed plate (9) is provided with a accommodating tank (10) for accommodating and installing the coolant (3). The bottom wall of the accommodating tank (10) is provided with an elastic protrusion (11) that acts on the coolant (3). When the coolant (3) freezes, it acts on the elastic protrusion (11) to prevent the accommodating tank (3) from bulging or deforming.
4. The ice cream maker according to claim 3, characterized in that: The elastic protrusions (11) are arranged in an undulating manner on the bottom wall of the receiving groove (10), and there are two or more elastic protrusions (11) arranged in a front-to-back interval on the bottom wall of the receiving groove (10).
5. The ice cream maker according to claim 3, characterized in that: The ice-frying pan (2) is fixed on the top of the fixed plate (9), and a sealing element (12) is provided at the mating point between the ice-frying pan (2) and the fixed plate (9); a sealing groove (13) for installing the sealing element (12) is provided on the top of the fixed plate (9), the ice-frying pan (2) covers the opening of the receiving groove (10) of the fixed plate (9), and the ice-frying pan (2) is sealed to the fixed plate (9) through the sealing element (12) so that the cold storage liquid (3) is placed in a sealed space.
6. The ice cream maker according to claim 5, characterized in that: The fixed plate (9) is provided with a connecting edge (19) that is fixedly connected to the ice frying pan (2). The ice frying pan (2) is provided with a decorative piece (20) for covering the fixed connection between the fixed plate (9) and the ice frying pan (2). The fixed plate (9) is provided with a fastener (21) that passes through the connecting edge (19) and the decorative piece (20) from bottom to top, so that the decorative piece (20) and the ice frying pan (2) are both fixedly connected to the connecting edge (19) of the fixed plate (9). The ice-frying plate (2) has a clearance notch (22) for the corresponding fastener (21).
7. The ice cream maker according to claim 3, characterized in that: The body (1) is provided with a receiving compartment (14) for accommodating the mounting plate (9). A deformation gap (15) for the elastic protrusion (11) to deform is provided between the bottom wall of the receiving compartment (14) and the outer side of the bottom of the mounting plate (9).
8. The ice cream maker according to claim 7, characterized in that: The bottom wall of the container (14) is provided with a drain hole (16) for draining condensate.
9. The ice cream maker according to claim 1, characterized in that: The popsicle making component (4) also includes a material rod (17) inserted into the ice mold (5). The material rod (17) is provided with a material taking sleeve (18) for assisting in demolding the formed popsicle. The material taking sleeve (18) is sleeved on the outside of the material rod (17) and is threadedly connected to the material rod (17).
10. The ice cream maker according to claim 9, characterized in that: The material taking sleeve (18) has a cavity (23) for cooperating with the material bar (17). The cavity (23) passes through the material taking sleeve (18) from top to bottom. The material taking sleeve (18) has a protective outer layer (24) on the outside of the cavity (23).