Side cover plate structure of ice cotton machine and ice cotton machine
By adopting the same side cover design and snap-fit connection in the ice cotton machine, the problem of complex assembly of the shell components was solved, achieving efficient and reliable assembly and production, and improving the overall performance and aesthetics of the equipment.
Patent Information
- Application Number
- CN202520445009.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-13
AI Technical Summary
The existing ice cotton machine has a complex assembly structure for its shell components. The different designs of the left and right side cover plates result in high mold development costs, low production efficiency, high assembly complexity, and poor reliability.
The first and second side covers are designed with the same structure, making them completely interchangeable. The snap-fit design of the connecting part and the adapter hole ensures a secure connection and simplifies the assembly process.
It improves assembly flexibility and reliability, reduces the number of molds and production costs, simplifies the assembly process, enhances the overall strength and stability of the equipment, and improves aesthetics and user experience.
Smart Images

Figure CN223913382U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ice cream machine technology, and in particular to an ice cream machine side cover structure and an ice cream machine. Background Technology
[0002] In existing ice cream making machines, the assembly structure of the shell components is often quite complex, especially the side cover plates, which frequently differ in design. This design presents several problems in actual production and use. First, because the left and right side cover plates have different structures, two different molds need to be made during production, which not only increases mold development costs but also reduces production efficiency. Second, during equipment assembly and maintenance, operators need to strictly distinguish between the left and right side cover plates, increasing assembly complexity and affecting the equipment's installation efficiency and reliability. Utility Model Content
[0003] Therefore, it is necessary to provide a side cover structure for an ice-sponge machine and an ice-sponge machine to address the problem of complex assembly structure of the ice-sponge machine housing components.
[0004] A side cover structure for an ice cream machine includes: a frame with a first adapter hole and a second adapter hole, the first adapter hole and the second adapter hole being located on opposite sides of the frame; a first side cover, disposed on the frame and located on one side of the frame, the first side cover having a first connecting portion; and a second side cover, disposed on the frame and located on the side of the frame away from the first side cover, the second side cover having a second connecting portion, the structure of the second side cover being the same as that of the first side cover; when the first side cover is located on the side where the first adapter hole is located, the first connecting portion is adapted to the first adapter hole, and the second connecting portion is adapted to the second adapter hole; when the first side cover is located on the side where the second adapter hole is located, the first connecting portion is adapted to the second adapter hole, and the second connecting portion is adapted to the first adapter hole.
[0005] The first aspect of this application discloses a side cover structure for an ice cream machine. By adopting the same structural design for both the first and second side covers, they are completely interchangeable, eliminating the need to distinguish between left and right sides. This significantly improves assembly flexibility and simplifies the assembly process. More specifically, both the first and second connecting parts can be adapted to either the first or second adapter hole. This design not only ensures the complete interchangeability of the first and second side covers but also achieves a reliable connection between the side covers and the frame, guaranteeing the stability of the side covers and thus improving the overall strength and stability of the ice cream machine structure. Furthermore, since the first and second side covers have the same structure, only one side cover structure needs to be manufactured during mold making, reducing the number of molds and manufacturing costs while improving production efficiency. Simultaneously, this design further reduces material management costs and resource waste. The identical structural design also ensures consistency in appearance and function between the left and right sides of the equipment, enhancing the overall aesthetics of the product and the user experience.
[0006] In one embodiment, the first connecting portion or the second connecting portion engages with the edge of the first adapter hole, and vice versa. This engagement design ensures a secure connection between the first and second side covers and the frame. This engagement effectively prevents the side covers from loosening or falling off during equipment operation, thereby improving the overall reliability of the equipment. Since the first and second side covers have identical structures, operators do not need to distinguish between the left and right side covers during assembly. Furthermore, the engagement design between the first and second connecting portions and the adapter holes makes disassembly and installation more convenient during equipment maintenance or side cover replacement, allowing maintenance personnel to complete the operation without tools, thus reducing maintenance difficulty.
[0007] In one embodiment, the orientation of the first connecting portion relative to the frame is opposite to the orientation of the second connecting portion relative to the frame. This opposite orientation ensures a clear installation direction for the first and second side covers during assembly, improving assembly efficiency. Simultaneously, it ensures consistency in the connection structures on both sides of the equipment, avoiding uneven stress or structural imbalance caused by different connection methods, thus enhancing the overall reliability of the equipment. Furthermore, the opposite orientation design of the first and second connecting portions ensures symmetry and consistency in the appearance of the left and right sides of the equipment when the first and second side covers are assembled on the frame, improving the overall aesthetics of the product.
[0008] In one embodiment, the first adapter hole and the second adapter hole are staggered on the same horizontal cross-section. This staggered distribution of the first and second adapter holes on the same horizontal cross-section ensures that when the structurally consistent first and second side cover plates are assembled on the frame, the appearance symmetry and consistency of the left and right sides of the equipment are guaranteed, improving the overall reliability and aesthetics of the product.
[0009] In one embodiment, the first side cover includes a first side cover body and a first connecting portion, the first connecting portion being disposed on the first side cover body and detachably connected to the frame; the second side cover includes a second side cover body and a second connecting portion, the second connecting portion being disposed on the second side cover body and detachably connected to the frame. The detachable connection of the first connecting portion to the frame makes the installation and disassembly of the first side cover to the frame more flexible and convenient, improving maintenance convenience. The detachable connection of the second connecting portion to the frame makes it easier to disassemble and replace the second side cover to the frame. The first and second side covers have identical structures and are interchangeable, further simplifying the equipment assembly process and improving assembly efficiency.
[0010] In one embodiment, the first side cover body has a first adapting opening that adapts to at least a portion of the frame, and the first connecting portion is located at the end of the first side cover body away from the first adapting opening. By providing the first adapting opening and adapting it to at least a portion of the frame, precise alignment and rapid assembly between the first side cover and the frame are ensured, reducing assembly difficulty. The first connecting portion being located at the end of the first side cover body away from the first adapting opening distributes the stress at the connection point, enhancing the overall reliability of the equipment.
[0011] In one embodiment, the first side cover body forms an arc-shaped transition portion, and the first connecting portion is located at the arc-shaped transition portion. The arc-shaped transition portion of the first side cover body makes the connection between the first side cover and the frame smoother and more natural, enhancing the aesthetic appearance of the equipment. The location of the first connecting portion at the arc-shaped transition portion disperses the stress at the connection point, making the connection between the first side cover and the frame more stable and enhancing the overall reliability of the equipment.
[0012] In one embodiment, a control component is further included. The control component comprises a control component body, a first mounting portion, and a second mounting portion. The first mounting portion and the second mounting portion are respectively disposed on the control component body, located on opposite sides of the control component body. The first mounting portion and the second mounting portion are respectively connected to the first side cover plate and the second side cover plate, or respectively connected to the second side cover plate and the first side cover plate. Because the first and second side cover plates have identical structures, they can be used interchangeably. Therefore, the first and second mounting portions of the control component can be flexibly connected to either side cover plate, simplifying the installation process and reducing assembly difficulty. The connection between the control component and the first and second side cover plates enhances the overall structural strength and stability of the equipment. Furthermore, the detachable connection method facilitates maintenance and replacement of the control component, extending the service life of the equipment.
[0013] In one embodiment, the first side cover plate has a first mounting hole and a second mounting hole, which are located on opposite sides of the first side cover plate. The second side cover plate has a third mounting hole and a fourth mounting hole, which are also located on opposite sides of the second side cover plate. The first mounting portion and the second mounting portion are adapted to the first mounting hole and the fourth mounting hole, respectively, or the first mounting portion and the second mounting portion are adapted to the third mounting hole and the second mounting hole, respectively. By adapting the first mounting portion and the second mounting portion to the first mounting hole and the fourth mounting hole, or to the third mounting hole and the second mounting hole, a reliable connection between the control component and the first and second side cover plates is achieved, ensuring the stability of the control component connection. Furthermore, regardless of how the first and second side cover plates are installed, the control component can be correctly installed by combining different mounting holes, improving the flexibility of the control component installation, further simplifying the installation process, and reducing assembly difficulty.
[0014] In one embodiment, a rear cover plate is also included. The rear cover plate has a first connecting hole and a second connecting hole. The first side cover plate has a third connecting hole and a fourth connecting hole. The second side cover plate has a fifth connecting hole and a sixth connecting hole. The first and second connecting holes are respectively positioned opposite to the third and sixth connecting holes, or respectively opposite to the fifth and fourth connecting holes. By allowing the first and second connecting holes to be positioned opposite to the third and sixth connecting holes, or opposite to the fifth and fourth connecting holes, the rear cover plate can be correctly installed with different combinations of connecting holes regardless of how the first and second side cover plates are installed, thus improving the flexibility of rear cover plate installation. The design of the connecting holes being positioned opposite each other allows the rear cover plate to be stably connected to the first and second side cover plates using screws or other connectors, enhancing the strength and stability of the overall equipment structure, while also facilitating the disassembly of the rear cover plate for maintenance of internal components.
[0015] In one embodiment, both the first and second side cover plates are provided with a plurality of heat dissipation holes, which are evenly spaced. The presence of multiple heat dissipation holes on both the first and second side cover plates, with the holes evenly spaced, significantly improves the heat dissipation efficiency of the equipment and effectively reduces the operating temperature. The evenly spaced design of the heat dissipation holes ensures airflow inside the equipment, prevents heat accumulation, and maintains the structural strength of the side cover plates. Simultaneously, this structure reduces the material required to produce the side cover plates, lowering manufacturing costs.
[0016] An ice sponge machine includes: an ice sponge machine side cover structure as described above, the ice sponge machine side cover structure having an installation cavity and an installation groove; a refrigeration device, the refrigeration device being disposed on the ice sponge machine side cover structure and located within the installation cavity; a material cylinder assembly, the material cylinder assembly being disposed on the ice sponge machine side cover structure and located at the installation groove, the material cylinder assembly having a mixing cavity; and a stirring assembly, the stirring assembly being disposed on the ice sponge machine side cover structure, at least a portion of the stirring assembly extending into the mixing cavity.
[0017] The second aspect of this application discloses an ice-sponge machine. By integrating the refrigeration unit, the feed cylinder assembly, and the stirring assembly onto the side cover structure of the ice-sponge machine, a complete ice-sponge machine system is formed, improving the overall performance and reliability of the equipment. The installation cavity and groove on the side cover structure allow for the rational arrangement of the refrigeration unit and the feed cylinder assembly, optimizing the structural layout of the ice-sponge machine and making it more compact and efficient. The heat dissipation holes on the first and second side covers effectively dissipate the heat generated by the refrigeration unit, reducing the internal temperature of the equipment and preventing damage due to overheating. The identical design of the first and second side covers simplifies their production and assembly, reducing production costs. Furthermore, the easily disassembled design of the first and second side covers facilitates maintenance and upkeep of internal components such as the refrigeration unit, extending the service life of the equipment. Attached Figure Description
[0018] Figure 1 The first perspective view of the side cover structure of the ice cream machine;
[0019] Figure 2 The first perspective view of the side cover structure of the ice cream machine;
[0020] Figure 3 An exploded view of the side cover structure of the ice cream machine;
[0021] Figure 4 This is a 3D view of the rack;
[0022] Figure 5 A first perspective view of the first side cover plate and the second side cover plate;
[0023] Figure 6 A second perspective view of the first and second side cover plates;
[0024] Figure 7 This is a perspective view of the first side cover plate;
[0025] Figure 8 A structural schematic diagram of the control components and the first side cover;
[0026] Figure 9 This is a structural schematic diagram of the rear cover plate and the first side cover plate;
[0027] Figure 10 This is a structural diagram of the rear cover and the second side cover.
[0028] Figure 11 This is a 3D diagram of an ice cream machine.
[0029] The correspondence between the reference numerals and the component names is as follows:
[0030] 1. Frame, 101 First adapter hole, 102 Second adapter hole;
[0031] 2 First side cover plate, 21 First side cover plate body, 22 First connecting part, 201 First adapter opening, 202 Arc-shaped transition part, 203 First mounting hole, 204 Second mounting hole, 205 Third connecting hole, 206 Fourth connecting hole;
[0032] 3 Second side cover plate, 31 Second side cover plate body, 32 Second connecting part, 301 Third mounting hole, 302 Fourth mounting hole, 303 Fifth connecting hole, 304 Sixth connecting hole;
[0033] 4 control components, 41 control component body, 42 first mounting part, 43 second mounting part;
[0034] 6. Rear cover plate, 601 first connecting hole, 602 second connecting hole. Detailed Implementation
[0035] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0036] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.
[0037] The following describes the side cover structure of the ice cotton machine and the ice cotton machine according to some embodiments of the present invention with reference to the accompanying drawings.
[0038] Example 1, such as Figures 1 to 10 As shown, this embodiment discloses a side cover structure for an ice cream machine, including: a frame 1 with a first adapter hole 101 and a second adapter hole 102, the first adapter hole 101 and the second adapter hole 102 being located on both sides of the frame 1 respectively; a first side cover 2, which is disposed on the frame 1 and located on one side of the frame 1, and has a first connecting portion 22; and a second side cover 3, which is disposed on the frame 1 and located on the frame 1 away from the first side cover 2. On one side, the second side cover plate 3 is provided with a second connecting part 32, and the structure of the second side cover plate 3 is the same as that of the first side cover plate 2. When the first side cover plate 2 is located on the side where the first adapter hole 101 is located, the first connecting part 22 is adapted to the first adapter hole 101, and the second connecting part 32 is adapted to the second adapter hole 102. When the first side cover plate 2 is located on the side where the second adapter hole 102 is located, the first connecting part 22 is adapted to the second adapter hole 102, and the second connecting part 32 is adapted to the first adapter hole 101.
[0039] The first aspect of this application discloses a side cover structure for an ice cream machine. By adopting the same structural design for the first side cover 2 and the second side cover 3, they can be completely interchanged without distinguishing between left and right sides, thus significantly improving assembly flexibility and simplifying the assembly process. More specifically, both the first connecting part 22 and the second connecting part 32 can be adapted to either the first adapter hole 101 or the second adapter hole 102. This design not only ensures the complete interchangeability of the first side cover 2 and the second side cover 3, but also achieves a reliable connection between the side cover and the frame 1, ensuring the stability of the side cover and thus improving the overall strength and stability of the ice cream machine structure. In addition, since the first side cover 2 and the second side cover 3 have the same structure, only one side cover structure needs to be manufactured during mold making, which not only reduces the number of molds and manufacturing costs, but also improves production efficiency. At the same time, this design further reduces material management costs and resource waste. The identical structural design also ensures the consistency of appearance and function on the left and right sides of the equipment, improving the overall aesthetics of the product and the user experience.
[0040] like Figure 3 , Figure 5 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first connecting part 22 or the second connecting part 32 is engaged with the edge of the first adapter hole 101, and the first connecting part 22 or the second connecting part 32 is engaged with the edge of the second adapter hole 102. Through the edge engagement design of the first connecting part 22 and the second connecting part 32 with the first adapter hole 101 or the second adapter hole 102, a stable connection between the first side cover plate 2 and the second side cover plate 3 and the frame 1 is ensured. This engagement method effectively prevents the side covers from loosening or falling off during equipment operation, thereby improving the overall reliability of the equipment. Since the first side cover plate 2 and the second side cover plate 3 have the same structure, operators do not need to distinguish between the left and right side covers during assembly. Furthermore, when maintaining the equipment or replacing the side covers, the engagement design of the first connecting part 22 and the second connecting part 32 with the adapter hole makes disassembly and installation more convenient, allowing maintenance personnel to complete the operation without tools, reducing the difficulty of maintenance.
[0041] like Figure 3 , Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further specifies that the orientation direction of the first connecting part 22 relative to the frame 1 is opposite to the orientation direction of the second connecting part 32 relative to the frame 1. By ensuring that the orientation direction of the first connecting part 22 relative to the frame 1 is opposite to that of the second connecting part 32 relative to the frame 1, the first side cover 2 and the second side cover 3 have a clear installation direction during assembly, improving assembly efficiency. Simultaneously, it ensures that the connection structures on the left and right sides of the equipment are consistent, avoiding uneven stress or structural imbalance caused by different connection methods, thus enhancing the overall reliability of the equipment. Furthermore, the opposite orientation design of the first connecting part 22 and the second connecting part 32 ensures the symmetry and consistency of the appearance on the left and right sides of the equipment when the first side cover 2 and the second side cover 3 are assembled on the frame 1, improving the overall aesthetics of the product.
[0042] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the first adapter hole 101 and the second adapter hole 102 are staggered on the same horizontal cross-section. By staggering the first adapter hole 101 and the second adapter hole 102 on the same horizontal cross-section, it is ensured that when the structurally consistent first side cover plate 2 and second side cover plate 3 are assembled on the frame 1, the appearance symmetry and consistency of the left and right sides of the equipment are guaranteed, improving the overall reliability and aesthetics of the product.
[0043] like Figure 3 , Figure 5 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first side cover plate 2 includes a first side cover plate body 21 and a first connecting part 22, the first connecting part 22 is disposed on the first side cover plate body 21, and the first connecting part 22 is detachably connected to the frame 1; the second side cover plate 3 includes a second side cover plate body 31 and a second connecting part 32, the second connecting part 32 is disposed on the second side cover plate body 31, and the second connecting part 32 is detachably connected to the frame 1. The detachable connection of the first connecting part 22 to the frame 1 makes the installation and disassembly of the first side cover plate 2 and the frame 1 more flexible and convenient, improving maintenance convenience. The detachable connection of the second connecting part 32 to the frame 1 makes it easier to disassemble and replace the second side cover plate 3 and the frame 1. The first side cover plate 2 and the second side cover plate 3 have the same structure and can be used interchangeably, further simplifying the equipment assembly process and improving assembly efficiency.
[0044] like Figure 7As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first side cover body 21 is provided with a first adapting opening 201, the first adapting opening 201 is adapted to at least a portion of the frame 1, and the first connecting portion 22 is located at the end of the first side cover body 21 away from the first adapting opening 201. By providing the first adapting opening 201 on the first side cover body 21 and adapting it to at least a portion of the frame 1, precise alignment and rapid assembly between the first side cover 2 and the frame 1 are ensured, reducing assembly difficulty. The first connecting portion 22 being located at the end of the first side cover body 21 away from the first adapting opening 201, this structural design distributes the force at the connection point, enhancing the overall reliability of the equipment.
[0045] like Figure 6 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first side cover body 21 forms an arc-shaped transition portion 202, and the first connecting portion 22 is located at the arc-shaped transition portion 202. The arc-shaped transition portion 202 formed by the first side cover body 21 makes the connection between the first side cover 2 and the frame 1 smoother and more natural, improving the aesthetic appearance of the equipment. The first connecting portion 22 being located at the arc-shaped transition portion 202 disperses the force at the connection point, making the connection between the first side cover 2 and the frame 1 more stable and enhancing the overall reliability of the equipment.
[0046] like Figure 1 , Figure 3 and Figure 8 As shown, in addition to the features of the above embodiments, this embodiment further includes a control component 4. The control component 4 includes a control component body 41, a first mounting part 42, and a second mounting part 43. The first mounting part 42 and the second mounting part 43 are respectively disposed on the control component body 41, located on opposite sides of the control component body 41. The first mounting part 42 and the second mounting part 43 are respectively connected to the first side cover plate 2 and the second side cover plate 3, or respectively connected to the second side cover plate 3 and the first side cover plate 2. Since the first side cover plate 2 and the second side cover plate 3 have the same structure and can be used interchangeably, the first mounting part 42 and the second mounting part 43 of the control component 4 can also be flexibly connected to either side cover plate, simplifying the installation process of the control component 4 and reducing assembly difficulty. The connection between the control component 4 and the first side cover plate 2 and the second side cover plate 3 enhances the overall structural strength and stability of the equipment. Furthermore, the detachable connection method facilitates the maintenance and replacement of the control component 4, extending the service life of the equipment.
[0047] like Figure 5 , Figure 6 and Figure 8As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first side cover plate 2 is provided with a first mounting hole 203 and a second mounting hole 204, the first mounting hole 203 and the second mounting hole 204 are respectively located on both sides of the first side cover plate 2; the second side cover plate 3 is provided with a third mounting hole 301 and a fourth mounting hole 302, the third mounting hole 301 and the fourth mounting hole 302 are respectively located on both sides of the second side cover plate 3; the first mounting part 42 and the second mounting part 43 are respectively adapted to the first mounting hole 203 and the fourth mounting hole 302, or the first mounting part 42 and the second mounting part 43 are respectively adapted to the third mounting hole 301 and the second mounting hole 204. By adapting the first mounting part 42 and the second mounting part 43 to the first mounting hole 203 and the fourth mounting hole 302, or to the third mounting hole 301 and the second mounting hole 204, a reliable connection between the control component 4 and the first side cover plate 2 and the second side cover plate 3 is achieved, ensuring the connection stability of the control component 4. Furthermore, regardless of how the first side cover 2 and the second side cover 3 are installed, the control component 4 can be correctly installed by combining with different mounting holes, which improves the flexibility of the control component 4 installation, further simplifies the installation process of the control component 4, and reduces the assembly difficulty.
[0048] like Figure 9 and Figure 10 As shown, in addition to the features of the above embodiments, this embodiment further includes a rear cover plate 6. The rear cover plate 6 is provided with a first connecting hole 601 and a second connecting hole 602. The first side cover plate 2 is provided with a third connecting hole 205 and a fourth connecting hole 206. The second side cover plate 3 is provided with a fifth connecting hole 303 and a sixth connecting hole 304. The first connecting hole 601 and the second connecting hole 602 are respectively arranged opposite to the third connecting hole 205 and the sixth connecting hole 304, or opposite to the fifth connecting hole 303 and the fourth connecting hole 206. By allowing the first connecting hole 601 and the second connecting hole 602 to be arranged opposite to the third connecting hole 205 and the sixth connecting hole 304, or opposite to the fifth connecting hole 303 and the fourth connecting hole 206, the rear cover plate 6 can be correctly installed with different combinations of connecting holes regardless of how the first side cover plate 2 and the second side cover plate 3 are installed, thus improving the flexibility of the rear cover plate installation. The design of the connecting holes being arranged opposite each other allows the rear cover plate 6 to be stably connected to the first side cover plate 2 and the second side cover plate 3 by means of screws or other connectors, which enhances the strength and stability of the overall structure of the equipment, and at the same time facilitates the disassembly of the rear cover plate 6 for maintenance of internal components.
[0049] like Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further specifies that: both the first side cover plate 2 and the second side cover plate 3 are provided with a plurality of heat dissipation holes, which are evenly spaced. By providing a plurality of heat dissipation holes on both the first side cover plate 2 and the second side cover plate 3, and with the holes evenly spaced, the heat dissipation efficiency of the equipment is significantly improved, effectively reducing the operating temperature of the equipment. The design of the evenly spaced heat dissipation holes ensures the airflow inside the equipment, avoids heat accumulation, and maintains the structural strength of the side cover plates. At the same time, this structure reduces the material required to produce the side cover plates, lowering manufacturing costs.
[0050] Example 2, as Figures 1 to 11 As shown, this embodiment discloses an ice sponge machine, including: an ice sponge machine side cover structure as described above, the ice sponge machine side cover structure having an installation cavity and an installation groove; a refrigeration device, the refrigeration device being disposed on the ice sponge machine side cover structure and located within the installation cavity; a material cylinder assembly, the material cylinder assembly being disposed on the ice sponge machine side cover structure and located at the installation groove, the material cylinder assembly having a mixing cavity; and a stirring assembly, the stirring assembly being disposed on the ice sponge machine side cover structure, at least a portion of the stirring assembly extending into the mixing cavity.
[0051] The second aspect of this application discloses an ice-sponge machine. By integrating the refrigeration unit, the feed cylinder assembly, and the stirring assembly onto the side cover structure of the ice-sponge machine, a complete ice-sponge machine system is formed, improving the overall performance and reliability of the equipment. The installation cavity and groove on the side cover structure allow for the rational arrangement of the refrigeration unit and the feed cylinder assembly, optimizing the structural layout of the ice-sponge machine and making it more compact and efficient. The heat dissipation holes on the first side cover 2 and the second side cover 3 effectively dissipate the heat generated by the refrigeration unit, reducing the internal temperature of the equipment and preventing damage due to overheating. The identical design of the first side cover 2 and the second side cover 3 simplifies their production and assembly, reducing production costs. Furthermore, the easily disassembled design of the first side cover 2 and the second side cover 3 facilitates maintenance and upkeep of the internal components such as the refrigeration unit, extending the service life of the equipment.
[0052] 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.
[0053] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A side cover plate structure of an ice slurry machine, characterized by comprising: The rack (1) is provided with a first adaptive hole (101) and a second adaptive hole (102), and the first adaptive hole (101) and the second adaptive hole (102) are located on both sides of the rack (1) respectively. A first side cover plate (2) is arranged on the rack (1), and the first side cover plate (2) is located on one side of the rack (1), and the first side cover plate (2) is provided with a first connecting part (22). A second side cover plate (3) is arranged on the rack (1), and the second side cover plate (3) is located on the side of the rack (1) away from the first side cover plate (2), and the second side cover plate (3) is provided with a second connecting part (32), and the structure of the second side cover plate (3) is the same as that of the first side cover plate (2). When the first side cover plate (2) is located on the side of the first adaptive hole (101), the first connecting part (22) is adapted to the first adaptive hole (101), and the second connecting part (32) is adapted to the second adaptive hole (102). When the first side cover plate (2) is located on the side of the second adaptive hole (102), the first connecting part (22) is adapted to the second adaptive hole (102), and the second connecting part (32) is adapted to the first adaptive hole (101). The first connecting part (22) or the second connecting part (32) is clamped with the edge of the first adaptive hole (101), and the first connecting part (22) or the second connecting part (32) is clamped with the edge of the second adaptive hole (102).
2. The ice-slush machine side cover plate structure according to claim 1, characterized by The direction of the first connecting part (22) relative to the rack (1) is opposite to the direction of the second connecting part (32) relative to the rack (1).
3. The ice-slush machine side cover plate structure according to claim 1, wherein And / or the first adaptive hole (101) and the second adaptive hole (102) are staggered in the same cross-sectional plane. The first side cover plate (2) comprises a first side cover plate body (21) and a first connecting part (22), the first connecting part (22) is arranged on the first side cover plate body (21), and the first connecting part (22) is detachably connected with the rack (1); the second side cover plate (3) comprises a second side cover plate body (31) and a second connecting part (32), the second connecting part (32) is arranged on the second side cover plate body (31), and the second connecting part (32) is detachably connected with the rack (1).
4. The ice-slush machine side cover plate structure according to claim 1, wherein The first side cover plate body (21) is provided with a first adaptive opening (201), the first adaptive opening (201) is adapted to at least part of the rack (1), and the first connecting part (22) is located at one end of the first side cover plate body (21) away from the first adaptive opening (201).
5. The ice-slush machine side cover plate structure according to claim 4, wherein And / or the first side cover plate body (21) forms an arc-shaped transition part (202), and the first connecting part (22) is located at the arc-shaped transition part (202). 6. The ice-slush machine side cover plate structure according to claim 1, wherein Further comprising a control assembly (4), the control assembly (4) comprises a control assembly body (41), a first mounting portion (42) and a second mounting portion (43), the first mounting portion (42) and the second mounting portion (43) are respectively arranged on the control assembly body (41), the first mounting portion (42) and the second mounting portion (43) are respectively located on both sides of the control assembly body (41), and the first mounting portion (42) and the second mounting portion (43) are respectively connected with the first side cover plate (2) and the second side cover plate (3), or the first mounting portion (42) and the second mounting portion (43) are respectively connected with the second side cover plate (3) and the first side cover plate (2).
7. The side cover plate structure of the ice-slush machine according to claim 6, wherein The first side cover plate (2) is provided with a first mounting hole (203) and a second mounting hole (204), the first mounting hole (203) and the second mounting hole (204) are respectively located on both sides of the first side cover plate (2), the second side cover plate (3) is provided with a third mounting hole (301) and a fourth mounting hole (302), the third mounting hole (301) and the fourth mounting hole (302) are respectively located on both sides of the second side cover plate (3), and the first mounting portion (42) and the second mounting portion (43) are respectively matched with the first mounting hole (203) and the fourth mounting hole (302), or the first mounting portion (42) and the second mounting portion (43) are respectively matched with the third mounting hole (301) and the second mounting hole (204).
8. The side cover plate structure of the ice-slush machine according to claim 1, wherein Further comprising a rear cover plate (6), the rear cover plate (6) is provided with a first connecting hole (601) and a second connecting hole (602), the first side cover plate (2) is provided with a third connecting hole (205) and a fourth connecting hole (206), the second side cover plate (3) is provided with a fifth connecting hole (303) and a sixth connecting hole (304), and the first connecting hole (601) and the second connecting hole (602) are respectively arranged opposite to the third connecting hole (205) and the sixth connecting hole (304), or the first connecting hole (601) and the second connecting hole (602) are respectively arranged opposite to the fifth connecting hole (303) and the fourth connecting hole (206).
9. The ice-slush machine side cover plate structure according to claim 1, wherein The first side cover plate (2) and the second side cover plate (3) are both provided with a plurality of heat dissipation holes, and the plurality of heat dissipation holes are uniformly and interval arranged.
10. An ice slurry machine characterized by comprising: It comprises: The ice and sponge machine side cover plate structure according to any one of claims 1 to 9 is provided with a mounting cavity and a mounting groove; The refrigeration device is arranged on the ice and sponge machine side cover plate structure and located in the mounting cavity; The barrel assembly is arranged on the ice and sponge machine side cover plate structure and located at the mounting groove, and the barrel assembly is provided with a mixing cavity; The stirring assembly is arranged on the ice and sponge machine side cover plate structure, and at least part of the stirring assembly extends into the mixing cavity.