A housing assembly for a cold beverage device and a cold beverage device
By designing detachable blade fixing devices and material storage devices in cold beverage equipment, the problem of not being able to disassemble and replace them individually in existing technologies is solved, simplifying the maintenance process, reducing costs and improving cleaning efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN DONLIM WEILI ELECTRICAL APPLIANCES CO LTD
- Filing Date
- 2025-07-25
- Publication Date
- 2026-08-04
AI Technical Summary
The existing cold drink equipment's blade fixing device and material storage device cannot be disassembled and replaced separately, resulting in high maintenance and replacement costs. Furthermore, the non-removable structure leads to incomplete cleaning and waste of equipment parts.
A detachable tool holder and a material storage device were designed, including a detachable tool holder and a material storage box. The detachable connection is achieved through a plug-in protrusion and slot structure. Combined with the detachable housing structure, maintenance operations are simplified.
It enables the separate disassembly and replacement of the blade fixing device and the material storage device, reducing maintenance difficulty and cost, improving cleaning efficiency, and reducing equipment component waste.
Smart Images

Figure CN224593536U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cold drink equipment technology, and in particular to a housing component for cold drink equipment and the cold drink equipment itself. Background Technology
[0002] A smoothie-making equipment is a device that turns liquids such as water, milk, and beverages into smoothies. In the shell structure design of this equipment, the container typically serves as the fixed structure for both the blade fixing device and the material storage device. The blade fixing device mainly consists of a blade holder and scrapers mounted on it. The connection between the blade holder and the container is usually fixed, commonly achieved through riveting, welding, or high-strength adhesive bonding to achieve a rigid connection. This connection structure makes the blade holder and the container a single unit, impossible to separate. The material storage device is centered around a storage tank, which stores the water, syrup, or other liquid ingredients needed to make smoothies. Its connection to the container is also integrated; either the storage tank and the container are integrally injection molded, or the edges of the storage tank are locked to the container with multiple fastening bolts, making it difficult to separate the storage tank from the container independently. Because the blade holder and the housing are not detachable, when the scraper in the blade-fixing device wears down or becomes dull due to long-term use, or when the blade holder deforms, maintenance personnel need to disassemble the entire housing and blade-fixing device. This complex procedure significantly increases maintenance costs and time. Furthermore, because the storage tank is not detachable, if cracks or aging cause leakage, or if different sizes of storage tanks are needed for different flavors of cold drinks, the non-detachable structure prevents individual tank replacement. The entire housing assembly must be replaced, resulting in wasted equipment parts and increased user costs. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a housing assembly for a cold beverage equipment, which allows for the separate disassembly and replacement of the blade fixing device and the material storage device, thereby reducing maintenance difficulty and maintenance costs.
[0004] To solve the above-mentioned technical problems, this utility model provides a housing assembly for a cold beverage equipment, including a housing, a blade fixing device, and a material storage device, wherein the blade fixing device, the material storage device, and the material receiving device are all connected to the housing.
[0005] The tool fixing device includes a tool holder, which is detachably connected to the receiving body.
[0006] And / or, the storage device includes a storage tank, which is detachably connected to the accommodating body.
[0007] As an improvement to the above solution, the accommodating body includes a first housing and a second housing, wherein the first housing is detachably connected to the second housing.
[0008] As an improvement to the above solution, the second housing is provided with a fixing groove, the first housing is detachably inserted into the fixing groove and can cover the side wall of the fixing groove, and the first housing surrounds the evaporation device of the cold drink equipment.
[0009] As an improvement to the above solution, the first housing or the second housing is provided with a blade insertion part, and the blade holder is detachably connected to the blade insertion part; the first housing or the second housing is provided with a connecting groove, and the storage box is detachably placed in the connecting groove.
[0010] As an improvement to the above solution, the inner sidewall of the inserting part is provided with a first inserting groove, and the two sides of the blade holder are provided with inserting protrusions. The shape of the inserting protrusions corresponds to the shape of the first inserting groove, and the inserting protrusions can be inserted into the first inserting groove.
[0011] As an improvement to the above solution, the first insert groove forms a strip-shaped accommodating space from top to bottom, the insertion protrusion protrudes towards both sides of the tool holder, and the cross-sectional area of the first insert groove gradually decreases from top to bottom.
[0012] As an improvement to the above solution, the side of the first insert groove is provided with a limiting protrusion, the limiting protrusion protruding from the side of the first insert groove, and the side of the insertion protrusion is provided with a limiting slot, the shape of the limiting slot corresponding to the shape of the limiting protrusion, and the limiting protrusion being able to be inserted into the limiting slot.
[0013] As an improvement to the above solution, a connecting platform is provided in the connecting groove, the connecting platform protruding from the inner wall groove of the connecting groove, and part of the bottom of the storage box can abut against the connecting platform.
[0014] As an improvement to the above solution, the housing assembly for the cold beverage equipment further includes a receiving device, wherein the first housing or the second housing is provided with a water receiving installation cavity, and the receiving device is detachably connected to the water receiving installation cavity.
[0015] As an improvement to the above solution, the receiving device includes a water receiving tray, the side of which is provided with a telescopic fixing mechanism, and the inner wall of the water receiving installation cavity is provided with a water receiving fixing hole. The telescopic fixing mechanism can be detachably connected to the water receiving fixing hole.
[0016] As an improvement to the above solution, inclined grooves are provided on both sides of the water receiving installation cavity. The inclined grooves are recessed into the inner wall of the water receiving installation cavity and are inclined. Slider blocks are provided on both sides of the water receiving tray. The sliders protrude from the side wall of the water receiving tray and can be inserted into the inclined grooves and slide along the inclined grooves.
[0017] As an improvement to the above solution, the end of the inclined slide is provided with a positioning groove, which is set horizontally or inclined downward, and the slider can move from the inclined slide into the positioning groove.
[0018] As an improvement to the above solution, the fixing groove includes a limiting groove and a slot. The limiting groove is located at the upper part of the slot. The upper part of the first housing is provided with a limiting platform, which protrudes outward. The shape of the limiting platform corresponds to the shape of the limiting groove. The bottom of the first housing is provided with a lower insertion part, which protrudes downward. When the first housing is placed in the fixing groove, the lower insertion part can be inserted into the slot, and the limiting platform can abut against the limiting groove.
[0019] As an improvement to the above solution, a lifting plate is provided on one side of the first housing, the lifting plate is provided with a handle hole, and an abutment plate is provided on the upper part of the lifting plate, the abutment plate extending outward from the top of the lifting plate. An abutment platform is provided on one side of the second housing, the abutment platform is provided with a downwardly recessed lifting groove, the abutment plate can abut against the abutment platform, and the handle hole can communicate with the lifting groove.
[0020] As an improvement to the above solution, the front side of the second housing is provided with a front mounting part, and the front mounting part is provided with a second insert groove. The second insert groove forms a strip-shaped accommodating space from top to bottom. The second insert groove is recessed towards the inner side of the inner wall of the second housing. The first housing also includes a plug-in part, which protrudes towards the outer side of the outer wall of the first housing. When the first housing is placed in the fixing groove, the plug-in part can be inserted into the second insert groove.
[0021] As an improvement to the above solution, the housing assembly for the cold beverage device further includes a viewing window cover, which covers the periphery of the blade holder. A hinge hole is provided on one side of the first housing or the second housing, and hinge posts are provided on both sides of the viewing window cover. The hinge posts can be hinged to the hinge hole, and the viewing window cover can be flipped relative to the first housing or the second housing.
[0022] This utility model also provides a cold drink device, including the housing assembly for the cold drink device as described above.
[0023] Implementing this utility model has the following beneficial effects:
[0024] This utility model relates to a housing assembly for a cold beverage equipment. It includes a blade-fixing device and a material storage device detachably connected to the container. The blade holder of the blade-fixing device and the material storage box of the material storage device are detachable from the container. By designing the blade holder to be detachably connected to the container, the blade holder can be removed individually from the container. When the scraper becomes worn, dull, or the blade holder deforms, it is not necessary to disassemble the entire container and the blade-fixing device; only the blade holder needs to be removed for replacement or repair, simplifying the operation process. Furthermore, when the material storage box cracks, ages, or leaks, or when different sizes of material storage boxes are needed to make different flavors of cold beverages, the material storage box can be replaced directly without replacing the entire container assembly, reducing waste of equipment parts. Therefore, this utility model achieves a detachable connection between the blade-fixing device and the material storage device and the container, enabling individual disassembly and replacement, effectively reducing the difficulty and cost of equipment maintenance. Attached Figure Description
[0025] Figure 1 This is a first-view, disassembled structural diagram of the housing assembly of the present invention for a cold drink device;
[0026] Figure 2 This is a second-view, split-structure diagram of the housing assembly of the present invention for a cold drink device;
[0027] Figure 3 This is a partial schematic diagram of the disassembled structure of the accommodating body and the knife fixing device of this utility model;
[0028] Figure 4 This is a schematic diagram showing the disassembled structure of the container, storage device, and receiving device of this utility model;
[0029] Figure 5 This is a schematic diagram of the disassembled structure of the first shell and the second shell of this utility model;
[0030] Figure 6 This is a schematic diagram showing the disassembled structure of the accommodating body and the viewing window cover of this utility model. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will describe this utility model in further detail with reference to the accompanying drawings. It is hereby declared that the terms "up," "down," "left," "right," "front," "back," "inner," and "outer," etc., appearing or about to appear in this document, are based solely on the accompanying drawings and are not intended to specifically limit this utility model.
[0032] See Figure 1 and Figure 2This utility model discloses a housing assembly for a cold beverage equipment, including a housing 100, a blade fixing device 3, and a material storage device 4. The blade fixing device 3 and the material storage device 4 are both connected to the housing 100 to ensure the stability of the overall structure of the equipment.
[0033] The blade-fixing device 3 is used to fix the scraper and scrape off the slush from the evaporation device. In one embodiment, the blade-fixing device 3 includes a blade holder 31, which is used to fix the scraper. The blade holder 31 is detachably connected to the container 100, allowing the blade holder 31 to be separated from the container 100. When cleaning is required, the blade holder 31 can be removed from the container 100, facilitating a thorough cleaning of the scraper surface and the gaps within the blade holder 31 itself. This effectively removes residual slush fragments, fruit fibers, and other impurities, avoiding incomplete cleaning caused by the non-detachable blade holder 31 from the container 100.
[0034] In one embodiment, the storage device 4 further includes a storage tank 41 for storing liquid raw materials, and the storage tank 41 is detachably connected to the container 100. In this way, the storage tank 41 can be completely removed for cleaning, facilitating thorough cleaning of its inner wall and the corners where it connects to the container 100. This effectively removes scale, mold, and other contaminants, ensuring the cleanliness of the inside of the storage tank 41 and solving the problem of cleaning dead zones caused by the non-removable storage tank 41 in the prior art.
[0035] The beneficial effects of this utility model embodiment are as follows:
[0036] This embodiment of the utility model provides a housing assembly for a cold beverage equipment, which includes a blade fixing device 3 and a material storage device 4 detachably connected to the accommodating body 100. The blade holder 31 of the blade fixing device 3 and the material storage box 41 of the material storage device 4 are detachable from the accommodating body 100. By designing the blade holder 31 to be detachably connected to the accommodating body 100, the blade holder 31 can be individually removed from the accommodating body 100. When the scraper becomes worn, dull, or the blade holder 31 deforms, it is not necessary to disassemble the entire accommodating body 100 and the blade fixing device 3 as a whole; only the blade holder 31 needs to be removed for replacement or repair, simplifying the operation process. Furthermore, when the material storage box 41 cracks, ages, or leaks, or when different sizes of material storage boxes 41 need to be replaced to make different flavors of cold beverages, the material storage box 41 can be replaced directly without replacing the entire accommodating assembly, reducing waste of equipment parts. Therefore, this utility model enables the detachable connection between the blade fixing device 3 and the material storage device 4 and the accommodating body 100, achieving the purpose of disassembling and replacing them individually, effectively reducing the maintenance difficulty and cost of the equipment.
[0037] See Figure 2 The accommodating body 100 includes a first housing 1 and a second housing 2, with the first housing 1 detachably connected to the second housing 2. This design divides the accommodating body 100 into two separable parts, breaking the limitation of existing accommodating bodies 100 being mostly integral structures. When maintenance or cleaning of the interior of the accommodating body 100 or the first housing 1 and the second housing 2 is required, the first housing 1 can be removed from the second housing 2 for separate operation. Compared to an integral accommodating body 100, this detachable connection method makes the maintenance process more targeted, allowing for separate processing of the first housing 1 and the second housing 2, further reducing the complexity of maintenance. Combined with the detachable design of the blade fixing device 3 and the material storage device 4, this improves the overall ease of maintenance of the equipment.
[0038] See Figure 5In one embodiment, the second housing 2 is provided with the fixing groove 21, and the first housing 1 is detachably inserted into the fixing groove 21. The contour of the fixing groove 21 positions the first housing 1, ensuring the stability of the first housing 1 installed in the second housing 2. Simultaneously, the first housing 1 can shield the sidewall of the fixing groove 21, preventing direct exposure of the sidewall. The first housing 1 surrounds the evaporation device of the cold drink equipment. When the evaporation device is working, the liquid or impurities it produces are confined within the space enclosed by the first housing 1. This structural design ensures that the dirt generated during the operation of the evaporation device mainly adheres to the first housing 1. When cleaning is required, the first housing 1 can simply be removed from the fixing groove 21 without the need for complex cleaning of the fixing groove 21 of the second housing 2. Compared with the existing technology where the integral structure of the housing 100 leads to a wide cleaning range and high difficulty, this design further reduces the focus of maintenance. Combined with the detachability of the first housing 1, it makes equipment maintenance more efficient and reduces maintenance costs.
[0039] See Figure 3 In one embodiment, the first housing 1 or the second housing 2 is provided with the inserting part 11, and the tool holder 31 is detachably connected to the inserting part 11. The inserting part 11 provides a mounting position for the tool holder 31, and the detachable connection between the two makes the installation and removal of the tool holder 31 more targeted. When the tool holder 31 needs to be replaced or repaired, the operation can be performed directly at the inserting part 11 without affecting other parts of the housing 100, further simplifying the operation steps. This design, in conjunction with the detachable structure of the first housing 1 and the second housing 2, makes the maintenance process of the tool holder 31 more convenient and efficient.
[0040] See Figure 4 In one embodiment, the first housing 1 or the second housing 2 is provided with the connecting groove 12, and the storage box 41 is detachably placed in the connecting groove 12. The connecting groove 12 provides a suitable installation space for the storage box 41, and the storage box 41 is detachably placed, allowing it to be easily removed from the connecting groove 12. When the storage box 41 needs to be replaced or cleaned, it can be directly removed without the need for a complex disassembly process of the receiving body 100. This design, combined with the split structure of the receiving body 100, further reduces the difficulty of maintaining the storage box 41, effectively reduces the time and cost required for maintenance, and solves the problem of inconvenient maintenance of the storage box 41 in the prior art.
[0041] See Figure 3The inner wall of the inserting part 11 is provided with a first inserting groove 111, and the two sides of the blade holder 31 are provided with inserting protrusions 311. The shape of the inserting protrusions 311 corresponds to the shape of the first inserting groove 111. Through the matching concave-convex structure, the blade holder 31 can be detachably connected to the first housing 1. The inserting protrusions 311 can be inserted into the first inserting groove 111. During installation, the inserting protrusions 311 can be inserted into the first inserting groove 111, and the blade holder 31 is positioned and fixed on the first housing 1 by the cooperation between the protrusions and the groove. This installation method is convenient to operate and does not require additional tools. It not only ensures the stability of the blade holder 31 after installation, but also allows the blade holder 31 to be easily pulled out of the first inserting groove 111 when cleaning is required, facilitating the quick disassembly of the blade holder 31.
[0042] The first insert groove 111 forms a strip-shaped accommodating space from top to bottom, providing a matching insertion path for the insertion protrusion 311, allowing the insertion protrusion 311 to be smoothly inserted along the accommodating space. The insertion protrusion 311 protrudes towards both sides of the tool holder 31, adapting to the strip-shaped accommodating space, ensuring a good fit between the tool holder 31 and the first insert groove 111.
[0043] The cross-sectional area of the first insert groove 111 gradually decreases from top to bottom. When the insertion protrusion 311 is inserted, the inner wall of the first insert groove 111 forms a gradually increasing clamping effect on the insertion protrusion 311 as the insertion depth increases. This structural design ensures the smoothness of the insertion process of the insertion protrusion 311 and enhances the stability of the connection between the tool holder 31 and the first housing 1 through clamping force after insertion, preventing the tool holder 31 from shaking during equipment operation. At the same time, compared with fixed connections or detachable structures without clamping effect, this design can still easily pull the tool holder 31 out of the first insert groove 111 while ensuring reliable connection, without affecting the convenience of disassembling and cleaning the tool holder 31, further balancing connection stability and disassembly flexibility.
[0044] See Figure 3The first blade insertion slot 111 has a limiting protrusion 112 on its side, which protrudes from the side of the first blade insertion slot 111. The insertion protrusion 311 has a limiting slot 312 on its side, and the shape of the limiting slot 312 corresponds to the shape of the limiting protrusion 112, allowing the limiting protrusion 112 to be inserted into the limiting slot 312. When the insertion protrusion 311 is inserted into the first blade insertion slot 111, the limiting protrusion 112 is simultaneously inserted into the limiting slot 312. Through the matching shapes of the two, the blade holder 31 is horizontally limited, preventing displacement or wobbling in the horizontal direction. This structural design further enhances the stability of the blade holder 31 after installation, especially during equipment operation, preventing displacement deviation of the scraper due to the rolling effect of the evaporation device, thus affecting the working accuracy of the scraper. Meanwhile, the cooperation between the limiting protrusion 112 and the limiting slot 312 will not hinder the insertion and removal of the insertion protrusion 311. While ensuring the horizontal limiting effect, it can still maintain the ease of disassembling the tool holder 31, which is convenient for subsequent cleaning work.
[0045] See Figure 4 The connecting groove 12 is provided with a connecting platform 13, which protrudes from the inner wall of the connecting groove 12, providing more precise positioning support for the placement of the storage box 41. When the storage box 41 is placed in the connecting groove 12, part of the bottom of the storage box 41 can abut against the connecting platform 13. The connecting platform 13 supports the storage box 41 and limits the storage box 41 from sinking excessively into the connecting groove 12, ensuring the accurate positioning of the storage box 41 after installation. This structural design does not affect the removability of the storage box 41; it can be removed from the connecting groove 12 simply by overcoming its own weight, making the operation convenient. The setting of the connecting platform 13 also reduces the direct contact area between the bottom of the storage box 41 and the bottom of the connecting groove 12, reducing the possibility of wear caused by friction, and making it easier to clean the area around the connecting platform 13 when cleaning the connecting groove 12, further improving the convenience of cleaning.
[0046] See Figure 4The housing assembly for the cold beverage equipment also includes a receiving device 5, which receives raw materials from the storage tank 41. The first housing 1 or the second housing 2 has a water-receiving cavity 14, and the receiving device 5 is detachably connected to the water-receiving cavity 14. This detachable connection allows the water tray 51 to be removed separately from the first housing 1 or the second housing 2. This allows for thorough cleaning of any residual liquid or stains in the water tray 51, effectively cleaning the bottom of the water tray 51 and the connection point with the first housing 1 or the second housing 2. This avoids the accumulation of stains and odors that would result from the non-removable water tray 51, ensuring the hygiene of the receiving device 5.
[0047] The receiving device 5 includes a water receiving tray 51, with a telescopic fixing mechanism 512 on its side. The inner wall of the water receiving installation cavity 14 has a water receiving fixing hole 141, and the telescopic fixing mechanism 512 can be detachably connected to the water receiving fixing hole 141. This combination further enhances the connection stability between the receiving device 5 and the water receiving installation cavity 14. When the receiving device 5 is installed, the telescopic fixing mechanism 512's extension and retraction ensures a secure connection with the water receiving fixing hole 141, preventing the receiving device 5 from easily shaking or falling off within the water receiving installation cavity 14. When the receiving device 5 needs to be disassembled for cleaning, simply retracting the telescopic fixing mechanism 512 releases the connection to the water receiving fixing hole 141, making operation simple. This structural design ensures the stable installation of the receiving device 5 without compromising its detachability, improving the reliability of the equipment during operation, facilitating subsequent cleaning and maintenance, and further optimizing the user experience of the receiving device 5.
[0048] The telescopic fixing mechanism 512 includes a movable slider, which is movable relative to the water receiving tray. The movable slider can slide relative to the receiving tray 41 and protrude from the side wall of the receiving tray 41. The movable slider can be inserted into the water receiving fixing hole 141 to form a detachable connection. The cooperation between the movable slider and the water receiving fixing hole 141 provides a reliable fixing method for the receiving tray 41. When the movable slider protrudes from the side wall of the receiving tray 41 and is inserted into the water receiving fixing hole 141, the receiving tray 41 can be firmly fixed in the mounting cavity 212, preventing it from shaking or falling off during equipment operation. The sliding characteristic of the movable slider allows the user to easily remove the receiving tray 41 simply by sliding the movable slider to disengage it from the water receiving fixing hole 141. In practice, an elastic element can be provided at one end of the movable slider so that the movable slider can remain in an outward protruding state, thereby ensuring that it is fixed on the water receiving fixing hole 141. When it is necessary to remove the material receiving tray 41, force is applied to overcome the elastic force of the elastic element, so that the movable slider retracts and leaves the water receiving fixing hole 141, thereby allowing the material receiving tray 41 to be pulled out.
[0049] Furthermore, the water receiving cavity 14 is provided with inclined grooves 143 on both sides. The inclined grooves 143 are recessed into the inner wall of the water receiving cavity 14 and are inclined. Correspondingly, the water receiving tray 51 is provided with sliders 511 on both sides. The sliders 511 protrude from the side wall of the water receiving tray 51 and can be inserted into the inclined grooves 143 and slide along the inclined grooves 143. The inclined direction of the inclined grooves 143 provides a clear trajectory guide for the installation of the water receiving tray 51, allowing the water receiving tray 51 to accurately enter the water receiving cavity 14 according to the preset path. At the same time, the cooperation between the sliders 511 and the inclined grooves 143 limits the installation trajectory of the water receiving tray 51, preventing the water receiving tray 51 from shifting left or right or shaking during the installation process, ensuring the stability and accuracy of the installation process. When cleaning is required, the water receiving tray 51 can slide smoothly out along the inclined grooves 143, making the operation simple.
[0050] Furthermore, a positioning groove 144 is provided at the end of the inclined slide 143. The positioning groove 144 is horizontally or inclined downwards, forming a continuous installation path with the inclined slide 143. The slider 511 can move from the inclined slide 143 into the positioning groove 144. When the slider 511 slides along the inclined slide 143 to its end, it can move from the inclined slide 143 into the positioning groove 144, thus achieving final fixation. The positioning groove 144 positions the slider 511, ensuring that the water receiving tray 51 will not easily move after being installed, thus enhancing the stability of the water receiving tray 51 within the water receiving installation cavity 14. Whether the positioning groove 144 is set horizontally or tilted downwards, it can be initially fixed by the gravity of the water receiving tray 51 itself, and can be reliably fixed without obstructing the entry of the slider 511. At the same time, when disassembling the water receiving tray 51, the slider 511 can also easily slide back from the positioning groove 144 to the tilted slide groove 143 without affecting the removal of the water receiving tray 51, thus ensuring the convenience of cleaning operations.
[0051] After the slider 511 is inserted into the positioning groove 144, initial fixation is achieved. Then, the telescopic fixing mechanism 512 is used to lock the water receiving tray 51, thereby achieving a stable fixing effect.
[0052] See Figure 2 and Figure 5To secure the first housing 1, the fixing groove 21 includes a limiting groove 211 and a slot 212. The limiting groove 211 is located at the upper part of the slot 212. A limiting platform 15 is provided at the upper part of the first housing 1, protruding outward. The shape of the limiting platform 15 corresponds to the shape of the limiting groove 211. A lower insertion part 16 is provided at the bottom of the first housing 1, protruding downward. When the first housing 1 is placed in the fixing groove 21, the lower insertion part 16 can be inserted into the slot 212, and the limiting platform 15 can abut against the limiting groove 211. When the first housing 1 is placed in the fixing groove 21, the lower insertion part 16 can be inserted into the slot 212, achieving positioning of the bottom of the first housing 1; at the same time, the limiting platform 15 can abut against the limiting groove 211, limiting the upper part of the first housing 1. The first housing 1 is fixed from both the top and bottom by the cooperation of the limiting groove 211 and the limiting platform 15, and the slot 212 and the lower insertion part 16. This effectively prevents the first housing 1 from shaking or shifting during the operation of the equipment, ensures the shielding effect of the first housing 1 on the side wall of the fixing groove 21, and further ensures that liquids and other substances only splash into the first housing 1 when the evaporation device is working, which provides convenience for subsequent cleaning of the first housing 1.
[0053] See Figure 5 The first housing 1 has a lifting plate 17 on one side, with a handle hole 171. This handle hole allows the user to easily lift the first housing 1, providing a convenient point of leverage for disassembly. The upper part of the lifting plate 17 has an abutment plate 172 extending outwards from its top. Correspondingly, the second housing 2 has an abutment platform 22 on one side, with a downward-facing lifting groove 221. The abutment plate 172 abuts against the abutment platform 22, and the handle hole 171 communicates with the lifting groove 221. After installation, the abutment plate 172 abuts against the abutment platform 22, enhancing the stability of the connection between the first housing 1 and the second housing 2 and preventing the first housing 1 from loosening during operation. Meanwhile, the handle hole 171 can communicate with the lifting groove 221. When it is necessary to disassemble the first housing 1, the user's fingers can pass through the lifting groove 221 and insert into the handle hole 171 to lift the first housing 1. This design, which uses the handle hole 171 and the lifting groove 221 together, not only ensures the structural stability after installation, but also makes the lifting operation of the first housing 1 more convenient, further improving the ease of disassembly and cleaning of the first housing 1.
[0054] The second housing 2 has a front mounting portion 23 on its front side, and a second insert groove 231 on the front mounting portion 23. The second insert groove 231 forms a strip-shaped accommodating space from top to bottom, and the second insert groove 231 is recessed towards the inner side of the inner wall of the second housing 2. The first housing 1 also includes a plug-in portion 18, which protrudes towards the outer side of the outer wall of the first housing 1. The shapes and positions of the two are adapted to each other. When the first housing 1 is placed in the fixing groove 21, the plug-in portion 18 can be inserted into the second insert groove 231. The second insert groove 231, through its cooperation with the plug-in portion 18, further limits and fixes the first housing 1, effectively preventing the first housing 1 from shifting in the horizontal direction. At the same time, this cooperation also further fixes the plug-in portion 18 on the front side of the first housing 1, enhancing the stability of the plug-in portion 18, thereby improving the stability of the fixing device. Compared to a structure that relies solely on the fixing groove 21 to position the first housing 1, this design further enhances the overall stability of the first housing 1 during installation, ensuring stable material scraping during equipment operation. In this embodiment of the invention, the insertion part 18 and the inserting part 11 have the same structure; in other embodiments, the insertion part 18 and the inserting part 11 may have different structures at different locations.
[0055] See Figure 6 The housing assembly for the cold beverage equipment also includes a viewing window cover 6. The viewing window cover 6 is transparent, allowing users to directly observe the working status of the blade holder 31 and the scraper, facilitating real-time monitoring of the equipment's operation. The viewing window cover 6 covers the periphery of the blade holder 31, providing protection against foreign objects entering or splashing out during operation, without obstructing observation. A hinge hole 24 is provided on one side of the first housing 1 or the second housing 2, and hinge posts 61 are provided on both sides of the viewing window cover 6. The hinge posts 61 can be hinged to the hinge hole 24, allowing the viewing window cover 6 to be flipped relative to the first housing 1 or the second housing 2. When cleaning or maintenance of the blade holder 31 and the scraper is required, the viewing window cover 6 can be flipped open for convenient operation; while during equipment operation, closing the viewing window cover 6 provides effective protection, balancing ease of observation and safety.
[0056] This utility model embodiment also discloses a cold drink device, including a housing assembly for a cold drink device as described above. The housing assembly for the cold drink device is provided with a blade fixing device 3 and a material storage device 4 detachably connected to the housing 100, wherein the blade holder 31 of the blade fixing device 3 and the material storage box 41 of the material storage device 4 can be detached from the housing 100. By designing the blade holder 31 to be detachably connected to the housing 100, the blade holder 31 can be removed separately from the housing 100. When the scraper becomes worn, dull, or the blade holder 31 deforms, it is not necessary to disassemble the entire housing 100 and the blade fixing device 3 as a whole. Only the blade holder 31 needs to be removed for replacement or repair, simplifying the operation process. Moreover, when the storage tank 41 develops cracks or leaks due to aging, or when different sizes of storage tanks 41 need to be replaced to make different flavored cold drinks, the storage tank 41 can be replaced directly without replacing the entire housing assembly, reducing the waste of equipment parts. Therefore, this utility model achieves the detachable connection of the blade fixing device 3 and the storage device 4 to the housing 100, achieving the purpose of disassembling and replacing them individually, effectively reducing the difficulty and cost of equipment maintenance.
[0057] The above are preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.
Claims
1. A housing assembly for a beverage cooling device, characterized in that, It includes a housing, a blade fixing device, and a material storage device, wherein the blade fixing device and the material storage device are both connected to the housing; The blade securing device includes a blade holder, which is detachably connected to the receiving body; And / or, the storage device includes a storage tank, which is detachably connected to the accommodating body.
2. The housing assembly for a beverage cooling device according to claim 1, characterized in that, The accommodating body includes a first housing and a second housing, wherein the first housing is detachably connected to the second housing.
3. The housing assembly for a beverage cooling device according to claim 2, characterized in that, The second housing has a fixing groove inside, and the first housing is detachably inserted into the fixing groove and can cover the side wall of the fixing groove. The first housing surrounds the evaporation device of the cold drink equipment.
4. The housing assembly for a beverage cooling device according to claim 2, characterized in that, The first housing or the second housing is provided with a blade insertion part, and the blade holder is detachably connected to the blade insertion part; the first housing or the second housing is provided with a connecting groove, and the storage box is detachably placed in the connecting groove.
5. The housing assembly for a beverage cooling device according to claim 4, characterized in that, The inner wall of the inserting part is provided with a first inserting groove, and the two sides of the blade holder are provided with inserting protrusions. The shape of the inserting protrusions corresponds to the shape of the first inserting groove, and the inserting protrusions can be inserted into the first inserting groove.
6. The housing assembly for a beverage cooling device according to claim 5, characterized in that, The first insert groove forms a strip-shaped accommodating space from top to bottom, and the insertion protrusion protrudes towards both sides of the tool holder. The cross-sectional area of the first insert groove gradually decreases from top to bottom.
7. The housing assembly for a beverage cooling device according to claim 5, characterized in that, The first insert groove has a limiting protrusion on its side, which protrudes from the side of the first insert groove. The insert protrusion has a limiting slot on its side, and the shape of the limiting slot corresponds to the shape of the limiting protrusion. The limiting protrusion can be inserted into the limiting slot.
8. The housing assembly for a beverage cooling device according to claim 4, characterized in that, The connecting groove is provided with a connecting platform, which protrudes from the inner wall of the connecting groove, and part of the bottom of the storage box can abut against the connecting platform.
9. The housing assembly for a beverage cooling device according to claim 2, characterized in that, The housing assembly for the cold beverage equipment further includes a receiving device, wherein the first housing or the second housing is provided with a water receiving installation cavity, and the receiving device is detachably connected to the water receiving installation cavity.
10. The housing assembly for a beverage cooling device according to claim 9, characterized in that, The receiving device includes a water receiving tray, the side of which is provided with a telescopic fixing mechanism, and the inner wall of the water receiving installation cavity is provided with a water receiving fixing hole. The telescopic fixing mechanism can be detachably connected to the water receiving fixing hole.
11. The housing assembly for a beverage cooling device according to claim 10, characterized in that, The water receiving installation cavity is provided with inclined sliding grooves on both sides. The inclined sliding grooves are recessed into the inner wall of the water receiving installation cavity and are inclined. The water receiving tray is provided with sliders on both sides. The sliders protrude from the side wall of the water receiving tray and can be inserted into the inclined sliding grooves and slide along the inclined sliding grooves.
12. The housing assembly for a beverage cooling device according to claim 11, characterized in that, The inclined slide is provided with a positioning groove at its end. The positioning groove is set horizontally or inclined downwards, and the slider can move from the inclined slide into the positioning groove.
13. The housing assembly for a beverage cooling device according to claim 3, characterized in that, The fixing groove includes a limiting groove and a slot. The limiting groove is located on the upper part of the slot. The upper part of the first housing is provided with a limiting platform that protrudes outward. The shape of the limiting platform corresponds to the shape of the limiting groove. The bottom of the first housing is provided with a lower insertion part that protrudes downward. When the first housing is placed in the fixing groove, the lower insertion part can be inserted into the slot, and the limiting platform can abut against the limiting groove.
14. The housing assembly for a beverage cooling device according to claim 2, characterized in that, The first housing has a lifting plate on one side, a handle hole on the lifting plate, and an abutment plate on the upper part of the lifting plate, the abutment plate extending outward from the top of the lifting plate. The second housing has an abutment platform on one side, the abutment platform has a downwardly recessed lifting groove, the abutment plate can abut against the abutment platform, and the handle hole can communicate with the lifting groove.
15. The housing assembly for a beverage cooling device according to claim 4, characterized in that, The front side of the second housing is provided with a front mounting part, and the front mounting part is provided with a second insert groove. The second insert groove forms a strip-shaped receiving space from top to bottom. The second insert groove is recessed towards the inner side of the inner wall of the second housing. The first housing also includes a plug-in part, which protrudes towards the outer side of the outer wall of the first housing. When the first housing is placed in the fixing groove, the plug-in part can be inserted into the second insert groove.
16. The housing assembly for a beverage cooling device according to claim 2, characterized in that, The housing assembly for the cold beverage device also includes a viewing window cover that covers the periphery of the blade holder. A hinge hole is provided on one side of the first housing or the second housing, and hinge posts are provided on both sides of the viewing window cover. The hinge posts can be hinged to the hinge hole, and the viewing window cover can be flipped relative to the first housing or the second housing.
17. A cold drink equipment, characterized in that, Includes the housing assembly for a beverage cooling device as described in any one of claims 1-16.