A cold beverage apparatus

By installing a detection device in the beverage equipment, the separation status of the storage device and the container device can be monitored in real time, which solves the safety hazards caused by the inability to identify the separation of the storage device in the existing technology, and improves the safety and reliability of the equipment.

CN224593557UActive Publication Date: 2026-08-04ZHONGSHAN DONLIM WEILI ELECTRICAL APPLIANCES CO LTD
View PDF 0 Cites 0 Cited by

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

Technical Problem

Existing cold drink equipment cannot identify the separation status of the storage device, which poses safety hazards, such as frostbite caused by exposure of low-temperature components, risk of mechanical entanglement, and contamination by external impurities.

Method used

Detection devices are installed on the storage and holding devices to detect the separation status of the storage box from the holding device through magnetic or infrared sensing modules. Combined with the detection of the viewing window cover and the receiving device, real-time monitoring and safety protection are achieved.

Benefits of technology

It enables real-time identification of the separation status of the storage device, preventing exposure of low-temperature components, entanglement of mechanical structures, and contamination by external impurities, thereby improving the safety and reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224593557U_ABST
    Figure CN224593557U_ABST
Patent Text Reader

Abstract

The utility model discloses a cold drink equipment, cold drink equipment includes accommodating device and is located on the accommodating device's storage device, the storage device is detachably located on the accommodating device, the storage device includes storage tank and first detection piece, the storage tank is detachably located on the accommodating device, first detection piece is located on the storage tank or the accommodating device, and first detection piece is used for detecting whether the storage tank is separated with the accommodating device, and the upper portion of accommodating device is equipped with the connecting groove, and the connecting groove can accommodate the partial bottom of storage tank, and the storage tank is detachably placed in the connecting groove, and the storage device still includes first measured piece, and first measured piece is located at the lower part of storage tank, and first detection piece is located on the connecting platform. Adopting the utility model, can identify the separation state of storage device, and eliminate the hidden danger.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of cold drink equipment technology, and in particular to a cold drink equipment. Background Technology

[0002] In catering services, retail, and home settings, ice-making equipment (such as commercial ice makers and household beverage coolers) is crucial for ensuring the supply of cold drinks. It converts water into ice or slush through an internal refrigeration system. In existing technology, such equipment typically includes a housing providing the mounting frame and refrigeration space, and a storage unit for storing the ice-making ingredients (mainly water). For easy water replenishment and cleaning, the storage unit generally employs a detachable design: a common pull-out structure uses a bottom guide rail that engages with the guide groove of the housing to achieve pull-out. While this design facilitates maintenance, the lack of a monitoring mechanism for the separation of the storage unit from the housing means that if the storage unit is accidentally pulled out during operation (e.g., due to accidental contact, child pulling, or loose installation), critical internal components of the housing will be directly exposed. Exposed low-temperature components (such as evaporators and cryogenic coils) may cause frostbite; continuous operation of internally linked mechanical structures (such as agitators and conveyor screws) may pose a risk of entrapment; at the same time, external dust and impurities can enter the refrigeration space through gaps, contaminating the ice-making environment and even causing short circuits. Therefore, existing equipment cannot identify the separation status of the storage device, posing a safety hazard. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a cold drink device that can identify the separation state of the storage device and eliminate safety hazards.

[0004] To solve the above-mentioned technical problems, the present invention provides a cold drink device, including a container and a storage device disposed on the container, wherein the storage device is detachably disposed on the container.

[0005] The storage device includes a storage box and a first detection element. The storage box is detachably mounted on the receiving device. The first detection element is mounted on the storage box or the receiving device and is used to detect whether the storage box is separated from the receiving device.

[0006] As an improvement to the above solution, the upper part of the receiving device is provided with a connecting groove, which can accommodate part of the bottom of the storage box, and the storage box can be detachably placed in the connecting groove.

[0007] 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.

[0008] As an improvement to the above solution, the storage device further includes a first test piece, which is located at the lower part of the storage box, and the first detection piece is located on the connecting platform; or the first test piece is located on the connecting platform, and the first detection piece is located at the position of the first detection piece at the lower part of the storage box.

[0009] The position of the first detection element corresponds to the position of the first test element.

[0010] As an improvement to the above solution, the cold drink device further includes a viewing window device, the viewing window device including a viewing window cover, one side of the viewing window cover being hinged to the receiving device, and at least a portion of the structure of the viewing window cover being able to be flipped to move closer to or further away from the receiving device to achieve closure or opening.

[0011] As an improvement to the above solution, the window device further includes a second detection element, which is disposed on the window cover or the receiving device, and is used to detect whether the window cover is in an open or closed state.

[0012] As an improvement to the above solution, the accommodating device includes a front mounting part, and side plates are provided on both sides of the front mounting part. The two sides of the viewing window cover are respectively hinged to the side plates.

[0013] As an improvement to the above solution, the side plate is provided with a hinge hole, and the side of the window cover is provided with a hinge post, which can be inserted into the hinge hole.

[0014] As an improvement to the above solution, the viewing window device further includes a second test member, which is disposed on the side of the viewing window cover, and the second detection member is disposed on the side of the front mounting portion; or the second test member is disposed on the side of the front mounting portion, and the second detection member is disposed at the position of the second detection member on the side of the viewing window cover.

[0015] The position of the second detection element corresponds to the position of the second test element.

[0016] As an improvement to the above solution, the cold drink equipment also includes a receiving device, the bottom of which is provided with a water receiving cavity, and the receiving device is detachably connected to the water receiving cavity.

[0017] As an improvement to the above solution, the receiving device includes a water receiving tray with a top rod on it, and a valve is provided at the bottom of the storage box. The position of the valve corresponds to the position of the top rod. After the storage box is placed in the receiving device, the top rod can abut against the valve and open the valve.

[0018] As an improvement to the above solution, the bottom of the valve is provided with a limiting groove, the opening of the limiting groove faces downward and corresponds to the position of the push rod. After the storage box is placed in the receiving device, the push rod can be inserted into the limiting groove.

[0019] As an improvement to the above solution, the valve body includes a limiting ring, the limiting groove is disposed in the middle of the limiting ring, and a support strip is provided between the inner wall of the limiting ring and the outer wall of the limiting groove, the support strip extending from the inner wall of the limiting ring toward the outer wall of the limiting groove.

[0020] As an improvement to the above solution, the connection between the support bar and the limiting ring forms a concave arc-shaped structure, and the connection between the support bar and the outer wall of the limiting groove forms a concave arc-shaped structure.

[0021] As an improvement to the above solution, the cold drink equipment also includes a blade fixing device, which includes a blade holder and a scraper. The scraper is disposed on the blade holder, and the receiving device is provided with a blade insertion slot. The blade holder is detachably disposed in the blade insertion slot.

[0022] As an improvement to the above solution, the tool fixing device includes a third detection element, which is used to detect whether the tool holder is separated from the receiving device. The third detection element is disposed on the tool holder or on the tool insertion slot.

[0023] As an improvement to the above solution, the tool fixing device includes a third detection element, which is used to detect whether the tool holder has separated from the receiving device.

[0024] The tool fixing device further includes a third test component, which is disposed on the side of the tool holder and the third detection component is disposed on the side of the tool insertion slot; or the third test component is disposed on the side of the tool insertion slot and the third detection component is disposed on the side of the tool holder.

[0025] The third detection element corresponds to the position of the third test element.

[0026] Implementing this utility model has the following beneficial effects:

[0027] This utility model relates to a cold beverage equipment comprising a containing device and a storage device. The storage device includes a storage tank and a first detection element. The storage tank is detachably mounted on the containing device, and the first detection element is mounted on either the storage tank or the containing device. The first detection element directly detects whether the storage tank has separated from the containing device, enabling real-time and accurate identification of the separation state of the storage device, thus solving the problem that existing cold beverage equipment cannot identify this state. Simultaneously, the detachable mounting of the storage device on the containing device retains the practical advantages of existing equipment, such as easy replenishment of raw materials and cleaning. Therefore, when a separation state is detected, a safety protection mechanism can be triggered to prevent frostbite from exposed low-temperature components, the risk of entanglement from operating mechanical structures, and the entry of external debris into the environment or causing short circuits. This eliminates the safety hazards of accidental removal of the storage device, ensuring user safety and stable equipment operation, and improving the safety and reliability of the equipment. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the disassembled structure of the cold drink equipment of this utility model;

[0029] Figure 2 This is a schematic diagram of the assembly structure of the accommodating device, the storage device, and the viewing window device of this utility model;

[0030] Figure 3 This is a schematic diagram showing the disassembled structure of the accommodating device and the storage device of this utility model;

[0031] Figure 4 This is a partially disassembled structural diagram of the accommodating device, the storage device, and the viewing window device of this utility model;

[0032] Figure 5 This is a schematic diagram showing the disassembled structure of the accommodating device and the viewing window device of this utility model;

[0033] Figure 6 This is a schematic diagram showing the disassembled structure of the accommodating device, the storage device, and the receiving device of this utility model;

[0034] Figure 7 This is a structural schematic diagram of the valve component of this utility model;

[0035] Figure 8 This is a schematic diagram showing the disassembled structure of the accommodating device and the knife fixing device of this utility model. Detailed Implementation

[0036] 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.

[0037] See Figure 1 and Figure 2 This utility model discloses a cold drink equipment, including a container 1 and a storage device 2 disposed on the container 1. The container 1 includes an ice-making space 15, which provides the installation foundation and support for the entire cold drink equipment. The ice-making space 15 is the core working area for ice making, providing the necessary environment for cold drink preparation. The storage device 2 is detachably disposed on the container 1. The storage device 2 is used to store the raw materials required for making cold drinks. Its detachable design facilitates cleaning and replenishment of raw materials by the user, retaining the practicality of existing equipment that is easy to maintain.

[0038] The storage device 2 includes a storage box 21 and a first detection element 22. The storage box 21 is detachably mounted on the receiving device 1. The first detection element 22 is mounted on the storage box 21 or the receiving device 1. The first detection element 22 is used to detect whether the storage box 21 is separated from the receiving device 1. The first detection element 22 can be a magnetic proximity sensor or an infrared sensing module: When a magnetic proximity sensor is used, a magnetic element and a sensor are embedded at corresponding positions on the storage box 21 and the receiving device 1, respectively. During normal installation, the magnetic element generates a stable magnetic field signal when it approaches the sensor. When separated, the change in magnetic field triggers the sensor to output an electrical signal. If an infrared sensing module is used, the infrared emitter on the receiving device 1 continuously emits infrared light. When the storage box 21 is normally installed, it blocks the light. When the storage box 21 is detached, the infrared receiver receives a sudden change in the intensity of the light, triggering the output of a detection signal. When the first detection element 22 is mounted on the storage bin 21, it can move together with the storage bin 21. When the storage bin 21 separates from the containing device 1, the first detection element 22 can emit a detection signal through the change in position relative to the containing device 1. If the first detection element 22 is mounted on the containing device 1, it can emit a signal by sensing the detachment of the storage bin 21. This detection principle allows the device to detect in real time whether the storage bin 21 is in a normal installation state, avoiding the problem in the prior art where the storage component cannot be detected due to accidental detachment, and fundamentally eliminating the safety hazards caused by this.

[0039] The beneficial effects of this utility model embodiment are as follows:

[0040] This utility model embodiment of a cold drink equipment includes a containing device 1 and a storage device 2. The storage device 2 includes a storage tank 21 and a first detection element 22. The storage tank 21 is detachably mounted on the containing device 1, and the first detection element 22 is mounted on either the storage tank 21 or the containing device 1. The first detection element 22 directly detects whether the storage tank 21 has separated from the containing device 1, enabling real-time and accurate identification of the separation state of the storage device 2, solving the problem that existing cold drink equipment cannot identify this state. Simultaneously, the detachable mounting of the storage device 2 on the containing device 1 retains the practical advantages of existing equipment, such as easy replenishment of raw materials and cleaning. Therefore, when a separation state is detected, a safety protection mechanism can be triggered to prevent frostbite from exposed low-temperature components, the risk of entanglement from operating mechanical structures, and the entry of external debris into the environment or causing short circuits. This eliminates the safety hazards of accidental removal of the storage device 2, ensuring user safety and stable equipment operation, and improving the safety and reliability of the equipment.

[0041] See Figure 3 The upper part of the receiving device 1 is provided with a connecting groove 11, which can accommodate part of the bottom of the storage box 21. The storage box 21 is detachably placed in the connecting groove 11. By accommodating part of the bottom of the storage box 21 through the connecting groove 11, the horizontal displacement of the storage box 21 can be restricted, making the fit between the storage box 21 and the receiving device 1 more stable. This ensures the accuracy of the detection by the first detection element 22, reduces false detections caused by the shaking of the storage box 21, and makes the monitoring of whether the storage box 21 is separated more reliable.

[0042] A connecting platform 111 is provided within the connecting groove 11. The connecting platform 111 protrudes from the inner wall of the connecting groove 11, and a portion of the bottom of the storage box 21 can abut against the connecting platform 111. When the storage box 21 is placed in the connecting groove 11, a portion of the bottom of the storage box 21 can abut against the connecting platform 111. The connecting platform 111 supports the storage box 21 and prevents the storage box 21 from sinking excessively into the connecting groove 11, ensuring the accurate positioning of the storage box 21 after installation. This structural design does not affect the removability of the storage box 21; it can be removed from the connecting groove 11 simply by overcoming its own weight, making operation convenient. The connecting platform 111 also reduces the direct contact area between the bottom of the storage box 21 and the bottom of the connecting groove 11, reducing the possibility of wear caused by friction.

[0043] See Figure 4The storage device further includes a first test element 24, which corresponds to the position of the first detection element 22. The first test element 24 cooperates with the first detection element 22 to detect whether the storage bin 21 has left the connecting platform 111. The first detection element 22 is preferably a magnetron detector, and the first test element 24 is preferably a magnetic block. In other embodiments, the first detection element 22 can be an infrared detector, and the first test element 24 is the detection part corresponding to the infrared detector. In one embodiment, the first test element 24 is located at the lower part of the storage bin 21, and the first detection element 22 is located on the connecting platform 111; in other embodiments, the first test element 24 is located on the connecting platform 111, and the first detection element 22 is located at the lower part of the storage bin 21.

[0044] See Figure 4 and Figure 5 The cold drink equipment also includes a viewing window device 3, which is rotatably connected to or detachably connected to the accommodating device 1. The rotatable or detachable connection enables the switching between open and closed states. When closed, it can cover at least a part of the ice-making space 15, which not only makes it convenient for users to observe the situation inside the ice-making space 15, but also protects the ice-making environment to a certain extent.

[0045] The viewing window device 3 includes a viewing window cover 31 and a second detection element 32. One side of the viewing window cover 31 is movably connected to the receiving device 1. At least a portion of the structure of the viewing window cover 31 can be moved closer to or further away from the receiving device 1 to achieve opening or closing. When the viewing window cover 31 is in the closed state, it can cover at least a portion of the ice-making space 15, which facilitates the user's observation of the situation inside the ice-making space 15 and also protects the ice-making environment to a certain extent. The viewing window cover 31 can be opened or closed by flipping it over, or by removing and connecting it separately. The second detection element 32 is disposed on the viewing window cover 31 or the receiving device 1, and is used to detect whether the viewing window cover 31 is in an open or closed state. The second detection element 32 can be a magnetic proximity sensor or an infrared sensing module. When the second detection element 32 uses magnetic sensing, a magnet and a Hall sensor can be installed on the window cover 31 and the housing 1 respectively. When the window cover 31 is flipped or removed, the change in distance between the magnet and the Hall sensor will cause a change in the magnetic field strength. The Hall sensor converts the magnetic field signal into an electrical signal, and the opening and closing state of the window cover 31 is determined by the change in the electrical signal. If infrared sensing is used, an infrared emitting tube is installed on the housing 1, and an infrared receiving tube is installed at the corresponding position on the window cover 31. When the window cover 31 is closed, the signal emitted by the infrared emitting tube is received by the receiving tube. When the window cover 31 is opened, the signal transmission is interrupted, thereby detecting the state of the window cover 31. When the second detection element 32 is located on the window cover 31, its relative position with the housing 1 changes with the flipping of the window cover 31, thereby detecting its opening and closing state. If it is located on the housing 1, the positional change of the window cover 31 can be directly sensed. This detection method can promptly detect any abnormal opening of the viewing window cover 31, avoiding the risk of the equipment continuing to operate after the viewing window cover 31 is accidentally opened in the prior art. This ensures the cleanliness of the ice-making space 15, maintains the quality of the beverage, and prevents personnel from being injured by contact with internal components.

[0046] See Figure 5 The accommodating device 1 includes a front mounting portion 12, with side plates 121 on both sides of the front mounting portion 12. The two sides of the viewing window cover 31 are hinged to the side plates 121 respectively. The viewing window cover 31 can be flipped relative to the front mounting portion 12, moving closer to or further away from the accommodating device 1, thereby closing or opening. The side plates 121 have hinge holes 122, and the side of the viewing window cover 31 has hinge posts 311, which can be inserted into the hinge holes 122. This structure is simple to manufacture and easy to assemble, ensuring a tight connection between the viewing window cover 31 and the side plates 121, and reducing shaking caused by connection gaps.

[0047] See Figure 4Specifically, the viewing window device 3 further includes a second test element 33, which corresponds to the position of the second detection element 32. The second test element 33 cooperates with the second detection element 32 to detect whether the viewing window cover 31 is far away from the receiving device 1. The second detection element 32 is preferably a magnetron detector, and the second test element 33 is preferably a magnetic block. In other embodiments, the second detection element 32 can be an infrared detector, and the second test element 33 is the detection part corresponding to the infrared detector. In one embodiment, the second test element 33 is disposed on the side of the viewing window cover 31, and the second detection element 32 is disposed on the side of the front mounting part 12; in other embodiments, the second test element 33 is disposed on the side of the front mounting part 12, and the second detection element 32 is disposed on the side of the viewing window cover 31.

[0048] See Figure 6 The beverage equipment also includes a receiving device 4. The bottom of the containing device 1 has a water-receiving cavity 13, and the receiving device 4 is detachably connected to the water-receiving cavity 13. The water-receiving cavity 13 provides dedicated installation space for the receiving device 4, allowing it to be stably installed at the bottom of the containing device 1. The receiving device 4 can not only receive raw materials from the storage tank 21, but also collect water droplets, condensate, or residual beverages that may be generated during equipment operation, preventing liquids from dripping directly onto the outside of the equipment and causing pollution or safety hazards.

[0049] The receiving device 4 includes a water receiving tray 41 with a push rod 411 on it. A valve 23 is located at the bottom of the storage tank 21, with the valve 23 corresponding to the push rod 411. After the storage tank 21 is placed in the receiving device 1, the push rod 411 abuts against the valve 23 and opens it. The water receiving tray 41 directly receives liquid, while the cooperation between the push rod 411 and the valve 23 controls the output of raw materials from the storage tank 21. When the storage tank 21 is correctly placed in the receiving device 1, the push rod 411 abuts against the valve 23, automatically opening it and allowing the raw materials in the storage tank 21 to flow out as needed, eliminating the need for manual opening and improving operational convenience.

[0050] See Figure 7The valve component 23 has a limiting groove 231 at its bottom, with the opening of the limiting groove 231 facing downwards and corresponding to the position of the push rod 411. After the storage box 21 is placed in the receiving device 1, the push rod 411 can be inserted into the limiting groove 231. The limiting groove 231 guides and positions the push rod 411. When the storage box 21 is placed in the receiving device 1, the push rod 411 can be accurately inserted along the opening of the limiting groove 231, ensuring that the push rod 411 can accurately abut against the valve component 23 and guarantee the normal opening of the valve component 23. At the same time, this cooperation structure between the limiting groove 231 and the push rod 411 also forms a mechanical interlock mechanism, effectively preventing the water receiving tray 41 from being directly pulled out. When the storage tank 21 is properly installed, the push rod 411, after being inserted into the limiting groove 231, will form a fixed constraint on the storage tank 21. The water receiving tray 41 is linked to the storage tank 21, preventing it from being pulled out while the storage tank 21 is installed. Only after removing the storage tank 21 and disengaging the push rod 411 from the limiting groove 231 will the locking state of the water receiving tray 41 be released, allowing the user to perform cleaning or replacement operations. This structural design avoids the risk of raw material leakage and equipment damage caused by accidental removal of the water receiving tray 41, and also prevents safety hazards caused by the accidental removal of the water receiving tray 41 during equipment operation.

[0051] To protect the valve body, the valve body includes a limiting ring 232, and a limiting groove 231 is located in the middle of the limiting ring 232. The limiting ring 232 not only provides guidance and limiting for the push rod 411, but also provides peripheral protection for the valve component 23. Before disassembly, it prevents the push rod 411 from damaging the valve body, and after disassembly, it prevents external debris from directly impacting the limiting groove 231 and the core part of the valve component 23, reducing collision damage. A support strip 233 is provided between the inner wall of the limiting ring 232 and the outer wall of the limiting groove 231, which plays a role in stabilizing support and buffering. The support strip 233 extends from the inner wall of the limiting ring 232 toward the outer wall of the limiting groove 231. The limiting groove 231 is more stable in the middle position of the limiting ring 232, preventing it from shifting or deforming when subjected to the insertion force of the push rod 411, thus protecting the overall structure of the valve component 23. Compared to existing technologies where some valve components 23 lack such protective support structures and are easily damaged by external forces, this design enhances the structural strength and durability of the valve component 23. Especially when the water receiving tray 41 is accidentally pulled out, the support bar 233 can stably support the limiting groove 231, limiting its sway and preventing the top rod 411 from abnormally contacting the valve component 23 and causing damage during the movement of the water receiving tray 41, thus further improving the protection of the valve component 23.

[0052] The connection between the support bar 233 and the limiting ring 232 forms a concave arc-shaped structure, and the connection between the support bar 233 and the outer wall of the limiting groove 231 also forms a concave arc-shaped structure. This arc-shaped structure can disperse the stress at the connection. When the support bar 233 is subjected to the force of the top rod 411 or the external force generated when the water receiving tray 41 is pulled, the stress is evenly distributed, preventing the connection from breaking and strengthening the protection of the valve 23. At the same time, the arc-shaped structure makes the connection smoother, reduces weak points caused by structural abrupt changes, and improves the overall structural stability and service life of the valve 23.

[0053] See Figure 8 The cold drink equipment also includes a blade fixing device 5, which comprises a blade holder 51 and a scraper 52. The scraper 52 is mounted on the blade holder 51, and the receiving device 1 has a blade insertion slot 14. The blade holder 51 is detachably mounted in the blade insertion slot 14. The blade holder 51 provides a mounting carrier for the scraper 52, allowing the scraper 52 to be stably fixed thereon for use in the cold drink preparation process (such as scraping shaved ice). The blade insertion slot 14 provides a dedicated mounting position for the blade holder 51. By detachably mounting the blade holder 51 in the blade insertion slot 14, users can easily replace or clean the scraper 52 as needed, ensuring its effectiveness and hygiene.

[0054] The tool securing device 5 includes a third detection element 53, which is used to detect whether the tool holder 51 has separated from the receiving device 1. The third detection element 53 monitors the installation status of the tool holder 51 in real time based on the proximity sensing principle or a mechanical contact triggering mechanism. When using the proximity sensing principle, the third detection element 53 has a built-in electromagnetic induction coil or infrared sensing module, and a magnetic metal sheet or reflective material is embedded in the bottom of the tool holder 51. When the tool holder 51 is correctly installed in the tool insertion slot 14, the sensing distance between the detection element and the tool holder 51 is within a preset safety threshold, and a stable electrical signal is output; once the tool holder 51 is separated, the sensing distance exceeds the threshold, and the detection element immediately outputs an abnormal signal; when using the mechanical contact triggering mechanism, elastic metal contacts are provided at the bottom or side of the tool insertion slot 14. When the tool holder 51 is inserted, the contacts are pressed down to form a closed circuit; when the tool holder 51 is separated, the contacts are elastically reset to break the circuit, and the detection signal is triggered by the change in the circuit's on / off state.

[0055] Specifically, the tool fixing device 5 further includes a third test element 54, which corresponds to the third detection element 53. The third test element 54 cooperates with the third detection element 53 to detect whether the tool holder 51 is far from the tool insertion slot 14. The third detection element 53 is preferably a magnetron detector, and the third test element 54 is preferably a magnetic block. In other embodiments, the third detection element 53 can be an infrared detector, and the third test element 54 is the detection part corresponding to the infrared detector. In one embodiment, the third test element 54 is located on the side of the tool holder 51, and the third detection element 53 is located on the side of the tool insertion slot 14; in other embodiments, the third test element 54 is located on the side of the tool insertion slot 14, and the third detection element 53 is located on the side of the tool holder 51.

[0056] When the tool holder 51 accidentally detaches from the tool slot 14, the aforementioned detection mechanism can promptly identify the change in status. Compared to existing technologies that lack monitoring of the tool installation status, where the detachment of the tool holder 51 may lead to abnormal equipment operation or safety accidents (such as the scraper 52 falling and damaging other components or causing personal injury), the application of the third detection element 53 can promptly trigger the corresponding protection mechanism when the tool holder 51 is detected to be detached, preventing the equipment from operating in an unsafe state, further improving the safety of equipment use, and ensuring the normal operation of the equipment and the safety of operators.

[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 cold drink equipment, characterized in that, It includes a receiving device and a storage device disposed on the receiving device, the storage device being detachably disposed on the receiving device; The storage device includes a storage box and a first detection element. The storage box is detachably mounted on the receiving device. The first detection element is mounted on the storage box or the receiving device and is used to detect whether the storage box is separated from the receiving device.

2. The cold beverage apparatus of claim 1, wherein, The upper part of the receiving device is provided with a connecting groove, which can accommodate part of the bottom of the storage box, and the storage box can be detachably placed in the connecting groove.

3. The cold beverage apparatus of claim 2, wherein, 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.

4. The cold beverage apparatus of claim 2, wherein, The storage device further includes a first test element, which is located at the lower part of the storage box, and the first detection element is located on the connecting platform; or The first test piece is disposed on the connecting platform, and the first detection piece is disposed at the lower part of the storage box; The position of the first detection element corresponds to the position of the first test element.

5. The cold beverage apparatus of claim 1, wherein, The cold drink device also includes a viewing window device, which includes a viewing window cover. One side of the viewing window cover is hinged to the receiving device. At least a portion of the structure of the viewing window cover can be flipped to move closer to or further away from the receiving device to achieve closure or opening.

6. The cold beverage apparatus of claim 5, wherein, The viewing window device further includes a second detection element, which is disposed on the viewing window cover or the receiving device, and is used to detect whether the viewing window cover is in an open or closed state.

7. The cold beverage apparatus of claim 1, wherein, The accommodating device includes a front mounting part, and side plates are provided on both sides of the front mounting part. The two sides of the viewing window cover are respectively hinged to the side plates.

8. The cold beverage apparatus of claim 7, wherein, The side plate is provided with a hinge hole, and the side of the window cover is provided with a hinge post, which can be inserted into the hinge hole.

9. The cold beverage apparatus of claim 7, wherein, The viewing window device further includes a second test element, which is disposed on the side of the viewing window cover, and the second detection element is disposed on the side of the front mounting portion; or The second test component is located on the side of the front mounting portion, and the second detection component is located on the side of the window cover; The position of the second detection element corresponds to the position of the second test element.

10. The cold beverage apparatus of claim 1, wherein, The cold drink equipment also includes a receiving device, and the bottom of the receiving device is provided with a water receiving cavity, and the receiving device is detachably connected to the water receiving cavity.

11. The cold beverage apparatus of claim 10, wherein, The receiving device includes a water receiving tray with a top rod on it. The bottom of the storage box is equipped with a valve, the position of which corresponds to the position of the top rod. After the storage box is placed in the receiving device, the top rod can abut against the valve and open the valve.

12. The cold beverage apparatus of claim 11, wherein, The bottom of the valve is provided with a limiting groove, the opening of the limiting groove faces downward and corresponds to the position of the push rod. After the storage box is placed in the receiving device, the push rod can be inserted into the limiting groove.

13. The cold beverage apparatus of claim 12, wherein, The valve body includes a limiting ring, a limiting groove is provided in the middle of the limiting ring, and a support strip is provided between the inner wall of the limiting ring and the outer wall of the limiting groove. The support strip extends from the inner wall of the limiting ring toward the outer wall of the limiting groove.

14. The cold beverage apparatus of claim 13, wherein, The connection between the support bar and the limiting ring forms a concave arc-shaped structure, and the connection between the support bar and the outer wall of the limiting groove forms a concave arc-shaped structure.

15. The cold beverage apparatus of claim 1, wherein, The cold drink equipment also includes a blade fixing device, which includes a blade holder and a scraper. The scraper is mounted on the blade holder, and the receiving device has a blade insertion slot. The blade holder is detachably mounted in the blade insertion slot.

16. The cold beverage apparatus of claim 14, wherein, The tool securing device includes a third detection element, which is used to detect whether the tool holder has separated from the receiving device. The third detection element is disposed on the tool holder or on the tool insertion slot.

17. The cold beverage apparatus of claim 14, wherein, The tool securing device further includes a third test component, which is disposed on the side of the tool holder, and the third detection component is disposed on the side of the tool slot; or The third test component is located on the side of the insert slot, and the third detection component is located on the side of the tool holder; The third detection element corresponds to the position of the third test element.