Discharging mechanism and ice crusher
By designing a rotatable shielding component and a second sealing component for the discharge mechanism, the problems of inconvenient discharge and poor sealing of the slush machine were solved, achieving convenient operation and good sealing, and improving the user experience.
Patent Information
- Application Number
- CN202520176385.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-27
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-27
AI Technical Summary
Existing slush machines are inconvenient to discharge, require users to operate them manually for extended periods, leading to hand fatigue, and have poor sealing performance.
Design a discharge mechanism including an ice outlet, a shielding component, and a second seal. The ice outlet is opened and closed by rotating the shielding component, and a second seal is provided between the shielding component and the ice outlet to ensure sealing. The second seal automatically locks when the shielding component rotates to the closed position.
It simplifies the operation process, avoids user hand fatigue, improves sealing performance, prevents poor sealing caused by vibration, and enhances the user experience.
Smart Images

Figure CN223882597U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sand ice machine field, concretely is a kind of discharge mechanism and sand ice machine. BACKGROUND
[0002] In daily life, sand ice machine as a kind of discharge mechanism universally household appliance, in family, coffee shop and various catering places are widely used, mainly for making smoothie, milk shake and other drinks. However, current sand ice machine still has some problems, first, some sand ice machines of existing usually require user to disassemble end cap to pour out prepared ice slurry, this process not only increases the operation complexity of user, also lengthens operation time. In addition, still some sand ice machines are opened discharge port by pulling handle to drive end cap sliding, and end cap is automatically reset by elastic component and makes end cap keep tightly closed discharge port state, this sand ice machine is convenient for user to discharge operation, but user must keep down the posture of handle for a long time in the process of discharging, this is very inconvenient when continuously discharging a large amount of ice slurry, prone to cause hand fatigue of user, especially for the user of small age or poor physical strength.
[0003] Therefore, it needs to develop a kind of discharge mechanism and sand ice machine, can conveniently discharge ice slurry while not needing user to manually operate for a long time. UTILITY MODEL CONTENT
[0004] In view of the problems of the prior art mentioned above that sand ice machine is inconvenient to discharge and prone to cause hand fatigue of user, the technical scheme adopted by the utility model to solve the technical problems is:
[0005] A kind of discharge mechanism, including ice outlet component, wherein the ice outlet component includes ice outlet, the shielding component that can be rotated to switch the ice outlet opening state or closed state of the ice outlet relative to the ice outlet, and the second sealing piece connected with shielding component, second sealing piece is located between the ice outlet and shielding component, the shielding component rotates to opening or closed position, to drive the second sealing piece open or seal the ice outlet, the shielding component rotates to closed position and is in locked state.
[0006] Further, the discharge mechanism of the scheme, wherein the ice outlet component further includes end cap, the ice outlet is located in the end cap, the shielding component further includes handle that can be rotated relative to the end cap, and opening and closing component connected with the handle rotation, the handle is used to drive the opening and closing component relative to the end cap to rotate to opening position or closed position, to open or close the ice outlet.
[0007] Further, the scheme discloses an ice discharging mechanism.
[0008] Further, the scheme discloses an ice discharging mechanism.
[0009] Further, the scheme discloses an ice discharging mechanism.
[0010] Further, the scheme discloses an ice discharging mechanism.
[0011] Further, the scheme discloses an ice discharging mechanism.
[0012] Further, the scheme discloses an ice discharging mechanism.
[0013] Further, the scheme discloses an ice discharging mechanism.
[0014] Further, the scheme discloses an ice discharging mechanism.
[0015] The ice shaver has the advantages of the following beneficial effects.
[0016] The utility model discloses a set up the ice outlet and the sheltering subassembly in the ice outlet assembly, and the user can operate the sheltering subassembly to rotate to the open position or the closed position to open or close the ice outlet, realize the ice slush prepared conveniently in the ice outlet under the condition of not needing to dismantle the end cover, effectively simplify the operation step of user and shorten the operation time, in addition, set up the second sealing piece connected with the sheltering subassembly between the ice outlet and the sheltering subassembly, when the sheltering subassembly rotates to the open position or the closed position, can drive the second sealing piece to open or seal the ice outlet correspondingly, thereby guarantee the sealing property of the ice outlet under the closed state, effectively avoid the problem of poor sealing performance caused by the user not being able to close the end cover completely, in addition, when the sheltering subassembly rotates to the closed position, the sheltering subassembly will be in the locked state, eliminate the need of the user to keep the discharging posture continuously due to the effect of the elastic component, and prevent the sheltering subassembly from loosening due to the vibration in the slush ice making process, avoid the ice outlet accidental opening or the situation of poor sealing.
[0017] The utility model will be further explained in connection with the drawings and specific embodiment. ACCURATE DRAWINGS
[0018] Figure 1 It is a discharge mechanism appearance schematic diagram of the utility model.
[0019] Figure 2 It is a discharge mechanism explosion schematic diagram of the utility model.
[0020] Figure 3 It is a discharge mechanism section schematic diagram of the utility model.
[0021] Figure 4 It is a discharge mechanism section schematic diagram of the utility model.
[0022] Figure 5 It is the end cover connecting piece schematic diagram of a discharge mechanism of the utility model.
[0023] Figure 6 It is the end cover connecting piece section schematic diagram of a discharge mechanism of the utility model.
[0024] Figure 7 It is the opening and closing subassembly schematic diagram of a discharge mechanism of the utility model.
[0025] Figure 8 It is the opening and closing subassembly I part enlarged schematic diagram of a discharge mechanism of the utility model.
[0026] Figure 9 It is the second sealing piece schematic diagram of a discharge mechanism of the utility model.
[0027] Figure 10A second sealing element cross section schematic view of the discharging mechanism.
[0028] Figure 11 A sand ice machine appearance schematic view of the utility model. DETAILED DESCRIPTION
[0029] The embodiment of the utility model will be explained in detail below with reference to the drawings.
[0030] As Figures 1-10 A discharging mechanism shown in the figure, including ice outlet assembly 2, wherein the ice outlet assembly 2 includes ice outlet 211, the shielding assembly 22 that can rotate relative to the ice outlet 211 to switch the ice outlet 211 open state or closed state, and the second sealing element 223 connected with shielding assembly 22, second sealing element 223 is located between the ice outlet 211 and shielding assembly 22, shielding assembly 22 rotates to open or closed position, to drive the second sealing element 223 open or seal the ice outlet 211, shielding assembly 22 rotates to the closed position and is in the locked state.
[0031] The utility model discloses a ice outlet assembly 2 in setting ice outlet 211 and shielding assembly 22, so that the user can operate shielding assembly 22 rotates to open position or closed position, thereby opening or closing ice outlet 211, realized in the case where not needing to dismount end cover, conveniently pours out the ice sand prepared, effectively simplifies the operation step of user and shortens the operation time, in addition, by setting the second sealing element 223 connected with shielding assembly 22 between ice outlet 211 and shielding assembly 22, ensure that shielding assembly 22 rotates to open position or closed position, can drive the second sealing element 223 correspondingly open or seal ice outlet 211 simultaneously, thereby guarantee the sealing property of ice outlet 211 under closed state, effectively avoid the problem of poor sealing performance due to user's inability to close end cover completely, in addition, when shielding assembly 22 rotates to closed position, shielding assembly 22 will be in the locked state, eliminates the need of user to keep discharging posture due to the action of elastic component, and prevents shielding assembly 22 from loosening due to the vibration in the ice preparation process of sand ice machine, avoids the situation of ice outlet 211 accidental opening or poor sealing.
[0032] Specifically, first, the conventional slush machine usually requires the user to disassemble the end cover to pour out the prepared slush, which not only increases the operation complexity, but also prolongs the operation time, and by setting a shielding assembly 22 capable of rotating relatively to open or close the ice outlet 211, the user no longer needs to perform the cumbersome end cover disassembly step, and only needs to simply operate the rotating shielding assembly 22 to realize the opening and closing of the ice outlet 211, thereby simplifying the operation process; further, by setting the second sealing piece 223 connected with the shielding assembly 22 between the ice outlet 211 and the shielding assembly 22, it is ensured that the shielding assembly 22 can synchronously drive the second sealing piece 223 to correspondingly open the ice outlet 211 or extend into the ice outlet 211 to realize the sealing effect when rotating to the open or closed position, which effectively improves the sealing performance of the ice outlet 211 and prevents the poor sealing problem caused by the user's failure to completely close the end cover; further, some existing slush machines generally use elastic components to realize the automatic reset of the shielding assembly 22 and maintain the closed state of the shielding assembly 22, although this facilitates the user's discharging operation, but in actual use, it brings new problems, the user must continuously pull the handle during the discharging process to keep the ice outlet 211 in the open state, but when a large amount of slush needs to be continuously output, maintaining this posture for a long time is easy to cause the user's hand fatigue, thereby affecting the user experience, in contrast, the utility cancels the elastic component, and through the setting that the shielding assembly 22 is automatically locked when rotating to the closed position, the need for the user to continuously manually maintain the open state of the ice outlet 211 is eliminated, thereby effectively avoiding the problem of user hand fatigue; further, since the utility cancels the elastic component, the shielding assembly 22 can also maintain the self-locking state to achieve the sealing purpose, thereby enabling the user to easily rotate the shielding assembly 22 to realize the opening and closing of the ice outlet 211, thereby achieving the purposes of effectively sealing the ice outlet 211 and easily discharging ice.
[0033] Further, as shown in a discharging mechanism, Figures 1-10 wherein the ice outlet assembly 2 further comprises an end cover 21, the ice outlet 211 is located in the end cover 21, the shielding assembly 22 further comprises a handle 221 capable of rotating relative to the end cover 21, and an opening and closing assembly 222 connected with the handle 221, the handle 221 is used to drive the opening and closing assembly 222 to rotate relative to the end cover 21 to the open position or the closed position, so as to open or close the ice outlet 211.
[0034] The utility model discloses a side is used for fixed shielding component 22's end cover 21, and the other side of end cover 21 is used for connecting with the equipment, and the ice outlet 211 is located on the end cover 21, and handle 221 is arranged in shielding component 22, and handle 221 is connected with the opening and closing component 222 through rotation, so that the user can drive shielding component 22 to rotate relative to end cover 21 through operating handle 221, thereby realizing the opening and closing of ice outlet 211, and this setting not only improves the convenience of use, but also ensures that the user can easily and accurately operate the discharging mechanism every time, effectively avoiding the problem of poor sealing performance caused by improper operation.
[0035] Further, as shown in Figures 1-10 The utility model discloses a kind of discharging mechanisms, wherein the ice outlet component 2 further includes end cover connecting piece 213 connected with the end cover 21, the ice outlet 211 is located in the lower side of the end cover 21, the end cover connecting piece 213 is equipped with the blanking cavity 2226 located in the lower side of the ice outlet 211 and communicated with the ice outlet 211, and the connecting inner cavity 2229 communicated with the blanking cavity 2226, the handle 221 and the opening and closing component 222 are rotationally connected in the connecting inner cavity 2229, the second handle limiting end 2214 is equipped on the side of handle 221 away from the ice outlet 211, and the connecting inner cavity 2229 is equipped with handle limiting end 22251 matched with the second handle limiting end 2214.
[0036] The utility model discloses a side is used for fixed shielding component 22's end cover 21, and the other side of end cover 21 is used for connecting with the equipment, and the ice outlet 211 is located on the end cover 21, and handle 221 is arranged in shielding component 22, and handle 221 is connected with the opening and closing component 222 through rotation, so that the user can drive shielding component 22 to rotate relative to end cover 21 through operating handle 221, thereby realizing the opening and closing of ice outlet 211, and this setting not only improves the convenience of use, but also ensures that the user can easily and accurately operate the discharging mechanism every time, effectively avoiding the problem of poor sealing performance caused by improper operation. Further, the utility model discloses that connecting inner cavity 2229 is arranged in end cover connecting piece 213, so that handle 221 and opening and closing component 222 can be stably rotationally connected in connecting inner cavity 2229, so as to realize that handle 221 drives opening and closing component 222 to rotate relative to end cover 21 to control the opening and closing of ice outlet 211, which not only enhances the overall stability of the equipment, but also prevents foreign matter from entering the rotating part of handle 221 and opening and closing component 222 by arranging the rotating part of handle 221 and opening and closing component 222 in connecting inner cavity 2229, so as to prevent the function of handle 221 and opening and closing component 222 from being affected. Further, the utility model discloses that the second handle limiting end 2214 is arranged on the side of handle 221 away from ice outlet 211, and handle limiting end 22251 matched with the second handle limiting end 2214 is arranged in connecting inner cavity 2229, which effectively prevents handle 221 and opening and closing component 222 from being disconnected due to excessive rotation of handle 221, and ensures the stability of the structure.
[0037] Further, as shown in Figures 1-10 a discharge mechanism, wherein the opening and closing assembly 222 is further provided with a shielding portion 2227 extending into the ice dropping cavity 2226, and the second sealing member 223 is installed on the shielding portion 2227, and the second sealing member 223 is provided with an ice outlet limiting step 2231 protruding along the circumferential side, and the opening and closing assembly 222 rotates to make the second sealing member 223 extend into or exit the ice outlet 211.
[0038] The utility model discloses a shielding portion 2227 is arranged on the opening and closing assembly 222, and the second sealing member 223 is installed on the shielding portion 2227, so that the second sealing member 223 can rotate with the shielding portion 2227 and extend into or exit the ice outlet 211, and the opening and closing assembly 222 can realize the opening and sealing of the ice outlet 211.
[0039] Further, as shown in Figures 1-10 a discharge mechanism, wherein the shielding portion 2227 is provided with a sealing member fixing step 22271 protruding along the circumferential side, the second sealing member 223 is provided with a shielding portion mounting cavity 2232 for the shielding portion 2227 to extend into, a shielding portion fixing groove 2233 located in the shielding portion mounting cavity 2232 and matched with the sealing member fixing step 22271, and a giving-up groove 2234 located outside the shielding portion mounting cavity 2232.
[0040] The utility model discloses a sealing member fixing step 22271 protruding along the circumferential side is arranged on the shielding portion 2227, and the shielding portion mounting cavity 2232 for the shielding portion 2227 to extend into is arranged in the second sealing member 223, and the shielding portion fixing groove 2233 matched with the sealing member fixing step 22271 in the shielding portion mounting cavity 2232, the sealing member fixing step 22271 and the shielding portion fixing groove 2233 are clamped and matched, and the second sealing member 223 can be stably installed on the shielding portion 2227, which not only improves the stability of the second sealing member 223, but also effectively enhances the sealing performance of the ice outlet 211, prevents the leakage problem caused by the loosening or position deviation of the second sealing member 223, and further sets up the giving-up groove 2234 outside the shielding portion mounting cavity 2232, so that the sealing member fixing step 22271 on the shielding portion 2227 can make the shielding portion mounting cavity 2232 elastically expand during the process that the shielding portion 2227 extends into the shielding portion mounting cavity 2232, so that the sealing member fixing step 22271 can smoothly enter the shielding portion mounting cavity 2232 and be clamped in the shielding portion fixing groove 2233.
[0041] Further, as shown in Figures 1-10 one of the discharge mechanisms, wherein the handle 221 is provided with a rotating rod 2213 for rotating connection with the end cover connector 213, and a connecting portion 2212 near one side of the opening and closing assembly 222, the opening and closing assembly 222 is provided with a rotating rod 2222 for rotating connection with the end cover connector 213, and a connecting groove 2223 for the connecting portion 2212 to extend into and slide, the rotating rod 2222 is located between the connecting groove 2223 and a shielding portion 2227, the connecting groove 2223 is provided as a long hole along the direction of the connecting line of the connecting portion 2212 and the rotating rod 2222, when the opening and closing assembly 222 is in the closed position, the connecting line of the connecting portion 2212 and the rotating rod 2213 is perpendicular to the connecting line of the connecting portion 2212 and the rotating rod 2222.
[0042] The utility model discloses a handle 221 one side close to open and close subassembly 222 is provided with connecting portion 2212, and in open and close subassembly 222 fixed rotating rod 2222 and provide connecting portion 2212 extension and sliding connecting groove 2223, so that user can make open and close subassembly 222 rotate around rotating rod 2222 by pulling or lifting handle 221, and then control second sealing piece 223 extension or exit ice mouth 211 to complete shielding and sealing action, this setting not only simplifies the operation step of user, also improved the accuracy and convenience of operation, ensure that every operation can accurately control the state of ice mouth, further, handle 221 is connected with end cover 21 through rotating rod 2213, when handle 221 is in shielding state, the connecting line direction of connecting portion 2212 and rotating rod 2213 is perpendicular to the connecting line direction of connecting portion 2212 and rotating rod 2222, and connecting groove 2223 is long hole setting along the connecting line direction of connecting portion 2212 and rotating rod 2222, which means that the connecting line direction of connecting portion 2212 and rotating rod 2213 is perpendicular to connecting groove 2223, this setting makes when the vibration of ice outlet 211 is passed to shielding portion 2227 through second sealing piece 223 when the sand ice machine produces vibration during ice making, shielding portion 2227 is separated from ice outlet 211 and promotes open and close subassembly 222 to rotate around rotating rod 2222, however, because the direction of open and close subassembly 222 rotation trend is same with the connecting line direction of connecting portion 2212 and rotating rod 2213, and is perpendicular to the direction of connecting groove 2223, this makes the rotation direction of connecting groove 2223 is perpendicular to the connecting line direction of connecting portion 2212 and rotating rod 2213, but because handle 221 will not continue to move along the connecting line direction of connecting portion 2212 and rotating rod 2213, make the side of connecting groove 2223 and connecting portion 2212 abut, prevent the rotation trend of open and close subassembly 222, thereby realize the self-locking function of handle 221 in shielding state, this setting effectively prevents the open and close subassembly 222 from rotating and causing second sealing piece 223 to separate from ice outlet 211 due to the vibration during the ice making of sand ice machine, when user applies external force to rotate handle 221, the rotation direction of connecting portion 2212 is same with the direction of connecting groove 2223, therefore connecting portion 2212 can slide in connecting groove 2223, thereby rotating shielding portion 2227 through one end of handle 221, realize the function of unlocking from one end of handle 221 to open ice outlet 211.
[0043] Further, as shown in Figures 1-10 The connecting groove 2223 is further provided with a protruding blocking portion 22231, and the distance S1 from the top end of the handle 221 to the rotating rod 2213 is 4-6 times the distance S2 from the rotating rod 2213 to the connecting portion 2212.
[0044] The utility model discloses a handle 221 is provided with the blocking portion 22231 of protruding in the connecting groove 2223, and the blocking portion 22231 can prevent the connecting portion 2212 from moving to the direction of opening the ice outlet 211 of the opening and closing assembly 222 to a certain extent, thereby generating certain resistance when the handle 221 rotates from the closed position to the open position, which effectively prevents the handle 221 from rotating due to non-human reasons such as vibration or external influence, thereby preventing the ice outlet 211 from being mistakenly opened.
[0045] Further, as shown in Figures 1-10 A discharge mechanism, wherein the lower side of the blanking cavity 2226 is provided with a blanking port 22261, and the cross section of the blanking cavity 2226 is conical.
[0046] The utility model discloses a blanking port 22261 is set up in the lower side of blanking cavity 2226, and the ice slush prepared is smoothly flowed from the blanking port 22261 of lower side, and the user is convenient to receive ice slush, further, the cross section of blanking cavity 2226 is conical, and the ice slush prepared can be smoothly flowed from the blanking port 22261 along the inner wall of blanking cavity 2226, this setting not only helps to reduce the residual of ice slush in blanking cavity, but also can effectively prevent ice slush from blocking blanking port, and ensure the smooth and efficient of discharging process.
[0047] Further, as shown in Figures 1-10 A discharge mechanism, wherein the end cover connecting piece 213 and the end cover 21 are detachably connected.
[0048] The utility model discloses a detachable connection is adopted between end cover connecting piece 213 and end cover 21, and the user can easily detach end cover connecting piece 213 to clean blanking cavity 2226 or ice outlet 211 when needed, and this setting can effectively simplify the cleaning process of the user, further, through the detachable connection between end cover connecting piece 213 and end cover 21, when the discharge mechanism fails or needs to replace some components, the user can more conveniently replace or maintain the internal components.
[0049] Further, as shown in the slush machine, it comprises a discharge mechanism. Figures 1-11
[0050] The utility model discloses a discharge mechanism is combined into the slush machine, improves the user experience and operation convenience of slush machine, so that the user can conveniently pour out the prepared slush without disassembling the end cover, greatly simplifies the operation step and shortens the operation time, further, through the second sealing piece 223 between ice outlet 2 and shielding component 22, not only the good sealing performance of ice outlet 2 in the closed state is ensured, but also the problem of poor sealing due to the user's failure to completely close the end cover is effectively avoided, further, when shielding component 22 turns to the closed position, it will automatically enter the locking state, this setting eliminates the need for the user to continuously manually maintain the opening state of ice outlet 211 of the elastic component in the traditional slush machine, prevents the problem of user hand fatigue caused by long-time pulling handle 221, and also avoids the risk of shielding component 22 loosening caused by the vibration of the slush machine in the ice making process, further guarantees the safety and sealing performance of ice outlet 211.
[0051] As shown in the slush machine, it comprises a discharge mechanism. Figures 1-11 The embodiments of the utility model are as follows:
[0052] Embodiment one:
[0053] The embodiment provides a discharge mechanism, and aims at solving the problems of inconvenient operation and poor sealing performance in the prior art. In the embodiment, the user can control shielding component 22 to rotate to the open or closed position through simple rotating operation, so as to realize the opening and closing of ice outlet 211, greatly simplifying the operation process of the user and shortening the required time.
[0054] Specifically, when the ice slush is not needed to be poured out, the second sealing element 223 connected to the shielding assembly 22 will extend into the ice outlet 211 to seal the ice outlet 211, so that the ice outlet 211 is in a closed state, when the prepared ice slush needs to be poured out, the user only needs to rotate the shielding assembly 22 to the open position, which will also drive the second sealing element 223 fixed on the shielding assembly 22 to rotate and exit the ice outlet 211, so that the ice outlet 211 is directly opened, and the ice slush can flow out smoothly.
[0055] In addition, when the user finishes pouring out the ice slush and rotates the shielding assembly 22 back to the closed position again, the second sealing element 223 will extend into and seal the ice outlet 211 again, and the shielding assembly 22 will automatically enter the locked state when it is in the closed position, which means that no additional elastic assembly is needed to maintain its closed state. This setting solves the problem that the user needs to continuously pull the handle to keep the ice outlet 211 open in the traditional slush machine, avoiding hand fatigue caused by long-time operation.
[0056] In addition, the locking function of the shielding assembly 22 in the closed position also increases the safety and stability of the discharging mechanism, so that even if vibration occurs during the preparation of the ice slush in the slush machine, the shielding assembly 22 can be prevented from accidentally separating from the ice outlet 211, ensuring the sealing and safety of the ice outlet 211.
[0057] Embodiment Two:
[0058] This embodiment includes the features of embodiment one, and the difference from embodiment one is that this embodiment sets an end cover 21 on one side for fixing the shielding assembly 22, and the other side is used for connecting with the device, and the ice outlet 211 is located on the end cover 21, and a handle 221 is arranged on the shielding assembly 22, and the handle 221 is connected with the opening and closing assembly 222 through rotation, so that the user can drive the shielding assembly 22 to rotate relative to the end cover 21 by operating the handle 221, thereby realizing the opening and closing of the ice outlet 211. This not only improves the convenience of use, but also ensures that the user can easily and accurately operate the discharging mechanism every time, effectively avoiding the problem of poor sealing performance caused by improper operation.
[0059] Embodiment Three:
[0060] The embodiment includes the features of the embodiment two, and differs from the embodiment two in that the embodiment sets the end cover connecting piece 213 connected with the end cover 21, and locates the ice outlet 211 at the lower side of the end cover 21, and sets the material falling cavity 2226 located at the lower side of the ice outlet 211 and communicated with the ice outlet 211 in the end cover connecting piece 213, so that the prepared slush can flow out smoothly, and the user can conveniently receive the slush, which not only simplifies the operation steps of the user, but also makes the whole process more sanitary and efficient. Further, the utility model sets the connecting inner cavity 2229 in the end cover connecting piece 213, so that the handle 221 and the opening and closing assembly 222 can be stably connected in the connecting inner cavity 2229, so that the handle 221 drives the opening and closing assembly 222 to rotate relative to the end cover 21 to control the opening and closing of the ice outlet 211, which not only enhances the overall stability of the equipment, but also sets the rotating part of the handle 221 and the opening and closing assembly 222 in the connecting inner cavity 2229, prevents foreign matter from entering the rotating part to affect the function of the handle 221 and the opening and closing assembly 222. Further, the utility model sets the second handle limiting end 2214 on the side of the handle 221 away from the ice outlet 211, and sets the handle limiting end 22251 matched with the second handle limiting end 2214 in the connecting inner cavity 2229, which effectively prevents the problem that the user excessively rotates the handle 221 to cause the handle 221 and the opening and closing assembly 222 to be disconnected, and ensures the stability of the structure.
[0061] Embodiment four:
[0062] The embodiment includes the features of the embodiment three, and differs from the embodiment three in that the embodiment sets the shielding part 2227 provided with the second sealing piece 223 in the opening and closing assembly 222, so that the second sealing piece 223 can rotate with the shielding part 2227 to extend into or exit the ice outlet 211, and realizes the opening and sealing of the second sealing piece 223 to the ice outlet 211. Further, the second sealing piece 223 is provided with the protruding ice outlet limiting step 2231 on the side, when the second sealing piece 223 extends into the ice outlet 211, the edge area of the ice outlet 221 can be pressed by the ice outlet limiting step 2231, so as to enhance the sealing effect.
[0063] Embodiment five:
[0064] The embodiment includes the features of the embodiment four, and is different from the embodiment four in that the embodiment sets a sealing piece fixing step 22271 protruding along the circumferential side on the shielding part 2227, sets a shielding part installation cavity 2232 for the shielding part 2227 to extend into and a shielding part fixing groove 2233 cooperating with the sealing piece fixing step 22271 in the shielding part installation cavity 2232 in the second sealing piece 223, and ensures that the second sealing piece 223 can be stably installed on the shielding part 2227 through the engagement of the sealing piece fixing step 22271 and the shielding part fixing groove 2233, which not only improves the stability of the second sealing piece 223, but also effectively enhances the sealing performance of the ice outlet 211, preventing the leakage problem caused by the loosening or position deviation of the second sealing piece 223. Further, by setting a gap slot 2234 outside the shielding part installation cavity 2232, the sealing piece fixing step 22271 on the shielding part 2227 can cause the shielding part installation cavity 2232 to elastically expand during the process of the shielding part 2227 extending into the shielding part installation cavity 2232, so that the sealing piece fixing step 22271 can smoothly enter the shielding part installation cavity 2232 and be engaged in the shielding part fixing groove 2233.
[0065] Embodiment six:
[0066] The embodiment includes the features of embodiment five, and is different from embodiment five in that the embodiment is provided with a connecting portion 2212 on one side of the handle 221 close to the opening and closing assembly 222, and a rotating rod 2222 is fixed in the opening and closing assembly 222 and a connecting groove 2223 into which the connecting portion 2212 extends and slides is provided, so that the user can rotate the opening and closing assembly 222 around the rotating rod 2222 by pulling or lifting the handle 221, thereby controlling the second sealing member 223 to extend into or exit the ice outlet 211 to complete the shielding and sealing action, which not only simplifies the operation steps of the user, but also improves the accuracy and convenience of operation, and ensures that the state of the ice outlet can be accurately controlled each time. Further, the handle 221 is rotationally connected with the end cover 21 through a rotating rod 2213, when the handle 221 is in the shielding state, the connecting line direction of the connecting portion 2212 and the rotating rod 2213 is perpendicular to the connecting line direction of the connecting portion 2212 and the rotating rod 2222, and the connecting groove 2223 is provided as a long hole along the connecting line direction of the connecting portion 2212 and the rotating rod 2222, which means that the connecting line direction of the connecting portion 2212 and the rotating rod 2213 is perpendicular to the connecting groove 2223, so that when the ice shaver vibrates during ice making, the vibration of the ice outlet 211 is transmitted to the shielding portion 2227 through the second sealing member 223, trying to drive the shielding portion 2227 to separate from the ice outlet 211 and promote the opening and closing assembly 222 to rotate around the rotating rod 2222, however, since the direction of the rotating trend of the opening and closing assembly 222 is the same as the connecting line direction of the connecting portion 2212 and the rotating rod 2213, and is perpendicular to the direction of the connecting groove 2223, so that the rotating direction of the connecting groove 2223 is perpendicular to the connecting line direction of the connecting portion 2212 and the rotating rod 2213, but since the handle 221 will not continue to move in the connecting line direction of the connecting portion 2212 and the rotating rod 2213, so that the side surface of the connecting groove 2223 abuts against the connecting portion 2212, preventing the rotating trend of the opening and closing assembly 222, thereby realizing the self-locking function of the handle 221 in the shielding state, which effectively prevents the opening and closing assembly 222 from rotating due to vibration during ice making of the ice shaver, resulting in the second sealing member 223 separating from the ice outlet 211, when the user applies external force to rotate the handle 221, the rotating direction of the connecting portion 2212 is the same as the direction of the connecting groove 2223, so that the connecting portion 2212 can slide in the connecting groove 2223, thereby rotating the shielding portion 2227 through one end of the handle 221 to realize the function of unlocking from one end of the handle 221 to open the ice outlet 211.
[0067] Embodiment seven:
[0068] The embodiment includes the features of embodiment six, and is different from embodiment six in that the embodiment is provided with a protruding blocking part 22231 in the connecting groove 2223, which can prevent the connecting part 2212 from moving to the direction of opening the ice outlet 211 of the opening and closing assembly 222 to a certain extent, thereby generating a certain resistance when the handle 221 rotates from the closed position to the open position, which effectively prevents the handle 221 from rotating due to non-human reasons such as vibration or external influence, thereby preventing the ice outlet 211 from being mistakenly opened. Further, the distance S1 from the top end of the handle 221 to the rotating rod 2213 in the utility model is 4-6 times the distance S2 from the rotating rod 2213 to the connecting part 2212, which sets the user to act on the top end of the handle 221 through the principle of leverage, so that the user can overcome the resistance of the connecting part 2212 through the blocking part 22231 by a smaller force, thereby easily rotating the handle 221 to open the ice outlet 211, thereby improving the convenience and comfort of operation, and reducing the user's operation fatigue. Further, if the ratio of S1 to S2 is less than 4 times, the user needs to exert more force to overcome the resistance of the blocking part 22231, which will increase the operation difficulty and the user's fatigue, and for children, it is impossible to open the operation, on the contrary, if the ratio of S1 to S2 is greater than 6 times, although the leverage is enhanced, the length of the handle 221 will be increased, which may cause inconvenience in operation, occupy more space, and increase the risk of deformation or damage of the handle 221 during operation, reduce the stability and durability of the overall structure. In addition, in the embodiment, the distance S1 from the top end of the handle 221 to the rotating rod 2213 is 6 times the distance S2 from the rotating rod 2213 to the connecting part 2212.
[0069] Embodiment eight:
[0070] The embodiment includes the features of embodiment seven, and is different from embodiment seven in that the embodiment is provided with a discharging port 22261 below the discharging cavity 2226, so that the prepared slush can smoothly flow out from the lower discharging port 22261, and the user can conveniently receive the slush. Further, by setting the cross section of the discharging cavity 2226 as a taper, the prepared slush can smoothly flow out from the discharging port 22261 along the inner wall of the discharging cavity 2226, which not only helps to reduce the residue of the slush in the discharging cavity, but also effectively prevents the slush from blocking the discharging port, ensuring the smoothness and efficiency of the discharging process.
[0071] Embodiment nine:
[0072] The embodiment includes the features of the embodiment eight, and differs from the embodiment eight that the detachable connection between the end cover connecting piece 213 and the end cover 21 is arranged, so that the user can easily detach the end cover connecting piece 213 to clean the blanking cavity 2226 or the ice outlet 211 when needed, which can effectively simplify the cleaning process of the user. Further, through the detachable connection between the end cover connecting piece 213 and the end cover 21, when the discharging mechanism fails or needs to be replaced with some components, the user can more conveniently replace or maintain the internal components.
[0073] Embodiment ten:
[0074] The embodiment includes all the features of the embodiments one to nine, and additionally, the embodiment combines the discharging mechanism into the slush ice machine, improves the user experience and operation convenience of the slush ice machine, so that the user can conveniently pour out the prepared slush without detaching the end cover, greatly simplifies the operation steps and shortens the operation time. Further, through the second sealing piece 223 arranged between the ice outlet 2 and the shielding assembly 22, not only the good sealing performance of the ice outlet 2 in the closed state is ensured, but also the problem of poor sealing due to the user's failure to completely close the end cover is effectively avoided. Further, when the shielding assembly 22 is turned to the closed position, it will automatically enter the locked state, which eliminates the need for the user to continuously manually maintain the open state of the ice outlet 211 of the traditional slush ice machine, prevents the problem of user hand fatigue caused by long-time pulling of the handle 221, and also avoids the risk of loosening of the shielding assembly 22 due to vibration of the slush ice machine during ice making, further ensuring the safety and sealing performance of the ice outlet 211.
[0075] Embodiment eleven:
[0076] The embodiment includes the features of the embodiment ten, and differs from the embodiment ten that in the embodiment, the distance S1 from the top end of the handle 221 to the rotating rod 2213 is 5 times the distance S2 from the rotating rod 2213 to the connecting part 2212.
[0077] Embodiment twelve:
[0078] The embodiment includes the features of the embodiment ten, and differs from the embodiment ten that in the embodiment, the distance S1 from the top end of the handle 221 to the rotating rod 2213 is 4 times the distance S2 from the rotating rod 2213 to the connecting part 2212.
[0079] The above only further illustrates the technical content of the utility model with embodiments, so as to make the reader easier to understand, but does not represent that the implementation mode of the utility model is limited to this, any technical extension or re-creation made according to the utility model is protected by the utility model. The protection scope of the utility model is subject to the claims.
Claims
1. A dispensing mechanism comprising an ice dispensing assembly (2), characterized in that: The ice outlet assembly (2) comprises an ice outlet (211), a shielding assembly (22) rotatable relative to the ice outlet (211) to switch the ice outlet (211) between an open state and a closed state, and a second sealing member (223) connected with the shielding assembly (22) and located between the ice outlet (211) and the shielding assembly (22), the shielding assembly (22) is rotated to the open or closed position to drive the second sealing member (223) to open or seal the ice outlet (211), and the shielding assembly (22) is in a locked state when rotated to the closed position.
2. A discharge mechanism according to claim 1, wherein: The ice outlet assembly (2) further comprises an end cover (21), the ice outlet (211) is located in the end cover (21), the shielding assembly (22) further comprises a handle (221) rotatable relative to the end cover (21), and an opening and closing assembly (222) connected with the handle (221), the handle (221) is used to drive the opening and closing assembly (222) to rotate relative to the end cover (21) to the open or closed position to open or close the ice outlet (211).
3. A discharge mechanism according to claim 2, wherein: The ice outlet assembly (2) further comprises an end cover connecting member (213) connected with the end cover (21), the ice outlet (211) is located on the lower side of the end cover (21), the end cover connecting member (213) is provided with a material falling cavity (2226) located on the lower side of the ice outlet (211) and communicated with the ice outlet (211), and a connecting inner cavity (2229) communicated with the material falling cavity (2226), the handle (221) and the opening and closing assembly (222) are rotatably connected in the connecting inner cavity (2229), the handle (221) is provided with a second handle limiting end (2214) away from the ice outlet (211), and the connecting inner cavity (2229) is provided with a handle limiting end (22251) matched with the second handle limiting end (2214).
4. A discharge mechanism according to claim 3, wherein: The opening and closing assembly (222) is further provided with a shielding portion (2227) extending into the material falling cavity (2226), the second sealing member (223) is mounted on the shielding portion (2227), the second sealing member (223) is provided with an ice outlet limiting step (2231) protruding along the circumferential side, and the opening and closing assembly (222) is rotated to make the second sealing member (223) extend into or exit the ice outlet (211).
5. A discharge mechanism according to claim 4, wherein: The shielding portion (2227) is provided with a sealing member fixing step (22271) protruding along the circumferential side, the second sealing member (223) is provided with a shielding portion mounting cavity (2232) for the shielding portion (2227) to extend into, a shielding portion fixing groove (2233) located in the shielding portion mounting cavity (2232) and matched with the sealing member fixing step (22271), and a giving-up groove (2234) located on the outer side of the shielding portion mounting cavity (2232).
6. A discharge mechanism according to claim 4, wherein: The handle (221) is provided with a rotating rod (2213) for rotationally connecting with the end cover connector (213), and a connecting part (2212) near one side of the opening and closing assembly (222). The opening and closing assembly (222) is provided with a rotating rod (2222) rotationally connecting with the end cover connector (213), and a connecting groove (2223) for the connecting part (2212) to extend into and slide. The rotating rod (2222) is located between the connecting groove (2223) and a shielding part (2227). The connecting groove (2223) is provided as a long hole along the direction of the connecting line of the connecting part (2212) and the rotating rod (2222). When the opening and closing assembly (222) is in the closed position, the connecting line of the connecting part (2212) and the rotating rod (2213) is perpendicular to the connecting line of the connecting part (2212) and the rotating rod (2222).
7. A discharge mechanism according to claim 6, wherein: The connecting groove (2223) is further provided with a protruding blocking part (22231). The distance S1 from the top end of the handle (221) to the rotating rod (2213) is 4-6 times the distance S2 from the rotating rod (2213) to the connecting part (2212).
8. A discharge mechanism according to claim 3, wherein: The blanking cavity (2226) is provided with a blanking port (22261) on the lower side. The cross section of the blanking cavity (2226) is provided as a taper.
9. A discharge mechanism according to claim 3, wherein: The end cover connector (213) is detachably connected with the end cover (21).
10. A slush machine characterized by: The discharging mechanism comprises the opening and closing assembly according to any one of claims 1-9. The discharging mechanism comprises the opening and closing assembly according to any one of claims 1-9.