Cutting and cooking apparatus

By adopting an innovative design of vertical telescopic components and drive components in intelligent cooking equipment, the problems of large feeding structures, high costs, and large vibrations in existing technologies have been solved, achieving miniaturized, low-cost, and efficient seasoning feeding and improving the user experience.

CN114711611BActive Publication Date: 2025-10-24ZHUHAI UNICOOK TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202011521502.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-21
Publication Date
2025-10-24
Estimated Expiration
2040-12-21

AI Technical Summary

Technical Problem

Existing smart cooking equipment uses a screw extrusion mechanism for its seasoning dispensing system, resulting in a large dispensing structure, high cost, and significant vibration, which negatively impacts the user experience.

Method used

The condiment feeding is achieved by using a telescopic component that moves vertically. The drive component is set vertically and combined with a screw, slider and sealing plug structure to simplify the length requirements of the feeding channel and the size of the equipment. The feeding process is optimized by using elastic elements and a one-way rotation mechanism.

Benefits of technology

It reduces the structural size and cost of the feeding equipment, reduces vibration, improves feeding efficiency and user satisfaction, and enhances the reliability and smoothness of feeding.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a discharging device and a cooking device, wherein the discharging device comprises a storage part provided with a storage cavity; a body connected with the storage part, the body being provided with a feeding cavity and a discharging opening in communication, the feeding cavity being in communication with the storage cavity, and the discharging opening being located at a side of the body away from the storage part; a telescopic assembly installed in the feeding cavity; and a driving assembly connected with the telescopic assembly, the telescopic assembly being capable of opening or closing the discharging opening in a vertical telescopic manner. The discharging device provided by the application can realize the discharging of seasonings by the telescopic movement of the telescopic assembly in the vertical direction, and compared with the related art which adopts a screw extrusion mechanism to realize the discharging, the length of the channel of the discharging device is lower in requirement, the structure size of the discharging device is smaller, and the cost is lower.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cooking equipment, in particular to a discharging equipment and a cooking equipment. BACKGROUND

[0002] At present, cooking equipment, especially intelligent cooking equipment, includes a seasoning discharging mechanism to realize intelligent cooking. Generally, the seasoning discharging mechanism adopts a screw extrusion mechanism. The discharging mechanism with this structure has certain requirements for the length of the channel of the discharging mechanism, and the screw extrusion mechanism is generally arranged in a horizontal direction. A transmission motor is arranged on one side of the screw, and a gear transmission mode is required to drive the discharging screw to rotate. Thus, the size of the discharging structure is relatively large, the cost is relatively high, and the vibration during work is relatively large.

[0003] CONTENT

[0004] Therefore, the present application provides a discharging equipment and a cooking equipment to realize the function of discharging in a vertical direction.

[0005] According to a first aspect of the present application, a discharging equipment is provided, which comprises: a storage part provided with a storage cavity; a body connected with the storage part, the body being provided with a feeding cavity and a discharging opening in communication, the feeding cavity being in communication with the storage cavity, and the discharging opening being located on a side of the body away from the storage part; a telescopic assembly installed in the feeding cavity; and a driving assembly connected with the telescopic assembly, the telescopic assembly being capable of opening or closing the discharging opening in a vertical direction.

[0006] Further, the driving assembly comprises a first output shaft, the telescopic assembly comprises: a lead screw, one end of the lead screw being connected with the first output shaft, the first output shaft being capable of driving the lead screw to rotate; a sliding block assembly, the sliding block assembly being sleeved on the outside of the lead screw and being in threaded cooperation with the lead screw; and a sealing plug connected with the sliding block assembly, the sealing plug being located on one end of the sliding block assembly close to the discharging opening; wherein the rotation of the lead screw can make the sliding block assembly move away from or close to the discharging opening, so as to open or close the discharging opening by the sealing plug.

[0007] Further, the telescopic assembly further comprises: a first stirring part sleeved on the outside of the sliding block assembly, the rotation of the lead screw can make the sealing plug abut against or separate from the first stirring part, and the sealing plug can drive the first stirring part to rotate after the sealing plug abuts against the first stirring part.

[0008] Furthermore, one of the slider assembly and the first stirring part is provided with a limiting part, and the other is provided with a positioning part adapted to the limiting part, and the limiting part and the positioning part are configured to limit the rotation of the slider assembly relative to the first stirring part.

[0009] Furthermore, the positioning portion includes a first protrusion structure; the limiting portion includes at least one group of second protrusion structures, one group consists of two, and the two second protrusion structures are distributed at intervals along the circumference of the screw rod and form a clearance groove; the first protrusion structure has a first state located in the clearance groove and a second state detached from the clearance groove.

[0010] Furthermore, a slope structure is provided on the lower side of the first protruding structure; and / or the two second protruding structures are distributed in a stepped manner.

[0011] Furthermore, the telescopic assembly also includes: an elastic member, the driving assembly also includes a motor and a cover assembly mounted on the outside of the motor, one end of the elastic member is connected to or abuts the cover assembly, and the other end is connected to or abuts the slider assembly; the elastic member can push the slider assembly to convert the first protrusion structure from the second state to the first state.

[0012] Furthermore, the slider assembly includes a connected slider and a slider limit sleeve, the slider is sleeved on the outside of the screw and is threadedly connected to the screw; the first stirring part includes a first connecting piece sleeved on the outside of the slider limit sleeve, an impeller sleeved on the outside of the first connecting piece and a stirring head connected to the bottom of the impeller, and a set of docking structures is provided between the stirring head and the sealing plug; a first bearing is provided between the impeller and the first connecting piece; wherein, a sheet structure is provided on the circumferential side of the impeller.

[0013] Furthermore, the unloading equipment also includes: a one-way rotation mechanism, which is sleeved on the outside of the first output shaft of the driving assembly; a second stirring part, the driving assembly includes a motor, and the second stirring part is sleeved on the outside of the motor; wherein the first output shaft and the second stirring part are connected through the one-way rotation mechanism.

[0014] Furthermore, the blanking equipment also includes: a first planetary gear set, the first planetary gear set includes a first ring gear, a first sun gear and a first planetary gear connecting the first ring gear and the first sun gear, the first sun gear is connected to the first output shaft; a first planetary gear seat, which is sleeved on the outside of the first ring gear, and the first ring gear is connected to the one-way rotation mechanism.

[0015] Furthermore, the one-way rotation mechanism includes a one-way bearing.

[0016] Further, the discharging device further comprises a motor mounting frame arranged between the material storage part and the body and connected with the material storage part and the body; the motor mounting frame comprises an annular flange, and the material storage part is threadedly connected with the annular flange.

[0017] Further, the discharging device further comprises a mounting frame arranged at a middle portion of the body, and a flexible protrusion is arranged on a side of the first stirring part away from the discharge opening, and the flexible protrusion abuts against the mounting frame.

[0018] Further, the discharging device further comprises a third stirring part, and the driving assembly further comprises a motor and a second output shaft, the second output shaft and the first output shaft of the driving assembly are located at two ends of the motor, and the third stirring part is connected with the second output shaft and located in the material storage cavity.

[0019] Further, the discharging device further comprises a second planetary gear set, the second planetary gear set comprises a second ring gear, a second sun gear and a second planetary gear connecting the second ring gear and the second sun gear, and the second sun gear is connected with the second output shaft.

[0020] A second planetary gear seat is sleeved on the outside of the second ring gear, and the second ring gear is connected with the third stirring part.

[0021] According to the second aspect of the present application, a cooking device is provided, comprising: a controller; and the discharging device of any one of the first aspect, the controller is connected with the driving assembly of the discharging device.

[0022] The discharging device and the cooking device provided by the present application can realize the discharging of the seasoning by the telescopic assembly moving vertically relative to the first output shaft, compared with the related art, the length of the channel of the discharging device is lower, the structure size of the discharging device is smaller, and the cost is lower. Moreover, since the telescopic assembly moves vertically, the driving part of the driving assembly can be arranged vertically, the vibration during working is smaller, thereby the influence on the user can be reduced, and the satisfaction of the user can be improved.

[0023] The above description is only a summary of the technical scheme of the present application, in order to more clearly understand the technical means of the present application, the specific embodiments of the present application can be implemented according to the content of the specification, and in order to make the above and other purposes, characteristics and advantages of the present application more obvious and easy to understand, the following specific embodiments of the present application are described. BRIEF DESCRIPTION OF DRAWINGS

[0024] Various other advantages and benefits will become apparent to those of ordinary skill in the art, upon reading the following detailed description of the preferred embodiments. The accompanying drawings are included to provide a better understanding of the preferred embodiments, and are not intended to be a limitation on the scope of the application. Moreover, in the drawings, like reference numerals refer to similar components, and:

[0025] Figure 1 A structural schematic diagram of a blanking device according to a first embodiment provided by the present application is shown;

[0026] Figure 2 A structural schematic diagram of a blanking device according to a second embodiment provided by the present application is shown; Figure 1 An exploded schematic diagram of the illustrated embodiment is shown;

[0027] Figure 3 A structural schematic diagram of a blanking device according to a first embodiment provided by the present application is shown;

[0028] Figure 4 A structural schematic diagram of a blanking device according to a first embodiment provided by the present application is shown;

[0029] Figure 5 A structural schematic diagram of a blanking device according to a first embodiment provided by the present application is shown;

[0030] Figure 6 A structural schematic diagram of a part of a telescopic assembly according to an embodiment provided by the present application is shown;

[0031] Figure 7 A structural schematic diagram of a blanking device according to a first embodiment provided by the present application is shown; Figure 6 An exploded schematic diagram of the illustrated embodiment is shown;

[0032] Figure 8 A structural schematic diagram of a second stirring part according to an embodiment provided by the present application is shown;

[0033] Figure 9 A structural schematic diagram of a sealing plug according to an embodiment provided by the present application is shown;

[0034] Figure 10 A structural schematic diagram of a second planetary gear set according to an embodiment provided by the present application is shown;

[0035] Figure 11 A structural schematic diagram of a part of a blanking device according to a first embodiment provided by the present application is shown;

[0036] Figure 12 A structural schematic diagram of a part of a blanking device according to a second embodiment provided by the present application is shown;

[0037] Figure 13 A cooperation schematic diagram of a first protruding structure and a second protruding structure according to a first embodiment provided by the present application is shown;

[0038] Figure 14 A matching diagram of the first protruding structure and the second protruding structure of the second embodiment provided by the application is shown;

[0039] Figure 15 A matching diagram of the first protruding structure and the second protruding structure of the third embodiment provided by the application is shown.

[0040] wherein, Figures 1 to 15 The correspondence between the reference signs and the component names in the accompanying drawings is as follows:

[0041] 1 blanking equipment, 110 drive assembly, 111 cover assembly, 1111 first cover, 1112 second cover, 1113 connecting plate, 112 motor, 113 first output shaft, 114 second output shaft, 120 one-way rotation mechanism, 130 second stirring part, 140 telescopic assembly, 141 lead screw, 142 sliding block assembly, 1421 sliding block, 1422 sliding block limiting sleeve, 143 sealing plug, 144 first connecting piece, 145 first stirring part, 1451 flexible protrusion, 146 first bearing, 147 elastic piece, 148 first protruding structure, 1481 inclined surface structure, 149 second protruding structure, 1491 guide inclined surface, 150 shaft sleeve bearing, 160 first planetary gear set, 162 first planetary gear seat, 170 third stirring part, 180 second planetary gear set, 181 second planetary gear seat, 182 second ring gear, 183 second sun gear, 184 second planetary gear, 190 storage part, 210 body, 211 discharge port, 220 motor mounting frame, 230 second connecting piece, 240 protective cover. DETAILED DESCRIPTION

[0042] In order to enable the above-mentioned purposes, features and advantages of the application to be more clearly understood, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the application and the features in the embodiments can be combined with each other without conflict.

[0043] In the following description, many specific details are set forth in order to provide a thorough understanding of the application, but the application can also be implemented in other ways different from those described herein, therefore, the scope of protection of the application is not limited by the specific embodiments disclosed below.

[0044] The following refers to Figures 1 to 15The present invention describes a feeding device 1 and a cooking device provided according to some embodiments of the present application. The feeding device 1 is applied to a cooking device, which may be an intelligent cooking device. The cooking device utilizes the feeding device 1 to discharge condiments, thereby realizing intelligent cooking. In the cooking devices of the related art, the condiment feeding mechanism generally adopts a screw extrusion mechanism. A feeding mechanism adopting this structure has certain requirements for the channel length of the feeding mechanism, and the screw extrusion mechanism is generally arranged in a horizontal direction. The transmission motor is arranged on one side of the screw, and a gear transmission method is required to drive the feeding screw to rotate. This results in a larger size of the feeding structure, a higher cost, and greater vibration during operation.

[0045] In view of this, the first aspect of the present application provides a unloading device 1, including: a storage portion 190, which is provided with a storage cavity; a main body 210, which is connected to the storage portion 190, and the main body 210 is provided with a connected feeding cavity and a discharge port 211, the feeding cavity is connected to the storage cavity, and the discharge port 211 is located on the side of the main body 210 away from the storage portion 190; a telescopic component 140, which is installed in the feeding cavity; a driving component 110, which is connected to the telescopic component 140, and the telescopic component 140 can be telescoped in the vertical direction to open or close the discharge port 211.

[0046] The blanking equipment 1 provided in this application is as follows: Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 As shown, it includes a storage portion 190, a body 210, a drive assembly 110, and a telescopic assembly 140, wherein the condiment is contained in the storage cavity of the storage portion 190, specifically, the condiment is a solid condiment. The body 210 is connected to the storage portion 190, and the feeding cavity of the body 210 is connected to the storage cavity. A discharge port 211 connected to the feeding cavity is provided on the side of the body 210 away from the storage portion 190. The telescopic assembly 1140 is installed in the feeding cavity, and the drive assembly 110 is connected to the telescopic assembly 140. When unloading is required, the telescopic assembly 140 is telescoped in the vertical direction to open the discharge port 211. Under the action of gravity, the condiment falls from the storage cavity through the feeding cavity and the discharge port 211 into the designated area to realize unloading. When unloading is completed, the telescopic assembly 140 is telescoped in the vertical direction to close the discharge port 211, and the feeding can be stopped. In other words, the present invention achieves condiment discharge by telescoping the telescopic assembly 140 in the vertical direction. Compared with the related art that uses a screw extrusion mechanism to achieve discharge, the channel length requirement for the discharge device is lower, the structural dimensions of the discharge device 1 are smaller, and the cost is lower. Furthermore, because the telescoping assembly 140 moves in the vertical direction, the drive unit of the drive assembly 110 can be arranged in the vertical direction, resulting in less vibration during operation, thereby reducing the impact on the user and improving user satisfaction.

[0047] In some possible implementation embodiments provided by the present application, the driving assembly 110 can include a motor 112, and the motor is provided with a first output shaft 113, which is the first output shaft 113 of the motor 112. Since the telescopic assembly 140 is moved in the vertical direction to open the discharge port 211, that is, the present application provides the dispensing device 1, the storage part 190 and the body 210 are distributed in the vertical downward direction, that is, the storage part 190 is located above the body 210, and the lower end of the body 210 is provided with the discharge port 211, so that the seasoning contained in the storage cavity can enter the feeding cavity under the action of gravity, and when the telescopic assembly 140 opens the discharge port 211, it can be fed to the designated area through the discharge port 211 under the action of gravity, realizing the dispensing, which is simple in structure and low in cost. It can be understood that the driving assembly 110 is also located inside the feeding cavity.

[0048] In some possible implementation embodiments provided by the present application, the telescopic assembly 140 includes a lead screw 141, one end of the lead screw 141 is connected with the first output shaft 113, and the first output shaft 113 can drive the lead screw 141 to rotate; a sliding block assembly 142 is sleeved outside the lead screw 141 and threadedly cooperates with the lead screw 141; a sealing plug 143 is connected with the sliding block assembly 142, and the sealing plug 143 is located at one end of the sliding block assembly 142 close to the discharge port 211; wherein the rotation of the lead screw 141 can make the sliding block assembly 142 move away from or close to the discharge port 211, so as to open or close the discharge port 211 by the sealing plug 143.

[0049] In this embodiment, as shown in Figure 5 and Figure 6 , the telescopic assembly 140 includes the lead screw 141, the sliding block assembly 142 and the sealing plug 143, wherein one end of the lead screw 141 is connected with the first output shaft 113, so that the first output shaft 113 can drive the lead screw 141 to rotate, the sliding block assembly 142 is sleeved outside the lead screw 141 and threadedly cooperates with the lead screw 141, and the sealing plug 143 is connected with the sliding block assembly 142 and located at one end of the sliding block assembly 142 close to the discharge port 211. The first output shaft 113 drives the lead screw 141 to rotate, and then drives the sliding block assembly 142 to rotate, when the sliding block assembly 142 moves away from the discharge port 211, the sealing plug 143 can open the discharge port 211, and when the sliding block assembly 142 moves close to the discharge port 211 and the sealing plug 143 abuts against the discharge port 211, the discharge port 211 can be closed. The cooperation of the lead screw 141 and the sliding block assembly 142 can realize the opening or closing of the discharge port 211 by the sealing plug 143, which is simple in structure, low in cost, and has low requirements for the length of the seasoning flow channel, thereby reducing the volume of the equipment and expanding the use range of the product.

[0050] Further, asFigure 9 As shown in the figures, the sealing plug 143 is an elastic member 147, and the elastic sealing plug 143 is beneficial to improve the sealing performance of the sealing plug 143 and the discharge port 211, thereby improving the reliability of the product and the accuracy of the discharging. Specifically, the sealing plug 143 is a deformable soft material member, such as a silica gel plug.

[0051] In some possible implementation embodiments provided in the present application, the telescopic assembly 140 further comprises a first stirring part 145 sleeved outside the sliding block assembly 142, and the rotation of the lead screw 141 can make the sealing plug 143 abut or separate from the first stirring part 145. After the sealing plug 143 abuts against the first stirring part 145, the sealing plug 143 can drive the first stirring part 145 to rotate.

[0052] In this embodiment, as shown in the figures, Figures 1 to 5 , Figure 8 and Figure 9 the telescopic assembly 140 further comprises a first stirring part 145 sleeved outside the sliding block assembly 142, and the rotation of the lead screw 141 can make the sealing plug 143 abut or separate from the first stirring part 145. Specifically, when the sealing plug 143 abuts against the first stirring part 145, it indicates that the sealing plug 143 is away from the discharge port 211, that is, the discharge port 211 is in an open state, and the discharging device 1 is in a discharging state. Then, after the sealing plug 143 abuts against the first stirring part 145, the sealing plug 143 drives the first stirring part 145 to rotate, which can stir and break the arch of the condiment in the feeding cavity, reduce the problem that the condiment is difficult to discharge due to accumulation in the feeding cavity, thereby improving the smoothness and efficiency of the condiment discharging, reducing the failure rate of the product, and improving the user's satisfaction. It can be understood that when the sealing plug 143 separates from the first stirring part 145, the sealing plug 143 can be driven by the sliding block assembly 142 to move towards the discharge port, and after a period of movement, the sealing plug 143 can abut against the discharge port and close the discharge port.

[0053] The present application adds the first stirring part 145, and after the sealing plug 143 opens the discharge port, the sealing plug 143 abuts against the first stirring part 145 to drive the first stirring part 145 to rotate to stir and break the arch of the condiment, which simplifies the setting of the driving member of the first stirring part 145, greatly improves the discharging efficiency and smoothness of the condiment, simplifies the structure of the product, reduces the volume of the device, thereby is beneficial to reduce the cost, and is suitable for popularization and application.

[0054] In some possible implementation embodiments provided in the present application, one of the slider assembly 142 and the first stirring part 145 is provided with a limiting part, and the other is provided with a positioning part matched with the limiting part, and the limiting part and the positioning part are configured to limit the rotation of the slider assembly 142 relative to the first stirring part 145.

[0055] In this embodiment, by providing the limiting part and the positioning part on the slider assembly 142 and the first stirring part 145, and limiting the rotation of the slider assembly 142 relative to the first stirring part 145 through the limiting part and the positioning part, it is ensured that when the sealing plug 143 abuts against the first stirring part 145, the first stirring part 145 can be smoothly rotated to realize the function of stirring the condiment. Specifically, on the one hand, the first stirring part 145 is provided with the limiting part, and the slider assembly 142 is provided with the positioning part; on the other hand, the first stirring part 145 is provided with the positioning part, and the slider assembly 142 is provided with the limiting part. Different positions of the positioning part and the limiting part can meet the different structural requirements of the positioning part, the limiting part, the first stirring part 145 and the slider assembly 142, and expand the use range of the product.

[0056] Further, the positioning portion includes a first protruding structure 148, such as the first protruding structure 148 located outside the slider assembly 142, the limiting portion includes at least one set of second protruding structures 149, the second protruding structures 149 are located inside the first stirring portion 145, wherein the set is two, the two second protruding structures 149 are spaced apart along the circumference of the lead screw 141 and form a clearance slot inside the first stirring portion 145, specifically, the clearance slot penetrates in the vertical direction. When the first protruding structure 148 is in the first state, the first protruding structure 148 is located in the clearance slot, at this time, the slider assembly 142 is limited to move only in the vertical direction along the clearance slot, if the device is in the unloading reset state, under the driving of the lead screw, the sealing plug 143 can finally abut against and seal the discharge port 211. When the first protruding structure 148 is in the second state, the first protruding structure 148 is separated from the clearance slot, at this time, the slider assembly 142 rotates together with the lead screw 141. It can be understood that before the second protruding structure 149 is separated from the clearance slot, the lead screw 141 rotates with the sealing plug 143 rotating vertically upward and abutting against the first stirring portion 145, and then when the first protruding structure 148 is separated from the clearance slot, the sealing plug 143 rotates together with the slider assembly 142, at the same time, the first stirring portion 145 is driven to rotate together with the sealing plug 143, so as to realize the stirring and arch breaking of the seasoning in the feeding cavity. The structure is simple, the cost is low, and the device volume is greatly reduced, which is beneficial to reduce the space occupied by the device and expand the use range of the product. Specifically, after the first stirring portion 145 is driven to start rotating by the sealing plug 143, the first stirring portion 145 does not move up and down in the vertical direction during rotation, so as to stir and break the arch of the solid seasoning at the bottom of the first stirring portion 145, which is beneficial to improve the unloading efficiency.

[0057] Specifically, the number of the second protruding structures 149 can be one set, two sets or other required values, and different numbers of the second protruding structures 149 can meet the requirements of different sizes of the second protruding structures 149 and expand the use range of the product. It can be understood that the first protruding structure 148 can also be arranged inside the first stirring portion 145, and the second protruding structure 149 can also be arranged outside the slider assembly 142, which can also achieve the above functions, and details are not described herein.

[0058] In some possible implemented embodiments provided in the application, the telescopic assembly 140 further includes an elastic member 147, the driving assembly 110 further includes a motor 112 and a cover assembly 111 sleeved outside the motor 112, one end of the elastic member 147 is connected or abuts against the cover assembly 111, and the other end is connected or abuts against the slider assembly 142; the elastic member 147 can push the slider assembly 142, so that the first protruding structure 148 is converted from the second state to the first state.

[0059] In this embodiment, as shown in Figure 11 and Figure 12 The telescopic assembly 140 further comprises a resilient member 147, the driving assembly 110 further comprises a motor 112 and a cover assembly 111 sleeved outside the motor 112, one end of the resilient member 147 is connected or abuts against the cover assembly 111, and the other end is connected or abuts against the slider assembly 142, the resilient member 147 can push the slider assembly 142 to make the first protruding structure switch from the second state to the first state, that is, the resilient member 147 plays a role of resetting, and under the action of the resilient member 147, the first protruding structure 148 can switch from the state of being separated from the accommodation slot to being located in the accommodation slot.

[0060] Specifically, when the sealing plug 143 needs to be reset to move downward, that is, the sealing plug 143 needs to close the discharge port 211, in the initial state, the first protruding structure 148 is separated from the accommodation slot, that is, the sealing plug 143 abutting against the first stirring part 145 can drive the first stirring part 145 to rotate, in the resetting stage, the slider assembly 142 is extruded by the restoring force of the resilient member 147, in the rotating process, the slider assembly 142 slowly moves downward until the first protruding structure 148 is located in the accommodation slot, then the slider assembly 142 is limited to rotate and can only move downward in the vertical direction, so as to finally achieve the state that the sealing plug 143 seals the discharge port.

[0061] Specifically, on the one hand, one end of the resilient member 147 is connected with the cover assembly 111, on the other hand, one end of the resilient member 147 abuts against the cover assembly 111, on the third hand, the other end of the resilient member 147 is connected with the slider assembly 142, and on the fourth hand, the other end of the resilient member 147 abuts against the slider assembly 142, the different connection modes of the resilient member 147, the slider assembly 142 and the cover assembly 111 can meet the requirements of different structures of the resilient member 147, the slider assembly 142 and the cover assembly 111, different connection positions of the resilient member 147 and the slider assembly 142 and the cover assembly 111, and expand the use range of the product. Specifically, the resilient member 147 is a spring, and it can be understood that the resilient member 147 can also be other elastic structures that meet the requirements.

[0062] Specifically, as shown in Figure 12 The first protruding structure 148 is arranged outside the slider assembly 142, the lower side of the first protruding structure is provided with a slope structure 1481, such as the slope structure 1481 is inclined downward along the clockwise direction, that is, the bottom of the first protruding structure 148 is provided with the slope structure 1481, so that Figure 4 As shown in the direction and the direction from top to bottom, the counterclockwise rotation of the slider assembly 142 is the discharging stage, and the clockwise rotation is the resetting stage. As shown in Figure 13As shown, the two second protruding structures 149 are distributed in a stepped manner. For example, the stepped shape is tilted upward in a counterclockwise direction, that is, the left side of the two second protruding structures 149 of the paving groove is higher than the right side, and the distance difference between the two is as follows: Figure 13 As shown in d in FIG. 1 , such a configuration enables the first protruding structure 148 to smoothly enter the clearance groove and be stuck inside the clearance groove. It can be understood that, as Figure 14 As shown, setting the second protrusion on the right with a guide slope 1491 can also make the first protrusion structure 148 smoothly enter the clearance groove and get stuck inside the clearance groove. Figure 15 As shown, the inclined surface structure 1481 of the first protrusion structure 148 prevents the first protrusion structure 148 from being pushed into the clearance groove by the elastic member 147, that is, during the rotation of the screw rod 141, when the first protrusion structure 148 and the second protrusion structure 149 contact, the inclined surface structure 1481 can guide the first protrusion structure 148 to be lifted each time to avoid entering the clearance groove, thereby improving the reliability of the product.

[0063] Specifically, if Figures 1 to 5 As shown, the cover assembly 111 includes: a first cover 1111, a second cover 1112, wherein the second cover 1112 is detachably connected to the first cover 1111, the motor 112 is located in a receiving cavity formed by the first cover 1111 and the second cover 1112, and the first output shaft 113 is passed through the second cover 1112. That is, the first cover 1111 is located above the second cover 1112, and one end of the elastic member 147 is connected to or abuts the second cover 1112. Furthermore, it also includes a protective cover 240 located above the motor 112, which covers the top of the motor 112 and plays a certain sealing and protective role, thereby preventing condiments from entering the motor 112 and causing malfunctions.

[0064] In some possible embodiments provided in the present application, the slider assembly 142 includes a connected slider 1421 and a slider limit sleeve 1422, the slider 1421 is sleeved on the outside of the screw rod 141 and is threadedly connected to the screw rod 141; the first stirring part 145 includes a first connecting member 144 sleeved on the outside of the slider limit sleeve 1422, an impeller sleeved on the outside of the first connecting member 144 and a stirring head connected to the bottom of the impeller, and a set of docking structures are arranged between the stirring head and the sealing plug 143; a first bearing 146 is arranged between the impeller and the first connecting member 144; wherein, a sheet structure is arranged on the circumferential side of the impeller.

[0065] In this embodiment, Figure 7As shown, the slider assembly 142 comprises a slider 1421 and a slider limiting sleeve 1422 connected with each other, the slider 1421 is sleeved on the outside of the lead screw 141 and is threadedly connected with the lead screw 141, the first stirring part 145 comprises a first connecting piece 144, an impeller and a stirring head, wherein the first connecting piece 144 is sleeved on the outside of the slider limiting sleeve 1422, the impeller is sleeved on the outside of the first connecting piece 144, the stirring head is connected with the impeller and is located below the impeller, a set of butt joint structures are arranged between the stirring head and the sealing plug 143, a first bearing 146 is arranged between the impeller and the first connecting piece 144, and a sheet structure is arranged on the circumferential side of the impeller. Specifically, a first protruding structure 148 is arranged on the outside of the slider limiting sleeve 1422, and a second protruding structure 149 is arranged on the outside of the first connecting piece 144. In the discharging stage, the first protruding structure 148 of the slider limiting sleeve 1422 is located in the accommodation groove, the slider limiting sleeve 1422 is rotated upwardly by the slider 1421, at this time, the sealing plug 143 is rotated together with the lead screw; after the first protruding structure 148 is separated from the accommodation groove and the stirring head is butt jointed with the sealing plug 143, the sealing plug 143 drives the stirring head and the impeller to rotate, the stirring head and the sheet structure stir the condiment in the feeding cavity and break the arch, so that the discharging efficiency and the smoothness of discharging are improved.

[0066] Further, as shown in the drawings, Figure 8 The circumferential side of the impeller is provided with a sheet structure, the sealing plug 143 can drive the sheet structure and the stirring head to rotate at the same time to stir the condiment in the feeding cavity, which is beneficial to improve the stirring area of the first stirring part 145 and further improve the discharging efficiency and the reliability of discharging. It can be understood that the sheet structure can be a straight line type, a curve type, a fan shape, a cone shape, an S type, a W type, a V type and other shapes meeting the requirements, which are not limited in the application.

[0067] Specifically, since the sealing plug 143 needs to drive the stirring head to rotate after moving vertically upward to the top, by adding the butt joint structure, the reliability of the abutment between the stirring head and the sealing plug 143 is improved, and the reliability of the product is further improved. It can be understood that in some possible embodiments, the butt joint structure is not arranged, and the stirring head is also driven to rotate by the friction force when the sealing plug 143 abuts against the stirring head. It can be understood that the butt joint structure can be a clamping groove and clamping hook structure, or other structures meeting the requirements, which are not limited in the application.

[0068] Specifically, in one aspect, the stirring head is not movable up and down relative to the impeller, and in this arrangement, the feeding accuracy is higher. On the other hand, the stirring head is movable up and down relative to the impeller by a small distance, and when the sealing plug 143 rises to abut against the stirring head, the stirring head is lifted by a small distance. The small distance is arranged to increase the gap between the bottom of the stirring head and the inner wall of the bottom of the body 210, thereby facilitating rapid and smooth feeding and improving the feeding efficiency. It can be understood that the small distance needs to be reduced again in the subsequent reset stage.

[0069] Further, the number of the first bearings 146 is two, and the arrangement of the two first bearings 146 facilitates smooth and reliable rotation between the impeller and the first connecting piece 144, thereby improving the reliability of the product.

[0070] Further, the sliding block 1421 and the sliding block limiting sleeve 1422 are connected by a key, and it can be understood that they can also be connected by other ways that meet the requirements, which are not limited in the present application.

[0071] Specifically, the body 210 is provided with a guide portion, such as a guide slope, on the side of the discharge port 211, specifically, such as a conical surface. The arrangement of the guide slope facilitates improving the feeding efficiency. At the same time, the shape of the stirring head matches the shape of the guide slope, which facilitates further improving the stirring range and stirring area, thereby ensuring good feeding efficiency and feeding effect.

[0072] In some possible implementation embodiments provided in the present application, the feeding device 1 further comprises: a one-way rotation mechanism 120, which is arranged outside the first output shaft 113 of the driving assembly 110; a second stirring portion 130, the driving assembly 110 comprising a motor 112, and the second stirring portion 130 being arranged outside the motor 112; wherein the first output shaft 113 and the second stirring portion 130 are connected through the one-way rotation mechanism 120.

[0073] In this embodiment, as Figures 1 to 5As shown, the discharging device 1 further comprises a one-way rotating mechanism 120 sleeved outside the first output shaft 113 of the driving assembly 110 and a second stirring part 130 sleeved outside the motor 112 of the driving assembly 110. Since the first output shaft 113 is connected with the second stirring part 130 through the one-way rotating mechanism 120, when the first output shaft 113 rotates and drives the sealing plug 143 to open the discharge port 211, it indicates that the discharging device 1 is in a discharging state. At this time, the first output shaft 113 drives the second stirring part 130 to rotate through the one-way rotating mechanism 120, so that the rotation of the second stirring part 130 can stir and break the arch of the seasoning in the feeding cavity, which can reduce the problem that the seasoning is difficult to discharge due to accumulation in the feeding cavity, thereby facilitating to improve the smoothness and discharging efficiency of the seasoning, reduce the failure rate of the product, and improve the user's satisfaction. At the same time, the one-way rotating mechanism 120 is provided, so that the second stirring part 130 does not rotate during the process of reversing the rotation of the first output shaft 113 to drive the sealing plug 143 to close the discharge port 211, thereby saving energy and reducing energy consumption, which is conducive to improving the service life of the motor 112 and improving the reliability of the product.

[0074] Specifically, the one-way rotating mechanism 120 comprises a one-way bearing. It can be understood that the one-way rotating mechanism 120 can also comprise other mechanisms that meet the requirements, which are not limited in the present application.

[0075] Specifically, the second stirring part 130 is provided with a sheet structure, a grab structure or the like on the side to realize the stirring function. It can be understood that the specific structure of the second stirring part 130 is not limited in the present application. The one-way rotation of the second stirring part 130 can realize stirring or arch breaking, and it cannot be driven in reverse.

[0076] Further, the cover assembly 111 further comprises a connecting plate 1113 sleeved outside the first cover 1111 and located on the side of the second cover 1112 away from the discharge port 211. The shaft sleeve bearing 150 is assembled between the connecting plate 1113 and the second cover 1112 in position, and the second stirring part 130 and the motor 112 are connected through the shaft sleeve bearing 150. The second stirring part 130 is synchronously connected with the shaft sleeve bearing 150 located at the upper part and the one-way rotating mechanism 120 located at the lower part through the motor 112, so that it can be sleeved outside the motor 112 and rotate at the same time. The effect of one-way rotation can be realized by using the one-way rotating mechanism 120.

[0077] In some possible embodiments provided in the present application, the unloading equipment 1 also includes: a first planetary gear set 160, the first planetary gear set 160 includes a first ring gear, a first sun gear and a first planetary gear connecting the first ring gear and the first sun gear, the first sun gear is connected to the first output shaft 113; a first planetary gear seat 162, which is sleeved on the outside of the first ring gear, and the first ring gear is connected to the one-way rotation mechanism 120.

[0078] In this embodiment, Figures 1 to 5 As shown, the first ring gear of the first planetary gear set is connected to the one-way rotation mechanism 120, and the first sun gear is connected to the first output shaft 113, so that the first output shaft 113 rotates through the one-way rotation mechanism 120 to drive the second stirring part 130 to rotate. The configuration of the first planetary gear set 160 can achieve a speed change function, thereby keeping the rotation speed of the second stirring part 130 within a reasonable range, thereby ensuring a good stirring effect and improving the feeding efficiency while ensuring the reliability of the product.

[0079] It is understandable that the first planetary gear seat 162 is sleeved on the outside of the first ring gear, which plays a certain protective role and is conducive to increasing the service life of the first planetary gear set 160.

[0080] In some possible embodiments provided in the present application, the unloading equipment 1 also includes: a motor mounting bracket 220, which is arranged between the material storage portion 190 and the main body 210, and is connected to the material storage portion 190 and the main body 210; the motor mounting bracket 220 includes an annular edge, and the material storage portion 190 is threadedly connected to the annular edge.

[0081] In this embodiment, Figures 1 to 5 As shown, the unloading equipment 1 also includes a motor mounting bracket 220 arranged between the material storage portion 190 and the main body 210. The motor mounting bracket 220 is connected to the material storage portion 190 and the main body 210. The material storage portion 190 and the motor mounting bracket 220 are connected along an annular thread, so that the material storage portion 190 and the motor mounting bracket 220 are detachably connected, thereby making it convenient to remove the material storage portion 190 from the motor mounting bracket 220 for unloading, cleaning and replenishing. The operation is convenient, which improves user satisfaction.

[0082] It is understandable that the middle portion of the motor mounting bracket 220 is a through structure, so that the material storage cavity of the material storage portion 190 and the material feeding cavity of the body 210 are connected.

[0083] Specifically, the motor 112 is mounted on the motor mounting bracket 220, so that the motor 112 can work reliably. The material storage portion 190 can be mounted on or removed from the motor mounting bracket 220 by screwing, which is simple and convenient to operate, thereby improving user satisfaction.

[0084] In some possible embodiments provided in the present application, the unloading equipment 1 also includes: a mounting frame, which is arranged in the middle of the main body 210, and a flexible protrusion 1451 is provided on the side of the first stirring part 145 away from the discharge port 211, and the flexible protrusion 1451 abuts against the mounting frame.

[0085] In this embodiment, the unloading device 1 also includes a mounting frame provided in the middle of the main body 210. It can be understood that the first stirring part 145 and the second stirring part 130 are located on both sides of the mounting frame to improve the strength and reliability of the unloading device 1, wherein the first stirring part 145 is provided with a flexible protrusion 1451 on the side away from the discharge port 211, and the flexible protrusion 1451 abuts against the mounting frame. The setting of the flexible protrusion 1451 makes most of the first stirring part 145 (the part without the flexible protrusion 1451) have a first distance from the mounting frame for easy rotation. At the same time, since a small part of the first stirring part 145 abuts against the mounting frame through the flexible protrusion 1451, when the user shakes the entire unloading device 1, the first stirring part 145 will not shake and make noise, thereby improving the reliability of the product and the comfort of user use, and expanding the market competitiveness of the product.

[0086] Specifically, the flexible protrusion 1451 is provided on the first stirring portion 145 along the circumference of the first output shaft, for example, the flexible protrusion 1451 is a circle of convex point structures.

[0087] In some possible embodiments provided in the present application, the unloading equipment 1 also includes: a third stirring part 170, the driving component 110 also includes a motor 112 and a second output shaft 114, the second output shaft 114 and the first output shaft 113 of the driving component 110 are located at both ends of the motor 112, and the third stirring part 170 is connected to the second output shaft 114 and is located in the storage chamber.

[0088] In this embodiment, if Figures 1 to 5 As shown, the feeding equipment 1 also includes a third stirring part 170, and the driving component 110 also includes a motor 112 and a second output shaft 114. The second output shaft 114 and the first output shaft 113 of the driving component 110 are located at both ends of the motor 112, that is, the motor 112 is a dual-output shaft motor, which is connected to the second output shaft 114 through the third stirring part 170 and is located in the storage chamber, so that the third stirring part 170 is driven by the rotation of the second output shaft 114 to achieve stirring and breaking of the condiment in the storage chamber, further expanding the stirring range and stirring area of ​​the condiment, and can reduce the problem of condiments accumulating in the storage chamber and being difficult to discharge, thereby helping to improve the smoothness and efficiency of condiment discharge and reduce the failure rate of the product.

[0089] Meanwhile, the third stirring part 170 is arranged above the body 210 and above the first stirring part 145 and the second stirring part 130 in the feeding cavity, which is favorable for reducing the stirring difficulty of the first stirring part 145 and the second stirring part 130 in the feeding cavity, and further improves the service life of the second stirring part 130 and the first stirring part 145. In addition, the third stirring part 170 cooperates with the first stirring part 145 and the second stirring part 130 to stir most of the seasonings in the storage cavity and the feeding cavity, greatly increases the stirring area and stirring range, improves the discharging efficiency, and improves the user's satisfaction.

[0090] Specifically, the third stirring part 170 is provided with stirring claws, stirring blades or other structures meeting the requirements on the side.

[0091] In some possible implementation forms provided by the present application, the discharging device 1 further comprises a second planetary gear set 180, the second planetary gear set 180 comprising a second ring gear 182, a second sun gear 183 and a second planetary gear 184 connecting the second ring gear 182 and the second sun gear 183, the second sun gear 183 being connected with the second output shaft 114; and a second planetary gear seat 181, which is sleeved outside the second ring gear 182, and the second ring gear 182 is connected with the third stirring part 170.

[0092] In this embodiment, the discharging device 1 further comprises the second planetary gear set 180, the second ring gear 182 of the second planetary gear set is connected with the third stirring part 170, and the second sun gear 183 is connected with the second output shaft 114, so that the rotation of the second output shaft 114 can drive the third stirring part 170 to rotate. The second planetary gear set 180 can realize the function of speed change, so that the rotation speed of the third stirring part 170 is within a reasonable range, to ensure good stirring effect and improve the discharging efficiency while ensuring the reliability of the product.

[0093] It can be understood that the second planetary gear seat 181 is sleeved outside the second ring gear 182 of the second planetary gear set 180, which plays a certain protection role and is favorable for improving the service life of the second planetary gear set 180.

[0094] Further, the discharging device 1 provided by the present application further comprises a motor outgoing line connected with the motor 112, which is connected with an external power supply to provide power for the motor 112. It can be understood that, in order to improve the aesthetics and the convenience of use, a built-in battery can be used to supply power for the motor 112.

[0095] According to the second aspect of the present application, a cooking device is provided, comprising: a controller; and the discharging device 1 of any one of the first aspect, the controller being connected with the driving assembly 110 of the discharging device 1.

[0096] The cooking equipment provided in the application comprises a controller and the feeding device 1 of any one of the embodiments of the first aspect, the controller is connected with the driving assembly 110 of the feeding device, since the cooking equipment comprises the feeding device 1 of any one of the embodiments of the first aspect, the cooking equipment has all the beneficial technical effects of the feeding device 1, which will not be described here.

[0097] Further, the controller is connected with the motor 112 and controls the working state of the motor 112, in particular, controls the rotation and stop of the first output shaft 113 and the second output shaft 114 of the motor 112 and the rotation direction of the first output shaft 113.

[0098] In the specific embodiments provided in the application, as shown in Figures 1 to 5 The feeding device 1 is a vertical feeding mechanism, that is, the driving motor 112 of the driving assembly 110 is vertically placed, the motor 112 is a double-shaft motor, comprising a first output shaft 113 located below and a second output shaft 114 located above. The solid powdered seasoning is stored in the storage part 190, the storage part 190 is arranged above the motor 112, a third stirring part 170 is arranged between the storage part 190 and the second output shaft 114 of the motor 112, the third stirring part 170 extends into the storage cavity to stir or break the arch of the solid powdered seasoning. The body 210 is connected with the storage part 190 and located below the storage part 190, the motor 112 is arranged in the body 210, the telescopic assembly 140 is arranged below the double-shaft motor 112 and connected through the first output shaft 113, the outer periphery of the telescopic assembly 140 is provided with a first stirring part 145, and a second stirring part 130 is arranged between the outside of the motor 112 and the body 210 to realize the function of stirring and feeding.

[0099] In particular, the feeding device 1 mainly comprises a storage part 190, a third stirring part 170, a motor mounting frame 220, a first planetary gear set 160, a first cover body 1111, a motor 112, a second cover body 1112, a connecting plate 1113, a second connecting piece 230 (such as a screw), a second planetary gear set 184, a shaft sleeve bearing 150, a second stirring part 130, a spring, a one-way bearing, a lead screw bracket, a lead screw 141, a sliding block 1421, a sliding block limiting sleeve 1422, a shaft sleeve bearing 150, a mounting frame, a first stirring part 145, a sealing plug 143, etc.

[0100] The motor 112 is mounted between the first cover 1111 and the second cover 1112, which are assembled by snap fitting. The first cover 1111 is provided with a protruding positioning block, and the connecting plate 1113 has a through hole, through which the first cover 1111 and the motor mounting frame 220 are fastened and assembled by screws. The second output shaft 114 is provided with a transmission gear, and the first cover 1111 is provided with the second planetary gear set 180 and the second planetary gear seat 181. The stirring rod and the transmission member mounted on the second planetary gear set 180 constitute the third stirring part 170. In this way, when the motor 112 rotates, the transmission gear of the second output shaft 114 can drive the third stirring part 170 to stir the seasoning in the body or break the arch.

[0101] The first output shaft 113 of the motor 112 is also provided with a transmission gear, which is in meshing transmission with the first planetary gear set 160. The first planetary gear set 160 is arranged between the second cover 1112 and the first planetary gear seat, which is fixedly assembled with the second cover 1112. A lead screw 141 mechanism is arranged below the planetary gear shaft of the first planetary gear set 160, and the planetary gear shaft passes through a one-way bearing. A shaft sleeve bearing 150 is limitingly assembled between the connecting plate 1113 and the second cover 1112. The upper end of the second stirring part 130 is provided with an assembly groove for mounting the shaft sleeve bearing 150, and the lower end of the second stirring part 130 is assembled on the flange plane of the one-way bearing. In this way, the second stirring part 130 can only rotate in one direction with the first planetary gear set 160 of the motor 112. The lower end of the motor mounting frame 220 is fixedly assembled with the upper end surface of the body 210 through the setting of a screw buckle structure.

[0102] The sliding block limiting sleeve 1422 is provided with a key groove positioning column, which cooperates with the key groove on the sliding block 1421. The lead screw 141 is threadedly connected with the sliding block 1421. The sliding block limiting sleeve 1422 is provided with a limiting structure and can move vertically along the clearance groove arranged inside the first stirring part 145. The outer portion of the first connecting piece 144 of the first stirring part 145 is provided with two groups of first bearings, the outer ring of the first bearing is provided with an impeller, and the lower portion of the impeller is connected with a stirring head. The first connecting piece 144, the stirring head and the impeller constitute the first stirring part 145. A sealing door assembly (sealing plug 143) is arranged below the lead screw 141 and is fixedly assembled on the sliding block limiting sleeve 1422 by screws.

[0103] As shown in the following Figure 4 and Figure 5 When the motor 112 rotates counterclockwise, the movable part of the lead screw 141 mechanism will move vertically downward due to the load and the limiting structure. When the movable part moves to the end position, the sealing plug 143 is extruded to block the discharge port on the body 210 (the sealing door assembly is made of deformable soft material).

[0104] As shown in the following Figure 4 andFigure 5 As shown, when the motor 112 rotates clockwise, the slider assembly 142 of the screw rod 141 mechanism moves vertically upward due to the spring load, and when it moves to the upper end position, the top end of the screw rod 141 of the screw rod 141 mechanism is in contact with the slider limiting sleeve 1422, the mechanism is locked in a locked state, and the screw rod 141, the screw rod slider 1421, and the slider limiting sleeve 1422 rotate synchronously in the clockwise direction. Due to the effect of the one-way bearing, the stirring shaft sleeve will rotate. The sealing plug 143 and the pawl mechanism arranged on the stirring head at the bottom of the first stirring part 145 are matched with each other, the sealing plug 143 drives the stirring head to rotate in the clockwise direction, and the stirring can be quantitative, realizing the quantitative feeding function. Specifically, Figure 4 and Figure 5 The arrow in the above formula represents the direction of the seasoning feeding flow, that is, the direction of the feeding channel. Figure 4 is the state of the sealing plug closing the feeding port, Figure 5 is the state of the sealing plug opening the feeding port.

[0105] In the description of the present application, the term "a plurality of" refers to two or more, unless otherwise explicitly limited, and the terms "upper", "lower", and the like indicate the orientation or positional relationship described based on the drawings, which are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application; the terms "connection", "installation", "fixation" and the like should be understood broadly, for example, "connection" can be fixed connection, can also be detachable connection, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0106] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like described in the description of the embodiment or example mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0107] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A blanking device (1), characterized in that, The device comprises: a storage part (190) provided with a storage cavity; a body (210) connected with the storage part (190), the body (210) being provided with a feeding cavity and a discharge port (211) in communication, the feeding cavity being in communication with the storage cavity, and the discharge port (211) being located on a side of the body (210) away from the storage part (190); a telescopic assembly (140) installed in the feeding cavity, the telescopic assembly (140) comprising a lead screw (141), a sliding block assembly (142) threadedly matched with the lead screw (141), and a sealing plug (143) connected with the sliding block assembly (142); a driving assembly (110) connected with the telescopic assembly (140), the lead screw (141) being rotationally driven to move the sliding block assembly (142) in a vertical direction, so as to open or close the discharge port (211), the driving assembly (110) comprising a first output shaft (113); one end of the lead screw (141) being connected with the first output shaft (113), the first output shaft (113) being capable of rotating the lead screw (141); the sliding block assembly (142) being sleeved on the outside of the lead screw (141); the sealing plug (143) being located at one end of the sliding block assembly (142) close to the discharge port (211); wherein rotation of the lead screw (141) can move the sliding block assembly (142) away from or close to the discharge port (211), so as to open or close the discharge port (211) the telescopic assembly (140) further comprising a first stirring part (145) sleeved on the outside of the sliding block assembly (142), rotation of the lead screw (141) being capable of moving the sealing plug (143) into abutment with or away from the first stirring part (145), the sealing plug (143) driving the first stirring part (145) to rotate after the sealing plug (143) abuts against the first stirring part (145); the discharging device (1) further comprising a one-way rotation mechanism (120) and a second stirring part (130), the one-way rotation mechanism (120) being sleeved on the outside of the first output shaft (113) of the driving assembly (110); the driving assembly (110) comprising a motor (112), the second stirring part (130) being sleeved on the outside of the motor (112); wherein the first output shaft (113) and the second stirring part (130) are connected through the one-way rotation mechanism (120). The telescopic assembly (140) further comprises an elastic member (147), the driving assembly (110) further comprises a cover assembly (111) sleeved outside the motor (112), one end of the elastic member (147) is connected with or abuts against the cover assembly (111), and the other end is connected with or abuts against the sliding block assembly (142); the elastic member (147) can push the sliding block assembly (142).

2. The blanking device (1) according to claim 1, characterized in that, One of the sliding block assembly (142) and the first stirring part (145) is provided with a limiting part, and the other is provided with a positioning part matched with the limiting part, the limiting part and the positioning part are configured to limit the rotation of the sliding block assembly (142) relative to the first stirring part (145); The positioning part comprises a first protruding structure (148); The limiting part comprises at least one set of second protruding structures (149), one set is two, and the two second protruding structures (149) are distributed along the circumference of the lead screw (141) and form a clearance groove; The first protruding structure (148) has a first state in the clearance groove and a second state out of the clearance groove; Wherein, the lower side of the first protruding structure (148) is provided with a slope structure (1481); and / or The two second protruding structures (149) are distributed in a stepped manner; The elastic member (147) can push the sliding block assembly (142), so that the first protruding structure (148) is converted from the second state to the first state.

3. The blanking device (1) according to claim 1, characterized in that, The sliding block assembly (142) comprises a sliding block (1421) and a sliding block limiting sleeve (1422) connected with each other, the sliding block (1421) is sleeved outside the lead screw (141) and is threadedly connected with the lead screw (141); The first stirring part (145) comprises a first connecting piece (144) sleeved outside the sliding block limiting sleeve (1422), an impeller sleeved outside the first connecting piece (144), and a stirring head connected to the lower side of the impeller, a set of butt joint structures is arranged between the stirring head and the sealing plug (143); A first bearing (146) is arranged between the impeller and the first connecting piece (144); Wherein, the circumferential side of the impeller is provided with a sheet structure.

4. The blanking device (1) according to claim 1, characterized in that Further comprising: A first planetary gear set (160) comprising a first ring gear, a first sun gear, and a first planetary gear connecting the first ring gear and the first sun gear, the first sun gear being connected with the first output shaft (113); A first planetary gear seat (162) sleeved outside the first ring gear, the first ring gear being connected with the one-way rotation mechanism (120); Wherein, the one-way rotation mechanism comprises a one-way bearing; The blanking device (1) further comprises: A motor mounting frame (220) is arranged between the material storage part (190) and the body (210) and connected with the material storage part (190) and the body (210); The motor mounting frame (220) comprises an annular flange, and the material storage part is threadedly connected with the annular flange.

5. The blanking device (1) according to claim 1 or 2, characterized in that Further comprising: A mounting frame is arranged at the middle part of the body (210), and the first stirring part (145) is provided with a flexible protrusion (1451) on the side away from the discharge port (211), and the flexible protrusion (1451) abuts against the mounting frame.

6. The blanking device (1) according to claim 1 or 2, characterized in that Further comprising: A third stirring part (170), the driving assembly (110) further comprises a motor (112) and a second output shaft (114), the second output shaft (114) and the first output shaft (113) of the driving assembly (110) are located at two ends of the motor (112), the third stirring part (170) is connected with the second output shaft (114) and located in the material storage cavity.

7. The blanking device (1) according to claim 6, characterized in that Further comprising: A second planetary gear set (180), the second planetary gear set (180) comprises a second ring gear (182), a second sun gear (183) and a second planetary gear (184) connecting the second ring gear (182) and the second sun gear (183), the second sun gear (183) is connected with the second output shaft (114); A second planetary gear carrier (181) is sleeved on the outside of the second ring gear (182), and the second ring gear (182) is connected with the third stirring part (170).

8. A cooking apparatus comprising: a controller; and The discharging apparatus (1) according to any one of claims 1 to 7, and the controller is connected with the driving assembly of the discharging apparatus (1). ​

Citation Information

Patent Citations

  • Rice washing device and cooking utensil

    CN109124405A

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    CN215304898U