Food processing device
Through the combination of the mounting base, locking mechanism and pressing mechanism, the problem of complex and poor fixation of food containers in food processing equipment is solved, and the stable fixation of storage containers is achieved and noise reduction is achieved, which improves production efficiency and reduces costs.
Patent Information
- Application Number
- CN202421776169.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The existing food processing equipment used to fix food containers has complex structure and poor fixing effect, which is inconvenient to operate.
The installation mechanism, locking mechanism and compression mechanism are adopted to achieve stable fixation of the storage container through the cooperation of the mounting seat, locking fastener and unlocking member, and the position of the storage container is further restricted through the compression member.
It improves the stability of the storage container, reduces noise during equipment operation, simplifies production processes, reduces production costs, and facilitates user operation and disassembly.
Smart Images

Figure CN223158270U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of food processing equipment, and in particular to a food processing equipment. Background Art
[0002] With the increasing diversity of food cooking methods, rotary food processing equipment is becoming increasingly popular. These devices consist of a food container and a functional component that extends into the container and rapidly rotates to stir, cut, and mix the food. The food container is fixed to the housing of the food processing device to maintain its stability.
[0003] The structure for fixing the food container of the existing food processing equipment is relatively complicated, inconvenient to operate, and has a poor fixing effect. Utility Model Content
[0004] The present application provides a food processing device, which includes a mounting mechanism, a storage container, a locking mechanism and a pressing mechanism. The mounting mechanism includes a mounting seat, which is provided with a limiting portion. The storage container is detachably mounted on the mounting seat, and the limiting portion cooperates with the storage container to limit the storage container to the mounting seat. The locking mechanism includes a locking member and an unlocking member, and the unlocking member cooperates with the locking member to drive the locking member to lock or separate from the storage container. The pressing mechanism includes a base and a pressing member. The base is arranged on a side of the storage container away from the mounting seat, and the base is fixedly connected to the mounting seat. The pressing member is movably arranged on a side of the base facing the storage container to hold the storage container between the mounting seat and the base.
[0005] Among them, in some optional embodiments, the mounting seat is provided with a movable space, the locking member can be movably arranged in the movable space, the locking member moves relative to the mounting seat along a first direction and is passed through the side of the mounting seat facing the base, and when the storage container is set on the mounting seat, the locking member is embedded in the storage container; the locking mechanism also includes a reset elastic member, which elastically supports between the mounting seat and the locking member.
[0006] Among them, in some optional embodiments, the mounting seat is provided with a mounting through hole, which is connected to the activity space, and at least part of the structure of the unlocking member extends into the activity space through the mounting through hole. The unlocking member moves toward the activity space and squeezes the locking member to move along the second direction to disengage the locking member from the storage container. The first direction is opposite to the second direction.
[0007] Among them, in some optional embodiments, the locking member includes a locking portion and a matching portion connected to each other, the locking portion is used to be embedded in the storage container, and the matching portion is provided with a receiving slope, the receiving slope intersects with the straight line where the first direction is located, and the receiving slope is opposite to the side of the mounting seat facing the base; the unlocking member is provided with an extrusion slope, the extrusion slope is opposite to the receiving slope, the extrusion slope is superimposed on the receiving slope, and the extrusion slope and the receiving slope are slidably matched.
[0008] Among them, in some optional embodiments, the mounting base includes a first mounting shell and a second mounting shell, the first mounting shell includes a main body and an abutment portion connected to each other, the main body is connected to the side of the second mounting shell facing the base, at least part of the structure of the second mounting shell is spaced apart from the main body to define a movable space, and the abutment portion protrudes toward the second mounting shell relative to the main body; the locking mechanism also includes a restoring elastic member, which elastically abuts between the abutment portion and the unlocking member.
[0009] Among them, in some optional embodiments, the mounting base includes a first mounting shell and a second mounting shell, the first mounting shell includes a main body and a guide portion connected to each other, the main body is connected to the side of the second mounting shell facing the base, at least part of the structure of the second mounting shell is spaced apart from the main body to define an activity space, and the guide portion is connected to the side of the main body facing the activity space; the guide portion is provided with a guide groove, the guide groove extends along the first direction, and the local structure of the locking member can be movably embedded in the guide groove.
[0010] In some optional embodiments, when the storage container is set on the mounting seat, the limiting portion is arranged around a partial periphery of the storage container, and the limiting portion is engaged with the storage container.
[0011] Among them, in some optional embodiments, the limiting portion is provided with two limiting slots arranged relatively spaced apart; two embedded portions are provided on opposite sides of the storage container, and when the storage container is set on the mounting seat, the two embedded portions correspond one-to-one with the two limiting slots and fit together.
[0012] Among them, in some optional embodiments, the storage container includes a barrel body and a cover body, the barrel body is detachably mounted on the mounting seat and is located between the base and the mounting seat, a take-in and take-out opening is provided on the side of the barrel body facing the base, and the cover body is located between the base and the barrel body; when the storage container is set on the mounting seat, the clamping piece is located on the side of the cover body away from the take-in and take-out opening and abuts against the cover body, so that the cover body abuts against the edge structure of the take-in and take-out opening to seal the take-in and take-out opening.
[0013] Among them, in some optional embodiments, a positioning portion is provided on the side of the cover body facing away from the barrel body, and a matching groove is provided on the side of the base facing the mounting seat. When the storage container is arranged between the mounting seat and the base, the positioning portion is embedded in the matching groove.
[0014] Among them, in some alternative embodiments, the base is provided with an installation space, the pressing member is movably arranged in the installation space, the pressing member can move relative to the base along a first direction or a second direction, and the first direction is opposite to the second direction; in a state where the storage container is arranged between the mounting seat and the base, the pressing member moves along the second direction, penetrates through one side of the base facing the storage container, and abuts against the storage container; the pressing mechanism further includes a pressing elastic member, and the pressing elastic member is located in the installation space and elastically abuts between the base and the pressing member.
[0015] Among them, in some alternative embodiments, the base includes a first housing and a second housing, the second housing is connected to one side of the first housing facing the mounting seat, and at least part of the structure of the second housing is spaced from the first housing to define an installation space; in a state where the storage container is arranged between the mounting seat and the base, the pressing member penetrates through the second housing and abuts against the storage container, and the pressing elastic member elastically abuts between the first housing and the pressing member.
[0016] Among them, in some alternative embodiments, the pressing member includes a pressing portion and a plurality of anti-detachment buckles, the pressing portion penetrates through the second housing to partially extend out of the installation space, the plurality of anti-detachment buckles are connected to one side of the pressing portion facing the first housing and are arranged in a surrounding manner, the anti-detachment buckles extend towards the first housing relative to the pressing portion, and the anti-detachment buckles are used to abut against the second housing.
[0017] The present application provides a food processing device in this embodiment, which includes a mounting mechanism, a pressing mechanism, a storage container and a locking mechanism. The mounting seat of the mounting mechanism is spaced from and fixedly connected to the base of the pressing mechanism, and the storage container is arranged between the mounting seat and the base. The locking mechanism is movably arranged on the mounting seat, the storage container cooperates with the limiting portion on the mounting seat, and the locking member of the locking mechanism is automatically embedded in the storage container to fixedly mount the storage container on the mounting seat. The unlocking member of the locking mechanism cooperates with the locking member to separate the locking member from the storage container, so as to release the locking effect of the locking mechanism on the storage container, so that the user can remove the storage container from the mounting seat. When the storage container is fixed on the mounting seat, the pressing member of the pressing mechanism abuts against the storage container to further limit the position of the storage container.
[0018] In this embodiment, the storage container is restricted in multiple ways, so that the storage container can overcome the acting forces brought by the fast-rotating functional components and the food materials, reduce the amplitude of shaking of the storage container and the machine shell, reduce the noise generated when the food processing device works, and the structures of the locking mechanism and the pressing mechanism are relatively simple, with fewer production processes, improving production efficiency and reducing production costs, and being convenient for users to operate and disassemble. Description of the Drawings
[0019] To more clearly illustrate the technical solution of this application, the accompanying drawings required for implementation will be briefly introduced below. Obviously, the accompanying drawings in the following description are only some embodiments of this application. For those of ordinary skill in the art, other accompanying drawings can be obtained based on these drawings without creative efforts.
[0020] Figure 1 It is a schematic structural diagram of a food processing device provided by an embodiment of this application.
[0021] Figure 2 is Figure 1 A schematic structural diagram of the installation mechanism and the pressing mechanism of the food processing device shown.
[0022] Figure 3 is Figure 1 An exploded view of the installation mechanism of the food processing device shown.
[0023] Figure 4 is Figure 1 An exploded view of the pressing mechanism of the food processing device shown.
[0024] Figure 5 is Figure 1 A schematic structural diagram of the locking mechanism of the food processing device shown.
[0025] Figure 6 is Figure 1 A schematic internal structural diagram of the installation mechanism of the food processing device shown.
[0026] Figure 7 is Figure 1 A schematic structural diagram of another perspective of the locking mechanism of the food processing device shown.
[0027] Figure 8 is Figure 4 A schematic structural diagram of the pressing member of the pressing mechanism shown.
[0028] Reference numerals: 100, food processing device; 90, housing; 80, storage container; 81, barrel body; 811, embedded part; 812, access opening; 82, cover body; 821, main body; 822, positioning part; 83, inner barrel; 70, mounting mechanism; 71, mounting seat; 711, first mounting shell; 7111, body; 7112, guiding part; 7113, guiding groove; 7114, abutting part; 7115, limiting part; 7116, limiting slot; 7117, mounting through hole; 712, second mounting shell; 73, activity space; 74, support member; 60, locking mechanism; 61, locking part; 611, locking portion; 612, cooperating part; 613, guiding projection; 614, receiving inclined surface; 62, unlocking member; 621, pressing inclined surface; 63, reset elastic member; 64, restoring elastic member; 50, pressing mechanism; 51, base; 511, first housing; 512, second housing; 5121, cooperating groove; 513, mounting space; 52, pressing member; 521, pressing portion; 522, anti-disengagement buckle; 53, pressing elastic member. Detailed implementation manners
[0029] In order to enable those skilled in the art of this technology to better understand the solution of this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the protection scope of this application.
[0030] Please refer to Figure 1 , an embodiment of this application provides a food processing device 100, and the food processing device 100 is used to process food materials to assist cooking. In this embodiment, the food processing device 100 is a device for rotary processing. The food processing device 100 includes functional components (not shown in the figure), and the processing method of the functional components for food determines the type of the food processing device 100. As an example, the functional components include structures such as a stirring rod and a stirring paddle, and thus the food processing device 100 is a blender or a mixer. As another example, the functional components include a rotary cutter head, and thus the food processing device 100 is a meat grinder or a wall breaker. In some embodiments, the food processing device 100 is integrated with a refrigeration device (such as a thermoelectric cooler), and thus the food processing device 100 is an ice cream maker, a fruit puree maker, etc.; or the food processing device 100 is integrated with a heating device (such as a heating tube, a barbecue lamp, etc.), and thus the food processing device 100 is a bread maker, an air fryer, etc.
[0031] Please refer to Figures 1 to 3, in this embodiment, the food processing device 100 includes a housing 90. The housing 90 constructs the main body 821 structure of the food processing device 100, and most components on the food processing device 100 are installed on the housing 90. In this embodiment, the food processing device 100 includes a storage container 80, and the storage container 80 is used to hold food to be processed. The functional components can extend into the storage container 80 and rotate at a high speed to process the food materials, such as crushing and stirring. In this embodiment, the food processing device 100 includes a mounting mechanism 70 and a locking mechanism 60. The mounting mechanism 70 and the locking mechanism 60 cooperate with the storage container 80 respectively to fix the storage container 80. Specifically, the mounting mechanism 70 includes a mounting seat 71, and the storage container 80 is placed on the mounting seat 71. A limiting portion 7115 is provided on the mounting seat 71, and the limiting portion 7115 is used to cooperate with the storage container 80 to limit the storage container 80 on the mounting seat 71. In this embodiment, the limiting portion 7115 can limit the position state of the storage container 80 relative to the mounting seat 71 to be relatively stable.
[0032] Please refer to Figure 2 and Figure 3 , the locking mechanism 60 in this embodiment includes a locking member 61. The locking member 61 is movably arranged on the mounting seat 71. In the state where the storage container 80 is installed on the mounting seat 71, the locking member 61 can be partially embedded in the storage container 80 to further limit the position of the storage container 80 relative to the mounting seat 71, improve the stability of the position state between the mounting seat 71 and the storage container 80, and can prevent the storage container 80 from shaking due to the rotation of the internal functional components and food, resulting in the separation of the storage container 80 from the mounting seat 71, and ensure the normal operation of the food processing device 100. The locking mechanism 60 in this embodiment further includes an unlocking member 62. The unlocking member 62 is also movably arranged on the mounting seat 71. The locking member 61 is located on the movement path of the unlocking member 62. The unlocking member 62 is used to cooperate with the locking member 61 and drive the locking member 61 to move out of the storage container 80, so that the locking member 61 is separated from the storage container 80. In the state where the locking member 61 is separated from the storage container 80, the locking effect of the locking mechanism 60 on the storage container 80 is released, and the storage container 80 can be disengaged from the limiting portion 7115 so that the storage container 80 is separated from the mounting seat 71.
[0033] Please refer to Figure 2 , Figure 3 and Figure 4, in this embodiment, the food processing device 100 further includes a pressing mechanism 50. In a state where the storage container 80 is mounted on the mounting seat 71, the pressing mechanism 50 is disposed on a side of the storage container 80 away from the mounting seat 71. The storage container 80 is located between the pressing mechanism 50 and the mounting mechanism 70. The pressing mechanism 50 and the mounting mechanism 70 jointly clamp the storage container 80 to limit the position state of the storage container 80 from opposite sides. Specifically, the pressing mechanism 50 in this embodiment includes a base 51 and a pressing member 52. The base 51 is disposed on a side of the storage container 80 away from the mounting seat 71 and is fixedly connected to the mounting seat 71. The pressing member 52 is movably disposed on a side of the base 51 facing the mounting seat 71. When the storage container 80 cooperates with the mounting seat 71 and the locking mechanism 60, the pressing member 52 abuts against the storage container 80 to further limit the movement of the storage container 80 and ensure that the storage container 80 is in a stable position state relative to the mounting seat 71 and the housing 90.
[0034] Please refer to Figure 2 , Figure 3 and Figure 4 , in this embodiment, the mounting mechanism 70 includes at least two support members 74, and the support members 74 are in a rod-shaped or columnar structure. The two support members 74 are disposed between the mounting seat 71 and the base 51. Each support member 74 is fixedly connected to the mounting seat 71 and the base 51 respectively (such as by welding, threaded connection, etc.) to fixedly connect the mounting seat 71 and the base 51. The two support members 74 are substantially located at opposite ends of the base 51, and the storage container 80 is disposed between the two support members 74 so that when the pressing member 52 abuts against the storage container 80, the acting force of the pressing member 52 on the storage container 80 is relatively balanced, avoiding uneven stress between parts of the storage container 80.
[0035] In summary, the food processing device 100 in this embodiment includes a mounting mechanism 70, a pressing mechanism 50, a storage container 80, and a locking mechanism 60. The mounting base 71 of the mounting mechanism 70 is spaced apart from and fixedly connected to the base 51 of the pressing mechanism 50, and the storage container 80 is disposed between the mounting base 71 and the base 51. The locking mechanism 60 is movably disposed on the mounting base 71. The storage container 80 cooperates with the limiting portion 7115 on the mounting base 71, and the locking member 61 of the locking mechanism 60 is automatically embedded in the storage container 80 to fixedly mount the storage container 80 on the mounting base 71. The unlocking member 62 of the locking mechanism 60 cooperates with the locking member 61 to separate the locking member 61 from the storage container 80, so as to release the locking effect of the locking mechanism 60 on the storage container 80, enabling the user to remove the storage container 80 from the mounting base 71. When the storage container 80 is fixed to the mounting base 71, the pressing member 52 of the pressing mechanism 50 abuts against the storage container 80 to further limit the position of the storage container 80. In this embodiment, the storage container 80 is restricted in multiple ways, enabling the storage container 80 to overcome the acting forces brought by the fast-rotating functional components and the food ingredients, reducing the amplitude of shaking of the storage container 80 and the housing 90, reducing the noise generated when the food processing device 100 is operating, and the structures of the locking mechanism 60 and the pressing mechanism 50 are relatively simple, with fewer production processes, improving production efficiency and reducing production costs, and being convenient for users to operate and disassemble.
[0036] First, the structure of the mounting mechanism 70 and the cooperation relationship between the mounting mechanism 70 and the storage container 80 will be introduced.
[0037] Please refer to Figure 2 , Figure 3 and Figure 4 , in this embodiment, the mounting base 71 includes a first mounting shell 711 and a second mounting shell 712. The first mounting shell 711 is connected to one side of the second mounting shell 712 facing the base 51, and at least part of the structure of the second mounting shell 712 is spaced apart from the first mounting shell 711 to define an activity space 73. In this embodiment, the first mounting shell 711 has a cover-like or shell-like structure, and the second mounting shell 712 is partially embedded in the first mounting shell 711. The outer peripheral side wall of the second mounting shell 712 is closely attached to the inner side wall of the first mounting shell 711, so that the first mounting shell 711 and the second mounting shell 712 are in interference fit. In this embodiment, the mounting mechanism 70 further includes a fixing member (such as a screw, a pin, etc.), and the fixing member connects the first mounting shell 711 and the second mounting shell 712 to ensure the integrity of the structure of the mounting base 71.
[0038] Please refer to Figure 3 and Figure 4, in this embodiment, the first mounting shell 711 includes a body 7111 and a limiting portion 7115. The body 7111 is cooperatively connected with the second mounting shell 712 to define a moving space 73. The limiting portion 7115 is disposed on the side of the body 7111 facing the base 51 and protrudes relative to the body 7111. In this embodiment, the limiting portion 7115 has a semi-circular surrounding structure. When the storage container 80 is mounted on the mounting seat 71, the limiting portion 7115 surrounds a partial outer periphery of the storage container 80. The storage container 80 moves into the space defined by the structure of the limiting portion 7115 through the gap between the two ends of the limiting portion 7115 in its extending direction. The limiting portion 7115 can limit the horizontal movement of the storage container 80 relative to the mounting seat 71 to a certain extent.
[0039] Please refer to Figure 2 , Figure 3 and Figure 4 , the food processing device 100 in this embodiment is disposed on a horizontal application platform to define the direction of gravity. The mounting seat 71, the storage container 80, and the pressing mechanism 50 of the food processing device 100 are stacked in sequence. In this embodiment, the limiting portion 7115 is in an interference fit with the storage container 80. Specifically, two limiting slots 7116 are provided on the limiting portion 7115, and the two limiting slots 7116 are spaced apart. When the storage container 80 is disposed on the mounting seat 71, the two limiting slots 7116 are respectively located on the opposite sides of the storage container 80. Correspondingly, an embedding portion 811 is provided on each of the opposite sides of the bottom of the storage container 80, and the two embedding portions 811 are respectively provided and in interference fit with the two limiting slots 7116 in a one-to-one correspondence. In an actual application scenario, the storage container 80 moves into the space defined by the limiting portion 7115 through the gap between the two ends of the limiting portion 7115. During the movement process, each embedding portion 811 can gradually be embedded into a corresponding limiting slot 7116. When the limiting slot 7116 and the embedding portion 811 are in an interference fit state, the limiting portion 7115 can limit the horizontal movement of the storage container 80 to a certain extent and can also limit the movement of the storage container 80 in the direction of gravity. In other embodiments, the limiting portion 7115 can be embedded in the storage container 80 to realize the limitation of the position state of the storage container 80.
[0040] Please refer to Figure 3 , Figure 4 and Figure 5, in this embodiment, the locking member 61 is movably disposed within the moving space 73. Specifically, the locking mechanism 60 further includes a reset elastic member 63. The reset elastic member 63 is connected to the second mounting shell 712. The locking member 61 is connected to the reset elastic member 63 such that the locking member 61 is movably connected to the second mounting shell 712. The reset elastic member 63 elastically abuts between the mounting base 71 (the second mounting shell 712) and the locking member 61. In an actual application scenario, the elastic member 63 releases elastic force to push the locking member 61 to move relative to the second mounting shell 712 in the first direction. The locking member 61 moves in the moving space 73 in the first direction and passes through the mounting base 71 towards the side of the base 51 (i.e., the body 7111 of the first mounting shell 711), so as to extend out of the moving space 73. In a state where the storage container 80 is mounted on the first mounting shell 711, the locking member 61 passes through the first mounting shell 711 and is embedded in the storage container 80. Conversely, the unlocking member 62 can cooperate with the locking member 61 and push the locking member 61 to move in the opposite direction of the first direction, so that the locking member 61 is separated from the storage container 80. In this embodiment, the food processing device 100 is disposed on a horizontal application platform. One surface of the mounting base 71 for mounting the storage container 80 is substantially a horizontal plane. The opposite direction of the first direction is defined as the second direction. The first direction is substantially opposite to the direction of gravity, so that the locking member 61 moves in the first direction to be embedded in the storage container 80 provided above the mounting base 71. The second direction is substantially the same as the direction of gravity, so that the locking member 61 moves in the second direction to disengage from the storage container 80. In this embodiment, the reset elastic member 63 may include an elastic structure such as a spring or an elastic sheet.
[0041] As can be seen from the foregoing, the limiting portion 7115 can limit the movement of the storage container 80 in the horizontal direction to a certain extent, and can also limit the movement of the storage container 80 in the direction of gravity (including positive and negative directions). The locking member 61 and the limiting portion 7115 jointly limit the storage container 80 to substantially limit the movement of the storage container 80 relative to the mounting base 71 in the horizontal direction, so as to ensure the stability of the state of the storage container 80.
[0042] Please refer to Figure 3 , Figure 5 and Figure 6, in this embodiment, the first mounting shell 711 further includes a guiding portion 7112. The guiding portion 7112 is connected to one side of the body 7111 facing the moving space 73, and the guiding portion 7112 protrudes towards the second mounting shell 712 relative to the body 7111. The guiding portion 7112 is provided with a guiding groove 7113, and the guiding groove 7113 extends along the first direction. The locking member 61 in this embodiment includes a locking portion 611 and a guiding protrusion 613. The locking portion 611 is connected to the reset elastic member 63 and is movably arranged in the moving space 73. The locking portion 611 is used to penetrate through the body 7111 of the first mounting shell 711 and is used to be embedded in the storage container 80. The guiding protrusion 613 is connected to one side of the locking portion 611 in the first direction and is embedded in the guiding groove 7113. The guiding protrusion 613 and the guiding groove 7113 are movably matched to limit the movement of the locking portion 611 and the locking member 61 in the first direction or the second direction.
[0043] Please refer to Figure 3 , Figure 5 and Figure 6 , in this embodiment, there are two guiding portions 7112. The locking member 61 is arranged between the two guiding portions 7112. Each guiding portion 7112 is provided with a guiding groove 7113 on the side facing the locking member 61. The locking member 61 includes a locking portion 611 and two guiding protrusions 613. The two guiding protrusions 613 are respectively connected to opposite sides of the locking portion 611. The two guiding protrusions 613 are arranged and fitted with the two guiding grooves 7113 in a one-to-one correspondence. On the one hand, it can guide the locking member 61 to move in the first direction or the second direction. On the other hand, it can limit the locking member 61 to move along a fixed movement path, avoiding the deflection of the locking member 61 resulting in the locking member 61 being unable to penetrate through the body 7111. In some embodiments, the guiding portion 7112 protrudes towards the second mounting shell 712 relative to the body 7111 and abuts against the second mounting shell 712. A fixing member (such as a screw) penetrates through the second mounting shell 712 and is locked to the guiding portion 7112 to fixedly connect the first shell 511 and the second shell 512.
[0044] Please refer to Figure 3 , Figure 5 and Figure 6, in this embodiment, the mounting base 71 is provided with a mounting through hole 7117. The mounting through hole 7117 communicates with the moving space 73. At least a part of the unlocking member 62 extends into the moving space 73 through the mounting through hole 7117. A part of the structure of the unlocking member 62 is located outside the moving space 73 for the user to operate. In this embodiment, the first mounting shell 711 has a cover-like structure. The mounting through hole 7117 is provided on the outer peripheral side wall of the first mounting shell 711. The unlocking member 62 passes through the first mounting shell 711 through the mounting through hole 7117 and extends into the moving space 73. In this embodiment, the unlocking member 62 moves towards the inside of the moving space 73. The locking member 61 is located on the movement path of the unlocking member 62. The unlocking member 62 moves to abut against the locking member 61. Subsequently, the unlocking member 62 continues to move. The unlocking member 62 and the locking member 61 are in extrusion cooperation. The unlocking member 62 extrudes the locking member 61 to move in the second direction, that is, to push the locking member 61 towards the second mounting shell 712 and gradually away from the storage container 80 until the locking member 61 disengages from the storage container 80, so as to release the fixing effect of the locking member 61 on the storage container 80, so that the storage container 80 can move towards the outside of the area defined by the limiting portion 7115 through the gap between the two limiting ends, so that the embedding portion 811 of the storage container 80 moves out of the limiting slot 7116, and the fitting and cooperation relationship between the limiting portion 7115 and the storage container 80 is released.
[0045] Please refer to Figure 3 , Figure 5 and Figure 6 , in this embodiment, the locking member 61 further includes a fitting portion 612. The fitting portion 612 is connected to the locking portion 611. The fitting portion 612 is located on the side of the locking portion 611 facing the guiding portion 7112. The guiding protrusion 613 is connected to the side of the fitting portion 612 facing the guiding portion 7112. In this embodiment, the fitting portion 612 is provided with a receiving inclined surface 614. The receiving inclined surface 614 is opposite to the side of the mounting base 71 facing the base 51, that is, the receiving inclined surface 614 faces the first mounting shell 711. The receiving inclined surface 614 intersects with a straight line in the first direction. In this embodiment, the receiving inclined surface 614 faces the unlocking member 62 for preparing to abut against the unlocking member 62.
[0046] Please refer to Figure 5 , Figure 6 and Figure 7, correspondingly, the unlocking member 62 in this embodiment is provided with an extrusion inclined surface 621. The extrusion inclined surface 621 is arranged at one end of the unlocking member 62 facing the locking portion 611. The extrusion inclined surface 621 faces the second mounting shell 712, and the extrusion inclined surface 621 intersects with a straight line in the first direction. In this embodiment, the receiving inclined surface 614 is substantially parallel to the extrusion inclined surface 621. The unlocking member 62 moves into the moving space 73 until the extrusion inclined surface 621 is stacked above the receiving inclined surface 614 along the gravity direction. The extrusion inclined surface 621 fits on the receiving inclined surface 614 and is in sliding cooperation with the receiving inclined surface 614. In an actual application scenario, the unlocking member 62 moves into the moving space 73 until the extrusion inclined surface 621 fits on the receiving inclined surface 614. Subsequently, the unlocking member 62 continues to move into the moving space 73, and the extrusion inclined surface 621 is in sliding cooperation with the receiving inclined surface 614, so that the locking portion 611 and the locking member 61 move along the second direction, so that the locking portion 611 disengages from the storage container 80, and the position limiting effect of the locking member 61 on the storage container 80 is released.
[0047] Please refer to Figure 5 、 Figure 6 and Figure 7 , in this embodiment, the first mounting shell 711 includes an abutting portion 7114. The abutting portion 7114 is connected to the main body 7111 and protrudes relative to the main body 7111 toward the second mounting shell 712. The locking mechanism 60 in this embodiment further includes a restoring elastic member 64. One end of the restoring elastic member 64 is connected to the abutting portion 7114, and the other end is connected to the unlocking member 62. The restoring elastic member 64 elastically abuts between the abutting portion 7114 and the unlocking member 62. During the process that the unlocking member 62 moves into the moving space 73 under the action of an external force, the unlocking member 62 squeezes the restoring elastic member 64, so that elastic force is stored in the restoring elastic member 64. When the unlocking member 62 squeezes the locking member 61 to disengage the locking member 61 from the storage container 80, the storage container 80 is removed, and the user cancels the external force on the unlocking member 62. The elastic force in the restoring elastic member 64 is released and acts on the unlocking member 62. The unlocking member 62 moves in a direction away from the moving space 73 under the action of the elastic force. The unlocking member 62 moves to separate from the locking member 61 to relieve the extrusion of the unlocking member 62 on the locking member 61, and the locking member 61 can be restored to the state of passing through the main body 7111 under the action of the reset elastic member 63. With the setting in this embodiment, only by pressing the unlocking member 62 can the storage container 80 be disassembled from the mounting seat 71. The operation is convenient, the structure of the locking mechanism 60 is simple, and the production cost is relatively low. In this embodiment, the restoring elastic member 64 may include elastic structures such as springs and elastic sheets.
[0048] Please refer to Figure 2 、 Figure 3 and Figure 4In this embodiment, the storage container 80 includes a barrel body 81 and a cover body 82. The barrel body 81 is used to accommodate food, functional components and other components. The barrel body 81 is provided with an access opening 812 connected to its interior, and the user takes in and puts food through the access opening 812. The cover body 82 covers the access opening 812 of the barrel body 81 to separate the interior of the barrel body 81 from the outside. In this embodiment, the barrel body 81 is arranged on the first mounting shell 711 of the mounting seat 71, the barrel body 81 and the cover body 82 are located between the base 51 and the mounting seat 71, the access opening 812 of the barrel body 81 is arranged toward the base 51, and the cover body 82 is located between the base 51 and the barrel body 81. The pressing member 52 is arranged on the side of the cover body 82 away from the access opening 812 and abuts against the cover body 82, so that the cover body 82 is in a state of stably covering the access opening 812.
[0049] See also Figure 2 , Figure 3 and Figure 4 In this embodiment, the storage container 80 further includes an inner barrel 83, which is disposed within the barrel body 81. The inner barrel 83 opens toward the lid 82, and food is stored within the inner barrel 83. The locking member 61 is embedded within the barrel body 81 and spaced apart from the inner barrel 83. This arrangement ensures a smooth inner wall of the inner barrel 83, preventing protrusions from colliding with functional components and causing breakage. It also prevents food from adhering to the protruding portions, which could affect the mixing or crushing effect. In this embodiment, the opening of the inner barrel 83 extends beyond the opening of the barrel body 81. The lid 82, under the action of the pressing member 52, abuts against the edge of the opening of the inner barrel 83, ensuring a high degree of sealing. In some embodiments, a sealing member (not shown) is provided on the side of the lid 82 facing the inner barrel 83. The sealing member abuts against the edge of the access opening 812 of the inner barrel 83 to enhance the sealing effect of the lid 82 on the inner barrel 83. In this embodiment, the radial dimension of the barrel body 81 is larger than the radial dimension of the inner barrel 83, so that the outer periphery of the inner barrel 83 is spaced apart from the barrel body 81, and the space between the barrel body 81 and the inner barrel 83 can be used to collect food that bursts out of the inner barrel 83 to protect the application environment of the food processing equipment 100.
[0050] See also Figure 2 , Figure 3 and Figure 4, in this embodiment, the cover body 82 includes a main body 821 and a positioning portion 822. The positioning portion 822 is connected to the side of the main body 821 facing away from the barrel body 81. The positioning portion 822 includes a circumferential rib or bump, and the positioning portion 822 protrudes towards the base 51 relative to the main body 821. Correspondingly, a mating groove 5121 is provided on the side of the base 51 facing the mounting seat 71. When the storage container 80 is installed between the mounting seat 71 and the base 51, the positioning portion 822 of the cover body 82 is embedded in the mating groove 5121, so that the relative position relationship between the base 51 and the storage container 80 is in a relatively stable state, and the force applied by the pressing member 52 to the cover body 82 is prevented from affecting the relative position relationship between the base 51 and the storage container 80. In other embodiments, a positioning groove (not shown in the figure) is provided on the side of the main body 821 of the cover body 82 facing the inner barrel 83, and the opening edge of the inner barrel 83 can be embedded in the positioning groove to keep the position relationship between the cover body 82 and the inner barrel 83 stable, so as to limit the displacement of the cover body 82 relative to the inner barrel 83, which is beneficial to maintaining the structural stability of the storage container 80.
[0051] Please refer to Figure 2 and Figure 4 , in this embodiment, the base 51 includes a first housing 511 and a second housing 512. The first housing 511 and the second housing 512 are arranged and fastened along the gravity direction. Specifically, the second housing 512 is connected to the side of the first housing 511 facing the mounting seat 71. The first housing 511 in this embodiment has a cover-like structure, and the first housing 511 covers the second housing 512. The outer peripheral side wall of the second housing 512 abuts against the inner side wall of the first housing 511, that is, the first housing 511 and the second housing 512 are connected by interference fit. In other embodiments, the first housing 511 and the second housing 512 can be connected by structures such as buckles and clamping grooves, or can be connected by fixing members (such as screws and fixing pins). At least part of the second housing 512 in this embodiment is spaced from the first housing 511 to define an installation space 513.
[0052] Please refer to Figure 2 and Figure 4, in this embodiment, the pressing member 52 is movably disposed in the mounting space 513, and the pressing member 52 can move along the first direction or the second direction. During the movement of the pressing member 52 along the second direction, the pressing member 52 moves relative to the base 51 and penetrates through the side of the base 51 facing the mounting seat 71, that is, the pressing member 52 penetrates through the second housing 512, so that a part of the structure of the pressing member 52 extends out of the mounting space 513. When the storage container 80 is installed between the mounting seat 71 and the base 51, the pressing member 52 abuts against the lid 82 of the storage container 80. In this embodiment, the pressing mechanism 50 further includes a pressing elastic member 53 (such as a spring, an elastic sheet, etc.), and two ends of the pressing elastic member 53 are respectively connected to the pressing member 52 and the base 51 (i.e., the first housing 511). In this embodiment, the pressing elastic member 53 elastically abuts between the base 51 (i.e., the first housing 511) and the pressing member 52. When the storage container 80 is disposed on the mounting seat 71, the lid 82 abuts against the pressing member 52, and the lid 82 presses the pressing member 52 to cause the pressing member 52 to move toward the first housing 511. Further, the pressing elastic member 53 is compressed, and the pressing elastic member 53 has a force on the pressing member 52 to push the pressing member 52 toward the lid 82, so that the pressing member 52 tightly abuts against the lid 82. In this embodiment, two pressing members 52 are provided, and the connection line between the two pressing members 52 intersects or is close to intersecting with the axis of the barrel 81, so that the lid 82 is evenly stressed. In other embodiments, three or more pressing members 52 are provided, and the plurality of pressing members 52 are arranged in a surrounding manner.
[0053] Please refer to Figure 8In this embodiment, the pressing member 52 includes a pressing portion 521 and a plurality of anti-dropout buckles 522. The pressing portion 521 penetrates the second housing 512 so that the local structure of the pressing portion 521 extends out of the installation space 513. The plurality of anti-dropout buckles 522 are connected to the side of the pressing portion 521 facing away from the mounting seat 71 and are arranged around it. The anti-dropout buckles 522 extend toward the first housing 511 relative to the pressing portion 521. The anti-dropout buckles 522 are used to abut against the side of the second housing 512 facing the installation space 513 to prevent the pressing member 52 from falling out of the installation space 513. In this embodiment, the number of compression elastic members 53 between each pressing member 52 and the first housing 511 is related to the shape of the pressing portion 521. For example, if the pressing portion 521 is a strip-shaped structure, the pressing member 52 is connected to at least two compression elastic members 53. The two compression elastic members 53 are respectively connected to the two ends of the pressing portion 521 to ensure the stability of the structure of the pressing member 52. When the storage container 80 is installed between the mounting seat 71 and the base 51, the arrangement of this embodiment can make the forces exerted on the cover body 82 by various parts of the clamping portion 521 roughly the same, and the cover body 82 is tightly abutted against the opening edge of the inner barrel 83, so that the relative position relationship between the inner barrel 83 and the cover body 82 is relatively stable, avoiding displacement of the cover body 82 and the barrel body 81 during rapid rotation of the functional component.
[0054] In other embodiments, the pressing member 52 includes a pressing portion 521 and an extension portion. The pressing portion 521 passes through the second housing 512 so that a portion of the pressing portion 521 extends out of the installation space 513. The extension portion is disposed around a side of the pressing portion 521 facing away from the mounting seat 71 and protrudes relative to the outer periphery of the pressing portion 521. The extension portion abuts against a side of the second housing 512 facing the installation space 513 to prevent the pressing member 52 from falling out of the installation space 513.
[0055] This embodiment provides a food processing device 100, which includes a mounting mechanism 70, a pressing mechanism 50, a storage container 80, and a locking mechanism 60. The mounting seat 71 of the mounting mechanism 70 is spaced apart from and fixedly connected to the base 51 of the pressing mechanism 50, and the storage container 80 is disposed between the mounting seat 71 and the base 51. The locking mechanism 60 is movably disposed on the mounting seat 71, and the storage container 80 cooperates with the limiting portion 7115 on the mounting seat 71. The locking member 61 of the locking mechanism 60 is automatically embedded in the storage container 80 to securely mount the storage container 80 on the mounting seat 71. The unlocking member 62 of the locking mechanism 60 cooperates with the locking member 61 to separate the locking member 61 from the storage container 80, thereby releasing the locking effect of the locking mechanism 60 on the storage container 80, and allowing the user to remove the storage container 80 from the mounting seat 71. When the storage container 80 is fixed to the mounting base 71, the pressing member 52 of the pressing mechanism 50 presses against the storage container 80 to further restrict the position of the storage container 80. In this embodiment, the storage container 80 is restrained in multiple ways, so that the storage container 80 can overcome the forces exerted by the rapidly rotating functional components and the food, reducing the amplitude of the shaking of the storage container 80 and the housing 90, and reducing the noise generated by the operation of the food processing device 100. In addition, the locking mechanism 60 and the pressing mechanism 50 have a relatively simple structure, requiring fewer production processes, thereby improving production efficiency and reducing production costs. They are also convenient for users to operate and easy to assemble and disassemble.
[0056] In the specification of this application, certain words are used to refer to specific components in the specification and claims. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in name as a way to distinguish components, but use the difference in function of the components as the criterion for distinction. For example, "including" mentioned throughout the specification and claims is an open term and should be interpreted as "including but not limited to"; "substantially" means that those skilled in the art can solve the technical problem within a certain error range and basically achieve the technical effect.
[0057] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "inside", etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. They are only used to simplify the description for the convenience of describing this application, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limitations on this application.
[0058] In this application, unless otherwise clearly defined or limited, terms such as "installed", "connected", "joined", "fixed", etc. shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or indirectly connected through an intermediate medium, or the communication inside two components, or just surface contact. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0059] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0060] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" can explicitly or implicitly include at least one of the features. In the description of this application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0061] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit them; although this application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of this application.
Claims
1. A food processing device, characterized in that, include: A mounting mechanism, the mounting mechanism comprising a mounting seat, the mounting seat being provided with a limiting portion; a storage container, the storage container being detachably mounted on the mounting seat, the limiting portion cooperating with the storage container to limit the storage container to the mounting seat; A locking mechanism, the locking mechanism comprising a locking member and an unlocking member, both of which are disposed on the mounting seat, the unlocking member cooperating with the locking member to drive the locking member to lock or separate from the storage container; as well as The clamping mechanism includes a base and a clamping member. The base is arranged on the side of the storage container away from the mounting seat, and the base is fixedly connected to the mounting seat. The clamping member is movably arranged on the side of the base facing the storage container to hold the storage container between the mounting seat and the base.
2. The food processing device according to claim 1, wherein, The mounting seat is provided with a movable space, the locking member is movably arranged in the movable space, the locking member moves relative to the mounting seat along a first direction and is arranged through a side of the mounting seat facing the base, and when the storage container is placed on the mounting seat, the locking member is embedded in the storage container; The locking mechanism further includes a reset elastic member, which is elastically held between the mounting seat and the locking member.
3. The food processing device according to claim 2, characterized in that, The mounting seat is provided with a mounting through hole, which is connected to the movable space. At least part of the structure of the unlocking member extends into the movable space through the mounting through hole. The unlocking member moves toward the movable space and squeezes the locking member to move along the second direction to disengage the locking member from the storage container. The first direction is opposite to the second direction.
4. The food processing device according to claim 3, wherein, The locking member includes a locking portion and a matching portion connected to each other, the locking portion is used to be embedded in the storage container, and the matching portion is provided with a receiving inclined surface, the receiving inclined surface intersects with the straight line of the first direction, and the receiving inclined surface is opposite to the side of the mounting seat facing the base; The unlocking member is provided with an extrusion inclined surface, the extrusion inclined surface is opposite to the receiving inclined surface, the extrusion inclined surface is overlapped with the receiving inclined surface, and the extrusion inclined surface and the receiving inclined surface are slidably matched.
5. The food processing device according to claim 3, characterized in that, The mounting base includes a first mounting shell and a second mounting shell, the first mounting shell includes a body and an abutment portion connected to each other, the body being connected to a side of the second mounting shell facing the base, at least a portion of the second mounting shell being spaced apart from the body to define a movable space, and the abutment portion protruding relative to the body toward the second mounting shell; The locking mechanism further includes a restoring elastic member, which is elastically held between the abutting portion and the unlocking member.
6. The food processing device according to claim 2, characterized in that, The mounting base includes a first mounting shell and a second mounting shell, the first mounting shell includes a body and a guide portion connected to each other, the body is connected to a side of the second mounting shell facing the base, at least a portion of the second mounting shell is spaced apart from the body to define an activity space, and the guide portion is connected to a side of the body facing the activity space; The guide portion is provided with a guide groove, the guide groove extends along the first direction, and the local structure of the locking member is movably embedded in the guide groove.
7. The food processing device according to claim 1, wherein, When the storage container is arranged on the mounting seat, the limiting portion is arranged around a part of the outer circumference of the storage container, and the limiting portion is engaged with the storage container.
8. The food processing device according to claim 7, wherein, The limiting portion is provided with two limiting slots that are spaced apart from each other; Two embedding parts are provided on opposite sides of the storage container. When the storage container is arranged on the mounting seat, the two embedding parts correspond to the two limiting slots one by one and are embedded in each other.
9. The food processing device according to claim 1, wherein, The storage container includes a barrel body and a cover body, the barrel body is detachably mounted on the mounting seat and is located between the base and the mounting seat, the barrel body is provided with a take-in and take-out opening on a side facing the base, and the cover body is located between the base and the barrel body; when the storage container is set on the mounting seat, the clamping member is located on a side of the cover body away from the take-in and take-out opening and abuts against the cover body, so that the cover body abuts against the edge structure of the take-in and take-out opening to seal the take-in and take-out opening.
10. The food processing device according to claim 9, characterized in that, The cover body is provided with a positioning portion on the side facing away from the barrel body, and the base is provided with a matching groove on the side facing the mounting seat. When the storage container is arranged between the mounting seat and the base, the positioning portion is embedded in the matching groove.
11. The food processing device according to claim 1, characterized in that, The base is provided with an installation space, the pressing member is movably arranged in the installation space, and the pressing member can move relative to the base in a first direction or a second direction, the first direction being opposite to the second direction; When the storage container is disposed between the mounting seat and the base, the pressing member moves along the second direction and passes through the base toward one side of the storage container and abuts against the storage container; The pressing mechanism further includes a pressing elastic member, which is located in the installation space and elastically abuts between the base and the pressing member.
12. The food processing device according to claim 11, characterized in that, The base includes a first shell and a second shell, the second shell is connected to a side of the first shell facing the mounting seat, and at least a portion of the second shell is spaced apart from the first shell to define the mounting space; When the storage container is arranged between the mounting seat and the base, the pressing member is passed through the second shell and abuts against the storage container, and the pressing elastic member is elastically held between the first shell and the pressing member.
13. The food processing device according to claim 12, characterized in that, The clamping part includes a clamping portion and a plurality of anti-slip buckles. The clamping portion passes through the second shell to partially extend out of the installation space. The plurality of anti-slip buckles are connected to the side of the clamping portion facing the first shell and are arranged around it. The anti-slip buckles extend toward the first shell relative to the clamping portion. The anti-slip buckles are used to abut against the second shell.