CN211155393U - Food processor - Google Patents

Food processor Download PDF

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Publication number
CN211155393U
CN211155393U CN201921184927.XU CN201921184927U CN211155393U CN 211155393 U CN211155393 U CN 211155393U CN 201921184927 U CN201921184927 U CN 201921184927U CN 211155393 U CN211155393 U CN 211155393U
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China
Prior art keywords
cover
discharge port
opening
action
food processor
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Active
Application number
CN201921184927.XU
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Chinese (zh)
Inventor
邹亚民
唐路蒙
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Abstract

The application provides a cooking machine. This cooking machine includes: the cup body comprises a food material accommodating cavity; and the cup cover comprises a discharge port and a cover mechanism of the discharge port, the cover mechanism comprises an opening action part, an active part and a discharge port cover which are connected in sequence in a transmission manner, the opening action part is opened, the active part is driven under the action of external force of the discharge port to act, and further the discharge port cover is opened to open the opening stroke of the discharge port, and the discharge port is communicated with the food material accommodating cavity in an opening state. In the scheme, the discharge hole and the cover mechanism are arranged on the cup cover, so that a user does not need to uncover the cup cover when enjoying the food materials, only the discharge hole cover needs to be opened, the food materials can be poured out from the discharge hole, and the food materials can be eaten by the user conveniently.

Description

Food processor
Technical Field
The application relates to the technical field of household appliances, in particular to a food processor.
Background
Some food processors can take out food materials only by opening the cup cover after the food materials are processed. To the great cooking machine of volume, for example broken wall machine, frequently open the bowl cover and can cause the use inconvenient, lead to the user to eat inconveniently.
SUMMERY OF THE UTILITY MODEL
In view of this, the present application provides a food processor, which is convenient for a user to eat.
Specifically, the method is realized through the following technical scheme:
a food processor, comprising:
the cup body comprises a food material accommodating cavity; and
the bowl cover, the bowl cover includes the discharge gate and covers fits the lid mechanism of discharge gate, lid mechanism is including opening effect portion, movable part and the ejection of compact flap that the transmission connects gradually, it is opening to open the effect portion drive under the effect of the external force of discharge gate the movable part action, and then makes ejection of compact flap produces and opens the stroke of opening of discharge gate, the discharge gate under the state of opening with eat material holding chamber intercommunication. Through set up discharge gate and lid mechanism on the bowl cover for the user need not reveal the bowl cover when enjoying edible material, only need open the discharge gate lid, will eat edible material from the discharge gate pour out can, made things convenient for the user to eating of edible material.
Optionally, under the action of the external force, the movement direction of the opening action part is perpendicular to the movement direction of the movable part. The scheme ensures that the movement direction of the opening action part is different from that of the movable part, thereby reducing the size of a movement chain of the cover mechanism and improving the compactness of the structure of the cover mechanism.
Optionally, the opening action part comprises a first wedge-shaped surface, the movable part comprises a second wedge-shaped surface, and under the action of the external force, the first wedge-shaped surface abuts against the second wedge-shaped surface to drive the movable part to move. The first wedge-shaped surface and the second wedge-shaped surface are matched to change the transmission direction of the acting force, and the wedge-shaped.
Optionally, the movable part includes the axis body and set up in the first effect piece of axis body, first effect piece includes the second wedge-shaped surface under the effect of external force, the movable part is followed the axial motion of axis body, in order to drive the discharge gate lid is closed or is opened the discharge gate. The axis body can play the effect of direction at the in-process of movable part motion, guarantees that the direction of motion of movable part is all the time along the axial of axis body.
Optionally, the movable part still including set up in the second effect piece and the elasticity of axis body reset the piece, the elasticity resets the cover and locates the axis body, and sets up first effect piece with between the second effect piece, the elasticity resets and is used for removing the back at the exogenic force and drives the movable part produces the stroke that resets. The scheme can lead the movable part to reset automatically without manual operation.
Optionally, the movable part further comprises a locking block arranged at the end part of the shaft body, the discharge port cover comprises a locking hole, and under the action of external force, the locking block exits from the locking hole, so that the discharge port cover generates a movable stroke for opening the discharge port. The locking block and the locking hole are simple in structure, and the discharging opening cover can be effectively guaranteed to be in a closed state.
Optionally, the discharge port cover is rotatably arranged relative to the cup cover, and the discharge port cover opens and closes the discharge port in a rotation stroke. The discharging port cover is rotationally arranged, so that the structure is simple, and the accuracy of the position of the discharging port cover can be ensured.
Optionally, the cover mechanism further comprises an elastic piece, the locking block exits from the locking hole, and then the restoring force of the elastic piece drives the discharge port cover to rotate and open the discharge port. The elastic piece has high response speed and high sensitivity.
Optionally, the opening action part comprises an action part body and a return spring, and the action part body is reset through the return spring after the external force is removed. The reset spring can realize the quick return of the action part body.
Optionally, the opening action part is movably arranged at the top or the side part of the cup cover.
Optionally, the bowl cover still includes the mount pad, the mount pad is used for the installation to open effect portion, movable part and ejection of compact flap, the mount pad is including the first mount pad and the second mount pad that the components of a whole that can function independently set up, first mount pad with the this part of this body of bowl cover is the integral type structure, the second mount pad with the connection can be dismantled to first mount pad. The installation seat of the split structure can facilitate the installation and the disassembly of the opening action part, the movable part and the discharge opening cover.
The technical scheme provided by the application can achieve the following beneficial effects:
the application provides a cooking machine, wherein, the bowl cover includes discharge gate and lid mechanism, and lid mechanism is including opening effect portion, movable part and the ejection of compact flap that the transmission connects in proper order, and the ejection of compact flap can open and close the discharge gate under the drive of opening effect portion and movable part for need not to open the bowl cover when enjoying edible material, only need open ejection of compact flap can, made things convenient for the user to eat edible material from this.
Drawings
Fig. 1 is a schematic view of a food processor according to an exemplary embodiment of the present application;
fig. 2 is an exploded view of a food processor shown in an exemplary embodiment of the present application;
fig. 3 is a schematic view of a cup cover in the food processor according to an exemplary embodiment of the present application;
fig. 4 is an exploded view of the cup lid of the food processor according to an exemplary embodiment of the present disclosure;
fig. 5 is a schematic view illustrating the food processor in which the discharge port cover is in an open state according to an exemplary embodiment of the present application;
fig. 6 is a schematic view illustrating a food processor according to an exemplary embodiment of the present application, in which a movable portion is mounted to a second mounting seat;
fig. 7 is a schematic view illustrating a state in which a locking block is locked with a locking hole in the food processor according to an exemplary embodiment of the present application;
fig. 8 is a schematic view illustrating an installation of an elastic member and a rotating shaft in the food processor according to an exemplary embodiment of the present application;
fig. 9 is a schematic view of a first mounting seat in the food processor according to an exemplary embodiment of the present application;
fig. 10 is a schematic view of a further view angle of the first mounting seat in the food processor according to an exemplary embodiment of the present application;
fig. 11 to 13 are schematic views illustrating the food processor according to an exemplary embodiment of the present application, in which an opening acting portion is mounted on a side portion of a cup lid.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless otherwise defined, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application belongs. The use of "first," "second," and similar terms in the description and claims of this application do not denote any order, quantity, or importance, but rather the terms are used to distinguish one element from another. Also, the use of the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one. "plurality" or "a number" means two or more. Unless otherwise specified, "front", "back", "lower" and/or "upper", "top", "bottom", and the like are for ease of description only and are not limited to one position or one spatial orientation. The word "comprising" or "comprises", and the like, means that the element or item listed as preceding "comprising" or "includes" covers the element or item listed as following "comprising" or "includes" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect.
Referring to fig. 1, fig. 1 shows a schematic diagram of a food processor according to an exemplary embodiment of the present application. The food processor 10 provided by the embodiment of the application comprises a main machine 11 and a cup assembly 12, wherein the cup assembly 12 is detachably assembled on the main machine 11. The main machine 11 comprises a motor, and the motor can drive a stirring knife in the cup assembly 12 to rotate, stir and crush food materials.
Referring to fig. 2, fig. 2 shows an exploded view of a food processor according to an exemplary embodiment of the present application. The cup assembly 12 includes a cup body 120 and a lid 122, wherein the cup body 120 includes a food material accommodating cavity, and the lid 122 covers the mouth of the cup body 120. The cup assembly 12 may further include a sealing ring, which seals the cup body 120 and the cap 122 to prevent the food material from overflowing.
The cup 120 and the lid 122 are provided with matching engaging structures 126, and the engaging structures 126 are engaged during the heating process of the food processor 10, so as to prevent the cup 120 and the lid 122 from being disengaged.
Referring to fig. 3 and 4, the cup cover 122 includes a discharge port 122a and a cover mechanism 13 covering the discharge port, the cover mechanism 13 is movably disposed to open and close the discharge port 122a, and when the discharge port 122a is in an open state, the discharge port 122a is communicated with the food material accommodating cavity.
The cover mechanism 13 comprises an opening action part 130, a movable part 132 and a discharge cover 134 which are in transmission connection in sequence. A portion of the opening portion 130 is exposed outside the lid 122 for external force to open the discharge hole 122a, for example, external force can be applied to the opening portion 130 by a hand. The opening action portion 130 may be disposed at the top of the cap 122.
The opening action portion 130 acts under the action of external force and drives the movable portion 132 to act, so that the discharge port cover 134 generates a movable stroke for opening the discharge port 122a, and the open state of the discharge port cover 134 is shown in fig. 5.
As can be seen from the above description, the discharge hole 122a and the cover mechanism 13 are disposed on the cup lid 122, so that the user does not need to open the cup lid 122 when enjoying the food material, and only needs to open the cover mechanism 13 to pour out the food material from the discharge hole 122a, thereby facilitating the eating of the food material by the user.
The cap 122 includes mounts for mounting the opening actuation portion 130, the movable portion 132, and the discharge port cover 134. In order to facilitate the installation of each part, the installation base is arranged in a split mode and comprises a first installation base 14 and a second installation base 15, wherein the first installation base 14 and the body part of the cup cover 122 are of an integrated structure, the second installation base 15 is detachably connected with the first installation base 14, and the first installation base 14 and the second installation base 15 jointly support the cover mechanism 13. The mounting seat of the split structure facilitates the mounting and dismounting of the cover mechanism 13.
Specifically, the second mount 15 includes a support portion 150a and an accommodating portion 152, the support portion 150a includes a groove, and the movable portion 132 is supported in the groove. The accommodating portion 152 includes an accommodating chamber in which the opening action portion 130 is accommodated.
In one example, as shown in fig. 4, the opening acting part 130 includes an acting part body, specifically, the acting part body includes a button 130a and a wedge-shaped pressing block 130b, the first mounting seat 14 is opened with a button hole 14a, and the button hole 14a is communicated with the accommodating cavity of the accommodating part 152. The button 130a and the wedge-shaped pressing piece 130b are movably disposed in the accommodating portion. The top surface of the button 130a is acted by external force, and the wedge-shaped pressing block 130b is contacted with the movable part 132 under the action of external force to drive the movable part 132 to move.
The movable portion 132 includes a shaft 132d, a first acting block 132a, a second acting block 132b and a locking block 132c disposed on the shaft 132 d. The support portion 150a is used for supporting the shaft body 132d, one end of the shaft body 132d extends out of the accommodating portion 152, and the first acting block 132a is located outside the accommodating portion 152. Under the action of the external force, the wedge-shaped pressing block 130b abuts against the first acting block 132 a. The wedge-shaped pressing block 130b includes a first wedge surface 130ba, the first acting block 132a includes a second wedge surface 132aa, and the first wedge surface 130ba and the second wedge surface 132aa contact with each other under an external force. The first wedge-shaped surface 130ba and the second wedge-shaped surface 132aa can change the direction of the acting force, and the structure is simple and convenient to realize.
The second wedge surface 132aa is moved in a direction perpendicular to the moving direction of the opening operation part 130 by being pressed by the first wedge surface 130 ba. This arrangement makes the moving direction of the opening operation portion 130 different from the moving direction of the movable portion 132, whereby the size of the moving chain of the cover mechanism 13 can be reduced, and the compactness of the structure of the cover mechanism 13 can be improved.
The shaft 132d can play a guiding role during the movement of the movable portion 132, so as to ensure that the movement direction of the movable portion 132 is always along the axial direction of the shaft 132 d.
The accommodating portion 152 includes a stopper surface 152a, and the wedge pressing piece 130b abuts against the stopper surface 152a so that the first wedge surface 130ba is opposed to the second wedge surface 132aa, to ensure reliability of power transmission. Please refer to fig. 6 for an assembly of the movable portion 132 and the second mounting seat 15.
The locking block 132c is disposed at one end of the shaft 132d, the second acting block 132b is disposed between the first acting block 132a and the locking block 132c, the second mounting seat 15 is provided with a passing hole 154, and the locking block 132c extends out of the passing hole 154.
The movable portion 132 may further include an elastic reset element 132e, and the elastic reset element 132e is configured to drive the movable portion 132 to generate a reset stroke after the external force is removed, without manual operation. In this example, the elastic restoring member 132e is a compression spring. The pressure spring is sleeved on the shaft body 132d and disposed between the first acting block 132a and the second acting block 132 b. The elastic restoring member 132e may also be a tension spring or elastic rubber, and when the tension spring is used, it needs to be adaptively modified according to the characteristics of the tension spring, which is not described herein again.
In the example shown in fig. 4, the discharge port cover 134 is rotatably provided to the mounting seat, and the discharge port 122a can be opened and closed during the rotational stroke of the discharge port cover 134. The scheme of rotationally arranging the discharge port cover 134 has a simple structure, and the accuracy of the position of the discharge port cover 134 can be ensured. Of course, the discharge port cover 134 may be provided with a moving stroke or a swinging stroke for opening the discharge port 122a by the driving of the movable portion 132.
The second mounting seat 15 further includes supporting portions 150b and 150c, the supporting portions 150b and 150c are provided with arc-shaped grooves, and the discharge port cover 134 is supported in the arc-shaped grooves of the supporting portions 150b and 150c through the rotating shaft 134 b. The outlet cover 134 includes a locking hole 134a, and the locking hole 134a is inserted by the locking block 132c to maintain the outlet 122a in a closed state. The structure of the locking block 132c matched with the locking hole 134a is relatively simple, and the discharge port cover 134 can be effectively ensured to be in a closed state. The state where the lock block 132c is inserted into the lock hole 134a is shown in fig. 7.
The cover mechanism 13 may further include an elastic member 134c, in this example, a torsion spring, which is installed on the rotating shaft 134b, and when the locking block 132c is withdrawn from the locking hole 134a, the torsion force of the torsion spring can drive the discharging cover 134 to rotate around the rotating shaft 134b, so as to generate a moving stroke for opening the discharging hole 122 a. The elastic member 134c has a high response speed and high sensitivity. Please refer to fig. 8 for a schematic view of the torsion spring and the shaft 134b mounted on the second mounting seat 15.
In other examples, the elastic member 134c may be omitted, for example, a weight may be disposed on the discharge port cover 134, and when the locking block 132c is withdrawn from the locking hole 134a, the discharge port cover 134 rotates under the action of gravity to generate a movable stroke for opening the discharge port 122 a.
In the structure shown in fig. 4, the elastic reset element 132e can drive the shaft body 132d to return after the external force is removed, but because the locking block 132c does not face the locking hole 134a after returning (the discharge port cover 134 rotates), at this time, the discharge port cover 134 can be manually pressed, so that the discharge port cover 134 returns, and the locking block 132c is inserted into the locking hole 134 a.
With continued reference to fig. 4, the opening actuation portion 130 may include a return spring 130c, and the return spring 130c may drive the button 130a and the wedge-shaped pressing block 130b to return automatically after the external force is removed. It is worth mentioning that the return spring 130c is not necessary. When the external force is removed, the first acting portion 132b can apply a pushing force to the wedge-shaped pressing piece 130a to drive the button 130a and the wedge-shaped pressing piece 130b under the driving of the elastic resetting piece 132e of the movable portion 132.
It should be understood that the opening action portion 130 and the movable portion 132 are not limited to the structure shown in fig. 4, and in other examples, the opening action portion 130 includes a worm wheel, and the movable portion 132 includes a worm, and the worm wheel is rotated to rotate the worm, and the worm rotates the discharge port cover 134.
Referring to fig. 9 to 10, the first mounting seat 14 includes support ribs 140 and 142, and the support ribs 140 and 142 correspond to the support portions 150a and 150b, respectively. The first mount 14 may be integrally formed with the body portion of the cap 122 by injection molding.
Referring to fig. 11 to 13, the opening portion 130 may also be disposed on a sidewall of the lid 122, in this embodiment, when an external force is applied to the opening portion 130, the external force is along a horizontal direction. The structure of the movable portion 132 and the discharge port cover 134 can be maintained.
Referring to fig. 4 again, the cup lid 122 may include a feeding hole 122b and a feeding lid 16, the feeding lid 16 covers the feeding hole 122b, and during the food cooking process, a user may open the feeding lid 16 and add food materials into the cup body 120 through the feeding hole 122b, so as to avoid scalding.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the scope of protection of the present application.

Claims (11)

1. A food processor, comprising:
a cup body (120) comprising a food material accommodating cavity; and
bowl cover (122), the bowl cover includes discharge gate (122a) and lid fit lid mechanism (13) of discharge gate (122a), lid mechanism (13) are including opening effect portion (130), movable part (132) and ejection of compact flap (134) that the transmission connects gradually, open effect portion (130) and opening drive under the effect of the external force of discharge gate (122a) movable part (132) action, and then make ejection of compact flap (134) produce and open the stroke of opening of discharge gate (122a), discharge gate (122a) under the state of opening with eat material holding chamber intercommunication.
2. The food processor of claim 1, wherein the movement direction of the opening action part (130) is perpendicular to the movement direction of the movable part (132) under the action of the external force.
3. The food processor according to claim 2, wherein the opening action part (130) comprises a first wedge-shaped surface (130ba), and the movable part (132) comprises a second wedge-shaped surface (132aa), and under the action of the external force, the first wedge-shaped surface (130ba) and the second wedge-shaped surface (132aa) abut against each other to drive the movable part (132) to act.
4. The food processor of claim 3, wherein the movable portion (132) further comprises a shaft body (132d) and a first action block (132a) disposed on the shaft body (132d), the first action block (132a) comprises the second wedge-shaped surface (132aa), and under the action of the external force, the movable portion (132) moves along the axial direction of the shaft body (132d) to drive the discharge port cover (134) to close or open the discharge port (122 a).
5. The food processor of claim 4, wherein the movable portion (132) further comprises a second action block (132b) and an elastic reset element (132e) disposed on the shaft body (132d), the elastic reset element (132e) is sleeved on the shaft body (132d) and disposed between the first action block (132a) and the second action block (132b), and the elastic reset element (132e) is configured to drive the movable portion (132) to generate a reset stroke after the external force is removed.
6. The food processor of claim 4, wherein the movable portion (132) further comprises a locking block (132c) disposed at an end of the shaft (132d), the discharge port cover (134) comprises a locking hole (134a), and under an external force, the locking block (132c) exits the locking hole (134a), so that the discharge port cover (134) generates a movable stroke for opening the discharge port (122 a).
7. The food processor of claim 6, wherein the discharge port cover (134) is rotatably disposed relative to the cup cover (122), the discharge port cover (134) opening and closing the discharge port (122a) during a rotational stroke.
8. The food processor of claim 7, wherein the cover mechanism (13) further comprises an elastic member (134c), and after the locking block (132c) exits the locking hole (134a), the restoring force of the elastic member (134c) drives the discharge cover (134) to rotate to open the discharge hole (122 a).
9. The food processor of claim 2, wherein the opening action part (130) comprises an action part body and a return spring (130c), and the action part body is returned by the return spring (130c) after the external force is removed.
10. The food processor of any one of claims 1 to 9, wherein the opening action portion (130) is movably disposed on a top or side portion of the lid (122).
11. The food processor of any one of claims 1 to 9, wherein the cup cover (122) further comprises a mounting seat for mounting the opening action part (130), the movable part (132) and the discharge cover (134), the mounting seat comprises a first mounting seat (14) and a second mounting seat (15) which are separately arranged, the first mounting seat (14) and the body part of the cup cover (122) are of an integrated structure, and the second mounting seat (15) is detachably connected with the first mounting seat (14).
CN201921184927.XU 2019-07-25 2019-07-25 Food processor Active CN211155393U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921184927.XU CN211155393U (en) 2019-07-25 2019-07-25 Food processor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921184927.XU CN211155393U (en) 2019-07-25 2019-07-25 Food processor

Publications (1)

Publication Number Publication Date
CN211155393U true CN211155393U (en) 2020-08-04

Family

ID=71815139

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921184927.XU Active CN211155393U (en) 2019-07-25 2019-07-25 Food processor

Country Status (1)

Country Link
CN (1) CN211155393U (en)

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