CN218681923U - Food mold - Google Patents

Food mold Download PDF

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Publication number
CN218681923U
CN218681923U CN202223021719.2U CN202223021719U CN218681923U CN 218681923 U CN218681923 U CN 218681923U CN 202223021719 U CN202223021719 U CN 202223021719U CN 218681923 U CN218681923 U CN 218681923U
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China
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food
storage box
mold
molding die
molding
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CN202223021719.2U
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Chinese (zh)
Inventor
王森
李鹏飞
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Hangzhou Home Appliances Co ltd
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Hangzhou Home Appliances Co ltd
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Abstract

The utility model discloses a food mold, including molding die and storage box, molding die optionally accepts in storage box, molding die includes the body, the body is equipped with the molding check of a plurality of sunken settings, molding check is used for the shaping food, molding die still includes the backup pad, the backup pad sets up in the outer peripheral edges of body, food mold is still including setting up in the demoulding structure of storage box, demoulding structure is formed with the stroke passageway with storage box intercommunication, the periphery of stroke passageway forms support section and non-support section, molding die left-hand thread is when demoulding operation to demoulding structure, the at least part and the support section of backup pad offset, the region that molding die corresponds non-support section is under the stress state, realize the drawing of patterns to food in the molding check, the food of drawing of patterns falls into storage box through the stroke passageway. The utility model discloses the structure is through setting up demoulding structure, and the user only need can accomplish the drawing of patterns with moulding mould back-off to the storage box after, and easy operation avoids user's hand to pollute food with the one hand.

Description

Food mold
Technical Field
The utility model relates to a food processing instrument field, concretely relates to food mold.
Background
With the improvement of living standard of people, the requirements of people on food are higher and higher, and the food is delicious and attractive in appearance. In the process, people can use the food mold to mold food, for example, the mold is needed when making food such as ice cubes, cheese sticks, lollipops, chocolate and the like. When the existing food mold is used for demolding food, both ends of the mold are required to be repeatedly pulled by hands or the mold is required to be knocked by hands to demold the food in the mold, but the demolding mode is unsanitary as both hands are easily stained with the food and the food is polluted; the operation by both hands is inconvenient, and the food after demoulding can not be collected in time, thus being easy to cause waste.
SUMMERY OF THE UTILITY MODEL
The utility model discloses not enough to prior art, a food mold is proposed, including molding die and storage box, molding die optionally accepts in storage box, molding die includes the body, the body is equipped with the molding check of a plurality of sunken settings, molding check is used for the shaping food, molding die still includes the backup pad, the backup pad sets up in the outer peripheral edges of body, food die is still including setting up in the demoulding structure of storage box, demoulding structure is formed with the stroke passageway with storage box intercommunication, the periphery of stroke passageway forms support section and non-support section, molding die left-hand thread is when demoulding operation to demoulding structure, the at least part of backup pad offsets with the support section, molding die corresponds the region of non-support section under the stress, realize the drawing of patterns to food in the molding check, the food of drawing of patterns falls into storage box through the stroke passageway.
Preferably, the support section comprises two support blocks, and the two support blocks are arranged diagonally.
Preferably, the support section comprises an insertion groove and a support block, and the insertion groove and the support block are arranged oppositely or diagonally.
Preferably, the insertion groove comprises a top plate and a bottom plate which are arranged up and down, the insertion groove is formed between the top plate and the bottom plate, and the insertion groove is in a linear shape or an L shape.
Preferably, the supporting section comprises two first supporting blocks and a second supporting block, the two first supporting blocks are arranged diagonally, the second supporting block is positioned outside a diagonal formed by the two first supporting blocks, and the bottom surface of the second supporting block is higher than the top surface of the first supporting block in the vertical direction of the food mold; when the modeling mold is reversely buckled to the demolding structure for demolding operation, the top surface of the first supporting block is abutted against the supporting plate, and the bottom surface of the second supporting block is abutted against the supporting plate.
Preferably, the demolding structure is arranged on the storage box, and the demolding structure and the storage box are integrally formed or detachably connected.
Preferably, the food mold further comprises a cover body, at least one extrusion column is arranged on the cover body, and when the cover body is closed, the at least one extrusion column drives one end of the corresponding shaping mold to move in the non-support section.
Preferably, the demolding structure and the storage box are integrally formed, and the two support blocks are arranged in the storage box.
Preferably, the food mold further comprises a cover body, at least one extrusion column is arranged on the cover body, and when the cover body is closed, the at least one extrusion column drives one end of the corresponding shaping mold to move in the non-support section.
Preferably, the shaping tool is made of a hard material.
Compared with the prior art, the beneficial effects of the utility model reside in that:
(1) Through setting up demoulding structure, the user only need with the molding die back-off to the storage box after, the drawing of patterns can be accomplished to the one hand, easy operation avoids user's hand to pollute food.
(2) The food after demoulding can directly enter the storage box, so that the food is prevented from being wasted in the demoulding process.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is an exploded view of the food mold of the present invention;
fig. 2 is a schematic view of a mold release structure in example 1 of the present invention;
fig. 3 is a schematic view of a mold release structure in example 2 of the present invention;
fig. 4 is a schematic view of a mold release structure in example 3 of the present invention;
fig. 5 is a schematic view of embodiment 4 of the present invention;
fig. 6 is a first schematic view of the upward state of the molding die of the present invention.
Fig. 7 is a second schematic view of the upward state of the molding die according to the present invention.
Detailed Description
The technical solutions of the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings, and it is to be understood that the described embodiments are only some of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
The present invention will be described in further detail with reference to specific embodiments and drawings.
People can use the food mold to shape food, and people need to take the food out of the mold after the food is shaped in the food mold. When the food is taken out from the mold, the molding cells in the molding mold need to be placed with the openings facing upward and used in cooperation with the demolding structure (in this case, the molding mold is reversely buckled to the demolding structure for demolding operation) as described in this patent.
Example 1:
as shown in fig. 1, 2 and 7, the food mold includes a molding mold 100, a storage box 200 and a demolding structure. The molding dies 100 are selectively accommodated in the storage box 200. The molding die 100 includes a body 110 and a support plate 120. The body 110 is provided with a plurality of concavely-arranged molding grids 111, the molding grids 111 are used for molding food, and the support plate 120 is arranged on the outer periphery of the body 110. The demolding structure is used to assist in demolding the food product in the molding grid 111. The demolding structure is arranged on the storage box 200 and forms a stroke channel communicated with the storage box 200, a supporting section and a non-supporting section are formed at the periphery of the stroke channel, when the modeling mold 100 is reversely buckled to the demolding structure for demolding operation, at least part of the supporting plate 120 is abutted against the supporting section, and when a user applies an acting force from top to bottom to the supporting plate 120 in the range of the supporting section, the supporting plate 120 and the body 110 can not or hardly deform; when a user applies an acting force from top to bottom to the supporting plate 120 in the non-supporting section range, the supporting plate 120 and the body 110 deform, so that the food in the molding grid 111 is demolded, and the demolded food falls into the storage box 200 through the stroke channel.
It can be understood that, the food mold in the application is provided with the demolding structure, and the user can complete demolding only by one hand after reversely buckling the modeling mold 100 to the storage box 200, so that the operation is simple, and the food is prevented from being polluted by the hand of the user. In addition, the food after being demoulded can directly enter the storage box 200, so that waste of the food in the demoulding process is avoided.
The food may be any desired shaped article such as ice cubes, sugar products (e.g., chocolate, lollipop, etc.), etc., and is not limited herein. The contour of the molding die 100 is generally square, but may be circular, polygonal or other shapes in other cases; the shape of the shaping lattice 111 is not limited to the cubic structure illustrated in fig. 6, and may be a regular structure such as a rectangular parallelepiped structure, a sphere structure, or other irregular structures; the outline shape of the molding die 100 and the shape of the molding lattice 111 are not limited in the present application.
It can be understood that, when the food mold is not in use, the molding mold 100 can be accommodated in the storage box 200 to avoid the loss of the accommodating space caused by the separate accommodation of the molding mold 100. When the food mold is in use, the molding mold 100 can be placed and molded in the forward direction independently from the storage box 200 or placed and molded in/on the storage box 200 in the forward direction in the food molding stage; in the demolding stage, the modeling mold 100 needs to be reversely buckled to the demolding structure for demolding.
It is to be understood that the forward placement of the molding die 100 refers to a state in which the molding cell 111 of the molding die 100 is directed upward, i.e., a state in which the molding die 100 is directed upward as shown in fig. 6. The reverse of the molding die 100 means a state in which the molding cell 111 of the molding die 100 faces downward, that is, a state in which the molding die 100 shown in fig. 1 is reversed. Food molding refers to the re-shaping of a food product by the shape of the molding die 100.
Referring to fig. 7, in embodiment 1, a support plate 120 is disposed around an outer circumference of a body 110. It is understood that in other embodiments, only the support plate 120 for abutting against the support section 120 is provided on the outer periphery of the body 110, as shown in fig. 6.
In embodiment 1, the storage box 200 is a box body with one open end.
In this embodiment, the supporting section includes two supporting blocks 310, the two supporting blocks 310 are arranged diagonally, and when the modeling mold 100 is reversely buckled to the demolding structure for performing the demolding operation, the two supporting blocks 310 abut against the supporting plate 120 to support the modeling mold 100.
In embodiment 1, the mold release structure includes a frame body 300. The frame 300 has a through hole 301. Two supporting blocks 310 are disposed on the frame 300 and located in the through hole 301. Wherein, the through hole 301 is a stroke channel. The area of the periphery of the through opening 301 where the two supporting blocks 310 are not formed is the non-supporting section.
In embodiment 1, the outline of the frame 300 is the same as the outline of the opening of the storage box 200 in the mold release structure, and the mold release structure is detachably provided on the storage box 200. The outline of the frame body 300 in the demolding structure is square. It is understood that in other embodiments, the outline of the frame 300 in the mold release structure may also be a regular shape such as a circle, a polygon, or other irregular shapes, which is not limited herein. The shape of the opening of the storage box 300 is adaptively adjusted along with the change of the outline of the frame body 300 in the demoulding structure.
In other embodiments, the demolding structure is integrally molded with the storage box 200.
In this embodiment, the food mold further includes a cover 400, and it is understood that the cover 400 may be fastened to the storage box 200 or rotatably connected to the storage box 200. The cover body 400 is provided with an extrusion column 410, when food demoulding operation is carried out, the cover body 400 is covered, and the extrusion column 410 drives one end of the modeling mould 100 corresponding to the left-hand buckle to move at a non-support section, so that single-hand one-key pressing demoulding is realized.
It is understood that the number of the pressing columns 410 may be one or two, and is adaptively adjusted according to the position of the supporting section, which is not limited herein.
It is understood that in other embodiments, the cover 400 of the storage box 100 may be omitted, thus requiring the user to press one end of the corresponding inverted molding die 100 with bare hands to move on the unsupported section for demolding.
In this embodiment, the molding die 100 is made of a hard material, such as a hard plastic, and when the hard material deforms, the food in the molding cells 111 is easily peeled.
Example 2:
as shown in fig. 3, the embodiment 2 is different from the embodiment 1 in that the supporting section in the embodiment 2 includes an insertion groove 320 and a supporting block 310, and the insertion groove 320 and the supporting block 310 are oppositely arranged. The inserting groove 320 and the supporting block 310 are disposed on the frame 300 and located in the through hole 301. When the molding die 100 is reversely buckled to the demolding structure for demolding, the supporting plate 120 at one end of the molding die 100 is inserted into the insertion groove 320, and the supporting block 320 at the other end of the molding die 100 abuts against the supporting block. The region of the through hole 301 where the inserting groove 320 and the supporting block 310 are not formed is a non-supporting section.
It is understood that in other embodiments, the insertion groove 320 and the supporting block 310 may be diagonally disposed.
Furthermore, the insertion groove 320 includes a top plate and a bottom plate disposed up and down, the insertion groove 320 is formed between the top plate and the bottom plate, the insertion groove 320 is in a shape of a straight line or an L, and the specific shape of the insertion groove 320 is not limited.
Example 3:
as shown in fig. 4, the embodiment 3 is different from the embodiment 1 in the supporting section, and the supporting section in the embodiment 3 includes two first supporting blocks 330 and one second supporting block 340. Two first supporting blocks 330 and a second supporting block 340 are disposed on the frame 300 and located in the through hole 301. The two first supporting blocks 330 are diagonally arranged, and the second supporting block 340 is located outside a diagonal line formed by the two first supporting blocks 330. In the vertical direction of the food mold, the bottom surface of the second supporting block 340 is higher than the top surface of the first supporting block 330. When the modeling mold 100 is reversely buckled to the demolding structure 330 for demolding, the top surfaces of the two first supporting blocks 330 are both abutted against the supporting plate 120, and the bottom surface of the second supporting block 340 is abutted against the supporting plate 120. The periphery of the through opening 301 is configured as the non-supporting section by an area range from one of the first supporting blocks 330 to another first supporting block 330 in a direction not passing through the second supporting block 340.
Example 4:
as shown in fig. 5, embodiment 4 is different from embodiment 1 in a mold release structure, and in embodiment 4, the mold release structure is integrally formed with the storage box 200.
Specifically, in embodiment 4, the frame of the storage box 200 is also used as the frame 300 of the mold release structure. That is, the mold release structure is integrally molded with the storage box 200 in embodiment 4. Thus, the two support blocks 310 are diagonally disposed in the storage box 200. When the molding die 100 is reversely fastened to the demolding structure for demolding, the supporting block 310 abuts against the supporting plate 120 to support the molding die 100. The region of the rim of the storage box 200 where the two support blocks 310 are not formed is the non-support section.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; these modifications and substitutions do not depart from the essence of the corresponding technical solutions of the embodiments of the present invention.

Claims (10)

1. The utility model provides a food mold, including molding die and storage box, molding die is optionally acceptd in the storage box, molding die includes the body, the body is equipped with the molding check that a plurality of caves in set up, the molding check is used for the shaping food, a serial communication port, molding die still includes the backup pad, the backup pad sets up in the outer peripheral edge of body, food die is still including setting up in the demoulding structure of storage box, demoulding structure is formed with the stroke passageway with storage box intercommunication, the periphery of stroke passageway forms supporting section and non-supporting section, molding die left-hand thread is when demoulding operation to demoulding structure, at least part and the supporting section of backup pad offset, the region that molding die corresponds non-supporting section is under the stress, realize the drawing of patterns to food in the molding check, the food of drawing of patterns falls into the storage box through the stroke passageway.
2. The food mold of claim 1, wherein the support section comprises two support blocks, the two support blocks being diagonally disposed.
3. The food mold of claim 1, wherein the support section comprises a socket and a support block, the socket and the support block being disposed opposite or diagonally.
4. The food mold as defined in claim 3, wherein the insertion groove comprises a top plate and a bottom plate which are arranged up and down, the insertion groove is formed between the top plate and the bottom plate, and the insertion groove is in a shape of Chinese character 'yi' or 'L'.
5. The food mold as claimed in claim 1, wherein the support section comprises two first support blocks and a second support block, the two first support blocks are arranged in a diagonal direction, the second support block is positioned outside the diagonal line formed by the two first support blocks, and the bottom surface of the second support block is higher than the top surface of the first support block in the vertical direction of the food mold; when the modeling mold is reversely buckled to the demolding structure for demolding operation, the top surface of the first supporting block is abutted against the supporting plate, and the bottom surface of the second supporting block is abutted against the supporting plate.
6. A food mold as claimed in any of claims 2-5, wherein the demolding structure is arranged on the storage box, and the demolding structure is integrally formed with the storage box or detachably connected with the storage box.
7. The food mold as claimed in claim 6, further comprising a cover body, wherein the cover body is provided with at least one squeezing column, and when the cover body is closed, the at least one squeezing column drives one end of the corresponding shaping mold to move in the non-supporting section.
8. A food mold as claimed in claim 2, wherein the demolding structure is integrally formed with the storage box, and the two support blocks are disposed within the storage box.
9. The food mold as claimed in claim 8, further comprising a cover body, wherein the cover body is provided with at least one squeezing column, and when the cover body is closed, the at least one squeezing column drives one end of the corresponding shaping mold to move in the non-supporting section.
10. Food mold according to any of claims 1-5 and 7-9, characterized in that the shaping mold is made of a hard material.
CN202223021719.2U 2022-11-11 2022-11-11 Food mold Active CN218681923U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223021719.2U CN218681923U (en) 2022-11-11 2022-11-11 Food mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223021719.2U CN218681923U (en) 2022-11-11 2022-11-11 Food mold

Publications (1)

Publication Number Publication Date
CN218681923U true CN218681923U (en) 2023-03-24

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ID=85617081

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223021719.2U Active CN218681923U (en) 2022-11-11 2022-11-11 Food mold

Country Status (1)

Country Link
CN (1) CN218681923U (en)

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