Modularized cake mold

By using a modular cake mold with magnetic fixation and push rod linkage design, the problem of the invariability of traditional mold structure is solved, enabling efficient baking of cakes of various shapes and improving operational efficiency and finished product quality.

CN224038314UActive Publication Date: 2026-03-27WUYI GUANGSHUN HOME FURNISHING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The immutable structure of traditional cake molds leads to the use of multiple molds stacked together, increasing operational complexity and time costs, affecting the uniformity of oven heat circulation, and making it difficult to meet personalized baking needs.

Method used

The modular design, through magnetic fixing structure and linkage between push rod and extrusion block, enables the embedding and quick replacement of various shaped mold blanks in the same mold. Combined with the design of return spring and clamping block, it ensures smooth demolding.

Benefits of technology

It enables efficient production of multi-shaped cakes in a single baking process, reducing the space occupied by molds and cleaning time, and improving baking efficiency and finished product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a modular cake mould which is characterized by comprising a placing box, a shell and the like, a plurality of grooves are formed in the placing box, a magnet is connected to the bottom of each groove, an iron sheet is connected to the bottom in the shell, a mould base is connected in the shell in a sliding mode, the shell is connected in the grooves of the placing box in a sliding mode, and the iron sheet is matched with the magnets in a magnetic attraction mode. An extrusion block is connected to the bottom of the shell, a push rod is slidably connected in the placement box, the lower end of the push rod is in extrusion fit with the extrusion block, an operation plate is connected to the top of the push rod, a first reset spring is connected in the placement box, and a stabilizing assembly for limiting sliding of the shell is arranged in the placement box; the cake baking machine has the advantages that the independent grooves and the magnetic attraction fixing structures are arranged in the placing box, so that the mold bases in different shapes can be independently embedded into the grooves of the same placing box, cakes in various shapes can be baked in the same mold at the same time only by replacing the mold bases, multiple independent molds do not need to be stacked, and efficient production of baking the cakes in various shapes at a time is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to food processing appliance technical field especially relates to a modular cake mould. BACKGROUND

[0002] As a popular dessert, cakes need to be shaped and baked with the help of moulds during the production process. Traditional cake moulds provide support for batter through fixed-shaped groove structures, ensuring that cakes maintain the preset shape under high-temperature baking while improving baking efficiency. The material and design of the mould directly affect the finished product quality of the cake, so the mould plays an irreplaceable role in the production of cakes.

[0003] Most of the cake moulds currently on the market use an integrated forming process, and the groove shape and size are usually fixed designs. For example, common moulds are made of metal or silicone materials, and the overall structure includes multiple grooves of the same shape, such as circles, squares, or hearts, and users cannot adjust the shape of individual grooves according to their needs. Although such moulds can meet basic baking needs, their standardized design results in a single mould producing only one size of cake, with severely limited flexibility.

[0004] The main defect of the prior art is the non-changeability of the mould structure. When different shapes or sizes of small cakes need to be baked at the same time, users must use multiple independent moulds, which not only occupies the oven space but also requires repeated operation of the mould placement and cleaning process, significantly increasing the time cost and operation complexity. In addition, the use of multiple moulds stacked together can easily lead to uneven heat circulation in the oven, affecting the quality of the finished product. With the growing demand for personalized baking from consumers, the fixed structure of traditional moulds has been unable to meet the needs of diversified scenarios. UTILITY MODEL CONTENTS

[0005] The technical problem to be solved by the utility model is the stacking of multiple moulds and the low efficiency of operation, and a modular cake mould is provided to solve the above problems.

[0006] The technical scheme adopted by the utility model to solve the above technical problems is as follows: a modular cake mould, comprising a placing box, a magnet, a shell, an iron sheet, a mould blank, a push rod, an operation plate, a first return spring, a pressing block and a stabilizing assembly, the placing box is provided with a plurality of grooves, each groove is connected with a magnet at the bottom, the inner bottom of the shell is connected with an iron sheet, the shell is slidingly connected with a mould blank inside, the iron sheet and the magnet are magnetically attracted and matched, the bottom of the shell is connected with a pressing block, the placing box is slidingly connected with a push rod inside, the lower end of the push rod is in extrusion matching with the pressing block, the top of the push rod is connected with an operation plate, the placing box is connected with a first return spring inside, one end of the first return spring is connected with the push rod, and the other end is connected with the placing box, each groove of the placing box is provided with a stabilizing assembly on the front and rear sides for limiting the sliding of the shell.

[0007] The further preferred scheme of the utility model further provides: the stable subassembly includes second reset spring and clamping block, the recess of placing box is symmetrically connected with clamping block, and the second reset spring is arranged in the sliding path of clamping block, one end of the second reset spring is connected with placing box, and the other end is connected with clamping block.

[0008] The further preferred scheme of the utility model further provides: still include telescopic pad, the top surface of the sliding slot formed by the sliding path of push rod is provided with telescopic pad, one end of telescopic pad is connected with placing box, and the other end is connected with push rod, and telescopic pad is located at the front and rear sides of push rod respectively.

[0009] The further preferred scheme of the utility model further provides: the front and rear end faces of operation plate are provided with concave-convex horizontal stripe texture.

[0010] The further preferred scheme of the utility model further provides: still include buffer pad, and the side of push rod not being connected with first reset spring is connected with buffer pad.

[0011] The further preferred scheme of the utility model further provides: still include overflow frame, and the top of mould blank is connected with overflow frame.

[0012] The further preferred scheme of the utility model further provides: still include auxiliary plate, and the top surface of placing box is connected with a plurality of auxiliary plates, and auxiliary plate is arranged in parallel with operation plate.

[0013] The further preferred scheme of the utility model further provides: the side of two clamping blocks in the same recess is provided with arc slope, and the upper end of clamping block is thin, and the lower end is thick.

[0014] Compared with the prior art, the utility model has the advantages that: through the multiple independent recesses and magnetic attraction fixing structures arranged in the placing box, different shapes of mould blanks can be individually embedded in the recesses of the same placing box, and only the mould blank needs to be replaced to simultaneously bake multiple shapes of cakes in the same mould, without the need of stacking multiple independent moulds, realizing efficient production of single-time baking of multiple shapes of cakes; through the slope linkage design of the push rod and the extrusion block, cooperating with the collaborative pressing action of the operation plate and the auxiliary plate, the baker can drive the push rod by single-hand or double-hand force, the shell is lifted by the slope transmission to separate from the magnetic attraction fixing, and the shell is quickly taken out. BRIEF DESCRIPTION OF DRAWINGS

[0015] The utility model will be further described in detail below by combining with the drawings and preferred embodiments, but the person skilled in the art will appreciate that these drawings are only drawn for the purpose of explaining the preferred embodiments, and therefore should not be regarded as the limitation to the scope of the utility model. In addition, unless specifically pointed out, the drawings only schematically show the composition or structure of the described object and can contain exaggerated display, and the drawings are not necessarily drawn to scale.

[0016] Figure 1The whole structure schematic view of the utility model is shown in the figure.

[0017] Figure 2 The connection relation of the shell and the iron sheet of the utility model is shown in the figure.

[0018] Figure 3 The connection relation of the push rod and the operation plate of the utility model is shown in the figure.

[0019] Figure 4 The installation structure of the second reset spring and the clamping block of the utility model is shown in the figure.

[0020] In the figure: 1, the placing box, 2, the magnet, 3, the shell, 4, the iron sheet, 5, the die blank, 6, the push rod, 7, the operation plate, 8, the first reset spring, 9, the extrusion block, 10, the second reset spring, 11, the clamping block, 12, the telescopic pad, 13, the texture, 14, the buffer pad, 15, the overflow frame, 16, the auxiliary plate. DETAILED DESCRIPTION

[0021] The preferred embodiments of the utility model will be described in detail below with reference to the drawings. Those skilled in the art will appreciate that these descriptions are merely descriptive, exemplary, and should not be interpreted as limiting the protection scope of the utility model.

[0022] It should be noted that: similar signs represent similar items in the following drawings, therefore, once an item is defined in one drawing, it can not be further defined and explained in the subsequent drawings.

[0023] The embodiment mainly describes the structure of the cake mold, and specifically as follows:

[0024] A kind of modular cake mold, such as Figures 1-4As shown, it comprises a placing box 1, a magnet 2, a shell 3, an iron sheet 4, a mold base 5, a push rod 6, an operation plate 7, a first reset spring 8, a pressing block 9 and a stabilizing assembly. The placing box 1 is provided with a plurality of recesses, each of which is connected with two magnets 2 at the bottom. The inner bottom of the shell 3 is connected with an iron sheet 4. The mold base 5 is slidably connected in the shell 3. The shell 3 is slidably connected in the recess of the placing box 1. The iron sheet 4 is magnetically attracted to the magnet 2. The bottom of the shell 3 is connected with the pressing block 9. The magnet 2 is located on the left and right sides of the pressing block 9. The placing box 1 is slidably connected with the push rod 6. The lower end of the push rod 6 is in extrusion fit with the pressing block 9. The pressing block 9 and the push rod 6 are both provided with inclined surfaces. The inclined surface of the push rod 6 is located below and in front of the pressing block 9. The top of the push rod 6 is connected with the operation plate 7. The front and rear end faces of the operation plate 7 are both provided with uneven horizontal stripe textures 13. The horizontal stripe textures 13 increase the friction force of the fingers. When the baker presses, it is not easy to slip, especially when it is stained with oil stains or flour. It can still accurately apply force. The sliding path of the push rod 6 in the placing box 1 is provided with a first reset spring 8. One end of the first reset spring 8 is connected with the push rod 6, and the other end is fixed to the placing box 1. The front and rear sides of each recess of the placing box 1 are both provided with a stabilizing assembly for limiting the sliding of the shell 3. The iron sheet 4 at the bottom of the shell 3 is automatically attracted to the two magnets 2 preinstalled in the recess, ensuring that the shell 3 and the placing box 1 do not have relative displacement during the baking process. When demolding, external force is transmitted to the pressing block 9 through the push rod 6, which lifts the shell 3 to overcome the magnetic attraction force, realizing rapid separation.

[0025] As shown in Figure 4 The stabilizing assembly comprises a second reset spring 10 and a clamping block 11. The recesses of the placing box 1 are both slidably connected with the clamping blocks 11. The adjacent side of the two clamping blocks 11 in the same recess is provided with an arc-shaped inclined surface. The upper end of the clamping block 11 is thin, and the lower end is thick. The sliding path of the clamping block 11 is provided with a second reset spring 10. One end of the second reset spring 10 is connected with the placing box 1, and the other end is connected with the clamping block 11. When the shell 3 is pushed into the recess, the side wall of the shell 3 extrudes the arc-shaped inclined surface of the clamping block 11, forcing the clamping block 11 to slide outward and compressing the second reset spring 10. During the demolding process, the arc-shaped inclined surface at the lower end of the clamping block 11 is in contact with the side wall of the shell 3, and the sliding speed of the shell 3 is slowed down through the friction resistance of the inclined surface, providing time for taking out the shell 3.

[0026] As shown in Figure 1 It also comprises telescopic pads 12. The placing box 1 is provided with telescopic pads 12 on the top surface of the sliding groove formed by the sliding path of the push rod 6. One end of the telescopic pad 12 is connected with the placing box 1, and the other end is connected with the push rod 6. The telescopic pads 12 are located on the front and rear sides of the push rod 6, respectively. When the push rod 6 slides, the telescopic pads 12 on the front and rear sides of the push rod 6 are synchronously stretched or contracted, always covering the opening of the sliding groove, avoiding the blocking of the movement path of the push rod 6 by foreign matters, and reducing the frequency of cleaning and maintenance.

[0027] As shown in Figure 3As shown, it also includes a buffer pad 14, the side of the push rod 6 not connected with the first reset spring 8 is connected with the buffer pad 14, when the push rod 6 is reset, the buffer pad 14 connected with the end of the push rod 6 is in contact with the inner wall of the placing box 1, and the impact energy of the push rod 6 rebound is absorbed through elastic deformation.

[0028] As shown in the drawings, Figure 1 As shown, it also includes an overflow frame 15, the top of the die blank 5 is connected with the overflow frame 15, when the batter is injected, the overflow frame 15 at the top of the die blank 5 is higher than the edge of the mold cavity, and the excess batter is overflowed along the outer wall of the overflow frame 15 to the collection area, so that the height of the cake after single injection is uniform. The structure can prevent the high-temperature expanded raw materials from polluting the outside of the mold.

[0029] As shown in the drawings, Figure 1 As shown, it also includes an auxiliary plate 16, the top surface of the placing box 1 is connected with a plurality of auxiliary plates 16, and the auxiliary plates 16 are arranged in parallel with the operation plate 7. The rigid support of the auxiliary plate 16 makes the movement track of the push rod 6 keep linear, and the stability of the demolding action is improved.

[0030] For different shapes of baked cakes, the baker selects the corresponding die blank 5, then puts the selected die blank 5 into the shell 3, and puts the shell 3 into the placing box 1, in the process of pushing the shell 3 into the placing box 1, the side of the shell 3 is extruded with the clamping block 11, and the second reset spring 10 is compressed, after the shell 3 is completely lowered, the iron sheet 4 connected with the bottom of the shell 3 is magnetically attracted by the magnet 2, the installation of all die blanks 5 is completed, the raw materials are injected, the placing box 1 is put into the baking oven, and the placing box 1 is taken out after baking is completed;

[0031] The baker simultaneously presses the auxiliary plate 16 and the operation plate 7 inwards with both hands, so that the push rod 6 slides towards the extrusion block 9, the push rod 6 is compressed in the process of sliding, the push rod 6 is lifted through the extrusion block 9, the magnetic attraction force between the magnet 2 and the iron sheet 4 is overcome, after the auxiliary plate 16 and the operation plate 7 are loosened, the first reset spring 8 rebounds and pushes the push rod 6 to reset, and the frictional force between the clamping block 11 and the shell 3 can slow down the falling speed of the shell 3, at this time, the baker can directly take out the lifted shell 3, the second reset spring 10 rebounds, the clamping block 11 slides to the middle of the groove, and finally the die blank 5 and the cake are separated.

[0032] In the description of the utility model, it should be explained that the terms "upper", "lower", "front", "rear", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the utility model product is used, and are only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the utility model.

[0033] The above has carried out the detailed introduction to the modular cake mold provided by the utility model, the principle and implementation mode of the utility model have been described in this paper by applying specific examples, the above embodiment is only used for helping understanding the utility model and core thought. It should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the principle of the utility model, the utility model can also be improved and modified in several ways, and these improvements and modifications also fall within the protection scope of the utility model claim.

Claims

1. A modular cake pan characterized by: The utility model provides a kind of magnetic box, including placing box (1), magnet (2), shell (3), iron sheet (4), die (5), push rod (6), operating plate (7), first reset spring (8), extrusion block (9) and stabilizing assembly, placing box (1) is opened with several recesses, and each recess bottom is connected with magnet (2), shell (3) inner bottom is connected with iron sheet (4), shell (3) is slidably connected with die (5) in, shell (3) is slidably connected in the recess of placing box (1), iron sheet (4) and magnet (2) magnetic attraction cooperation, shell (3) bottom is connected with extrusion block (9), placing box (1) is slidably connected with push rod (6), push rod (6) lower end and extrusion block (9) extrusion cooperation, push rod (6) top is connected with operating plate (7), and placing box (1) is connected with first reset spring (8), and first reset spring (8) one end is connected with push rod (6), and other end is connected with placing box (1), and every recess of placing box (1) front and back sides is provided with stabilizing assembly for limiting shell (3) sliding.

2. A modular cake pan according to claim 1, wherein: Stabilizing assembly includes second reset spring (10) and clamping block (11), and the recess of placing box (1) front and back sides is slidably connected with clamping block (11), and clamping block (11) sliding path is provided with second reset spring (10), and second reset spring (10) one end is connected with placing box (1), and other end is connected with clamping block (11).

3. A modular cake pan according to claim 2, wherein: It also includes telescopic pad (12), and placing box (1) is provided with telescopic pad (12) on the top surface of the sliding slot formed by push rod (6) sliding path, and telescopic pad (12) one end is connected with placing box (1), and other end is connected with push rod (6), and telescopic pad (12) is located at the front and back sides of push rod (6) respectively.

4. A modular cake pan according to claim 3, wherein: Operating plate (7) front and back end surface are provided with uneven horizontal stripe texture (13).

5. A modular cake pan according to claim 4, wherein: It also includes buffer pad (14), and push rod (6) is connected with buffer pad (14) on the side not connected with first reset spring (8).

6. A modular cake pan according to claim 5, wherein: It also includes overflow frame (15), and die (5) top is connected with overflow frame (15).

7. A modular cake pan according to claim 6, wherein: It also includes auxiliary plate (16), and placing box (1) top surface is connected with several pieces of auxiliary plate (16), and auxiliary plate (16) is arranged in parallel with operating plate (7).

8. A modular cake pan according to claim 7, wherein: The side adjacent to two clamping blocks (11) in the same recess is provided with arc slope, and the upper end of clamping block (11) is thin, and the lower end is thick.