Triangular bread forming device

By designing a triangular bread forming device that uses a conveyor belt and a positioning cylinder, the problems of low automation and unstable forming structure were solved, thus achieving efficient and stable triangular bread production.

CN223810322UActive Publication Date: 2026-01-20东莞市利明轩食品有限公司
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Patent Information

Application Number
CN202520347588.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-01-20
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing bread forming equipment has a low degree of automation in triangular bread production and poor stability of the forming and pressing structure, resulting in low production efficiency and unstable product quality.

Method used

A triangular bread forming device was designed, comprising a conveyor belt, a positioning cylinder, a positioning frame, and a forming mold. The pallet is conveyed to the positioning frame by the conveyor belt for clamping, and the forming mold is driven by the positioning cylinder and the drive cylinder to match the mold slot on the pallet to achieve precise pressing and shaping.

Benefits of technology

It improves production efficiency and product quality stability, ensures the shape accuracy and size of triangular bread, reduces operational complexity, and enhances the degree of automation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223810322U_ABST
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Abstract

The utility model relates to a triangular bread forming device in the field of forming devices, which comprises a machine frame and a conveying belt arranged on the machine frame, one end of the conveying belt is connected with a driving assembly, a tray is arranged on the conveying belt, a model groove is formed in the tray, a positioning seat is connected to the machine frame, a positioning air cylinder is installed on the positioning seat, and the positioning air cylinder is connected with the conveying belt. A positioning air cylinder is installed on the machine frame, a telescopic end of the positioning air cylinder is connected with a positioning frame, a supporting frame is installed on the machine frame, a forming die is connected to the supporting frame through a driving piece, and a die pressing block matched with a model groove is arranged on the forming die. Displacement or sliding of the tray in the pressing and shaping process is effectively prevented, the forming precision and the product quality are improved, the forming mold is driven to enable the mold pressing block to be matched with the mold groove, dough in the mold groove can be pressed and shaped, the using stability and reliability are improved, and the production efficiency and quality can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of forming device, concretely relates to a triangular bread forming device. BACKGROUND

[0002] The bread forming device is an important component of food processing machinery, is widely used in food manufacturing industry, especially in the baking field. With the improvement of consumer's requirement for food diversity and taste, the types and shapes of bread are increasingly rich, and the triangular bread is widely welcomed in the market because of its unique shape design, beautiful appearance and convenient carrying characteristics. Therefore, developing an efficient triangular bread forming device has important significance for improving the bread production efficiency and meeting the market demand.

[0003] At present, the bread forming machine on the market mainly includes a cutting device, a rolling device and a stamping forming device, which are combined to form a complete flow line. These devices realize the cutting, shaping and forming processes of the dough through different working principles and structural designs. The cutting device divides the dough into small pieces through the relative movement of the cutter or the steel wire. The rolling device rolls the dough into a regular circle through the rotating rolling plate or the rolling roller. The stamping forming device uses the combination of the stamping mechanism and the mold to stamp the dough into a specific shape.

[0004] However, the existing bread forming device realizes the processing and forming of the dough to a certain extent, but there are still the following defects in the production process of the triangular bread. Most of the bread forming devices on the market adopt semi-automatic or manual operation mode, which has low automation degree. This not only increases the labor intensity of the operator, but also reduces the production efficiency and the stability of product quality. In addition, the setting stability of the pressing forming structure is poor, which leads to the complicated operation and low efficiency of the forming device in the production process, thereby affecting the use. UTILITY MODEL CONTENTS

[0005] The utility model aims at solving the above defects and providing a triangular bread forming device to solve the technical problems of low forming automation degree and poor setting stability of the forming pressing structure of the existing forming device in the above background technology, thereby affecting the production efficiency and quality.

[0006] The utility model is realized by the following way:

[0007] The utility model relates to a kind of triangular bread forming device, including rack and the conveying belt being set on rack, one end of conveying belt is connected with the drive assembly that can drive conveying belt rotation, conveying belt is provided with tray, and conveying belt can drive tray to be driven to convey, the model groove is shaped on the tray, positioning seat is connected on rack, positioning cylinder is installed on positioning seat, the extension end of positioning cylinder extends to the surface of conveying belt, and positioning frame is liftably connected by extension end, tray is conveyed by one end of conveying belt to the end of conveying belt close to positioning frame, so as to be held by positioning cylinder drive positioning frame to tray, forming station is formed on rack, support frame is installed on forming station, forming mould is connected on support frame by driving element, forming mould is provided with moulding block matched with model groove, driving element can drive forming mould to move to tray.

[0008] Further in the above description, the drive assembly includes a driving roller, a driven roller and a drive motor, the driving roller and the driven roller are installed on the rack through a connecting frame, one end of the conveying belt passes through the driving roller and the driven roller in sequence and is connected in a closed loop with the other end of the conveying belt, and one end of the driving roller is connected with the drive motor.

[0009] The conveying belt can drive the tray to be driven to convey to the corresponding station, so that after the corresponding dough is injected into the model groove of the tray, the tray can enter the forming station (i.e. below the forming mould) under the conveying of the conveying belt, thereby facilitating subsequent pressing and shaping and improving production efficiency.

[0010] Further in the above description, the positioning seat is provided with two, both of which are installed on the rack and oppositely arranged on both sides of the conveying belt, the positioning cylinder is provided with two and respectively installed on the corresponding positioning seat, the extension end of the positioning cylinder is connected with the positioning frame, and one end of the positioning frame is provided with an entrance.

[0011] The positioning frame driven by the positioning cylinder can hold the tray, so that the forming mould can be conveniently driven to the tray by the driving element, and the moulding block on the forming mould can be matched with the corresponding model groove, thereby pressing and shaping the dough in the model groove.

[0012] Specifically, in the present embodiment, the model groove and the moulding block are both triangular.

[0013] Alternatively, the model groove and the moulding block can be set according to the shape of the corresponding bread, so that they are suitable for different production requirements by replacing the corresponding tray and forming mould.

[0014] Further in the above description, the driving member comprises a driving cylinder and a plurality of lifting shafts, the driving cylinder is installed on the support frame through a mounting plate, and the telescopic shaft of the driving cylinder is connected with the forming die through the mounting plate, a connecting plate is arranged on the support frame, the lifting shaft is coaxially connected with the connecting plate through a shaft sleeve, one end of the lifting shaft extends to the forming die and is connected with the forming die.

[0015] The driving cylinder is arranged to drive the forming die to move to the tray on the conveying belt, so that the mold pressing block on the forming die can be matched with the corresponding model groove, and the lifting shaft is arranged to further improve the stability and reliability of the movement of the forming die, thereby improving the movement of the forming die relative to the tray.

[0016] Further in the above description, the lifting shaft is arranged in four, and the four lifting shafts are distributed at four corners of the forming die.

[0017] Further in the above description, the bottom of the rack is provided with a plurality of universal wheels.

[0018] The beneficial effects of the present application are as follows: the combination of the conveying belt and the driving assembly realizes continuous and stable transmission of the tray, improves the production efficiency, the model groove is formed on the tray, which provides an accurate mold for the formation of the triangular bread, ensures the shape and size of the bread, and the combination of the positioning cylinder and the positioning frame realizes positioning and clamping of the tray on the conveying belt, and the telescopic end of the positioning cylinder can drive the positioning frame to move up and down, when the tray is conveyed to the position close to the positioning frame, the positioning frame can be lowered and clamped on the tray, effectively preventing displacement or sliding of the tray during pressing and shaping, improving the forming precision and product quality, after positioning, the driving member can drive the forming die to move stably to the tray, so that the mold pressing block on the forming die is matched with the model groove, so that the dough in the model groove can be pressed and shaped, and the stability and reliability of use can be improved, and the production efficiency and quality can be improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a perspective view of the overall structure of the embodiment;

[0020] Figure 2 It is a positioning structure diagram of the positioning frame in the embodiment;

[0021] Figure 3 It is a structure diagram of the forming die in the embodiment;

[0022] Figure 4 It is a sectional view of the embodiment;

[0023] Figure 5For the use state of the first direction in the embodiment, refer to the figure;

[0024] Figure 6 For the use state of the second direction in the embodiment, refer to the figure;

[0025] The reference signs in the figure are as follows: 1 - rack, 2 - conveying belt, 3 - tray, 4 - model groove, 5 - positioning seat, 6 - positioning cylinder, 7 - positioning frame, 8 - support frame, 9 - forming die, 10 - die block, 11 - driving roller, 12 - driven roller, 13 - driving motor, 14 - inlet, 15 - driving cylinder, 16 - lifting shaft, 17 - mounting plate, 18 - connecting plate, 19 - shaft sleeve, 20 - universal wheel, 21 - hopper, 22 - extrusion mechanism, 23 - pushing cylinder, 24 - discharge valve. DETAILED DESCRIPTION

[0026] The utility model will be described in further detail below in combination with the drawings and specific embodiments.

[0027] In the embodiment, refer to Figures 1-6 A triangular bread forming device, comprising a rack 1 and a conveying belt 2 arranged on the rack 1, one end of the conveying belt 2 is connected with a driving assembly capable of driving the conveying belt 2 to rotate, a tray 3 is arranged on the conveying belt 2, and the conveying belt 2 can drive the tray 3 to be conveyed, a model groove 4 is formed on the tray 3, a positioning seat 5 is connected on the rack 1, a positioning cylinder 6 is installed on the positioning seat 5, the telescopic end of the positioning cylinder 6 extends to the surface of the conveying belt 2, and a positioning frame 7 is connected to the telescopic end in a liftable manner, the tray 3 is conveyed from one end of the conveying belt 2 to the end of the conveying belt 2 close to the positioning frame 7, so that the positioning frame 7 can be driven by the positioning cylinder 6 to clamp and limit the tray 3, a pressing and shaping station is formed on the rack 1, a support frame 8 is installed on the pressing and shaping station, a forming die 9 is connected to the support frame 8 through a driving piece, a die block 10 matched with the model groove 4 is arranged on the forming die 9, and the driving piece can drive the forming die 9 to move towards the tray 3.

[0028] In the embodiment, the driving assembly comprises a driving roller 11, a driven roller 12 and a driving motor 13, the driving roller 11 and the driven roller 12 are installed on the rack 1 through a connecting frame, one end of the conveying belt 2 passes through the driving roller 11 and the driven roller 12 in sequence and is connected in a closed loop with the other end of the conveying belt 2, and one end of the driving roller 11 is connected with the driving motor 13. The conveying belt 2 arranged can drive the tray 3 to be conveyed to the corresponding station, so that after the corresponding dough is injected into the model groove 4 of the tray 3, the tray 3 can enter the pressing and shaping station (i.e. below the forming die 9) under the conveying of the conveying belt 2, thereby facilitating subsequent pressing and shaping and improving production efficiency.

[0029] In this embodiment, the positioning seat 5 is provided with two, two positioning seat 5 is installed on the rack 1, and is opposite to the distribution of the two sides of the conveying belt 2, the positioning cylinder 6 is provided with two, and is installed on the corresponding positioning seat 5, the telescopic end of the positioning cylinder 6 is connected with the positioning frame 7, one end of the positioning frame 7 is provided with an entrance 14. The positioning frame 7 driven by the positioning cylinder 6 can hold the tray 3, so that the forming die 9 is conveniently driven by the driving member to stamp the tray 3, and the model groove 4 is matched by the mold pressing on the forming die 9, so that the dough in the model groove 4 can be pressed and shaped.

[0030] Optionally, the model groove 4 and the mold pressing block 10 can be set according to the corresponding bread shape, so that the corresponding tray 3 and the forming die 9 are suitable for different production requirements.

[0031] In this embodiment, the driving member includes a driving cylinder 15 and a lifting shaft 16, the driving cylinder 15 is installed on the support frame 8 through the mounting plate 17, and the telescopic shaft of the driving cylinder 15 passes through the mounting plate 17 and is connected with the forming die 9, the support frame 8 is provided with a connecting plate 18, the connecting plate 18 is coaxially connected with the lifting shaft 16 through the shaft sleeve 19, one end of the lifting shaft 16 extends to the forming die 9 and is connected with the forming die 9. The driving cylinder 15 can drive the forming die 9 to move to the tray 3 on the conveying belt 2, so that the mold pressing block 10 on the forming die 9 can be matched with the corresponding model groove 4, and the lifting shaft 16 further improves the stability and reliability of the movement of the forming die 9, thereby improving the movement of the forming die 9 relative to the tray 3.

[0032] In this embodiment, the bottom of the rack 1 is provided with four universal wheels 20.

[0033] In this embodiment, the specific forming method is:

[0034] Step one: raw material preparation, put the appropriate amount of raw material into the hopper 21 of the machine.

[0035] Step two: raw material pushing, after the machine is started, the raw material in the hopper 21 is pushed to the discharge pipeline through the extrusion mechanism 22, and the dough in the discharge pipeline is extruded from the discharge valve 24 by the pushing cylinder 23, so that the conveying belt 2 conveys the tray 3 to the lower side of the discharge valve 24, and the dough falls into the model groove 4;

[0036] Step three: tray 3 conveying, the tray 3 is conveyed by the conveying belt 2 to the positioning frame 7, and the positioning frame 7 is in the open state by the driving of the positioning cylinder 6, that is, the tray 3 can enter the positioning frame 7 through the entrance 14 for positioning;

[0037] Step four: pressing and shaping, after the positioning of the tray 3, the driving cylinder 15 drives the forming die 9 to move to the tray 3, that is, the dough in the model groove 4 of the tray 3 is pressed by the pressing block 10 on the forming die 9, so as to fill the shape of the model groove 4;

[0038] Step five: subsequent processing, after being pressed into the triangle of the model groove 4, the dough can be conveyed to the subsequent baking mechanism by the conveying belt 2, and then the bread is formed.

[0039] The dough filling extrusion mechanism 22 and the pushing cylinder 23 in the embodiment extrude the dough, which is a common design means in the art, and the conveying control of the conveying belt 2 is a common knowledge in the art, so it is not specifically described in the embodiment.

[0040] Specifically, in the embodiment, the model groove 4 and the pressing block 10 are both triangularly arranged. The lifting shaft 16 is provided with four, and the four lifting shafts 16 are distributed at the four corners of the forming die 9.

[0041] The specific use principle of the embodiment is that: through the combination of the conveying belt 2 and the driving assembly, the tray 3 placed on the conveying belt 2 can be continuously and stably conveyed, improving the production efficiency. The model groove 4 is formed on the tray 3, which provides an accurate mold for the formation of the triangular bread, ensuring the shape and size of the bread. When the tray 3 is conveyed to the position close to the positioning frame 7 by the conveying belt 2, the positioning frame 7 clamps the tray 3, realizing the positioning and clamping of the tray 3 on the conveying belt 2, effectively preventing the displacement or sliding of the tray 3 during the pressing and shaping process, improving the forming precision and product quality. After positioning, the driving cylinder 15 can drive the forming die 9 to stably move to the tray 3, so that the pressing block 10 on the forming die 9 is matched with the model groove 4, and the raw material in the model groove 4 is pressed under the driving of the driving cylinder 15. Thus, the driving cylinder 15 drives the forming die 9 to descend, so that the dough in the model groove 4 is pressed and shaped, so that the dough can fill the model groove 4, improving the stability and reliability of use, and improving the production efficiency and quality.

[0042] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as above in the preferred embodiment, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the above disclosed technical content without departing from the technical solution of the present application, and any simple modification, equivalent change and modification of the above embodiment within the scope of the present application are all within the scope of the present application.

Claims

1. A triangular bread forming device, comprising a frame and a conveyor belt mounted on the frame, one end of the conveyor belt being connected to a drive assembly capable of driving the conveyor belt to rotate, a tray being mounted on the conveyor belt, and the conveyor belt being capable of driving the tray to perform transmission and conveying, characterized in that: The tray is formed with a model groove, the rack is connected with a positioning seat, the positioning seat is installed with a positioning cylinder, the extension end of the positioning cylinder extends to the surface of the conveying belt, and the positioning frame is connected with the extension end in a lifting manner, the tray is conveyed to the end of the conveying belt close to the positioning frame, so that the positioning frame is driven by the positioning cylinder to clamp and limit the tray, the rack is formed with a pressing and shaping station, the pressing and shaping station is installed with a support frame, the support frame is connected with a forming die through a driving piece, the forming die is provided with a die block matched with the model groove, and the driving piece drives the forming die to move to the tray.

2. The apparatus of claim 1, wherein: The driving assembly comprises a driving roller, a driven roller and a driving motor, the driving roller and the driven roller are installed on the rack through a connecting frame, one end of the conveying belt passes through the driving roller and the driven roller in sequence and is connected in a closed loop with the other end of the conveying belt, and one end of the driving roller is connected with the driving motor.

3. The apparatus of claim 1 wherein: The positioning seat is provided with two positioning seats, the two positioning seats are installed on the rack and are distributed on the two sides of the conveying belt in an opposite manner, the positioning cylinder is provided with two positioning cylinders and is installed on the corresponding positioning seat, the extension end of the positioning cylinder is connected with the positioning frame, and one end of the positioning frame is provided with an entrance.

4. The apparatus of claim 1 wherein: The driving piece comprises a driving cylinder and a plurality of lifting shafts, the driving cylinder is installed on the support frame through a mounting plate, the extension shaft of the driving cylinder passes through the mounting plate and is connected with the forming die, the support frame is provided with a connecting plate, the connecting plate is coaxially connected with the lifting shaft through a shaft sleeve, one end of the lifting shaft extends to the forming die and is connected with the forming die.

5. A device for forming a triangular bread according to claim 4, characterized in that: The lifting shaft is provided with four lifting shafts, and the four lifting shafts are distributed at the four corners of the forming die.

6. The apparatus according to any one of claims 1 to 5, wherein: The bottom of the rack is provided with a plurality of universal wheels.