A device for forming a biscuit

CN224654546UActive Publication Date: 2026-08-21SHANGHAI QINHUI BEIKE FOOD MACHINERY CO LTD
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Patent Information

Application Number
CN202521249585.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2026-08-21
Estimated Expiration
2035-06-18

AI Technical Summary

Technical Problem

[0004]现有饼干加工设备在对饼干面团压实成胚时,不能有效的控制饼干胚的厚度,从而影响不同饼干加工、生产的问题

Benefits of technology

[0014] This utility model provides a shortbread biscuit forming device. It has the following beneficial effects:

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Abstract

The utility model discloses a kind of crisp biscuit forming devices, including device ontology, device ontology includes installation platform, material collecting hopper device, feeding device, printing material device, rubber roller and reduction motor, material collecting hopper device, feeding device, printing material device and rubber roller are all installed in installation platform, feeding device is located printing material device left side, rubber roller is located printing material device below, rubber roller both ends are equipped with driving gear, three reduction motors are installed in installation platform inside bottom end, three reduction motors are connected with feeding device, printing material device, rubber roller respectively by chain;Feeding device includes feeding installation frame, feeding roller and feeding regulator, feeding installation frame is recessed character structure, feeding roller is installed in the right end inside feeding installation frame by pivot, feeding regulator is installed in installation platform left side, this kind of device can effectively control the thickness of dough compaction to embryo, so as to face the purpose of biscuit production of different thickness.
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Description

Technical Field

[0001] This utility model relates to the technical field of biscuit processing equipment, specifically a shortbread biscuit forming device. Background Technology

[0002] Shortbread cookies are a type of cookie made primarily from low-gluten wheat flour, with a higher proportion of fat and sugar, resulting in a crisp texture. During the dough preparation process, less gluten is formed, leading to a dough that lacks extensibility and elasticity but possesses good plasticity and stickiness. The product is crisp and easily crumbled, hence the name "shortbread cookies."

[0003] Existing biscuit processing equipment has the following drawbacks:

[0004] Existing biscuit processing equipment cannot effectively control the thickness of biscuit blanks when compacting biscuit dough, thus affecting the processing and production of different biscuits.

[0005] Therefore, a solution is needed. Utility Model Content

[0006] (a) Technical problems to be solved

[0007] In view of the shortcomings of the prior art, the present invention provides a shortbread biscuit forming device to solve the problems mentioned in the background art.

[0008] (II) Technical Solution

[0009] To achieve the above objectives, this utility model provides the following technical solution: a shortbread biscuit forming device, comprising a device body, the device body including a mounting platform, a receiving hopper device, a feeding device, an printing device, a rubber roller, and a reduction motor. The receiving hopper device, feeding device, printing device, and rubber roller are all installed inside the mounting platform. The feeding device is located to the left of the printing device, and the rubber roller is located below the printing device. Both ends of the rubber roller are equipped with drive gears. Three reduction motors are provided, installed at the bottom of the mounting platform, and connected to the feeding device, printing device, and rubber roller respectively via chains. The feeding device includes a feeding mounting frame, a feeding roller, and a feeding adjuster. The feeding mounting frame has a U-shaped structure. The feeding roller... The feeding roller is mounted on the right side inside the feeding mounting frame via a rotating shaft. The feeding regulator is mounted on the left side of the mounting platform, with its right end connected to the left end of the feeding mounting frame. Both ends of the feeding roller are equipped with drive gears. The feeding mounting frame has sliding support arms on both the front and rear sides, and the sliding support arms have a cylindrical structure. The feeding regulator includes a bidirectional bearing, a threaded rod, and an adjusting handwheel. The threaded rod is mounted on the left end of the bidirectional bearing, and the adjusting handwheel is mounted on the left end of the threaded rod. The printing device includes a printing mounting frame, a printing roller, and a printing regulator. The printing mounting frame has a U-shaped structure. The printing roller is mounted on the bottom end inside the printing mounting frame via a rotating shaft. Both ends of the printing roller are equipped with drive gears. The printing regulator is mounted on the top of the mounting platform, and its bottom is connected to the top of the printing mounting frame.

[0010] Preferably, the receiving hopper device includes a feeding hopper and a side plate. The side plate is welded to the top left end of the feeding hopper. The feeding hopper has a trapezoidal structure. A set of small embedded blocks distributed symmetrically at the bottom of the feeding hopper has a rectangular structure.

[0011] Preferably, the interior, top, and right end of the mounting platform are a through structure. The front and rear sides of the mounting platform are provided with horizontal sliding grooves and vertical sliding grooves. The top of the mounting platform is provided with a large embedding groove, which has a trapezoidal shape. The bottom of the large embedding groove is provided with a group of small embedding grooves distributed symmetrically.

[0012] Preferably, the mounting platform is equipped with movable steering wheels at each of the four corners of its bottom.

[0013] (III) Beneficial Effects

[0014] This utility model provides a shortbread biscuit forming device. It has the following beneficial effects:

[0015] This solution provides a shortbread biscuit forming device that can effectively control the thickness of the dough compacted into a biscuit, thus enabling the production of biscuits of different thicknesses. This improves the applicability of the equipment and reduces the burden of processing different types of biscuits. The device is very convenient to use and easy for operators to operate. During operation, simply rotate the adjusting handwheel, and the threaded rod will move forward by rotation, thereby adjusting the position of the compaction roller. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the feeding device and printing device of this utility model;

[0018] Figure 3 This is a schematic diagram of the structure of the material receiving hopper device of this utility model;

[0019] Figure 4 This is a schematic diagram of the mounting platform of this utility model.

[0020] In the diagram, 1. Device body; 2. Mounting platform; 3. Material receiving hopper device; 4. Feeding device; 5. Printing device; 6. Rubber roller; 7. Feeding mounting frame; 8. Feeding roller; 9. Feeding regulator; 10. Double-direction bearing; 11. Threaded rod; 12. Adjusting handwheel; 13. Printing mounting frame; 14. Printing roller; 15. Printing regulator; 16. Feed hopper; 17. Side plate; 18. Small embedded block; 19. Horizontal sliding groove; 20. Vertical sliding groove; 21. Large embedded groove; 22. Small embedded groove; 23. Moving steering wheel; 24. Sliding support arm; 25. Drive gear; 26. Gear motor. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-4 This utility model provides a technical solution:

[0023] Example

[0024] The problem to be solved is that existing biscuit processing equipment cannot effectively control the thickness of biscuit blanks when pressing biscuit dough into blanks, which affects the processing and production of different biscuits.

[0025] The solution is as follows: A shortbread biscuit forming device includes a device body 1. The device body 1 includes a mounting platform 2, a receiving hopper device 3, a feeding device 4, an printing device 5, a rubber roller 6, and a reduction motor 26. The receiving hopper device 3, the feeding device 4, the printing device 5, and the rubber roller 6 are all installed inside the mounting platform 2. The feeding device 4 is located to the left of the printing device 5, and the rubber roller 6 is located below the printing device 5. Both ends of the rubber roller 6 are provided with drive gears 25. Three reduction motors 26 are provided and installed at the bottom of the mounting platform 2. The three reduction motors 26 are respectively connected to the feeding device 4, the printing device 5, and the rubber roller 6 via chains. The feeding device 4 includes a feeding mounting frame 7, a feeding roller 8, and a feeding adjuster 9. The feeding mounting frame 7 has a U-shaped structure. The feeding roller 8 is installed inside the feeding mounting frame 7 at the right end via a rotating shaft. The feeding adjuster 9 is installed on the left side of the mounting platform 2, and its right end is connected to the left end of the feeding mounting frame 7. Both ends of the feeding roller 8 are provided with drive gears 25. The feeding mounting frame 7 has sliding support arms 24 on both the front and rear sides. The sliding support arms 24 have a cylindrical structure. The feeding adjuster 9 includes a bidirectional bearing 10, a threaded rod 11, and an adjusting handwheel 12. The threaded rod 11 is installed at the left end of the bidirectional bearing 10, and the adjusting handwheel 12 is installed at the left end of the threaded rod 11.The printing device 5 includes a printing mounting frame 13, a printing roller 14, and a printing adjuster 15. The printing mounting frame 13 has a U-shaped structure. The printing roller 14 is mounted on the bottom of the printing mounting frame 13 via a rotating shaft. Both ends of the printing roller 14 are equipped with drive gears 25. The printing adjuster 15 is mounted on the top of the mounting platform 2, and its bottom is connected to the top of the printing mounting frame 13. In use, the operator adjusts the distance between the feeding roller 8 and the printing roller 14. The operator can rotate the adjusting handwheel 12 of the feeding adjuster 9, and then the threaded rod 11 can move to the right through the thread. The sliding support arms 24 at both ends of the feeding frame 7 can drive the feeding frame 7 to slide to the right in the transverse sliding groove 19, and the feeding roller 8 in the feeding frame 7 can move to the right, thereby feeding the printing roller 8. The distance between roller 8 and printing roller 14 is reduced. If it is necessary to change the distance between printing roller 14 and rubber roller 6, the printing adjuster 15 can be operated. The accessories of printing adjuster 15 are the same as those of feed adjuster 9. The printing adjuster 15 can adjust the printing roller 14 to move up or down, thereby changing the distance between printing roller 14 and rubber roller 6. During processing, three geared motors 26 drive printing roller 14, feed roller 8 and rubber roller 6 respectively through chains (after adjusting the positions of printing roller 14 and feed roller 8, chains of different lengths also need to be replaced). The dough enters between feed roller 8 and printing roller 14 through receiving hopper device 3. Then feed roller 8 and printing roller 14 press the panel. Then the dough passes between printing roller 14 and rubber roller 6, and printing roller 14 and rubber roller 6 press the dough again to form a dough.

[0026] The receiving hopper device 3 includes a feeding hopper 16 and a side plate 17. The side plate 17 is welded to the top left end of the feeding hopper 16. The feeding hopper 16 has a trapezoidal structure. A set of small embedded blocks 18 distributed symmetrically at the bottom of the feeding hopper 16 has a rectangular structure. The worker puts the biscuit dough into the feeding hopper 16. The dough is then compacted between the feeding roller 8 and the printing roller 14 by the rotation of the feeding roller 8 and the printing roller 14.

[0027] The mounting platform 2 has a through structure inside, at the top and right end. The mounting platform 2 has a horizontal sliding groove 19 and a vertical sliding groove 20 on both the front and rear sides. The top of the mounting platform 2 has a large embedding groove 21 with a trapezoidal shape. The bottom of the large embedding groove 21 has a set of small embedding grooves 22 distributed symmetrically. The large embedding groove 21 at the top of the mounting platform 2 is for easy embedding of the bottom of the feeding hopper 21. Then the small embedding blocks 22 at the bottom of the feeding hopper 21 can be inserted into the lower embedding groove 22 of the embedding groove 21, thereby achieving the installation and fixation of the receiving hopper device 3.

[0028] The mounting platform 2 is equipped with four movable steering wheels 23 at the bottom corners. The movable steering wheels 23 are used to move the mounting platform 2 as a whole, thereby reducing the burden on the staff to carry and move the device body 1.

[0029] Working principle: During operation, the operator adjusts the distance between the feed roller 8 and the printing roller 14. The operator can rotate the adjusting handwheel 12 of the feed adjuster 9, causing the threaded rod 11 to move to the right via the thread. This allows the sliding support arms 24 at both ends of the feed frame 7 to slide to the right within the transverse sliding groove 19, thus moving the feed roller 8 within the feed frame 7 to the right and reducing the distance between the feed roller 8 and the printing roller 14. If it is necessary to change the distance between the printing roller 14 and the rubber roller 6, the printing adjuster 15 can be operated. The printing adjuster 15 is connected to the feed roller 14... The material regulator 9 is the same, so the printing material regulator 15 can adjust the printing roller 14 to move up or down, thereby changing the gap between the printing roller 14 and the rubber roller 6. During processing, three geared motors 26 drive the printing roller 14, the feeding roller 8 and the rubber roller 6 respectively through chains (after adjusting the position of the printing roller 14 and the feeding roller 8, chains of different lengths also need to be replaced). The dough enters between the feeding roller 8 and the printing roller 14 through the receiving hopper device 3. Then the feeding roller 8 and the printing roller 14 press the panel. Then the dough passes between the printing roller 14 and the rubber roller 6, and the printing roller 14 and the rubber roller 6 press the dough again to form a dough.

[0030] This utility model comprises: 1. Device body; 2. Mounting platform; 3. Material receiving hopper device; 4. Feeding device; 5. Printing device; 6. Rubber roller; 7. Feeding mounting frame; 8. Feeding roller; 9. Feeding adjuster; 10. Bidirectional bearing; 11. Threaded rod; 12. Adjusting handwheel; 13. Printing mounting frame; 14. Printing roller; 15. Printing adjuster; 16. Feed hopper; 17. Side plate; 18. Small embedded block; 19. Horizontal sliding groove; 20. Vertical sliding groove; 21. Large embedded groove; 22. Small embedded groove; 23. Moving steering wheel; 24. Sliding support. 25. Arm; 26. Drive gear; 27. Gearbox motor. All components are general standard parts or parts known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. The problem solved by this utility model is that existing biscuit processing equipment cannot effectively control the thickness of biscuit blanks when compacting biscuit dough into blanks, thus affecting the processing and production of different biscuits. This utility model can effectively control the thickness of the dough when compacted into blanks through the combination of the above components, thereby meeting the purpose of producing biscuits of different thicknesses.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0032] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A shortbread biscuit forming device, characterized in that: The device includes a main body (1), which includes a mounting platform (2), a hopper device (3), a feeding device (4), a printing device (5), a rubber roller (6), and a geared motor (26). The hopper device (3), the feeding device (4), the printing device (5), and the rubber roller (6) are all installed inside the mounting platform (2). The feeding device (4) is located to the left of the printing device (5), and the rubber roller (6) is located below the printing device (5). Both ends of the rubber roller (6) are provided with drive gears (25). There are three geared motors (26). The three geared motors (26) are installed at the bottom inside the mounting platform (2). The three geared motors (26) are respectively connected to the feeding device (4), the printing device (5), and the rubber roller (6) through chains. The feeding device (4) includes a feeding mounting frame (7), a feeding roller (8), and a feeding regulator (9). The feeding mounting frame (7) has a U-shaped structure. The feeding roller (8) is mounted on the right end inside the feeding mounting frame (7) via a rotating shaft. The feeding regulator (9) is mounted on the left side of the mounting platform (2), and its right end is connected to the left end of the feeding mounting frame (7). Both ends of the feeding roller (8) are provided with drive gears (25). The feeding mounting frame (7) has sliding support arms (24) on both the front and rear sides. The sliding support arms (24) have a cylindrical structure. The feeding regulator (9) includes a bidirectional bearing (10), a threaded rod (11), and an adjusting handwheel (12). The threaded rod (11) is mounted on the left end of the bidirectional bearing (10), and the adjusting handwheel (12) is mounted on the left end of the threaded rod (11). The printing device (5) includes a printing mounting frame (13), a printing roller (14), and a printing regulator (15). The printing mounting frame (13) has a U-shaped structure. The printing roller (14) is mounted on the bottom of the printing mounting frame (13) through a rotating shaft. Both ends of the printing roller (14) are provided with drive gears (25). The printing regulator (15) is mounted on the top of the mounting platform (2), and the bottom of the printing regulator (15) is connected to the top of the printing mounting frame (13).

2. The shortbread biscuit forming device according to claim 1, characterized in that: The receiving hopper device (3) includes a feeding hopper (16) and a side plate (17). The side plate (17) is welded to the top left end of the feeding hopper (16). The feeding hopper (16) has a trapezoidal structure. A set of small embedded blocks (18) distributed symmetrically are provided at the bottom of the feeding hopper (16). The small embedded blocks (18) have a rectangular structure.

3. The shortbread biscuit forming device according to claim 1, characterized in that: The mounting platform (2) has a through structure inside, at the top and right end. The mounting platform (2) has a horizontal sliding groove (19) and a vertical sliding groove (20) on both the front and rear sides. The mounting platform (2) has a large embedded groove (21) at the top. The large embedded groove (21) has a trapezoidal structure. The bottom of the large embedded groove (21) has a set of small embedded grooves (22) distributed symmetrically.

4. The shortbread biscuit forming device according to claim 1, characterized in that: The mounting platform (2) is equipped with movable steering wheels (23) at the four corners of its bottom.