Automatic cutting device applied to fruit and vegetable flavor bread processing
The automatic cutting device, with its conveyor belt, cutter holder, and baffle system, solves the problem of low efficiency in traditional fruit and vegetable bread slicing, achieving efficient and uniform multi-slice cutting and ensuring slice quality.
Patent Information
- Application Number
- CN202422849645.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Traditional fruit and vegetable bread slicing processes are inefficient and make it difficult to achieve efficient and uniform cutting.
An automatic cutting device is used to transport bread via a conveyor belt. The bread is sliced evenly using a cutter holder and baffle system inside the gantry frame. The blades cut perpendicular to the conveying direction, and the baffles intercept both ends of the bread to prevent deflection, thus improving slicing efficiency and uniformity.
It enables efficient multi-slice cutting of fruit and vegetable bread, ensuring slice quality, preventing bread from shifting during the cutting process, and improving slicing efficiency and uniformity.
Smart Images

Figure CN223558499U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of bread processing, especially an automatic cutting device applied to fruit and vegetable flavored bread processing. BACKGROUND
[0002] With the improvement of people's living standards, the demand for food is also getting higher and higher. As a representative of healthy diet, fruit and vegetable bread not only has a unique taste, but also is rich in nutrients, meeting the pursuit of modern people for healthy diet. The fruit and vegetable bread produced is relatively long, so the manufacturer will slice the fruit and vegetable bread to facilitate customers to eat. The traditional slicing process cuts the food through the cutter for slicing one by one, which is low in efficiency. SUMMARY
[0003] In view of the above background technology, the utility model provides an automatic cutting device applied to fruit and vegetable flavored bread processing.
[0004] The utility model adopts the following technical scheme:
[0005] An automatic cutting device applied to fruit and vegetable flavored bread processing, characterized in that the cutting device comprises:
[0006] A rack, a conveyor belt for conveying bread is arranged on the rack, a portal frame is arranged on the conveyor belt, and the side plates on both sides of the portal frame are connected to the side plates on both sides of the rack respectively;
[0007] A cutter holder, the cutter holder comprises a mounting plate and a plurality of blades arranged on the bottom surface of the mounting plate, the distance between adjacent blades is the same, the mounting plate is arranged in the portal frame, the mounting plate can be lifted relative to the conveyor belt, and the blades are perpendicular to the conveyor belt;
[0008] A front baffle, the front baffle is arranged at the front end of the portal frame, and the front ends of the front baffles on both ends are hinged to the front ends of the side plates on both sides of the portal frame through first connecting rods;
[0009] A rear baffle, the rear baffle is arranged at the rear end of the portal frame, and the rear ends of the rear baffles on both ends are hinged to the rear ends of the side plates on both sides of the portal frame through second connecting rods;
[0010] Wherein, the front baffle and the rear baffle are separately rotated, when the conveyor belt conveys the bread to the position below the portal frame, the front baffle and the rear baffle intercept the front end and the rear end of the bread respectively, the cutter holder is used for driving the blades to descend, and the bread between the front baffle and the rear baffle is uniformly sliced, and the cutting direction of the blades is perpendicular to the conveying direction of the conveyor belt.
[0011] As a further improvement, the mounting plate is driven by a slicing piston cylinder arranged on the top plate of the portal frame.
[0012] As a further improvement, the two sides of the bottom surface of the mounting plate are provided with reinforcing plates, and the two ends of the blade extend to the surfaces of the two reinforcing plates respectively.
[0013] As a further improvement, the front baffle is driven by a first motor provided on the side plate of the gantry.
[0014] As a further improvement, the rear baffle is driven by a second motor provided on the side plate of the gantry.
[0015] As can be seen from the above description of the structure of the utility model, compared with the prior art, the utility model has the following advantages: in use, the bread is conveyed by the conveyor belt, when the bread is about to enter the gantry, the first connecting rod drives the front baffle to move downward to the front end of the gantry first, until the front baffle is located in front of the bread conveying, when the bread is conveyed to the lower side of the gantry, the front end of the bread abuts against the front baffle, then the second connecting rod drives the rear baffle to move downward to the rear end of the gantry, until the rear baffle abuts against the rear end of the bread, and then the mounting plate drives the plurality of blades to move downward, the bread located between the front baffle and the rear baffle is uniformly sliced, when the slicing is completed, the mounting plate, the blade, the front baffle and the rear baffle are sequentially lifted to reset, at this time, the sliced bread is conveyed forward along with the conveyor belt. In the process, the front baffle and the rear baffle intercept the front end and the rear end of the bread respectively, so that the bread can be stationary on the conveyor belt for slicing, and at the same time, the bread can be prevented from deflecting under stress during slicing, thereby affecting the cutting quality. The plurality of blades of the utility model can simultaneously slice the bread into multiple pieces, improve the slicing efficiency, and ensure uniform cutting. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.
[0017] Figure 2 It is a schematic diagram of the three-dimensional structure of the cutter holder.
[0018] Figure 3 It is a schematic diagram of the cross-sectional structure of the cutter holder.
[0019] Figure 4 It is a schematic diagram of the three-dimensional structure of the front baffle and the rear baffle intercepting the front end and the rear end of the bread respectively.
[0020] Figure 5 It is a schematic diagram of the cross-sectional structure of the front baffle and the rear baffle intercepting the front end and the rear end of the bread respectively.
[0021] Figure 6 It is a schematic diagram of the three-dimensional structure of the sliced bread conveyed forward along with the conveyor belt. DETAILED DESCRIPTION
[0022] The specific implementation manner of the present application is explained below with reference to the drawings.
[0023] As shown in the accompanying Figure 1 A kind of automatic cutting device applied to fruit and vegetable taste bread processing includes rack 1, cutter holder 2, front baffle 3 and back baffle 4.
[0024] As shown in the accompanying Figure 1 、 Figure 2 、 Figure 3 And Figure 5 Rack 1 is equipped with conveyor belt 11 for conveying bread 8, and gantry 12 is equipped on conveyor belt 11, the side plates of gantry 12 are connected to the two sides of rack 1 respectively, and cutter holder 2 is equipped in gantry 12, cutter holder 2 includes mounting plate 21 and a plurality of blades 22 on the bottom surface of mounting plate 21, the spacing between adjacent blades 22 is the same, mounting plate 21 is equipped in gantry 12, and mounting plate 21 can be lifted relative to conveyor belt 11, specifically mounting plate 21 is driven by slicing piston cylinder 7 equipped on the top plate of gantry 12. When conveyor belt 11 conveys bread 8 to the lower side of gantry 12, mounting plate 21 is driven to descend by slicing piston cylinder 7, so that mounting plate 21 drives a plurality of blades 22 to move downward, and bread 8 is uniformly cut, and blades 22 are always perpendicular to conveyor belt 11 during the process, to ensure the cutting quality of bread 8. It is worth mentioning that, as shown in the accompanying Figure 2 And Figure 3 The bottom surface of mounting plate 21 is equipped with reinforcing plate 23 on both sides, and both ends of blade 22 extend to the surface of two reinforcing plates 23, the setting of reinforcing plate 23 can enhance the connection stability between a plurality of blades 22, ensure that blade 22 will not be deformed during cutting, and is always perpendicular to conveyor belt 11, so as to ensure the cutting quality of bread 8.
[0025] In addition, as shown in the accompanying Figure 1 、 Figure 4 And Figure 5As shown, the front and rear ends of the portal frame 12 are respectively provided with a front baffle 3 and a rear baffle 4, the two ends of the front baffle 3 are hinged to the front ends of the two side plates of the portal frame 12 through first connecting rods 31, and the two ends of the rear baffle 4 are hinged to the rear ends of the two side plates of the portal frame 12 through second connecting rods 41. Specifically, the front baffle 3 is driven by a first motor 6 arranged on the side plate of the portal frame 12, and the first motor 6 is used to drive one of the first connecting rods 31 to rotate. The rear baffle 4 is driven by a second motor 5 arranged on the side plate of the portal frame 12, and the second motor 5 is used to drive one of the second connecting rods 41 to rotate. In use, the front baffle 3 and the rear baffle 4 are respectively driven to rotate by the first motor 6 and the second motor 5. When the bread 8 is about to enter the portal frame 12, the first motor 6 is first driven to rotate the first connecting rod 31, so that the first connecting rod 31 drives the front baffle 3 to move downward to the front end of the portal frame 12 until the front baffle 3 is located in front of the bread 8. When the bread 8 is conveyed to the lower side of the portal frame 12 and the front end of the bread 8 abuts against the front baffle 3, the second motor 5 is then driven to rotate the second connecting rod 41, so that the second connecting rod 41 drives the rear baffle 4 to move downward to the rear end of the portal frame 12 until the rear baffle 4 abuts against the rear end of the bread 8. The front baffle 3 and the rear baffle 4 are respectively intercepted at the front end and the rear end of the bread 8, which can not only make the bread 8 stationary on the conveying belt 11 for slicing, but also avoid the bread 8 from deflecting during slicing, thereby affecting the cutting quality. Then, the mounting plate 21 is driven to descend by the slicing piston cylinder 7, so that the mounting plate 21 drives the plurality of blades 22 to move downward to uniformly slice the bread 8 located between the front baffle 3 and the rear baffle 4. During the slicing process, the cutting direction of the blades 22 is perpendicular to the conveying direction of the conveying belt 11, thereby avoiding the influence of the front baffle 3 and the rear baffle 4 on the lifting of the blades 22.
[0026] As shown in the accompanying drawings, Figure 5 As shown, the hinged shafts of the first connecting rods 31 and the front baffles 3 are located directly above the centers of gravity of the front baffles 3, and the hinged shafts of the second connecting rods 41 and the rear baffles 4 are located directly above the centers of gravity of the rear baffles 4, so that the front baffles 3 and the rear baffles 4 can remain vertical during rotation due to their own gravity. Even if the front baffles 3 and the rear baffles 4 deflect in the vertical direction during rotation, when the front baffles 3 and the rear baffles 4 are respectively intercepted at the front end and the rear end of the bread 8, the hinged shafts of the first connecting rods 31 and the front baffles 3 and the hinged shafts of the second connecting rods 41 and the rear baffles 4 are located at the two ends of the bread 8, so that the front baffles 3 and the rear baffles 4 will automatically rotate around the hinged shafts when they contact the end faces of the bread 8 until the front baffles 3 and the rear baffles 4 coincide with the end faces of the bread 8, thereby keeping vertical and limiting the bread 8 between the front baffles 3 and the rear baffles 4.
[0027] In summary, in use, the bread 8 is conveyed by the conveying belt 11, when the bread 8 is about to enter the portal frame 12, the first connecting rod 31 drives the front baffle 3 to move downwards to the front end of the portal frame 12, until the front baffle 3 is located in front of the conveying of the bread 8, when the bread 8 is conveyed to the lower side of the portal frame 12, the front end of the bread 8 abuts against the front baffle 3, then the second connecting rod 41 drives the rear baffle 4 to move downwards to the rear end of the portal frame 12, until the rear baffle 4 abuts against the rear end of the bread 8, then the mounting plate 21 drives the plurality of blades 22 to move downwards, the bread 8 between the front baffle 3 and the rear baffle 4 is uniformly sliced, when the slicing is completed, the mounting plate 21, the blades 22, the front baffle 3 and the rear baffle 4 are sequentially lifted to reset, at this time, as shown in the accompanying drawings, the sliced bread 8 is conveyed forward along with the conveying belt 11. Figure 6 During the process, the front baffle 3 and the rear baffle 4 intercept the front end and the rear end of the bread 8 respectively, so that the bread 8 can be static on the conveying belt 11 for slicing, and the bread 8 can be prevented from deflecting under force during the slicing process, so as to affect the cutting quality. The plurality of blades 22 can simultaneously slice the bread 8, improve the slicing efficiency, and ensure uniform slicing.
[0028] The above is only a specific embodiment of the utility model, but the design concept of the utility model is not limited to this, any non-essential change of the utility model by using the concept should belong to the behavior of infringing the protection range of the utility model.
Claims
1. An automatic cutting device applied to the processing of fruit and vegetable flavored bread, characterized in that, The cutting device comprises: a rack, a conveyor belt for conveying bread is arranged on the rack, a portal frame is arranged on the conveyor belt, and side plates on both sides of the portal frame are connected to the two sides of the rack, respectively; a cutter frame, the cutter frame comprises a mounting plate and a plurality of blades arranged on the bottom surface of the mounting plate, the spacing between adjacent blades is the same, the mounting plate is arranged in the portal frame, the mounting plate can be lifted relative to the conveyor belt, and the blades are perpendicular to the conveyor belt; a front baffle, the front baffle is arranged at the front end of the portal frame, and the two ends of the front baffle are hinged to the front ends of the side plates on both sides of the portal frame through first connecting rods; a rear baffle, the rear baffle is arranged at the rear end of the portal frame, and the two ends of the rear baffle are hinged to the rear ends of the side plates on both sides of the portal frame through second connecting rods; wherein, the front baffle and the rear baffle are separately rotated, when the conveyor belt conveys the bread below the portal frame, the front baffle and the rear baffle intercept the front and rear ends of the bread, respectively, the cutter frame is used to drive the blades to descend, and the bread between the front baffle and the rear baffle is uniformly sliced, and the cutting direction of the blades is perpendicular to the conveying direction of the conveyor belt.
2. The automatic cutting device for processing fruit and vegetable flavored bread according to claim 1, wherein: The mounting plate is driven by a slicing piston cylinder arranged on the top plate of the portal frame.
3. The automatic cutting device for processing fruit and vegetable flavored bread according to claim 1, wherein: Both sides of the bottom surface of the mounting plate are provided with reinforcing plates, and both ends of the blades extend to the surfaces of the two reinforcing plates, respectively.
4. The automatic cutting device for processing fruit and vegetable flavored bread according to claim 1, wherein: The front baffle is driven by a first motor arranged on the side plate of the portal frame.
5. The automatic cutting device for processing fruit and vegetable flavored bread according to claim 1, wherein: The rear baffle is driven by a second motor arranged on the side plate of the portal frame.