Huanghou chrysanthemum sausage cutting machine

By designing a fully automated yellow throat chrysanthemum sausage cutting machine, which utilizes a motor-driven roller and cutting mechanism, the problem of low efficiency in manual cutting has been solved, achieving efficient and stable cutting of meat and improving production efficiency and product quality.

CN224098633UActive Publication Date: 2026-04-10FOSHAN BATING MASCH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Manual cutting of pork throat and chrysanthemum intestines is inefficient, resulting in low production efficiency, inconsistent product quality, and high labor intensity.

Method used

Design a yellow throat chrysanthemum sausage cutting machine, which uses a motor to drive the drum and the cutting mechanism to achieve fully automated operation. The machine includes components such as the drum mechanism, the cutting mechanism, the cutting mechanism and the machine casing, to ensure stable meat delivery and precise cutting.

Benefits of technology

It improved production efficiency, reduced labor costs, ensured consistency in the shape and size of cut flowers, reduced equipment failure rate, and improved the working environment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of meat processing equipment, and provides a Huanghou chrysanthemum sausage flower cutting machine which comprises a machine shell, a motor is installed in the machine shell, a roller mechanism is installed on one side of the machine shell, a flower cutting mechanism is installed on one side of the roller mechanism, and the roller mechanism is used for conveying meat needing flower cutting to the flower cutting mechanism. The pattern cutting mechanism is used for performing pattern cutting on meat, and the motor is used for providing power for the roller mechanism and the pattern cutting mechanism. According to the Huanghou chrysanthemum sausage cutting machine, the roller mechanism and the cutting mechanism are driven by the motor, full-automatic operation from feeding to cutting is achieved, production efficiency is remarkably improved, and labor cost is reduced. The roller mechanism stably conveys meat to be cut at a constant speed, and the pattern cutting mechanism carries out precise cutting. Manual intervention is not needed in the whole process, the labor cost is reduced, full-automatic operation from feeding to flower cutting is achieved, and the production efficiency is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to meat processing equipment technical field especially relates to a yellow throat chrysanthemum intestine flower cutting machine. BACKGROUND

[0002] In the meat product processing industry, the cutting of special-shaped meat products such as yellow throat and chrysanthemum intestine mainly relies on manual operation. Workers use knives for hand cutting. Although this method is flexible and can adapt to products of different shapes and sizes, its production efficiency is extremely low. Especially in a large-scale production environment, the speed of manual cutting far cannot meet market demand, resulting in a prolonged production cycle and making it difficult for enterprises to quickly respond to market changes.

[0003] The problem of low efficiency of manual cutting is particularly prominent. First, long-time manual operation can easily cause worker fatigue, which in turn affects cutting speed and quality. Second, due to individual differences, the cutting speed and accuracy of each worker fluctuate greatly, which not only affects the overall efficiency of the production line but also can lead to inconsistent product quality.

[0004] The utility model aims at solving the problem of low efficiency of manual cutting of yellow throat and chrysanthemum intestine. UTILITY MODEL CONTENTS

[0005] The utility model adopts the following technical scheme to solve the problem of low efficiency of manual cutting of yellow throat and chrysanthemum intestine.

[0006] A yellow throat chrysanthemum intestine flower cutting machine, comprising a casing, a motor installed in the casing, a roller mechanism installed on one side of the casing, a flower cutting mechanism installed on one side of the roller mechanism, the roller mechanism being used to transport meat that needs to be cut into flowers to the flower cutting mechanism, the flower cutting mechanism being used to cut flowers on the meat, and the motor being used to provide power to the roller mechanism and the flower cutting mechanism.

[0007] The yellow throat chrysanthemum intestine flower cutting machine as described above, wherein the roller mechanism comprises a roller and a gear shaft, the roller is rotationally connected to the casing, the roller is drivingly connected to the motor, the gear shaft is installed on the casing, the roller is drivingly connected to the gear shaft, the gear shaft is drivingly connected to the flower cutting mechanism, and the flower cutting mechanism is rotationally connected to the casing.

[0008] The yellow throat chrysanthemum intestine flower cutting machine as described above, wherein the flower cutting mechanism comprises a rotating shaft, the rotating shaft is installed with a cutter mechanism, the cutter mechanism comprises a cutter barrel, a plurality of cutters are installed on the sidewall of the cutter barrel, the cutter barrel is sleeved outside the rotating shaft, a first limiting barrel is arranged on one side of the cutter barrel, a second limiting barrel is arranged on the other side of the cutter barrel, and the second limiting barrel and the first limiting barrel are used to press the cutters.

[0009] The cutting knife mechanism of the yellow throat chrysanthemum intestine flower cutting machine is sleeved with a cage barrel, the cage barrel is provided with a plurality of gaps, and the cutting knife is arranged outside the cage barrel through the gaps.

[0010] The cage barrel of the yellow throat chrysanthemum intestine flower cutting machine is provided with a plurality of elastic steel wires.

[0011] The step section of the limiting barrel is provided with a connecting part, one end of the cage barrel is provided with a matching part matched with the connecting part, and the matching part is clamped with the connecting part.

[0012] One end of the cage barrel of the yellow throat chrysanthemum intestine flower cutting machine is provided with a compression ring, the compression ring is sleeved outside the rotating shaft, the compression ring is threadedly connected with the rotating shaft, and one side of the compression ring is sleeved in the cage barrel.

[0013] One side of the first limiting barrel of the yellow throat chrysanthemum intestine flower cutting machine is provided with a first clamping ring, the first clamping ring is integrally formed with the rotating shaft, the first clamping ring is used for limiting the first limiting barrel, one side of the second limiting barrel is provided with a second clamping ring, the second clamping ring is threadedly connected with the rotating shaft, and the second clamping ring is used for limiting the second limiting barrel.

[0014] One side of the shell of the yellow throat chrysanthemum intestine flower cutting machine is provided with a receiving hopper, and the other side of the shell is provided with a discharging hopper.

[0015] The yellow throat chrysanthemum intestine flower cutting machine is provided with a machine cover, and the machine cover is arranged above the flower cutting mechanism.

[0016] The embodiment of the present application has the following beneficial effects:

[0017] 1、The yellow throat chrysanthemum intestine flower cutting machine drives the roller mechanism and the flower cutting mechanism through the motor, realizes full automation from feeding to cutting, significantly improves production efficiency and reduces labor cost. The roller mechanism stably conveys the meat to be cut at a constant speed, and the flower cutting mechanism accurately cuts. The whole process does not need manual intervention, reduces labor cost, realizes full automation from feeding to cutting, and greatly improves production efficiency.

[0018] In summary, the present application solves the problem of low efficiency of manual cutting of yellow throat and chrysanthemum intestine. DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort based on these drawings.

[0020] Figure 1 is a whole structure schematic diagram of the yellow throat chrysanthemum flower stem cutting flower machine.

[0021] Figure 2 is a structure schematic diagram of the yellow throat chrysanthemum flower stem cutting flower machine after removing the machine shell.

[0022] Figure 3 is Figure 2 a structure schematic diagram from another angle.

[0023] Figure 4 is a structure schematic diagram of the cutting flower mechanism of the yellow throat chrysanthemum flower stem cutting flower machine.

[0024] Figure 5 is an exploded view of the cutting flower mechanism of the yellow throat chrysanthemum flower stem cutting flower machine.

[0025] Figure 6 is Figure 5 a structure schematic diagram from another angle.

[0026] Figure 7 is a structure schematic diagram of the rotating shaft of the yellow throat chrysanthemum flower stem cutting flower machine.

[0027] Figure 8 is a structure schematic diagram of the yellow throat chrysanthemum flower stem cutting flower machine after removing the machine cover.

[0028] shown in the figure:

[0029] 1, machine shell; 11, receiving hopper; 12, lower hopper; 13, machine cover; 2, motor; 3, roller mechanism; 31, roller; 32, gear shaft; 4, cutting flower mechanism; 41, rotating shaft; 42, cutting knife mechanism; 421, cutting knife cylinder; 43, first limiting cylinder; 431, connecting part; 44, first clasp ring; 45, second limiting cylinder; 46, second clasp ring; 47, compression ring; 48, cage cylinder body; 481, matching part. DETAILED DESCRIPTION

[0030] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] As shown in Figures 1 to 8 The present application provides a yellow throat chrysanthemum flower cutting machine, which comprises a shell 1, a motor 2 is installed in the shell 1, a roller mechanism 3 is installed on one side of the shell 1, a flower cutting mechanism 4 is installed on one side of the roller mechanism 3, the roller mechanism 3 is used for conveying meat to be cut to the flower cutting mechanism 4, the flower cutting mechanism 4 is used for cutting flowers on the meat, and the motor 2 is used for providing power for the roller mechanism 3 and the flower cutting mechanism 4. The meat to be cut, such as yellow throat or chrysanthemum sausage, is conveyed by the roller mechanism 3. The rotating direction of the roller mechanism 3 is opposite to the rotating direction of the flower cutting mechanism 4. The roller mechanism 3 is driven by the motor 2 and can stably convey the meat to the position of the flower cutting mechanism 4 at a constant speed. The flower cutting mechanism 4 is also driven by the motor 2 to accurately cut the passing meat, ensuring that the shape and size of each product are consistent. The whole process does not require manual intervention, reduces labor costs, realizes fully automatic operation from feeding to cutting, and greatly improves production efficiency.

[0032] Further, as a preferred embodiment of the present application but not limited, the roller mechanism 3 comprises a roller 31, a gear shaft 32, the roller 31 is rotatably connected with the shell 1, the roller 31 is drivingly connected with the motor 2, the gear shaft 32 is installed on the shell 1, the roller 31 is drivingly connected with the gear shaft 32, the gear shaft 32 is drivingly connected with the flower cutting mechanism 4, and the flower cutting mechanism 4 is rotatably connected with the shell 1. The roller mechanism 3 is composed of the roller 31 and the gear shaft 32. The roller 31 is installed on the shell 1 in a rotary connection mode and is directly drivingly connected with the motor 2, so as to ensure that it can stably rotate and drive the meat to be cut to advance. The gear shaft 32 is fixed on the shell 1 and is connected with the roller 31 through gear transmission, so as to realize synchronous rotation. The gear shaft 32 is also drivingly connected with the flower cutting mechanism 4, so that when the roller 31 rotates, power is transmitted to the flower cutting mechanism 4 through the gear shaft 32 to drive it to accurately cut. This design ensures that the whole process from feeding to cutting is driven by the motor, realizes high coordination and accurate control. This design simplifies the maintenance process of the equipment, reduces the failure rate, improves the reliability and service life of the equipment.

[0033] Further, as a preferred embodiment of the present application but not limited, the cutting mechanism 4 comprises a rotating shaft 41, the rotating shaft 41 is installed with a cutter mechanism 42, the cutter mechanism 42 comprises a cutter barrel 421, the side wall of the cutter barrel 421 is installed with a plurality of cutters, the cutter barrel 421 is sleeved outside the rotating shaft 41, one side of the cutter barrel 421 is provided with a first limiting barrel 43, the other side of the cutter barrel 421 is provided with a second limiting barrel 45, the second limiting barrel 45 and the first limiting barrel 43 are used for pressing the cutters. When the motor 2 drives the roller mechanism 3 to deliver the meat to be cut to the specified position, the rotating shaft 41 drives the cutter barrel 421 to rotate, so as to complete the cutting operation. Through the effective limiting of the first limiting barrel 43 and the second limiting barrel 45 to the cutter barrel 421, the stability of the cutter barrel during high-speed rotation is ensured, the cutting deviation caused by mechanical vibration is avoided, and the cutting quality of the product is improved. The plurality of cutters are uniformly distributed on the side wall of the cutter barrel 421, so that multiple cutting can be performed every rotation, and the cutting efficiency is greatly improved.

[0034] Further, as a preferred embodiment of the present application but not limited, the cutter mechanism 42 is sleeved with a cage barrel 48, the cage barrel 48 is provided with a plurality of gaps, and the cutters are arranged outside the cage barrel 48 through the gaps. An additional cage barrel 48 is arranged outside the cutter mechanism 42. The cage barrel 48 is provided with a plurality of gaps, which correspond to the positions of the cutters, so that the cutters can extend out of the cage barrel 48 through the gaps to perform cutting operation. When the motor drives the rotating shaft 41 to rotate, the cutter barrel 421 rotates, and the cutters cut the product accurately through the gaps in the cage barrel 48. This design not only improves the stability and precision of cutting, but also effectively avoids the sliding and displacement of the product during cutting.

[0035] Further, as a preferred embodiment of the present application but not limited, the cage barrel 48 is provided with a plurality of elastic steel wires. The steel wires are arranged in the gaps between the cutters, which can block the meat from being cut and rotating with the cutters during cutting. At the same time, since the steel wires have a certain elasticity, when the meat contacts the steel wires, the steel wires can slightly deform and apply a pushing force outward, pushing the meat out of the gap between the cutters, avoiding the meat from adhering to the cutters or moving with the cutters. The cutting process is smooth and continuous, the equipment downtime and cleaning time caused by material blockage are reduced, and the efficiency of cutting operation and the consistency of product quality are improved.

[0036] Further, as a preferred embodiment of the present application but not limited, one side of the first limiting cylinder 43 is provided with a stepped section, the diameter of the stepped section of the first limiting cylinder 43 is equal to the diameter of one end of the cage cylinder body 48, and the diameter of the first limiting cylinder 43 is greater than the diameter of one end of the cage cylinder body 48. The stepped section of the limiting cylinder 43 is provided with a connecting part 431, one end of the cage cylinder body 48 is provided with a matching part 481 matched with the connecting part 431, and the matching part 481 is clamped with the connecting part 431. Through the design of the stepped section and the clamping structure of the matching part 481 and the connecting part 431, the firm and stable connection between the cage cylinder body 48 and the first limiting cylinder 43 is ensured, the loosening or deviation of the cage cylinder body during high-speed rotation is effectively prevented, and the safety and reliability of the equipment operation are improved.

[0037] Optionally, in some embodiments, the matching part 481 is a clamping block, and the connecting part 431 is a clamping groove.

[0038] Further, as a preferred embodiment of the present application but not limited, one end of the cage cylinder body 48 is provided with a compression ring 47, the compression ring 47 is sleeved outside the rotating shaft 41, the compression ring 47 is threadedly connected with the rotating shaft 41, and one side of the compression ring 47 is sleeved in the cage cylinder body 47. The compression ring 47 functions to exert an outward pressure, ensures that the cage cylinder body 48 keeps stable during high-speed rotation, and prevents loosening or displacement of the cage cylinder body 48 due to centrifugal force or other external forces. At the same time, the outward force can pull one end in the cage cylinder body 47, so that the steel wire is tensioned and keeps a certain tension.

[0039] Further, as a preferred embodiment of the present application but not limited, one side of the first limiting cylinder 43 is provided with a first clamping ring 44, the first clamping ring 44 is integrally formed with the rotating shaft 41, the first clamping ring 44 is used for limiting the first limiting cylinder 43, one side of the second limiting cylinder 45 is provided with a second clamping ring 46, the second clamping ring 46 is a locking nut, the second clamping ring 46 is threadedly connected with the rotating shaft 41, and the second clamping ring 46 is used for limiting the second limiting cylinder 45. The two clamping rings are respectively sleeved outside the rotating shaft 41 and limit the respective limiting cylinders. Specifically, the first clamping ring 44 is fastened on the rotating shaft 41, so as to ensure that the first limiting cylinder 43 cannot move or loosen in the axial direction; similarly, the second clamping ring 46 also has a similar effect, preventing the second limiting cylinder 45 from being displaced during high-speed rotation. This design enables the cutter cylinder 421 and the cutters thereon to cut in a stable and accurate position, ensuring efficient operation and cutting precision of the whole flower cutting mechanism.

[0040] Further, as a preferred embodiment of the present application but not limited, the side of the casing 1 is mounted with a receiving hopper 11, and the other side of the casing 1 is mounted with a lower hopper 12. The receiving hopper 11 is used to receive the meat raw materials such as yellow throat or chrysanthemum intestines to be cut, and guide them to the roller mechanism 3 for conveying. The roller mechanism 3 stably conveys these raw materials to the flower cutting mechanism 4 for cutting processing. The products after cutting are collected and output through the lower hopper 12.

[0041] Further, as a preferred embodiment of the present application but not limited, the casing 1 is mounted with a machine cover 13, which is arranged above the flower cutting mechanism 4. The machine cover 13 effectively isolates dust and other impurities in the external environment, ensures the cleanliness of the cutting area, and avoids the situation that foreign matters are mixed to affect the product quality or damage the equipment. Secondly, the design of the machine cover 13 improves the operation safety, prevents the operator from accidentally contacting the high-speed rotating mechanical parts, and reduces the risk of injury. In addition, the machine cover also has a certain sound insulation effect, reduces the noise pollution when the equipment is running, and improves the working environment.

[0042] Embodiment one:

[0043] The utility model provides a kind of yellow throat chrysanthemum intestines flower cutting machine, including casing 1, motor 2 is installed in casing 1, the side of casing 1 is installed with roller mechanism 3, the side of roller mechanism 3 is installed with flower cutting mechanism 4, and roller mechanism 3 is used to the meat that needs to be cut into flower is conveyed to flower cutting mechanism 4, and flower cutting mechanism 4 is used to cut into flower to meat, and motor 2 is used to provide power to roller mechanism 3, flower cutting mechanism 4. The meat to be cut, such as yellow throat or chrysanthemum intestines, is conveyed by roller mechanism 3. The direction of rotation of roller mechanism 3 is opposite to the direction of rotation of flower cutting mechanism 4. Roller mechanism 3 is powered by motor 2, and can stably convey meat to the position of flower cutting mechanism 4 at constant speed. Flower cutting mechanism 4 is also driven by motor 2, and accurately cuts the passing meat, to ensure that the shape and size of each product are consistent. The whole process does not need manual intervention, reduces labor cost, realizes full-automatic operation from feeding to cutting, and greatly improves production efficiency.

[0044] The roller mechanism 3 comprises a roller 31 and a gear shaft 32. The roller 31 is rotatably connected to the shell 1 and is drivingly connected to the motor 2. The gear shaft 32 is installed on the shell 1 and is drivingly connected to the roller 31 and the flower cutting mechanism 4. The flower cutting mechanism 4 is rotatably connected to the shell 1. The roller mechanism 3 is composed of the roller 31 and the gear shaft 32. The roller 31 is installed on the shell 1 in a rotary connection manner and is directly drivingly connected to the motor 2, ensuring stable rotation and driving the meat to be cut forward. The gear shaft 32 is fixed on the shell 1 and is connected to the roller 31 through gear transmission, thereby realizing synchronous rotation. The gear shaft 32 is also drivingly connected to the flower cutting mechanism 4, so that when the roller 31 rotates, power is transmitted to the flower cutting mechanism 4 through the gear shaft 32, driving it to perform precise cutting operation. This design ensures that the whole process from feeding to flower cutting is driven by the motor, realizing high coordination and precise control. This design simplifies the maintenance process of the equipment, reduces the failure rate, and improves the reliability and service life of the equipment.

[0045] The flower cutting mechanism 4 comprises a rotating shaft 41, a cutter mechanism 42 installed on the rotating shaft 41, the cutter mechanism 42 comprising a cutter barrel 421, a plurality of cutters installed on the side wall of the cutter barrel 421, the cutter barrel 421 being sleeved outside the rotating shaft 41, a first limiting barrel 43 provided on one side of the cutter barrel 421, and a second limiting barrel 45 provided on the other side of the cutter barrel 421, the second limiting barrel 45 and the first limiting barrel 43 being used for pressing the cutters. When the motor 2 drives the roller mechanism 3 to deliver the meat to be cut to the designated position, the rotating shaft 41 drives the cutter barrel 421 to rotate, thereby completing the cutting operation. Through the effective limiting of the cutter barrel 421 by the first limiting barrel 43 and the second limiting barrel 45, the stability of the cutter barrel during high-speed rotation is ensured, cutting deviation caused by mechanical vibration is avoided, and the cutting quality of the product is improved. The plurality of cutters are evenly distributed on the side wall of the cutter barrel 421, so that multiple cutting operations can be performed each time the cutter barrel 421 rotates, greatly improving the cutting efficiency.

[0046] The cutter mechanism 42 is sleeved with a cage barrel 48, the cage barrel 48 is provided with a plurality of gaps, and the cutters are arranged outside the cage barrel 48 through the gaps. An additional cage barrel 48 is arranged outside the cutter mechanism 42. The cage barrel 48 is provided with a plurality of gaps corresponding to the positions of the cutters, so that the cutters can extend out of the cage barrel 48 through the gaps to perform cutting operation. When the motor drives the rotating shaft 41 to rotate, the cutter barrel 421 rotates with it, and the cutters accurately cut the product through the gaps in the cage barrel 48. This design not only improves the stability and precision of cutting, but also effectively avoids the sliding and displacement of the product during cutting.

[0047] The cage barrel 48 is provided with a plurality of elastic steel wires. The steel wires are arranged in the gap between the cutters, and the steel wires will play a blocking role to prevent the meat from being cut by the cutters when cutting flowers. At the same time, due to the elasticity of the steel wires, when the meat contacts the steel wires, the steel wires can slightly deform and apply a pushing force outward to push the meat out of the gap between the cutters, avoiding the meat from adhering to the cutters or moving with the cutters. This ensures the smoothness and continuity of the cutting process, reduces the downtime and cleaning time caused by material blockage, and improves the efficiency of the cutting operation and the consistency of the product quality.

[0048] The first limiting cylinder 43 is provided with a stepped section on one side, and the diameter of the stepped section of the first limiting cylinder 43 is equal to the diameter of one end of the cage barrel 48. The diameter of the first limiting cylinder 43 is greater than the diameter of one end of the cage barrel 48. The stepped section of the limiting cylinder 43 is provided with a connecting part 431, and one end of the cage barrel 48 is provided with a matching part 481 matched with the connecting part 431. The matching part 481 is clamped with the connecting part 431. Through the design of the stepped section and the clamping structure of the matching part 481 and the connecting part 431, the firm and stable connection between the cage barrel 48 and the first limiting cylinder 43 is ensured, effectively preventing the loosening or deviation of the cage barrel during high-speed rotation, and improving the safety and reliability of the equipment operation.

[0049] One end of the cage barrel 48 is provided with a compression ring 47, which is sleeved outside the rotating shaft 41. The compression ring 47 is threadedly connected with the rotating shaft 41, and one side of the compression ring 47 is sleeved in the cage barrel 47. The function of the compression ring 47 is to apply an outward pressure to ensure that the cage barrel 48 remains stable during high-speed rotation, preventing loosening or displacement of the cage barrel 48 due to centrifugal force or other external forces. At the same time, the outward force can pull one end of the cage barrel 47, making the steel wire tight and maintaining a certain tension. One side of the first limiting cylinder 43 is provided with a first clamping ring 44, which is integrally formed with the rotating shaft 41. The first clamping ring 44 is used to limit the first limiting cylinder 43. One side of the second limiting cylinder 45 is provided with a second clamping ring 46, which is a locking nut. The second clamping ring 46 is threadedly connected with the rotating shaft 41, and the second clamping ring 46 is used to limit the second limiting cylinder 45. The two clamping rings are respectively sleeved outside the rotating shaft 41 and limit the respective limiting cylinders. Specifically, the first clamping ring 44 is fastened on the rotating shaft 41 to ensure that the first limiting cylinder 43 does not move or loosen in the axial direction. Similarly, the second clamping ring 46 also plays a similar role to prevent the second limiting cylinder 45 from shifting during high-speed rotation. This design enables the cutter barrel 421 and the cutters thereon to cut in a stable and precise position, ensuring efficient operation and cutting accuracy of the entire flower cutting mechanism.

[0050] The side of the shell 1 is provided with a receiving hopper 11, and the other side of the shell 1 is provided with a lower hopper 12. The receiving hopper 11 is used for receiving meat raw materials such as yellow throat or chrysanthemum intestines to be cut and guiding the meat raw materials to the roller mechanism 3 for conveying. The roller mechanism 3 stably conveys the meat raw materials to the flower cutting mechanism 4 for cutting treatment. The products after cutting are collected and output through the lower hopper 12. The shell 1 is provided with a machine cover 13 arranged above the flower cutting mechanism 4. The machine cover 13 effectively isolates dust and other impurities in the external environment, ensures the cleanliness of the cutting area, and avoids the influence on the product quality or damage to the equipment due to the mixing of foreign matters. Secondly, the design of the machine cover 13 improves the operation safety, prevents the operator from accidentally contacting the high-speed rotating mechanical parts, and reduces the risk of injury. In addition, the machine cover also has a certain sound insulation effect, reduces the noise pollution during the operation of the equipment, and improves the working environment.

[0051] Specifically, the working principle of the present application is as follows:

[0052] The yellow throat chrysanthemum intestine flower cutting machine drives the roller mechanism 3 and the flower cutting mechanism 4 by the motor 2, realizes the full automation operation from feeding to cutting. The meat to be cut such as yellow throat or chrysanthemum intestines is conveyed by the roller mechanism 3, and the roller 31 is powered by the motor 2 to stably convey the meat to the position of the flower cutting mechanism 4 at a constant speed. The flower cutting mechanism 4 is also driven by the motor 2, and the cutter barrel 421 is rotated by the rotating shaft 41 to accurately cut the passing meat, ensuring that the shape and size of each product are consistent. The rotating directions of the roller mechanism 3 and the flower cutting mechanism 4 are opposite, which ensures the stability and accuracy of the material during cutting.

[0053] The cutter mechanism 42 is provided with a cage barrel 48, and a plurality of elastic steel wires are arranged on the cage barrel 48. The elastic steel wires are arranged in the gap between the cutters. When the meat enters the flower cutting mechanism 4 for cutting, the elastic steel wires can prevent the meat from being stuck in the cutter gap, and can push the meat outward by using the elasticity to avoid the occurrence of the sticking phenomenon, prevent the product from moving or deforming due to the cutting force, thereby improving the stability and precision of cutting.

[0054] The whole shell 1 also includes a receiving hopper 11 and a lower hopper 12 for receiving meat raw materials to be cut and collecting products after cutting, respectively, to ensure the smoothness and efficiency of the material in and out. In addition, the shell 1 is provided with a machine cover 13 covering and protecting the flower cutting mechanism 4, preventing foreign matters from entering the cutting area, ensuring the cleanliness and safety of the cutting process, and having a certain sound insulation effect, reducing noise pollution and improving the working environment. This design not only improves the safety and hygiene of the equipment, but also simplifies the maintenance process, reduces the failure rate, improves the reliability and service life of the equipment.

[0055] In summary, the present application solves the problem of low efficiency of manual cutting of yellow throat and chrysanthemum intestines.

[0056] It should be understood that the terms "first", "second" and the like in the present application are used to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0057] The above is the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications are also considered within the scope of protection of the present application.

Claims

1. A yellow throat tulip flower stem cutting machine, comprising a casing (1), a motor (2) is installed in the casing (1), characterized in that, One side of the shell (1) is provided with a roller mechanism (3), one side of the roller mechanism (3) is provided with a flower cutting mechanism (4), the roller mechanism (3) is used for conveying meat to be cut to the flower cutting mechanism (4), the flower cutting mechanism (4) is used for cutting flowers on the meat, and the motor (2) is used to power the roller mechanism (3) and the flower cutting mechanism (4).

2. The machine according to claim 1, wherein The roller mechanism (3) comprises a roller (31) and a gear shaft (32), the roller (31) is rotatably connected with the shell (1), the roller (31) is in transmission connection with the motor (2), the gear shaft (32) is installed on the shell (1), the roller (31) is in transmission connection with the gear shaft (32), the gear shaft (32) is in transmission connection with the flower cutting mechanism (4), and the flower cutting mechanism (4) is rotatably connected with the shell (1).

3. The machine according to claim 1, wherein The flower cutting mechanism (4) comprises a rotating shaft (41), the rotating shaft (41) is provided with a cutter mechanism (42), the cutter mechanism (42) comprises a cutter barrel (421), a plurality of cutters are installed on the side wall of the cutter barrel (421), the cutter barrel (421) is sleeved outside the rotating shaft (41), one side of the cutter barrel (421) is provided with a first limiting barrel (43), the other side of the cutter barrel (421) is provided with a second limiting barrel (45), and the second limiting barrel (45) and the first limiting barrel (43) are used for pressing the cutters.

4. The machine according to claim 3, wherein The cutter mechanism (42) is sleeved with a cage barrel (48), the cage barrel (48) is provided with a plurality of gaps, and the cutters are arranged outside the cage barrel (48) through the gaps.

5. The machine according to claim 4, wherein the machine is characterized by: The cage barrel (48) is provided with a plurality of elastic steel wires.

6. The machine according to claim 4, wherein The stepped section of the limiting barrel (43) is provided with a connecting portion (431), one end of the cage barrel (48) is provided with a matching portion (481) matched with the connecting portion (431), and the matching portion (481) is clamped with the connecting portion (431).

7. The machine according to claim 4, wherein One end of the cage barrel (48) is provided with a compression ring (47), the compression ring (47) is sleeved outside the rotating shaft (41), the compression ring (47) is in threaded connection with the rotating shaft (41), and one side of the compression ring (47) is sleeved in the cage barrel (48).

8. The machine according to claim 3, wherein One side of the first limiting barrel (43) is provided with a first clamping ring (44), the first clamping ring (44) is integrally formed with the rotating shaft (41), the first clamping ring (44) is used for limiting the first limiting barrel (43), one side of the second limiting barrel (45) is provided with a second clamping ring (46), the second clamping ring (46) is in threaded connection with the rotating shaft (41), and the second clamping ring (46) is used for limiting the second limiting barrel (45).

9. The machine according to claim 1, wherein One side of the shell (1) is provided with a receiving hopper (11), and the other side of the shell (1) is provided with a discharging hopper (12).

10. The machine according to claim 1, wherein The shell (1) is provided with a machine cover (13), and the machine cover (13) is arranged above the flower cutting mechanism (4).