Slitting and packaging machine for marinated eggs

By designing a cutting and feeding device for a braised egg cutting and packaging machine, the automatic halving of braised eggs is achieved by using a fine wire rotation and lifting mechanism, which solves the problem that braised egg packaging machines cannot cut automatically, and improves the hygiene and efficiency of packaging.

CN224045682UActive Publication Date: 2026-03-27湖南泽熙食品有限公司
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Patent Information

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

AI Technical Summary

Technical Problem

Existing braised egg packaging machines cannot automatically cut braised eggs in half, resulting in high labor intensity, uneven cutting, and affecting the consistency of packaging specifications.

Method used

A braised egg slitting and packaging machine was designed, which includes a slitting and feeding device. It uses a fine wire rotation and lifting mechanism to automatically cut the braised eggs in half. Combined with a vacuum heat sealing and slitting mechanism, it achieves efficient and hygienic packaging of braised eggs.

Benefits of technology

It enables automatic halving of braised eggs, reduces manual contact, improves packaging hygiene and production efficiency, and ensures consistency in packaging specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a marinated egg slitting and packaging machine which comprises a machine frame, a lower film roll material discharging frame, a lower film forming mold, a slitting and discharging device, an upper film roll material discharging frame, a vacuum heat sealing mechanism, a slitting mechanism and a waste material rolling frame are sequentially installed on the machine frame, and three filaments are connected between rotating blocks in the slitting and discharging device. And the rotating block can be lifted and rotated, so that the marinated eggs can be automatically cut and then packaged, manual intervention is eliminated, and sanitation and production efficiency are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of stretch film packaging machines field, specifically to a kind of halogen egg slitting packaging machine. BACKGROUND

[0002] At present on the market, halogen eggs are often plastic-wrapped and vacuum-packed on the whole packaging machine, which has a large specification, and children of small age can only eat part of it at a time, causing waste, and the whole halogen egg is not tasty, so it is required to cut halogen eggs in half and then package them. At present, halogen eggs are cut in half only by traditional manual methods, that is, they are cut in half with a knife, which is labor-intensive and uneven due to individual differences, greatly affecting the consistency of the packaging specification. SUMMARY

[0003] To solve the above problems, the utility model aims to provide a halogen egg slitting packaging machine that can automatically package halogen eggs cut in half, eliminating manual intervention and improving hygiene and production efficiency.

[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions:

[0005] A halogen egg slitting packaging machine includes a rack, a lower film roll feed rack, a lower film forming die, a slitting and cutting device, an upper film roll feed rack, a vacuum heat sealing mechanism, a slitting mechanism, and a waste roll-up rack are installed on the rack in sequence, characterized in that: the slitting and cutting device includes a supporting plate, a sealing plate, and two rotatable blocks that can be lifted and rotated, a first filament and a second filament are connected between the rotatable blocks, the first filament and the second filament are arranged in front of and behind each other, the supporting plate is provided with a plurality of rows and columns of material cavities, through slots are provided between adjacent material cavities of each row of material cavities, the through slots are provided with filament turning and positioning holes for filament rotation, and the bottom of the material cavity is provided with a sealing plate that can be opened or closed.

[0006] The second filament has two.

[0007] The slitting and cutting device further includes a frame and a rotating motor, the frame is provided with a lifting plate, the lifting plate is provided with a rotatable rotating rod, the number of rotating rods is more than one, one end of the rotating rod is provided with a transmission gear, a drive gear is connected to the output shaft of the rotating motor, the drive gear and the transmission gear are meshed and transmitted, the transmission gears are meshed and transmitted by synchronous gears, the other end of the rotating rod is provided with a first pulley, the rotatable block has a rotating shaft, a second pulley is further installed on the rotating shaft, the first pulley and the second pulley are transmitted by a transmission belt, the lifting plate is installed with an insert plate having an inner cavity, the rotating shaft is rotatably installed at the end of the insert plate through a bearing, and the first pulley, the second pulley, and the transmission belt are placed in the inner cavity of the insert plate.

[0008] The frame is further provided with a rotatable internal thread sleeve, a screw rod is connected to the lifting plate and is in threaded transmission connection with the internal thread sleeve, an outer wall sleeve of the internal thread sleeve is provided with a lifting belt pulley, and a lifting motor is installed on the frame, and a main belt pulley is arranged on an output shaft of the lifting motor and is in transmission connection with the lifting belt pulley through a lifting belt.

[0009] The beneficial effects of the present application are: 1. The fine wire cutting contact surface is small, which is beneficial to cutting the salted eggs in half and is not easy to stick material.

[0010] 2. Efficient material removal: 100% material removal is achieved through two rotation actions of the fine wire, and the single cycle time is short and the action structure is simple.

[0011] 3. Health protection: reduces manual contact pollution during equipment operation.

[0012] The present application will be further described below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 is a perspective view of the specific embodiment of the present application;

[0014] Figure 2 is a perspective view of the cutting and material removal device 4 in the specific embodiment of the present application;

[0015] Figure 3 is a sectional view of the cutting and material removal device 4 in the specific embodiment of the present application;

[0016] Figure 4 is a partially enlarged view of the cutting and material removal device 4 in the specific embodiment of the present application.

[0017] In the figure, 1 is a rack, 2 is a lower film roll material feeding rack, 3 is a lower film forming mold, 4 is a cutting and material removal device, 5 is an upper film roll material feeding rack, 6 is a vacuum heat sealing mechanism, 7 is a cutting mechanism, 8 is a waste material winding rack, 41 is a hopper, 42 is a supporting plate, 43 is a sealing plate, 44 is a rotating block, 10 is a fine wire, 10a is a first fine wire, 10b is a second fine wire, 421 is a material cavity, 422 is a through slot, 423 is a fine wire turnover and positioning hole, 108 is an outlet, 420 is a sealing air cylinder, 45 is a frame, 30 is a rotating motor, 46 is a lifting plate, 47 is a rotating rod, 20 is a transmission gear, 40 is a synchronous gear, 300 is a first belt pulley, 60 is a second belt pulley, 70 is an insertion plate, 200 is a positioning slot, 80 is a threaded sleeve, 90 is a screw rod, and 100 is a lifting motor. DETAILED DESCRIPTION

[0018] The present application will be further described below in combination with the drawings and specific embodiments.

[0019] As Figure 1 — Figure 4 The embodiment discloses a marinated egg slitting and packaging machine, which comprises a rack 1, a lower film roll feeding rack 2, a lower film forming die 3, a slitting and blanking device 4, an upper film roll feeding rack 5, a vacuum heat sealing mechanism 6, a slitting mechanism 7 and a waste roll-up rack 8 are sequentially arranged on the rack 1, the slitting and blanking device 4 comprises a hopper 41, a supporting plate 42, a sealing plate 43 and two rotatable blocks 44 which can be lifted, three filaments 10 are connected between the rotatable blocks 44, the diameter of the filaments is 0.12 mm, the three filaments are arranged in front and back, the lower filament 10 is a first filament 10a and is used for cutting marinated eggs, the upper two filaments 10 are second filaments 10b and are used for supporting the marinated eggs after slitting, the supporting plate 42 is provided with material cavities 421 corresponding to the filaments 10, the middle line positions of the material cavities 421 are provided with through grooves 422, the through grooves 422 are provided with filament overturning and spacing holes 423 for the rotation of the filaments 10, the sealing plate 43 is provided with outlets 108 corresponding to the lower openings of the material cavities 421, the sealing plate 43 is slid on the lower end face of the supporting plate 42, the sealing plate 43 is driven by a sealing cylinder 420 and is used for opening or closing the lower openings of the material cavities 421, the hopper 41 is arranged above the supporting plate 42, marinated eggs are poured into the hopper 41, the bottom surface of the hopper 41 is provided with holes corresponding to the material cavities, workers can manually scrape the marinated eggs into the material cavities 421, and then the material cavities 421 can be moved to positions below the filaments, so that the marinated eggs are conveniently slitted.

[0020] The supporting plate 42 is driven by a supporting plate cylinder, so that the supporting plate is moved to a position below the filaments after loading.

[0021] The slitting and blanking device 4 further comprises a frame 45 and a rotating motor 30, the frame 45 is provided with a lifting plate 46, the rotating motor 30 is installed on the lifting plate 46, the lifting plate 46 is provided with rotatable rotating rods 47, the number of the rotating rods 47 is more than one and corresponds to the first filaments 10a in a one-to-one manner, one end of each rotating rod 47 is provided with a transmission gear 20, a driving gear is connected to an output shaft of the rotating motor 30 and is in meshing transmission with the transmission gears 20, the transmission gears 20 are in meshing transmission through a synchronous gear 40, the other end of each rotating rod 47 is provided with a first belt pulley 300, the rotatable blocks 44 have rotating shafts, second belt pulleys 60 are further installed on the rotating shafts, the first belt pulley 300 and the second belt pulley 60 are in transmission through a transmission belt 50, so that the rotating motor 30 can drive the two rotatable blocks 44 to rotate synchronously and further drive the filaments 10 to rotate.

[0022] The lifting plate 46 is provided with a plug plate 70 having an inner cavity, a rotating shaft is rotatably arranged at the end of the plug plate 70, the first belt pulley 300, the second belt pulley 60 and the transmission belt 50 are arranged in the inner cavity of the plug plate 70, and the lower end of the plug plate 70 is arranged in the corresponding gap 200 of the supporting plate 42, so that the filament 10 can enter the gap 422 and reach the filament rotating gap 423, and the filament 10 can be cut into two halves.

[0023] The frame 45 is further provided with a rotatable inner threaded sleeve 80, the lifting plate 46 is connected with a screw rod 90, the screw rod 90 is in threaded transmission connection with the inner threaded sleeve 80, the outer wall of the inner threaded sleeve 80 is provided with a lifting belt pulley, the frame 1 is provided with a lifting motor 100, the output shaft of the lifting motor 100 is provided with a main belt pulley, and the main belt pulley is in transmission connection with the lifting belt pulley through a lifting belt. Through the structure, the lifting motor 100 can control the lifting of the lifting plate 46 more reliably and stably, the lifting of the lifting plate 46 drives the lifting of the filament 10,

[0024] The cutting mechanism 7 includes a bottom die, a cutter die and a cutting cylinder, the piston rod of the cutting cylinder is connected with the cutter die, the cutter die and the bottom die are arranged in a corresponding manner, and the cutter die is provided with an annular cutter edge with an egg-shaped contour, so that independent egg blocks can be cut, and the waste edges of the upper and lower dies are collected by the waste material winding frame 8.

[0025] Working principle flow:

[0026] 1. Lower film forming: The lower film material is output through the lower film material feeding frame 2 and is hot formed into an egg-shaped cavity through the lower film forming die 3, and the egg-shaped cavity is transported to the lower side of the filament 10 for waiting;

[0027] 2. After the material cavity 421 is placed with the marinated egg, it is moved to the lower side of the filament 10 and located above the egg-shaped cavity.

[0028] 3. Cutting and feeding: The filament 10 is lowered into the material cavity 421 to cut the marinated egg in half, then the filament 10 is slightly moved to the filament rotating gap 423, the filament is rotated by 90° to make the marinated egg rotate once, the lower opening of the material cavity is opened by the sealing plate 43, the lower half of the marinated egg falls into the egg-shaped cavity below, the lower film moves by one version distance, the filament 10 is rotated by 180° to make the upper half of the marinated egg rotate from the upper side to the lower side, the lower opening of the material cavity is opened again by the sealing plate 43, and the upper half of the marinated egg falls into the egg-shaped cavity below;

[0029] 4. Vacuum packaging: The upper film is output through the upper film material feeding frame 5 and enters the vacuum heat sealing mechanism 6, so that the upper film covers the lower film, and after vacuum heat sealing, the product is cut by the egg-shaped cutter die in the cutting mechanism 7, and the waste edges of the upper and lower films are wound by the waste material winding frame 8.

Claims

1. A halogen egg slitting and packaging machine, comprising a frame, a lower film roll feeding rack, a lower film forming die, a lower film slitting device, an upper film roll feeding rack, a vacuum heat sealing mechanism, a slitting mechanism and a waste roll collecting rack are sequentially installed on the frame, characterized in that: The cutting and blanking device comprises a supporting plate, a sealing plate and two rotatable blocks, the first and second filaments are connected between the rotatable blocks, the first and second filaments are arranged in front and back alignment, the supporting plate is provided with a plurality of rows and columns of material cavities, through slots are provided between adjacent material cavities of each row of material cavities, the filaments are rotated in the filament overturning and positioning holes in the through slots, the bottom of the material cavity is provided with a movable sealing plate which can be opened or closed.

2. The halogen egg splitting packaging machine according to claim 1, characterized in that: The second filament has two.

3. The halogen egg slicing packaging machine of claim 1, wherein: The cutting and blanking device further comprises a frame and a rotating motor, the frame is provided with a lifting plate, the lifting plate is provided with rotatable rotating rods, the number of the rotating rods is more than one, one end of the rotating rod is provided with a transmission gear, a driving gear is connected to the output shaft of the rotating motor, the driving gear is in meshing transmission with the transmission gear, the transmission gears are in meshing transmission through synchronous gears, the other end of the rotating rod is provided with a first belt pulley, the rotatable block has a rotating shaft, a second belt pulley is further installed on the rotating shaft, the first belt pulley and the second belt pulley are in transmission through a transmission belt, the lifting plate is provided with an insertion plate with an inner cavity, the rotating shaft is rotatably installed at the end of the insertion plate through a bearing, the first belt pulley, the second belt pulley and the transmission belt are placed in the inner cavity of the insertion plate.

4. The halogen egg splitting packaging machine according to claim 3, characterized in that: The frame is further provided with a rotatable internal threaded sleeve, a screw rod is connected to the lifting plate, the screw rod is in threaded transmission connection with the internal threaded sleeve, the outer wall of the internal threaded sleeve is provided with a lifting belt pulley, a lifting motor is installed on the frame, a main belt pulley is arranged on the output shaft of the lifting motor, the main belt pulley is in transmission connection with the lifting belt pulley through a lifting belt.