CN220211692U - Material cutting equipment - Google Patents

Material cutting equipment Download PDF

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Publication number
CN220211692U
CN220211692U CN202321424362.4U CN202321424362U CN220211692U CN 220211692 U CN220211692 U CN 220211692U CN 202321424362 U CN202321424362 U CN 202321424362U CN 220211692 U CN220211692 U CN 220211692U
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CN
China
Prior art keywords
cutting apparatus
material cutting
counting
groove
storage
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Active
Application number
CN202321424362.4U
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Chinese (zh)
Inventor
丁其
杨继祖
马会
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Sichuan Xinsen Food Ltd
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Sichuan Xinsen Food Ltd
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Priority to CN202321424362.4U priority Critical patent/CN220211692U/en
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Abstract

The utility model relates to a material cutting device, comprising a material placing groove, a material feeding groove and a material feeding groove, wherein the material placing groove is used for limiting and receiving materials; a second power component; the shape of the pushing block is matched with the shape of the inside of the storage groove, and the pushing block is driven to linearly move along the extending direction of the storage groove by the second power component; a first power component; and the blade is arranged at one end of the storage groove and is driven to rotate by the first power component. One embodiment of the present utility model solves at least one of the problems described in the background. One purpose of an embodiment of the utility model is to be able to control the thickness of the cut material while automatically pushing the material to the cutting station.

Description

Material cutting equipment
Technical Field
The present utility model relates to the field of feedstock cutting, and more particularly to a material (feedstock) cutting apparatus.
Background
Beef contains rich protein and amino acid, has a composition closer to human body needs than pork, can improve disease resistance of organisms, and is particularly suitable for people who develop and recuperate after operation and illness in the aspects of supplementing blood loss, repairing tissues and the like. The traditional meat cutting mode is to cut by manually holding a cutter, so that the workload is large, the cutting efficiency is low, and when beef is processed in batches, a large number of people are needed to participate in the beef cutting process, and the beef processing cost is increased; in the prior art, although there is a machine for cutting beef, for example, a frozen meat cutting machine with the application number of CN201610613199.4, the frozen meat cutting machine comprises an upright post main body, a saw blade, an upper box body and a lower box body, wherein the upright post main body is arranged on the upper box body, the upper box body is arranged on the lower box body, and a workbench is arranged between the upper box body and the upright post main body; a tray for collecting meat scraps is arranged between the upper box body and the lower box body; the guide ruler is arranged on the upright post main body, one end of the saw blade penetrates through the guide ruler, and the other end of the saw blade penetrates through the workbench to enter the upper box body. This prior art degree of automation is low, needs the workman to cutting station propelling movement beef, not only restricts the efficiency of beef cutting like this, and the risk is high simultaneously, has great potential safety hazard. Meanwhile, beef is manually pushed to the cutting station, so that the thickness of the cut beef is inconvenient to control.
Disclosure of Invention
It is an object of one embodiment of the present utility model to provide a material cutting apparatus that is capable of controlling the thickness of a cut material while automatically pushing the material to a cutting station.
In one aspect, a material cutting apparatus is described that includes a chute defining a receptacle for receiving material; a second power component; the shape of the pushing block is matched with the shape of the inside of the storage groove, and the pushing block is driven to linearly move along the extending direction of the storage groove by the second power component; a first power component; and the blade is arranged at one end of the storage groove and is driven to rotate by the first power component.
Preferably, the cutting device further comprises an extension groove arranged at one end of the storage groove, and a gap for passing through when the blade rotates is arranged between the extension groove and the storage groove.
Preferably, the push block is provided with an extension push plate which extends along the direction that the extension groove is far away from the storage groove side near the extension groove side.
Preferably, the cutting device further comprises a counting device for counting the cutting times.
Preferably, the counting device comprises a cam capable of rotating along with the blades and a counting assembly for counting, and protrusions which can touch the counting assembly are arranged on the periphery of the cam corresponding to the number and the positions of the blades.
Preferably, the counting assembly comprises a movable roller capable of touching the protrusions and a sensing device for sensing and calculating the number of times that the movable roller touches the protrusions, and the sensing end of the movable roller is pivotally connected with the sensing end of the sensing device through an elastic piece.
Preferably, the second power unit selecting motor has a gear mounted on a rotation shaft thereof, and a rack engaged with the gear is connected to one side of the push block.
Preferably, the cutting apparatus further comprises a guide groove provided at one end of the storage groove, and a lower portion for receiving the rack is defined in the guide groove.
Preferably, the first power component selects a motor, and the motor drives the blade and the cam to rotate through the cooperation of the belt wheel transmission mechanism and the gear transmission mechanism.
Preferably, the upper surface of the storage tank is provided with a storage tank for containing materials in a limited amount.
The utility model has the following advantages:
the utility model discloses a first power component drives the blade rotation, and first power component drives the ejector pad motion, promotes to place the material of putting the thing inslot to putting thing groove one end motion, makes its at uniform velocity stretch out constantly put the thing groove, and rotatory blade will stretch out the material of putting the thing groove and cut down, has improved cutting efficiency, reduces the danger, simultaneously through controlling the rotational speed of blade, the travel speed of ejector pad, but the cutting thickness of adjusting equipment to the material.
Through setting up the extension groove at putting thing groove discharge end, can provide sufficient support to the material in the cutting process, avoid under the effort of blade, the material moves along with the blade to make whole material roll-off put thing groove.
Through set up the extension push pedal in ejector pad one side to make after the material is accomplished by complete cutting, can thoroughly push out the extension groove with the material, avoid the material to leave in the extension inslot.
Through setting up counting assembly, counting assembly calculates the cutting number of times of blade, and then obtains the quantity that the material was cut, and the staff of being convenient for knows relevant data, simultaneously through obtaining the quantity that the material was cut, the equipment of being convenient for carries out batch transport with the cut material of preset quantity automatically.
Drawings
Fig. 1 illustrates a schematic structural view of a cutting apparatus;
FIG. 2 illustrates a front view of the cutting apparatus of FIG. 1;
FIG. 3 illustrates a cross-sectional view of the cutting apparatus of FIG. 2 taken along line A-A;
FIG. 4 illustrates a cross-sectional view of the cutting apparatus shown in FIG. 3 taken along line B-B;
FIG. 5 illustrates a partial structure enlargement I in the cutting apparatus of FIG. 4;
fig. 6 illustrates a schematic structure of a counting assembly in the cutting apparatus of fig. 1.
Detailed Description
Reference will now be made in detail to the exemplary embodiments illustrated in the drawings. It should be understood that the following description is not intended to limit the embodiments to one preferred embodiment. On the contrary, it is intended to cover alternatives, modifications and equivalents as may be included within the spirit and scope of the embodiments as defined by the appended claims.
Figures 1-4 illustrate a material cutting apparatus that may be improved by incorporating embodiments of the present utility model. As with the other figures included, this figure is shown for illustrative purposes and is not limiting of the possible embodiments of the utility model or the claims.
The drawing comprises a storage tank 14, a second power part 4, a push block 8, a first power part 3 and a blade 8, wherein the upper surface of the storage tank 14 is provided with a storage tank 2 for containing materials in a limited amount, the shape of the push block 8 is matched with the shape of the storage tank 14 in the tank, the second power part 4 is a motor, a gear 11 is arranged on the rotating shaft of the motor, one side of the push block 8 is connected with a rack 7 meshed with the gear 11, one end of the storage tank 14 is provided with a guide groove 10, the lower part of the rack 7 is arranged in the guide groove 10, the blade 8 is arranged at one end of the storage tank 14, the first power part 3 is a motor, and the motor is connected with the blade 8 through a belt wheel transmission mechanism 12 and a gear transmission mechanism 13.
The blade is driven to rotate through the first power component, the first power component 4 drives the pushing block to move, the material placed in the material placing groove moves towards one end of the material placing groove, the material continuously stretches out of the material placing groove at a constant speed, the rotating blade cuts the material stretching out of the material placing groove, the cutting efficiency is improved, the dangerousness is reduced, and meanwhile, the cutting thickness of the material by the adjustable equipment is controlled through the rotating speed of the blade and the moving speed of the pushing block. After the material is cut, the second power component drives the pushing block to reset, and the material in the storage tank 2 slides into the storage tank under the action of gravity, so that automatic feeding of the material is realized. The cutting device may further comprise a frame 1, the storage tank, the first power component, the blade, the second power component, the gear transmission mechanism and the belt pulley transmission mechanism may be fixedly installed on the frame 1, the outer side of the gear transmission mechanism may further be provided with a protective cover transmission mechanism, a housing 5 for preventing the transmission mechanism from entering sundries, and the outer side of the blade may be provided with a blade cover 6 for improving safety.
The first power part 4 can be a cylinder, an electric cylinder, a hydraulic cylinder or other devices capable of driving the pushing block to move besides the motor.
As shown in fig. 3, an extension groove 18 is provided at one end of the storage groove 14, and a gap through which the blade 8 can pass when rotating is provided between the extension groove 18 and the storage groove 14. The extension groove can provide sufficient support for the material in the cutting process, so that the material moves along with the blade under the action force of the blade, and the whole material slides out of the storage groove.
The push block 8 is provided with an extension push plate 9 extending along the direction of the extension groove 18 away from the storage groove 14 on the side close to the extension groove 18. After the material is completely cut, the material can be completely ejected out of the extension groove, and the material is prevented from being left in the extension groove.
As shown in fig. 4 to 6, the cutting device further includes a counting device for counting the cutting times.
The counting device comprises a cam 15 capable of rotating along with the blades 8 and a counting assembly for counting, wherein the periphery of the cam 15 is provided with protrusions which can touch the counting assembly corresponding to the number and the positions of the blades.
The counting assembly comprises a movable roller 16 which can touch the bulges and a sensing device 17 for sensing and counting the number of times that the movable roller 16 touches the bulges, wherein the movable roller 16 is pivotally connected with the sensing end of the sensing device 17 through an elastic piece.
When the protruding touch screen reaches the movable roller 16, the movable roller can move to one side and reset later, the sensing device senses the counting after the movable roller 16 moves, and the counting device calculates the cutting times of the blade, so that the number of cut materials is obtained, workers can know relevant data conveniently, meanwhile, the equipment can conveniently and automatically carry out batch conveying on the cut materials with preset number by obtaining the number of cut materials.
The counting device can also adopt an infrared counting mode.
The foregoing description of embodiments of the utility model has been presented for the purposes of illustration and description. It is not intended to be exhaustive and does not limit the utility model to the precise form described; numerous modifications and variations are possible in light of the above teachings. The embodiments were chosen and described in order to best explain the principles of the utility model and its practical application, to thereby enable others skilled in the art to best utilize the utility model in various embodiments and with various modifications as are suited to the particular use contemplated. It is therefore to be understood that the utility model is intended to cover all modifications and equivalents that fall within the scope of the appended claims.

Claims (10)

1. A material cutting apparatus, comprising
A storage tank defining a receiving material;
a second power component;
the shape of the pushing block is matched with the shape of the inside of the storage groove, and the pushing block is driven to linearly move along the extending direction of the storage groove by the second power component;
a first power component; and
and the blade is arranged at one end of the storage groove and is driven to rotate by the first power component.
2. A material cutting apparatus according to claim 1, further comprising an extension slot provided at one end of said storage slot, said extension slot and storage slot having a gap therebetween through which said blade passes when rotated.
3. A material cutting apparatus according to claim 2, wherein the push block is provided with an extension push plate extending in a direction of the extension groove away from the storage groove side, near the extension groove side.
4. A material cutting apparatus according to claim 1, wherein the cutting apparatus further comprises counting means for counting the number of cuts.
5. The material cutting apparatus according to claim 4, wherein the counting device comprises a cam rotatable with the blades and a counting assembly for counting, and protrusions touching the counting assembly are arranged on the periphery of the cam corresponding to the number and positions of the blades.
6. The material cutting apparatus according to claim 5, wherein the counting assembly comprises a movable roller capable of touching the protrusion and a sensing device for sensing and counting the number of times the movable roller touches the protrusion, and the movable roller is pivotally connected to a sensing end of the sensing device through an elastic member.
7. A material cutting apparatus according to claim 1, wherein the second power unit is a motor, a gear is mounted on a shaft of the motor, and a rack engaged with the gear is connected to one side of the push block.
8. A material cutting apparatus as claimed in claim 7, further comprising a guide slot provided at one end of said storage slot, said guide slot defining a lower portion therein for receiving said rack.
9. A material cutting apparatus as claimed in claim 1, wherein the first power means is a motor which is arranged to rotate the blade and cam by co-operation of a pulley transmission with a gear transmission.
10. A material cutting apparatus according to claim 1, wherein the upper surface of the storage tank is provided with a limited amount of storage tanks for material.
CN202321424362.4U 2023-06-06 2023-06-06 Material cutting equipment Active CN220211692U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321424362.4U CN220211692U (en) 2023-06-06 2023-06-06 Material cutting equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321424362.4U CN220211692U (en) 2023-06-06 2023-06-06 Material cutting equipment

Publications (1)

Publication Number Publication Date
CN220211692U true CN220211692U (en) 2023-12-22

Family

ID=89174476

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321424362.4U Active CN220211692U (en) 2023-06-06 2023-06-06 Material cutting equipment

Country Status (1)

Country Link
CN (1) CN220211692U (en)

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