CN211494792U - Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks - Google Patents

Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks Download PDF

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Publication number
CN211494792U
CN211494792U CN201922350331.9U CN201922350331U CN211494792U CN 211494792 U CN211494792 U CN 211494792U CN 201922350331 U CN201922350331 U CN 201922350331U CN 211494792 U CN211494792 U CN 211494792U
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sliding
clamping jaw
guide rails
cylinder
cutting device
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CN201922350331.9U
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Chinese (zh)
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冯晓鹏
王辉
华淑杰
赵正龙
谭敢闯
步向辉
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Zhengzhou Dahua Mechanical & Electronic Technology Co ltd
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Zhengzhou Dahua Mechanical & Electronic Technology Co ltd
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Abstract

The automatic bag cutting device for the vacuum sealing bags on the surfaces of the cube blocks comprises a base plate, wherein two parallel guide rails are arranged on the base plate, sliding assemblies sliding on the two guide rails are mounted on the two parallel guide rails, and cutters are arranged on the sliding assemblies. Two sliding assemblies which slide on the two guide rails are arranged on the two parallel guide rails, and a cutter is arranged on each sliding assembly. The utility model discloses can follow 4 directions and cut the sack, form a window, make things convenient for the manual work to get the cube piece.

Description

Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks
Technical Field
The utility model relates to a sealing bag cuts the bagging apparatus, especially relates to an automatic bagging apparatus of cutting of cube block surface vacuum sealing bag.
Background
In industrial production, cube blocks are subjected to vacuum sealed packaging and then subjected to secondary treatment in an emulsion or oil, and after the secondary treatment, the vacuum packaging bags on the surfaces of the cube blocks need to be removed, and the cube blocks are taken out of the bags. Because the cube blocks have multiple specifications and different sizes, bags on the surfaces of the cube blocks are irregular in shape after vacuum packaging, a large amount of labor is consumed, and the traditional scissors or blades are used, so that the efficiency is low, and the production requirements cannot be met.
SUMMERY OF THE UTILITY MODEL
The technical problem solved by the utility model is that; in the vacuum packaging bag on the surface of the cube block, under the irregular condition, the vacuum packaging bag on the surface of the cube block is cut from 4 directions by using equipment instead of manpower, after the cutting is finished, a window can be opened in the vacuum packaging bag, and the cube block in the vacuum packaging bag can be taken out manually, so that the production efficiency is improved, and the manual labor is reduced.
The utility model adopts the following technical scheme:
the automatic bag cutting device for the vacuum sealing bags on the surfaces of the cube blocks comprises a base plate, wherein two parallel guide rails are arranged on the base plate, sliding assemblies sliding on the two guide rails are mounted on the two parallel guide rails, and cutters are arranged on the sliding assemblies.
Two sliding assemblies which slide on the two guide rails are arranged on the two parallel guide rails, and a cutter is arranged on each sliding assembly.
The cutters are all provided with heating holes, and heating rods are inserted into the heating holes.
And each sliding assembly is connected with a power device which drives the sliding assembly to slide on the parallel sliding rails.
The power device comprises an air cylinder fixed on the bottom plate, and the telescopic end of the air cylinder is connected with the sliding assembly.
Each sliding assembly comprises two sliding blocks which are respectively arranged on the two guide rails, the two sliding blocks are connected with a sliding block connecting plate, and the cutter is arranged on the sliding connecting plate.
Two guide rail installation parts are installed on the bottom plate, and the guide rails are installed on the guide rail installation parts.
And a rotary clamping assembly for clamping the sealing bag is further arranged on the bottom plate between the two parallel guide rails and the two sliding assemblies.
The rotary clamping assembly comprises a rotating device, a left clamping jaw and a right clamping jaw which are used for clamping the sealing bag are arranged on the rotating device, and the left clamping jaw and the right clamping jaw are connected with a power device which drives the left clamping jaw and the right clamping jaw to clamp the sealing bag.
The power device comprises a clamping jaw cylinder, and the left clamping jaw and the right clamping jaw are connected to the clamping jaw cylinder; the rotating device comprises a rotating cylinder, a clamping jaw cylinder is installed on a rotating cylinder installation plate, and the rotating cylinder installation plate is installed on the rotating cylinder.
The utility model has the advantages that:
1. the device can cut the bag from 4 directions to form a window, so that the cube block can be conveniently taken manually.
2. The tool point of the cutter is sharp and wear-resistant, the heating rod provides heat, the hot cutter is formed, the temperature of the hot cutter is adjustable, and the bag can be cut smoothly under the condition that the bag on the surface of the vacuum-packaged block is irregular.
3. The pneumatic elements are used in all the actions, the speed is high, the efficiency is high, and the manual labor time is saved.
Drawings
Fig. 1 is a perspective view of the present invention.
Fig. 2 is a top view of the present invention.
Figure 3 is a block diagram of a rotary clamping assembly.
The device comprises a base plate, a left air cylinder, a base plate, a first guide rail mounting piece, a first sliding block, a second sliding block, a first sliding block connecting plate, a first cutting knife, a rotary clamping component, a first guide rail, a second sliding block connecting plate, a second cutting knife, a first air cylinder connecting piece, a first air cylinder connecting seat, a first air cylinder, a second cutting knife, a first cutting knife, a rotary clamping component, a first guide rail, a second sliding block connecting plate, a second sliding block, a second guide rail mounting piece, a third sliding block, a second sliding block connecting piece, a third sliding block connecting plate, a third sliding block, a fourth sliding block connecting plate, a third sliding block, a second air cylinder mounting seat, a second sliding block, a clamping jaw air cylinder, a clamping.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present application. It will be understood that when the terms "comprises" and/or "comprising" are used in this specification, they specify the presence of stated features, elements, components, and/or combinations thereof.
The utility model provides an automatic bagging apparatus that cuts of cube block surface vacuum seal bag, including the bottom plate, be provided with the guide rail of two parallels on the bottom plate, install gliding sliding assembly on two guide rails on the guide rail of two parallels, be provided with the cutter on the sliding assembly. When the sealing bag is positioned between the two parallel guide rails, the sliding assembly slides on the guide rails to reach the sealing bag, and the sealing bag is cut by the cutter.
In order to improve the efficiency, in some embodiments, two sets of sliding assemblies sliding on the two guide rails are mounted on the two parallel guide rails, each sliding assembly is provided with a cutter, when the sealed bag is located between the two parallel guide rails and the two sliding assemblies, the sliding assembly slides on the guide rails to reach the sealed bag, and the two ends of the sealed bag are simultaneously cut by the two cutters.
In order to realize the four-side cutting of the sealed bag, a rotary clamping assembly for clamping the sealed bag is further arranged on the bottom plate between the two parallel guide rails and the two sliding assemblies. The rotary clamping assembly comprises a rotating device, a left clamping jaw and a right clamping jaw which are used for clamping the sealing bag are arranged on the rotating device, and the left clamping jaw and the right clamping jaw are connected with a power device which drives the left clamping jaw and the right clamping jaw to clamp the sealing bag.
The power device comprises a clamping jaw cylinder, and a left clamping jaw and a right clamping jaw are connected to the clamping jaw cylinder; the rotating device comprises a rotating cylinder, a clamping jaw cylinder is installed on a clamping jaw cylinder plate, the clamping jaw cylinder plate is installed on a rotating cylinder installation plate, and the rotating cylinder installation plate is installed on the rotating cylinder. After the cutter cuts the bag to the both sides of sealing bag, revolving cylinder drives the sealing bag and rotates 90 degrees, makes the cutter cut the bag to the other both sides of sealing bag.
In order to ensure the effect of the cutters, heating holes are formed in each cutter, heating rods are inserted into the heating holes, and the sealing bags are cut by the heating rods after the cutters are heated.
It should be noted that, a power device for driving the sliding assemblies to slide on the parallel sliding rails is connected to each of the two sliding assemblies. The power device includes but is not limited to a cylinder or an oil cylinder, preferably a cylinder, which is fixed on the bottom plate 2 through a cylinder device mounting seat. The telescopic end of the power device is connected with the sliding component to slide on the sliding rail.
Wherein, every slip subassembly all includes two sliders of installing respectively on two guide rails, all connects a slider connecting plate on two sliders, connects the power device connecting piece between two slider connecting plates, and the cutter is installed on the power device connecting piece, and the flexible end of power device is connected on the power device connecting piece.
And, in further technical scheme, install two guide rail installed parts on the bottom plate, the guide rail is installed on the guide rail installed part.
As shown in fig. 1 to 3, which are schematic views of an embodiment of the present invention, in this embodiment:
as shown in fig. 1-2, a bottom plate 2 is fixed on a workbench, a left cylinder 1 and a right cylinder 14 are fixed at two ends of the bottom plate 2, wherein the left cylinder 1 is fixed on a second cylinder mounting seat 24 through a threaded connection, and the right cylinder 14 is fixed on a first cylinder mounting seat 13 through a threaded connection. The first cylinder mounting seat 13 and the second cylinder mounting seat 24 are fixed on the bottom plate 2 through threaded connection. A first guide rail mounting part 3 and a second guide rail mounting part 15 are further fixedly connected to the bottom plate 2 in a threaded connection mode, a first guide rail 8 is fixedly connected to the first guide rail mounting part 3, and a first sliding block 4 and a second sliding block 9 are connected to the first guide rail 8; a second guide rail 19 is fixedly connected to the second guide rail mounting member 15, and a third slider 16 and a fourth slider 21 are connected to the second guide rail 19. Wherein, fixedly connected with first slider mounting panel 5 on the first slider 4, fixedly connected with second slider mounting panel 10 on the second slider 9, fixedly connected with third slider mounting panel 17 on the third slider 16, fixedly connected with fourth slider mounting panel 22 on the fourth slider 21. A second cylinder connecting piece 23 is fixedly connected between the first slider mounting plate 5 and the fourth slider mounting plate 22, and a piston rod of the left cylinder 1 is connected to the second cylinder connecting piece 23; a first cylinder connecting piece 12 is fixedly connected between the second slider mounting plate 10 and the fourth slider mounting plate 22, a piston rod first cylinder connecting piece 12 of the right cylinder 14 is fixedly connected to the first cylinder connecting piece 12, a second cutter 11 is fixedly connected to the first cylinder connecting piece 12, and a first heating rod 18 is inserted into a heating hole of the second cutter 11; the second cylinder connecting piece 23 is fixedly connected with a first cutter 6, and a second heating rod 20 is inserted into a heating hole of the first cutter 6.
As shown in fig. 3, the rotary clamping assembly 7 includes a rotary cylinder 76, the rotary cylinder 76 is fixed on the bottom plate 2 by a screw thread, the rotary cylinder 76 includes a rotary cylinder mounting plate 75, the rotary cylinder mounting plate 75 is fixedly connected with a clamping cylinder plate 74, a clamping cylinder 73 is arranged on the clamping cylinder plate 74, and a left clamping jaw 71 and a right clamping jaw 72 for clamping the sealed bag are connected to the clamping cylinder 73.
The air cylinders are connected with an air source through air paths, the air cylinders are controlled through respective air cylinder controllers, the respective air cylinder controllers are connected with controllers, and the controllers comprise but are not limited to existing PLC or CPU controllers or existing industrial personal computers.
The heating rods are connected with a power switch through a circuit, and the controller is connected with the power switch.
The utility model discloses the during operation:
the vacuum packed cube sealed bag is manually placed between the left jaw 71 and the right jaw 72 of the rotary clamping assembly, and the air cylinder controller of the clamping air cylinder controls the action of the jaw air cylinder 73 to clamp the sealed bag between the left jaw 71 and the right jaw 72. The clamping jaw air cylinder 73 is used for clamping the cube block subjected to vacuum packaging in a centering mode, after clamping, the left air cylinder 1 and the right air cylinder 14 move to a packaging bag under the control of respective air cylinder controllers, a heating rod in the cutter is used for heating, heat is transferred to the cutter, the cutter becomes a high-temperature sharp hot cutter, the sealing bag is cut in 2 opposite directions, the left air cylinder 1 and the right air cylinder 14 reset, the rotary air cylinder 76 rotates for 90 degrees, after rotating in place, piston rods of the air cylinders of the left air cylinder 1 and the right air cylinder 14 move in opposite directions, the bag is cut for the second time, in the other two directions of the cube block, the bag is cut, after cutting, the left air cylinder and the right air cylinder reset, the clamping jaw air cylinder is loosened, and the block and the bag.
The fixed connection mode can adopt threaded connection.
In the present invention, terms such as "mounting", "connecting", etc. should be understood in a broad sense, and mean either fixed connection or fixed mounting, or integrally connected or detachably connected; may be directly connected or indirectly connected through an intermediate. The meaning of the above terms in the present invention can be determined according to specific situations by persons skilled in the art, and should not be construed as limiting the present invention.
Although the present invention has been described with reference to the accompanying drawings, it is not intended to limit the scope of the present invention, and those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without inventive work are still within the scope of the present invention.

Claims (10)

1. An automatic bag cutting device for cubic block surface vacuum sealing bags comprises a bottom plate and is characterized in that: the cutting knife is characterized in that two parallel guide rails are arranged on the bottom plate, sliding assemblies sliding on the two guide rails are mounted on the two parallel guide rails, and cutting knives are arranged on the sliding assemblies.
2. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 1, wherein: two sliding assemblies which slide on the two guide rails are arranged on the two parallel guide rails, and a cutter is arranged on each sliding assembly.
3. The automatic cube block surface vacuum sealing bag cutting device as claimed in any one of claims 1 or 2, wherein: the cutters are all provided with heating holes, and heating rods are inserted into the heating holes.
4. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 2, wherein: and each sliding assembly is connected with a power device which drives the sliding assembly to slide on the parallel sliding rails.
5. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 4, wherein: the power device comprises an air cylinder fixed on the bottom plate, and the telescopic end of the air cylinder is connected with the sliding assembly.
6. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 2, wherein: each sliding assembly comprises two sliding blocks which are respectively arranged on the two guide rails, the two sliding blocks are connected with a sliding block connecting plate, and the cutter is arranged on the sliding connecting plate.
7. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 1, wherein: two guide rail installation parts are installed on the bottom plate, and the guide rails are installed on the guide rail installation parts.
8. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 2, wherein: and a rotary clamping assembly for clamping the sealing bag is further arranged on the bottom plate between the two parallel guide rails and the two sliding assemblies.
9. The automatic bag cutting device for cubic block surface vacuum sealing bags as claimed in claim 8, wherein: the rotary clamping assembly comprises a rotating device, a left clamping jaw and a right clamping jaw which are used for clamping the sealing bag are arranged on the rotating device, and the left clamping jaw and the right clamping jaw are connected with a power device which drives the left clamping jaw and the right clamping jaw to clamp the sealing bag.
10. The automatic cube block surface vacuum sealed bag cutting device according to claim 9, wherein: the power device comprises a clamping jaw cylinder, and the left clamping jaw and the right clamping jaw are connected to the clamping jaw cylinder; the rotating device comprises a rotating cylinder, a clamping jaw cylinder is installed on a rotating cylinder installation plate, and the rotating cylinder installation plate is installed on the rotating cylinder.
CN201922350331.9U 2019-12-24 2019-12-24 Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks Active CN211494792U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922350331.9U CN211494792U (en) 2019-12-24 2019-12-24 Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922350331.9U CN211494792U (en) 2019-12-24 2019-12-24 Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks

Publications (1)

Publication Number Publication Date
CN211494792U true CN211494792U (en) 2020-09-15

Family

ID=72419027

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922350331.9U Active CN211494792U (en) 2019-12-24 2019-12-24 Automatic bag cutting device for vacuum sealing bags on surfaces of cube blocks

Country Status (1)

Country Link
CN (1) CN211494792U (en)

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