CN214025908U - Shearing machine with high universality - Google Patents

Shearing machine with high universality Download PDF

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Publication number
CN214025908U
CN214025908U CN202022765022.0U CN202022765022U CN214025908U CN 214025908 U CN214025908 U CN 214025908U CN 202022765022 U CN202022765022 U CN 202022765022U CN 214025908 U CN214025908 U CN 214025908U
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Prior art keywords
roller
shearing
auxiliary block
driving
rotate
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CN202022765022.0U
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Chinese (zh)
Inventor
苏辉
梁昌保
柳晋兰
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Dongguan City Gaoyi Decoration Materials Co ltd
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Dongguan City Gaoyi Decoration Materials Co ltd
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Abstract

The application relates to the field of manufacturing equipment, in particular to a shearing machine with high universality. The shearing machine with the strong universality comprises a rack, a shearing roller and a driving piece, wherein the shearing roller is rotatably arranged on the rack, the driving piece is used for driving the shearing roller to rotate, a blade for cutting paper is arranged on the shearing roller, an auxiliary cutting mechanism is arranged on the rack, the auxiliary cutting mechanism comprises an auxiliary block and a first power piece, the auxiliary block is movable, and the first power piece is used for driving the auxiliary block to move; the auxiliary block is opposite to the shearing roller and is used for abutting against a blade of the shearing roller during movement. The shearing device has the advantages of strong universality and high shearing precision.

Description

Shearing machine with high universality
Technical Field
The application relates to the field of manufacturing equipment, in particular to a shearing machine with high universality.
Background
At present, since veneered paper such as impregnated paper stuck on a wood board is used as a single paper, a cutting system is required to cut a long paper into pieces during production.
The shearing machine with the strong universality generally comprises a rack, a shearing roller and a driving piece, wherein the shearing roller is rotatably arranged on the rack, the driving piece is used for driving the shearing roller to rotate, and a blade used for cutting paper is arranged on the shearing roller, so that the driving piece drives the shearing roller to rotate when the paper is transmitted to the shearing machine, and the shearing roller can cut the paper. The existing shearing roller shears paper when rotating for one circle, and the contact point of the shearing roller and the paper is usually the position where a blade on the shearing roller is arranged when the shearing roller rotates, so that the length of the sheared paper is the circumference of the shearing roller. When paper with other lengths needs to be processed, the shearing roller needs to be replaced or other shearing machines with strong universality are adopted to realize processing, and the universality is poor.
With respect to the related art described above, the inventors consider that there is a drawback of poor versatility.
Disclosure of Invention
In order to make the commonality stronger, this application provides a cutter that commonality is stronger.
The application provides a shearing machine that commonality is stronger adopts following technical scheme:
a shearing machine with high universality comprises a rack, a shearing roller and a driving piece, wherein the shearing roller is rotatably arranged on the rack, the driving piece is used for driving the shearing roller to rotate, a blade for cutting paper is arranged on the shearing roller, an auxiliary cutting mechanism is arranged on the rack, the auxiliary cutting mechanism comprises an auxiliary block and a first power piece, the auxiliary block is movable, and the first power piece is used for driving the auxiliary block to move; the auxiliary block is opposite to the shearing roller and is used for abutting against a blade of the shearing roller when the auxiliary block moves.
Through adopting above-mentioned technical scheme, when needing to cut out the paper that is bigger than shearing roller girth, can adopt first power spare earlier to make the auxiliary block rotate to not offset with the blade of shearing the roller, even the roller rotates a week and also can not cut the paper this moment, when reacing predetermined paper length, first power spare makes the auxiliary block rotate to offset with the blade of shearing the roller, the paper that lies in between auxiliary block and the shearing roller this moment can be cut, thereby need not to adjust the size of shearing the roller, the time that only needs the blade of control auxiliary block and shearing roller to offset, just can regulate and control the size of the paper of cutting out at last, thereby can produce the paper of not unidimensional size, thereby the commonality of the stronger cutter of this commonality is strong.
Optionally, the auxiliary block is provided with a butting part which is used for butting against a blade of the shearing roller; the auxiliary block is rotatable, and the first power part is used for driving the auxiliary block to rotate.
Through adopting above-mentioned technical scheme, the area of contact between auxiliary block and the shearing roller is less to the paper is difficult for squinting under the drive of butt portion after finishing by the shearing, so the shearing of paper is comparatively smooth and easy.
Optionally, the auxiliary cutting mechanism further comprises a transmission assembly, and the first power member drives the auxiliary block to rotate through the transmission assembly.
Through adopting above-mentioned technical scheme, transmission assembly can make first power spare place in the position of easily installing to the installation of first power spare is comparatively convenient.
Optionally, the transmission assembly includes the action wheel, follows driving wheel and belt, the end fixing of supplementary piece is equipped with the axis of rotation, fix the cover from the driving wheel and establish in the axis of rotation, first power spare is used for the drive the action wheel rotates, the belt cladding sets up the outer edge of action wheel and follow driving wheel.
Through adopting above-mentioned technical scheme, first power spare can drive the action wheel and rotate, and the belt also can move and drive from the driving wheel rotation when the action wheel rotates, and then the axis of rotation can rotate and drive the auxiliary block and rotate to realized that first power spare passes through the rotation of transmission assembly drive auxiliary block.
Optionally, a conveying mechanism is further arranged on the rack, the conveying mechanism comprises a driving assembly, a first conveying roller and a second conveying roller, and the first conveying roller and the second conveying roller are rotatably arranged on the rack relatively;
the driving assembly is used for driving the first conveying roller and the second conveying roller to rotate, and a paper feeding channel used for conveying paper is arranged between the first conveying roller and the second conveying roller.
Through adopting above-mentioned technical scheme, when treating the paper transmission of processing, only need start drive assembly so that first transfer roller and second transfer roller rotate, first transfer roller and second transfer roller just can drive the paper transmission when rotating to the transmission of paper is comparatively smooth and easy.
Optionally, the driving assembly comprises a second power part, a first friction wheel and a second friction wheel, the second power part is arranged on the rack, an output shaft of the second power part is fixedly connected with the center of the first friction wheel, the first friction wheel is fixedly sleeved on the end of the first conveying roller, the second friction wheel is fixedly sleeved on the end of the second conveying roller, and the outer edges of the first friction wheel and the second friction wheel are abutted.
Through adopting above-mentioned technical scheme, first friction pulley can rotate when second power spare starts to first transfer roller can rotate, then second friction pulley can rotate under the drive of first friction pulley, and the second transfer roller also can rotate when the second friction pulley rotates, thereby just can drive first transfer roller and second transfer roller and all rotate when second power spare starts.
Optionally, the shear roller has a varying diameter, and the linear distance of the blade from the central axis of the shear roller is less than the longest diameter of the shear roller.
Through adopting above-mentioned technical scheme, after the blade cuts off the paper, the auxiliary block rotates to not offseting with the blade, and the roller continues to rotate this moment of cutting, and the longest diameter department of cutting the roller can offset by the unprocessed paper of the cut-off department other end with the paper, cuts the roller and just can drive unprocessed paper and move towards the shearing department of paper when rotating to the motion that the paper can be comparatively smooth and easy.
Optionally, the shear roller is a cam.
Through adopting above-mentioned technical scheme, the cam is common has the device of change diameter, and it is comparatively convenient to use and purchase.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the shearing machine with strong universality has strong universality;
2. the paper is smoothly conveyed.
Drawings
Fig. 1 is a schematic structural diagram of a shearing machine with high versatility according to an embodiment of the present application.
Fig. 2 is a schematic view illustrating a connection structure of the auxiliary cutting mechanism and the shear roller of fig. 1.
Description of reference numerals: 1. a frame; 2. a rotating shaft; 3. a shearing roller; 4. a drive member; 5. a blade; 6. a transmission assembly; 61. a driving wheel; 62. a driven wheel; 63. a belt; 7. a drive assembly; 71. a second power member; 72. a first friction wheel; 73. a second friction wheel; 8. a first transfer roller; 9. a second transfer roller; 10. an auxiliary block; 11. a first power member; 13. an abutting portion; 14. a paper feed path.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses shearing machine with strong universality. Referring to fig. 1 and 2, the shearing machine with high universality comprises a machine frame 1, wherein the machine frame 1 is provided with a feeding end and a discharging end, the machine frame 1 is provided with a conveying mechanism used for enabling paper to move from the feeding end to the discharging end, a shearing roller 3 which is used for shearing the paper and is rotatable and a driving piece 4 used for driving the shearing roller 3 to rotate are arranged on the machine frame 1 between the feeding end and the discharging end, a blade 5 is fixedly arranged on the shearing roller 3, the blade 5 and the shearing roller 3 can be welded in a connecting mode, and the driving piece 4 can be a motor. Processing is gone into by the feed end to the paper, then transport mechanism conveys the paper to the discharge end, and the paper can be located when the conveying and shears 3 below rollers, and 3 rotations of roller are sheared in the drive of driving piece 4 drive this moment, shears 3 realization processing to the paper when rotating of roller.
With regard to the specific arrangement of the conveying mechanism, referring to fig. 1, the conveying mechanism comprises a driving assembly 7, a first conveying roller 8 and a second conveying roller 9, and the first conveying roller 8 and the second conveying roller 9 are relatively rotatably arranged on the frame 1; a paper feeding passage 14 for conveying paper is arranged between the first conveying roller 8 and the second conveying roller 9; the paper entering from the feeding end is conveyed into the paper conveying channel 14, and the first conveying roller 8 and the second conveying roller 9 rotate to enable the paper to move and realize conveying. The driving assembly 7 is used for driving the first conveying roller 8 and the second conveying roller 9 to rotate, and the specific arrangement of the driving assembly 7 is explained below.
Referring to fig. 1, the driving assembly 7 includes a second power member 71, a first friction wheel 72 and a second friction wheel 73, the second power member 71 is disposed on the frame 1, the second power member 71 may specifically be a motor or a rotary cylinder, and when the second power member 71 is a motor, an output shaft of the second power member 71 is fixedly connected to a center of the first friction wheel 72, and the fixed connection may be welding, so that the first friction wheel 72 rotates when the second power member 71 is started. The fixed cover of first friction pulley 72 is established at the tip of first transfer roller 8, and the mode can be established for the key-type connection or welding to fixed the overlapping, and the fixed cover of second friction pulley 73 is established at the tip of second transfer roller 9, and fixed overlapping is established the mode and can be the key-type connection or welding, and the outer edge of first friction pulley 72 and second friction pulley 73 offsets to second friction pulley 73 also can rotate when first friction pulley 72 rotates, and then first transfer roller 8 and second transfer roller 9 all can rotate.
In addition, referring to fig. 2, the frame 1 is provided with an auxiliary cutting mechanism, the auxiliary cutting mechanism includes an auxiliary block 10 and a first power member 11, and the auxiliary block 10 is provided with an abutting portion 13 for abutting against the blade 5 of the shearing roller 3; the auxiliary block 10 can rotate, the first power member 11 is used for driving the auxiliary block 10 to rotate, and the abutting portion 13 can abut against the blade 5 when the auxiliary block 10 rotates to a proper position, wherein the proper position is the position of the auxiliary block 10 when the abutting portion 13 abuts against the blade 5. The first power member 11 may be specifically a motor or a rotary cylinder. The auxiliary block 10 is opposed to the shear roller 3. When needing to cut out than shearing 3 girth bigger paper of roller, can adopt first power spare 11 earlier to make auxiliary block 10 rotate to not offset with shearing 3 blade 5 of roller, even shear 3 roller and rotate a week and also can not cut the paper this moment, when reacing predetermined paper length, first power spare 11 makes auxiliary block 10 rotate to offset with shearing 3 blade 5 of roller, the paper that lies in between auxiliary block 10 and the shearing roller 3 this moment can be cut, thereby need not to adjust the size of shearing roller 3, the time that only needs control auxiliary block 10 and shearing 3 blade 5 of roller offset, just can regulate and control the size of the paper of cutting out at last, thereby can produce the paper of different size, thereby the commonality of the stronger cutter of this commonality is strong.
Further, referring to fig. 2, the auxiliary cutting mechanism further includes a transmission assembly 6, and the first power member 11 drives the auxiliary block 10 to rotate through the transmission assembly 6. The transmission assembly 6 comprises a driving wheel 61, a driven wheel 62 and a belt 63, the first power member 11 is used for driving the driving wheel 61 to rotate, when the first power member 11 is a motor, an output shaft of the motor is fixedly connected with the center of the driving wheel 61, and therefore the driving wheel 61 can rotate when the motor is started. The end fixing of supplementary piece 10 is equipped with axis of rotation 2, fixes the cover from driving wheel 62 and establishes on axis of rotation 2, and the belt 63 cladding sets up at action wheel 61 and the outer edge from driving wheel 62, and belt 63 also can move and drive when action wheel 61 rotates and rotate from driving wheel 62, and then axis of rotation 2 can rotate and drive supplementary piece 10 and rotate to realized that first power spare 11 passes through the rotation of drive assembly 6 drive supplementary piece 10.
Finally, referring to fig. 2, in order to make the transportation of the paper smoother, the shearing roller 3 has a varying diameter, and the linear distance of the blade 5 from the central axis of the shearing roller 3 is smaller than the longest diameter of the shearing roller 3. The shearing roller 3 may be specifically a cam. When shearing roller 3 shears the paper, the contact position of shearing roller 3 and paper is blade 5 positions usually, shearing roller 3 also can't drive unprocessed paper motion when continuing to rotate this moment, set up to the cam through shearing roller 3, when blade 5 contact paper, the maximum diameter department of cam also can contact unprocessed paper, after the paper is tailor and is accomplished, supplementary piece 10 rotates and drives butt portion 13 and does not continue the butt with blade 5 on shearing roller 3, the distance between cam and the supplementary piece 10 is not less than the maximum diameter of cam this moment, then shear roller 3 rotates, the maximum diameter department of cam just drives unprocessed paper and moves towards the shearing department of paper, thereby the paper can be comparatively smooth and easy motion.
The implementation principle of the shearing machine with strong universality in the embodiment of the application is as follows: when paper larger than the circumference of the shearing roller 3 needs to be cut, the first power part 11 can be started firstly to enable the driving wheel 61 to rotate, the belt 63 can also move and drive the driven wheel 62 to rotate when the driving wheel 61 rotates, and then the rotating shaft 2 can rotate and drive the auxiliary block 10 to rotate, at the moment, the auxiliary block 10 is enabled to rotate to be not abutted against the blade 5 of the shearing roller 3, so that the paper cannot be cut even if the shearing roller 3 rotates for a circle, when the preset paper length is reached, the auxiliary block 10 is enabled to rotate to be abutted against the blade 5 of the shearing roller 3 by the first power part 11, at the moment, the paper between the auxiliary block 10 and the shearing roller 3 can be cut, the size of the shearing roller 3 does not need to be adjusted, the size of the finally cut paper can be adjusted only by controlling the time that the auxiliary block 10 is abutted against the blade 5 of the shearing roller 3, and the paper with different sizes can be produced, therefore, the shearing machine with high universality is high in universality.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a cutter that commonality is stronger, includes frame (1), shears roller (3) and driving piece (4), shears rotatable setting of roller (3) on frame (1), driving piece (4) are used for the drive to shear roller (3) and rotate, shear and are equipped with blade (5) that are used for cutting the paper on roller (3), its characterized in that: an auxiliary cutting mechanism is arranged on the rack (1), the auxiliary cutting mechanism comprises an auxiliary block (10) and a first power part (11), the auxiliary block (10) is movable, and the first power part (11) is used for driving the auxiliary block (10) to move;
the auxiliary block (10) is opposite to the shearing roller (3), and the auxiliary block (10) is used for abutting against the blade (5) of the shearing roller (3) when moving.
2. A more versatile shearer according to claim 1, characterised in that: the auxiliary block (10) is provided with a butting part (13) which is used for butting against the blade (5) of the shearing roller (3);
the auxiliary block (10) can rotate, and the first power part (11) is used for driving the auxiliary block (10) to rotate.
3. A more versatile shearer according to claim 2, characterised in that: the auxiliary cutting mechanism further comprises a transmission assembly (6), and the first power part (11) drives the auxiliary block (10) to rotate through the transmission assembly (6).
4. A more versatile shearer according to claim 3, characterised in that: drive assembly (6) include action wheel (61), follow driving wheel (62) and belt (63), the end fixing of supplementary piece (10) is equipped with axis of rotation (2), follow fixed cover of driving wheel (62) and establish on axis of rotation (2), first power spare (11) are used for the drive action wheel (61) rotate, belt (63) cladding sets up action wheel (61) and follow the outer edge of driving wheel (62).
5. A more versatile shearer according to any of claims 1 to 4, characterized in that: the conveying mechanism is further arranged on the rack (1) and comprises a driving assembly (7), a first conveying roller (8) and a second conveying roller (9), and the first conveying roller (8) and the second conveying roller (9) are relatively rotatably arranged on the rack (1);
the driving assembly (7) is used for driving the first conveying roller (8) and the second conveying roller (9) to rotate, and a paper feeding channel (14) used for conveying paper is arranged between the first conveying roller (8) and the second conveying roller (9).
6. A more versatile shearer according to claim 5, characterized in that: drive assembly (7) include second power spare (71), first friction pulley (72) and second friction pulley (73), second power spare (71) set up in frame (1), the output shaft of second power spare (71) with the center department fixed connection of first friction pulley (72), the fixed cover of first friction pulley (72) is established the tip of first transfer roller (8), the fixed cover of second friction pulley (73) is established the tip of second transfer roller (9), first friction pulley (72) with the outer edge of second friction pulley (73) offsets.
7. A more versatile shearer according to any of claims 1 to 4, characterized in that: the shearing roller (3) has a varying diameter, and the linear distance of the blade (5) to the central axis of the shearing roller (3) is smaller than the longest diameter of the shearing roller (3).
8. A more versatile shearer according to claim 7, characterized in that: the shearing roller (3) is a cam.
CN202022765022.0U 2020-11-25 2020-11-25 Shearing machine with high universality Active CN214025908U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022765022.0U CN214025908U (en) 2020-11-25 2020-11-25 Shearing machine with high universality

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022765022.0U CN214025908U (en) 2020-11-25 2020-11-25 Shearing machine with high universality

Publications (1)

Publication Number Publication Date
CN214025908U true CN214025908U (en) 2021-08-24

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116394647A (en) * 2023-05-22 2023-07-07 临安福马装饰材料有限公司 Printing process and printing equipment for decorative paper of rhinoceros leather paint

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116394647A (en) * 2023-05-22 2023-07-07 临安福马装饰材料有限公司 Printing process and printing equipment for decorative paper of rhinoceros leather paint
CN116394647B (en) * 2023-05-22 2023-11-07 临安福马装饰材料有限公司 Printing process and printing equipment for decorative paper of rhinoceros leather paint

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