CN213703527U - Cutting tool for acrylic acid adhesive film production - Google Patents
Cutting tool for acrylic acid adhesive film production Download PDFInfo
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- CN213703527U CN213703527U CN202021960004.1U CN202021960004U CN213703527U CN 213703527 U CN213703527 U CN 213703527U CN 202021960004 U CN202021960004 U CN 202021960004U CN 213703527 U CN213703527 U CN 213703527U
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- adhesive film
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Abstract
The utility model provides a cutting tool for producing an acrylic acid adhesive film, which comprises two first support frames, wherein the two first support frames are detachably connected with two first driving wheels, and lifting cutting grooves are arranged between the two first driving wheels and on the two first support frames; one end of each of the two first support frames is provided with two first connecting plates, a second driving wheel is arranged between the two first connecting plates, and the second driving wheel is in driving connection with the first driving wheel; two first support frame outside is equipped with first lift and presses material structure, first lift is pressed material structure middle part and is equipped with cutting structure, cutting structure sliding connection go up and down to cut the groove.
Description
Technical Field
The utility model relates to an acrylic acid glued membrane production technical field mainly relates to a frock that cuts of acrylic acid glued membrane production usefulness.
Background
The glue film is a film formed by soil pore walls, soil structures or mineral particle surfaces and formed by in-situ arrangement change of certain components of soil due to agglomeration or 'fine soil active substances'. The color of the composition can be brown, yellow, gray and the like according to different components. The film is formed by the gradual deposition of active organic and inorganic substances (such as clay, humus, trioxides and the like) along with the movement of a soil solution in the soil forming process, so the film reflects the characteristics of the soil forming process to a certain extent.
When the rolling reaches a certain degree during production of the existing acrylic acid adhesive film, the film is pressed through the pressing plate, and then the cutting knife descends to realize corresponding cutting.
However, because the conduction is the drive wheel, so corresponding clamp plate is with the film downwardly stretching when the cutting to lead to the deformation of glued membrane at the cutting, lead to the production tip of glued membrane to appear the technical problem of damage.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved by the utility model
Because the conduction is the drive wheel, so the clamp plate that corresponds when the cutting is with film downwardly stretching to lead to the deformation of glued membrane at the cutting, lead to the production tip of glued membrane to appear the technical problem of damage.
Technical scheme
A cutting tool for producing an acrylic acid adhesive film comprises two first support frames, wherein the two first support frames are detachably connected with two first driving wheels, and lifting cutting grooves are formed between the two first driving wheels and on the two first support frames;
one end of each of the two first support frames is provided with two first connecting plates, a second driving wheel is arranged between the two first connecting plates, and the second driving wheel is in driving connection with the first driving wheel;
two first support frame outside is equipped with first lift and presses material structure, first lift is pressed material structure middle part and is equipped with cutting structure, cutting structure sliding connection go up and down to cut the groove.
Further, the lifting cutting groove comprises a groove plate, two ends of the groove plate are rotatably connected with first lead screws, two first sliding grooves are symmetrically formed in the inner side of the first support frame, the first lead screws are respectively in bearing connection with the two first sliding grooves, one end of each first lead screw is provided with a first driving motor, and each first driving motor is arranged in each first sliding groove.
Furthermore, two rubber plates are symmetrically arranged in the two first sliding grooves, and the opposite sides of the two rubber plates are inclined by 30-45 degrees.
Furthermore, the two first connecting plates are obliquely arranged downwards by 30-60 degrees, a first rotating rod is arranged in the middle of the second driving wheel, and bearings at two ends of the first rotating rod are connected with the first connecting plates.
Furthermore, a first round hole is formed in one side of the first connecting plate, an extrusion plate is arranged on the outer side of one end of the first rotating rod, a counting sensor is arranged below one side of the first round hole, and the extrusion plate is connected with the counting sensor in an extrusion mode.
Further, first lift presses material structure to include two first backup pads, two first backup pad can be dismantled and connect in two the first support frame outside, two first backup pad top symmetry is equipped with two first cylinders, two first cylinder upper end can be dismantled and connect two second backup pads, two first backup pad can be dismantled respectively and connect two second support frames, two the inboard symmetry of second support frame is equipped with two first compression rollers, two first compression roller extrusion is connected two first drive wheel, and two second support frame top is equipped with cutting structure.
Furthermore, the cutting structure comprises four second cylinders, the second cylinders are detachably connected to the second support frame, the upper ends of the second cylinders are detachably connected with a third support plate, two rubber press blocks are symmetrically arranged below the third support plate and are connected with the rubber plates in an extruding mode, a cutting knife is arranged between the two rubber press blocks, and the cutting knife is connected with the two rubber plates in a sliding mode.
Advantageous effects
The two first driving wheels are symmetrically arranged between the two first supporting frames, so that corresponding transmission is realized, and then corresponding guiding is performed through the second driving wheels;
and a first lifting material pressing structure is arranged between the two first driving wheels, and the first lifting material pressing structure is used for lifting during cutting, so that the first lifting material pressing structure can descend when not in use without influencing transmission, and can ascend to the utmost during cutting, and a film can be cut without deformation.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of a first driving wheel of the present invention;
fig. 3 is a schematic view of the first lifting pressing structure of the present invention.
In the figure: 1-a first support frame, 11-a first chute, 2-a first driving wheel, 3-a lifting cutting groove, 31-a groove-shaped plate, 32-a first screw rod, 33-a first driving motor, 34-a rubber plate, 4-a first connecting plate, 5-a second driving wheel, 51-a first rotating rod, 52-an extruding plate, 53-a counting inductor, 6-a first lifting pressing material structure, 61-a first support plate, 62-a first cylinder, 63-a first support plate, 64-a second support frame, 65-a first pressing roller, 7-a cutting structure, 71-a second cylinder, 75-a third support plate, 73-a rubber plate and 74-a cutting knife.
Detailed Description
In order to facilitate understanding of the invention, the invention will be described more fully hereinafter with reference to the accompanying drawings, in which several embodiments of the invention are shown, but which can be embodied in many different forms and are not limited to the embodiments described herein, but which are provided so as to render the disclosure of the invention more thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present; when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present; the terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs; the terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; as used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In an embodiment, referring to fig. 1-3, a cutting tool for producing an acrylic adhesive film includes two first support frames 1, the two first support frames 1 are detachably connected to two first driving wheels 2, and lifting cutting grooves 3 are formed between the two first driving wheels 2 and on the two first support frames 1;
one end of each of the two first support frames 1 is provided with two first connecting plates 4, a second driving wheel 5 is arranged between the two first connecting plates 4, and the second driving wheel 5 is in transmission connection with the first driving wheel 2;
two first support frame 1 outside is equipped with first lift and presses material structure 6, first lift is pressed material 6 middle parts and is equipped with cutting structure 7, cutting structure 7 sliding connection go up and down to cut groove 3.
In an embodiment, referring to fig. 1-2, the lifting cutting groove 3 includes a groove plate 31, two ends of the groove plate 31 are rotatably connected to first lead screws 32, two first sliding grooves 11 are symmetrically disposed on an inner side of the first support frame 1, the two first lead screws 32 are respectively connected to the two first sliding grooves 11 through bearings, one end of each first lead screw 32 is provided with a first driving motor 33, and the first driving motor 33 is disposed in the first sliding groove 11.
In the embodiment, referring to fig. 1-2, two rubber plates 34 are symmetrically arranged in two first chutes 11, and opposite sides of the two rubber plates 34 are both inclined at an angle of 30-45 °.
In an embodiment, referring to fig. 1, two first connecting plates 4 are arranged obliquely downward by 30 ° to 60 °, a first rotating rod 51 is arranged in the middle of the second driving wheel 5, and two ends of the first rotating rod 51 are connected to the first connecting plates 4 through bearings.
In an embodiment, referring to fig. 1, a first circular hole 41 is formed at one side of the first connecting plate 4, a pressing plate 52 is disposed at an outer side of one end of the first rotating rod 51, a counting sensor 53 is disposed below one side of the first circular hole 41, and the pressing plate 52 is connected to the counting sensor 53 in a pressing manner.
In an embodiment, referring to fig. 3, the first lifting pressing structure 6 includes two first supporting plates 61, two first supporting plates 61 are detachably connected to the outer sides of two first supporting frames 1, two first cylinders 62 are symmetrically arranged above the two first supporting plates 61, the upper ends of the two first cylinders 62 are detachably connected to two second supporting plates 63, the two second supporting plates 63 are detachably connected to two second supporting frames 64, two first pressing rollers 65 are symmetrically arranged inside the two second supporting frames 64, the two first pressing rollers 65 are connected to the two first driving wheels 2 in an extruding manner, and the cutting structures 7 are arranged above the two second supporting frames 64.
In an embodiment, referring to fig. 3, the cutting structure 7 includes four second air cylinders 71, the four second air cylinders 71 are detachably connected to the second support frame 64, the upper ends of the four second air cylinders 71 are detachably connected to a third support plate 75, two rubber press blocks 73 are symmetrically disposed below the third support plate 75, the two rubber press blocks 73 are connected to the two rubber plates 34 in an extruding manner, a cutting knife 74 is disposed between the two rubber press blocks 73, and the cutting knife 74 is slidably connected to the two rubber plates 34.
The above-mentioned embodiments only express a certain implementation manner of the present invention, and the description thereof is specific and detailed, but not construed as limiting the scope of the present invention; it should be noted that, for those skilled in the art, without departing from the concept of the present invention, several variations and modifications can be made, which all fall within the protection scope of the present invention; therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (7)
1. The utility model provides a frock of cutting of acrylic acid glued membrane production usefulness, includes two first support frames (1), its characterized in that: the two first support frames (1) are detachably connected with the two first driving wheels (2), and lifting cutting grooves (3) are formed between the two first driving wheels (2) and on the two first support frames (1);
one end of each of the two first support frames (1) is provided with two first connecting plates (4), a second driving wheel (5) is arranged between the two first connecting plates (4), and the second driving wheel (5) is in transmission connection with the first driving wheel (2);
two first support frame (1) outside is equipped with first lift and presses material structure (6), first lift is pressed material structure (6) middle part and is equipped with cutting structure (7), cutting structure (7) sliding connection go up and down to cut groove (3).
2. The cutting tool for producing the acrylic adhesive film as claimed in claim 1, wherein: go up and down to cut groove (3) including channel plate (31), channel plate (31) both ends are rotated and are connected first lead screw (32), first support frame (1) inboard symmetry is equipped with two first spouts (11), two first lead screw (32) bearing connection respectively in two first spout (11), first lead screw (32) one end is equipped with a driving motor (33), a driving motor (33) sets up in first spout (11).
3. The cutting tool for producing the acrylic adhesive film as claimed in claim 2, wherein: two rubber plates (34) are symmetrically arranged in the two first sliding grooves (11), and the opposite sides of the two rubber plates (34) are inclined by 30-45 degrees.
4. The cutting tool for producing the acrylic adhesive film as claimed in claim 1, wherein: the two first connecting plates (4) are arranged at an angle of 30-60 degrees downwards in an inclined mode, a first rotating rod (51) is arranged in the middle of the second driving wheel (5), and bearings at two ends of the first rotating rod (51) are connected with the first connecting plates (4).
5. The cutting tool for producing the acrylic adhesive film as claimed in claim 4, wherein: first connecting plate (4) one side is equipped with first round hole (41), first pivot pole (51) one end outside is equipped with stripper plate (52), first round hole (41) one side below is equipped with count inductor (53), stripper plate (52) extrusion is connected count inductor (53).
6. The cutting tool for producing the acrylic adhesive film as claimed in claim 3, wherein: first lift presses material structure (6) to include two first backup pad (61), two first backup pad (61) can be dismantled and connect in two first support frame (1) outside, two first backup pad (61) top symmetry is equipped with two first cylinders (62), two first cylinder (62) upper end can be dismantled and connect two second backup pad (63), two second backup pad (63) can be dismantled respectively and connect two second support frames (64), two second support frame (64) inboard symmetry is equipped with two first compression roller (65), two first compression roller (65) extrusion connection is two first drive wheel (2), and two second support frame (64) top is equipped with cutting structure (7).
7. The cutting tool for producing the acrylic adhesive film as claimed in claim 6, wherein: cutting structure (7) include four second cylinders (71), four second cylinder (71) can dismantle connect in on second support frame (64), four second cylinder (71) upper end can be dismantled and connect third backup pad (75), third backup pad (75) below symmetry is equipped with two rubber briquetting (73), two rubber briquetting (73) extrusion is connected two rubber slab (34), and two be equipped with cutting knife (74) between rubber briquetting (73), cutting knife (74) sliding connection is two rubber slab (34).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021960004.1U CN213703527U (en) | 2020-09-09 | 2020-09-09 | Cutting tool for acrylic acid adhesive film production |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021960004.1U CN213703527U (en) | 2020-09-09 | 2020-09-09 | Cutting tool for acrylic acid adhesive film production |
Publications (1)
Publication Number | Publication Date |
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CN213703527U true CN213703527U (en) | 2021-07-16 |
Family
ID=76793269
Family Applications (1)
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CN202021960004.1U Active CN213703527U (en) | 2020-09-09 | 2020-09-09 | Cutting tool for acrylic acid adhesive film production |
Country Status (1)
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CN (1) | CN213703527U (en) |
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2020
- 2020-09-09 CN CN202021960004.1U patent/CN213703527U/en active Active
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