CN218289846U - Material device is folded with slice product to cross cutting processing - Google Patents

Material device is folded with slice product to cross cutting processing Download PDF

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Publication number
CN218289846U
CN218289846U CN202222291962.XU CN202222291962U CN218289846U CN 218289846 U CN218289846 U CN 218289846U CN 202222291962 U CN202222291962 U CN 202222291962U CN 218289846 U CN218289846 U CN 218289846U
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carrier film
plate
sheet
products
conveying platform
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CN202222291962.XU
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Chinese (zh)
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彭奎钢
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Chongqing Yulong Electronic Technology Research Institute Co ltd
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Chongqing Yulong Electronic Technology Research Institute Co ltd
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Abstract

The utility model belongs to the technical field of slice product apparatus for producing, specifically disclose a slice product folds material device for cross cutting processing, including first conveying platform and second conveying platform, first conveying platform is equipped with first carrier film, second conveying platform is equipped with second carrier film, the second carrier film is located the lower part of the discharge end of first carrier film, the speed of first carrier film is greater than the speed of second carrier film; and a sorting table is arranged below the discharge end of the second bearing film. The cross cutting processing of this scheme of adoption is folded with slice product and is expected device, can solve among the prior art slice product and fold the problem that the material wastes time and energy.

Description

Material device is folded with slice product to cross cutting processing
Technical Field
The utility model belongs to the technical field of slice product apparatus for producing, a cross cutting processing is with slice product fold material device is specifically disclosed.
Background
The die cutting refers to the process of manufacturing printed matters or other products into a die cutting knife plate according to a pre-designed pattern and cutting the printed matters, so that the shapes of the printed matters are not limited to straight edges and right angles any more. Sheet products are also common products in die cutting processes. Sheet products are generally considered to be products like tempered films, one sheet after the other, and are transferred from one process to another process by a transfer platform during the production of the sheet products. The conveying platform comprises a bearing film and a power structure (such as a motor and the like) for driving the bearing film to move, the sheet-shaped products are placed on the bearing film during conveying, and the power structure drives the bearing film to drive the sheet-shaped products to move, so that the sheet-shaped products are conveyed. In the existing processing technology, sheet material products need to be stacked manually and then packaged. Because the slice product is mostly all than thin and softer, is difficult for utilizing large-scale machinery etc. to snatch, so at present all accomplish through the manual work to the material of folding of slice product, waste time and energy and the cost of labor is high.
Disclosure of Invention
An object of the utility model is to provide a cross cutting processing is folded with slice product and is expected device to solve among the prior art slice product and fold the problem that the material wastes time and energy.
In order to achieve the above purpose, the basic scheme of the utility model is as follows: a sheet product stacking device for die cutting processing comprises a first conveying platform and a second conveying platform, wherein the first conveying platform is provided with a first bearing film, the second conveying platform is provided with a second bearing film, the second bearing film is positioned at the lower part of the discharge end of the first bearing film, and the speed of the first bearing film is higher than that of the second bearing film; and a sorting table is arranged below the discharge end of the second bearing film.
The working principle and the beneficial effects of the basic scheme are that: when the cross cutting processing of this scheme of adoption is with slice product fold material device, the slice product of waiting to fold the material is transported on first conveying platform through first carrier film, and the slice product can drop on the second carrier film and remove along the second carrier film after removing first conveying platform discharge end through first carrier film. Because the moving speed of the second carrier film is lower than that of the first carrier film, the subsequent sheet-shaped products on the first carrier film fall onto the second carrier film and cover the sheet-shaped products on the second carrier film when falling from the first carrier film. The following sheet product falling from the first carrier film also sequentially covers a part of the preceding sheet product, thereby stacking a plurality of sheet products and conveying them along the second carrier film. When the sheet-shaped products move to the discharge end of the second bearing film, the sheet-shaped products sequentially fall onto the sorting table from the second bearing film, and then the preliminary stacking of the sheet-shaped products is completed; and then aligning the two ends of the plurality of sheet-shaped products, thereby completing the stacking of the sheet-shaped products.
The material stacking device has the advantages that labor cost is saved for stacking of sheet products through rapid implementation, time is saved, and working efficiency is improved.
Further, the speed of the first carrier film is 1.2 to 1.3 times the speed of the second carrier film. If the speed of the second carrier film is too high, the sheet-like products on the second carrier film cannot be covered when falling from the first carrier film, so that stacking cannot be completed. If the speed of the second carrier film is too slow, the stack of sheet products on the second carrier film will be higher, resulting in sheet products sliding off the sides.
Furthermore, a baffle is arranged at one end of the sorting table. The baffle is arranged to align one end of a plurality of sheet products conveniently.
Further, the arrangement table side part is also provided with a side plate, and one side of the side plate is provided with an alignment part in a sliding connection mode. The aligning part is arranged, and the aligning part is matched with the baffle plate to conveniently stack a plurality of sheet products.
Further, the aligning part comprises an aligning plate and a connecting plate, the connecting plate is hinged to the aligning plate, a sliding groove is formed in one side of the side plate, and the connecting plate is located in the sliding groove and in sliding fit with the sliding groove. When the sheet-shaped products fall onto the second carrier film from the first carrier film in sequence, the alignment plate rotates to a position parallel to the side plate, so that the alignment plate does not interfere with the normal movement of the sheet-shaped products on the second carrier film. When a plurality of sheet products need to be stacked, the alignment plate is rotated to be perpendicular to the side plates, then the alignment plate slides towards the baffle plate along the sliding groove, the alignment plate moves and pushes the plurality of sheet products to move along the baffle plate until two ends of all the sheet products are respectively aligned with the baffle plate and the alignment plate, and therefore the plurality of sheet products are aligned and stacked.
Furthermore, the side part of the connecting plate is provided with a limiting block. The limiting block can limit the alignment plate, so that the alignment plate can not rotate after rotating to be perpendicular to the side plate.
Furthermore, a groove is formed in the upper end of the side of the connecting plate, a groove body is formed in the lower portion of the aligning plate, a steel ball and a pressure spring are arranged in the groove body, two ends of the pressure spring are respectively abutted against the groove body and the steel ball, and the steel ball can enter the groove. Under the natural state, the steel ball is located the cell body and the pressure spring is in compression state, when aligning the board and rotating to be parallel with the curb plate, the steel ball just in time rotates groove and enters into in the recess under the effect of pressure spring, plays a spacing effect, avoids aligning the board and rotates and produce adverse effect to the normal conveying of slice product on the second carrier film.
Drawings
Fig. 1 is a schematic structural view of a first embodiment of a sheet product stacking device for die cutting processing according to the present invention;
FIG. 2 is a perspective view of a second arrangement table of the embodiment of the sheet product stacking device for die cutting of the present invention;
fig. 3 is a cross-sectional view of the embodiment of the sheet product stacking device for die cutting, which is connected with the connecting plate and the aligning plate.
Detailed Description
The following is further detailed by way of specific embodiments:
reference numerals in the drawings of the specification include: the device comprises a first carrier film 1, a sheet product 2, a second carrier film 3, a baffle 4, a sorting table 5, a support column 6, an alignment plate 7, a side plate 8, a chute 9, a connecting plate 10, a limiting block 11, a steel ball 12, a groove 13, a groove body 14 and a pressure spring 15.
Example one
The embodiment is basically as shown in fig. 1, and a sheet product 2 stacking device includes a first conveying platform and a second conveying platform, wherein the first conveying platform is provided with a first carrier film 1, the second conveying platform is provided with a second carrier film 3, the second carrier film 3 is located at a lower portion of a discharge end of the first carrier film 1, and the first carrier film 1 and the second carrier film 3 are located on a same vertical plane. The speed of the first carrier film 1 is greater than the speed of the second carrier film 3, the speed of the first carrier film 1 is 1.2-1.3 times the speed of the second carrier film 3, and the speed of the first carrier film 1 is 1.2 times the speed of the second carrier film 3 in this embodiment. A sorting table 5 is arranged below the discharge end of the second carrier film 3, and the lower end of the sorting table 5 is connected with a support column 6. The right end of the sorting table 5 is also provided with a baffle 4, and the baffle 4 can be connected with the sorting table 5 through clamping or screw connection and other modes.
The specific implementation mode is as follows: when the device is expected to be folded to sheet product 2 of adopting this embodiment, the sheet product 2 of waiting to fold the material is transported on first conveying platform through first carrier film 1, and sheet product 2 can fall on second carrier film 3 and move along second carrier film 3 after moving first conveying platform discharge end through first carrier film 1. Since the second carrier film 3 moves at a slower speed than the first carrier film 1, the subsequent sheet products 2 on the first carrier film 1 fall onto the second carrier film 3 and cover the sheet products 2 on the second carrier film 3 when falling from the first carrier film 1. The sheet product 2 which falls from the first carrier film 1 later also sequentially covers a part of the sheet product 2 which is in front, so that a plurality of sheet products 2 are stacked and conveyed along the second carrier film 3. When the sheet products 2 move to the discharge end of the second carrier film 3, the sheet products 2 sequentially fall from the second carrier film 3 onto the sorting table 5, and at this time, the preliminary stacking of the sheet products 2 is completed; then, the two ends of the plurality of sheet-like products 2 are aligned, and the stacking of the sheet-like products 2 is completed. The provision of the baffle 4 facilitates alignment of one end of a plurality of sheet products 2.
Example two
As shown in fig. 2 and fig. 3, the present embodiment is different from the first embodiment in that a side plate 8 is further provided on a side portion of the tidying table 5, and an alignment portion is slidably connected to one side of the side plate 8. The portion of aliging is including aliging board 7 and connecting plate 10, and connecting plate 10 is articulated with aliging board 7, and 8 one sides of curb plate are equipped with spout 9, and connecting plate 10 is located spout 9 and with spout 9 sliding fit, and the connecting plate 10 lateral part is equipped with stopper 11. A groove 13 is formed in the upper end of the left side of the connecting plate 10, a groove body 14 is formed in the lower portion of the aligning plate 7, a steel ball 12 and a pressure spring 15 are arranged in the groove body 14, two ends of the pressure spring 15 are respectively abutted against the groove body 14 and the steel ball 12, and the steel ball 12 can enter the groove 13.
Initially, the steel ball 12 is located in the groove 14, and the lower end of the steel ball 12 abuts against the upper end surface of the connecting plate 10. The pressure spring 15 is in a compressed state. When the sheet-like products 2 sequentially fall from the first carrier film 1 onto the second carrier film 3, the alignment plate 7 rotates to a position parallel to the side plate 8, so that the alignment plate 7 does not interfere with the normal movement of the sheet-like products 2 on the second carrier film 3. At the moment, the steel ball 12 is just positioned at the groove 13 and enters the groove 13 under the action of the pressure spring 15, so that a limiting effect is achieved, and the phenomenon that the alignment plate 7 rotates to have adverse effects on normal conveying of the sheet products 2 on the second carrier film 3 when the sheet products 2 are conveyed is avoided. When alignment is needed, the alignment plate 7 is slightly applied with force and the alignment plate 7 is rotated, and at the moment, the steel ball 12 compresses the pressure spring to enter the parallel groove body 14, so that the alignment plate 7 can be rotated.
When a plurality of sheet products 2 need to be stacked, the alignment plate 7 is rotated to enable the alignment plate 7 to be perpendicular to the side plate 8, the limiting block 11 can limit the alignment plate 7, the alignment plate 7 is enabled to rotate to be perpendicular to the side plate 8 and then does not rotate, and the alignment plate 7 is parallel to the baffle plate 4 at the moment. Then, the aligning plate 7 slides along the chute 9 towards the baffle 4, and the aligning plate 7 moves and pushes the plurality of sheet products 2 to move along the baffle 4 until both ends of all the sheet products 2 are respectively aligned with the baffle 4 and the aligning plate 7, so that the plurality of sheet products 2 are aligned and stacked. The side panels 8 may also serve an alignment effect on the side of the sheet product during stacking.
The foregoing is merely an example of the present invention and common general knowledge in the art of known specific structures and/or features has not been set forth herein in any greater detail. It should be pointed out that, for the person skilled in the art, without departing from the structure of the invention, several variants and modifications can be made, which should also be regarded as the scope of protection of the invention, which will not affect the effectiveness of the implementation of the invention and the utility of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (7)

1. The utility model provides a cross cutting processing is with slice product fold material device which characterized in that: the conveying device comprises a first conveying platform and a second conveying platform, wherein the first conveying platform is provided with a first bearing film (1), the second conveying platform is provided with a second bearing film (3), the second bearing film (3) is positioned at the lower part of the discharge end of the first bearing film (1), and the speed of the first bearing film (1) is greater than that of the second bearing film (3); a sorting table (5) is arranged below the discharge end of the second bearing film (3).
2. The apparatus for stacking sheet products for die cutting as claimed in claim 1, wherein: the speed of the first carrier film (1) is 1.2-1.3 times of the speed of the second carrier film (3).
3. The apparatus for stacking sheet-like products for die-cutting processing according to claim 1, wherein: and one end of the sorting table (5) is also provided with a baffle (4).
4. A sheet product stacking apparatus for die cutting process according to claim 1 or 3, wherein: the side part of the sorting table (5) is also provided with a side plate (8), and one side of the side plate (8) is provided with an alignment part in a sliding connection mode.
5. The apparatus for stacking sheet products for die cutting as claimed in claim 4, wherein: the aligning part comprises an aligning plate (7) and a connecting plate (10), the connecting plate (10) is hinged to the aligning plate (7), a sliding groove (9) is formed in one side of a side plate (8), and the connecting plate (10) is located in the sliding groove (9) and is in sliding fit with the sliding groove (9).
6. The apparatus for stacking sheet products for die cutting as claimed in claim 5, wherein: the side part of the connecting plate (10) is provided with a limiting block (11).
7. The apparatus for stacking sheet products for die cutting as claimed in claim 6, wherein: a groove (13) is formed in the upper end of the side of the connecting plate (10), a groove body (14) is formed in the lower portion of the aligning plate (7), a steel ball (12) and a pressure spring (15) are arranged in the groove body (14), two ends of the pressure spring (15) are respectively abutted against the groove body (14) and the steel ball (12), and the steel ball (12) can enter the groove (13).
CN202222291962.XU 2022-08-30 2022-08-30 Material device is folded with slice product to cross cutting processing Active CN218289846U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222291962.XU CN218289846U (en) 2022-08-30 2022-08-30 Material device is folded with slice product to cross cutting processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222291962.XU CN218289846U (en) 2022-08-30 2022-08-30 Material device is folded with slice product to cross cutting processing

Publications (1)

Publication Number Publication Date
CN218289846U true CN218289846U (en) 2023-01-13

Family

ID=84811168

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222291962.XU Active CN218289846U (en) 2022-08-30 2022-08-30 Material device is folded with slice product to cross cutting processing

Country Status (1)

Country Link
CN (1) CN218289846U (en)

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