CN209935649U - Punching tool - Google Patents

Punching tool Download PDF

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Publication number
CN209935649U
CN209935649U CN201920782711.7U CN201920782711U CN209935649U CN 209935649 U CN209935649 U CN 209935649U CN 201920782711 U CN201920782711 U CN 201920782711U CN 209935649 U CN209935649 U CN 209935649U
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China
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plate
punch
hole
shape
block
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CN201920782711.7U
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Chinese (zh)
Inventor
程国华
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Hangzhou Jay Automation Equipment Co Ltd
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Hangzhou Jay Automation Equipment Co Ltd
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Priority to CN201920782711.7U priority Critical patent/CN209935649U/en
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Abstract

The utility model discloses a die-cut frock, including last mounting panel, bed hedgehopping piece, the slider pad, a plurality of sliding block board, the friction plate, the fixed plate, take off the flitch, the die cavity board, increase the piece, lower mounting panel, the first power body of a plurality of, the second power body, a plurality of drift, the big spring of a plurality of, the first little spring of a plurality of, it fills up fixed connection through bed hedgehopping piece and slider to go up the mounting panel, sliding block board and slider pad sliding connection, sliding block board and first power body electric connection, drift and second power body electric connection, friction plate and drift sliding connection, fixed plate and drift sliding connection, take off flitch and drift sliding connection, the shaping groove cooperatees with the drift, the die cavity board passes through the die cavity board and increases the piece and be connected, it is connected with lower mounting panel to increase the piece. The utility model discloses can once only take shape or die-cut same piece material board of different shapes, also can take shape or the material board of die-cut different shapes, consequently work efficiency is high, convenient to use, and is with low costs, and application scope is wide.

Description

Punching tool
Technical Field
The utility model relates to a die-cut frock.
Background
The existing material plate forming or punching shapes are various, so that the different shapes of the material plate needing to be formed or punched need to be formed or punched for multiple times, and different types of punching machines are needed for forming or punching, so that the material plates with different shapes cannot be formed or punched at one time, and the different material plates needing to be formed or punched need to be completed by a plurality of punching machines, so that the working efficiency is low, the cost is high, the use is inconvenient, and the operation is troublesome.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the not enough in the current product, provide a die-cut frock.
In order to achieve the purpose, the utility model is realized by the following technical scheme:
a punching tool comprises an upper mounting plate, a heightening block, a sliding block pad, a plurality of sliding block plates, a friction plate, a fixed plate, a stripper plate, a concave template, a die bottom plate, a heightening block, a lower mounting plate, a plurality of first power bodies, a second power body, a plurality of punches, a plurality of large springs and a plurality of first small springs, wherein the upper mounting plate is fixedly connected with the sliding block pad through the heightening block, the sliding block plates are slidably connected with the sliding block pad, the sliding block plates are electrically connected with the first power bodies, a plurality of limiting grooves and a plurality of protruding ends are arranged on the sliding block plates, the protruding ends are located between every two adjacent limiting grooves, each punch comprises a limiting end and a protruding column, the punches are electrically connected with the second power bodies, the limiting ends are fixedly connected with the protruding columns, the width of the limiting ends is larger than that of the protruding columns, the friction plate is provided with first through holes, the fixed plate is provided with second through holes, the stripper, The diameter of the second through hole is larger than or equal to the width of the limit end, the diameter of the third through hole is larger than the width of the convex column and smaller than the width of the limit end, the friction plate is connected with the punch through the first through hole in a sliding manner, the fixed plate is connected with the punch through the second through hole in a sliding manner, the stripper plate is connected with the punch through the third through hole in a sliding manner, one end of each large spring is fixedly connected with the top end of the stripper plate, the other end of each large spring is fixedly connected with the top end of the fixed plate, the first small spring is sleeved on the punch, one end of the first small spring is fixedly connected with the bottom end of the fixed plate, the other end of the first small spring is fixedly connected with the top end of the convex column, the concave die plate is positioned below the stripper plate and used for placing a material plate to be formed, the concave die plate is provided with a plurality of forming grooves matched with the punch, the forming grooves are, the heightening block is connected with the lower mounting plate, and the convex column is used for forming or punching.
Preferably, the upper mounting plate, the block-up block, the slide block pad, the slide block plate, the friction plate, the fixing plate and the stripper plate are arranged from top to bottom in sequence.
Preferably, the cavity plate, the die base plate, the heightening block and the lower mounting plate are arranged from top to bottom in sequence.
Preferably, the first power body and the second power body both comprise air cylinders or oil cylinders.
Preferably, the bottom end of the plurality of convex columns has an oval shape, a circular shape, a square shape and a rectangular shape, and the bottom end of the plurality of forming grooves has an oval shape, a circular shape, a square shape and a rectangular shape.
Preferably, the shapes of the bottom ends of the plurality of lugs are the same, and the shapes of the dry forming grooves are the same.
Preferably, the shapes of the bottom ends of the plurality of convex columns are different, and the shapes of the dry forming grooves are different.
Preferably, the sliding block plate is connected with the sliding block pad in a sliding mode in the horizontal direction, the friction plate is connected with the punch in a sliding mode in the vertical direction through the first through hole, the fixing plate is connected with the punch in a sliding mode in the vertical direction through the second through hole, and the stripper plate is connected with the punch in a sliding mode in the vertical direction through the third through hole.
The utility model has the advantages as follows: the utility model discloses can once only take shape or die-cut same piece material board of different shapes, also can take shape or the material board of die-cut different shapes, consequently work efficiency is high, convenient to use, and is with low costs, and application scope is wide.
Drawings
Fig. 1 is a cross-sectional view of the present invention;
FIG. 2 is a schematic structural view of the slider plate;
FIG. 3 is a top view of a first shape of a plurality of posts and shaped grooves;
fig. 4 is a top view of a second shape of a plurality of posts and shaped grooves.
Detailed Description
The technical scheme of the utility model is further explained by combining the attached drawings of the specification:
as shown in fig. 1 to 2, a punching tool includes an upper mounting plate 1, a block-up block 2, a sliding block pad 3, a plurality of sliding block plates 4, a friction plate 5, a fixing plate 6, a stripper plate 7, a cavity plate 11, a die bottom plate 12, a heightening block 13, a lower mounting plate 14, a plurality of first power bodies 15, a second power body 16, a plurality of punches 8, a plurality of large springs 9, and a plurality of first small springs 10, wherein the upper mounting plate 1 is fixedly connected with the sliding block pad 3 through the block-up block 2, the sliding block plates 4 are slidably connected with the sliding block pad 3, the sliding block plates 4 are electrically connected with the first power bodies 15, a plurality of limiting grooves 41 and a plurality of protruding ends 42 are arranged on the sliding block plates 4, the protruding ends 42 are located between two adjacent limiting grooves 41, each punch 8 includes a limiting end 81 and a convex pillar 82, and each convex pillar 82 is used for forming or punching. The punch 8 is electrically connected with the second power body 16, the limiting end 81 is fixedly connected with the convex column 82, the width of the limiting end 81 is greater than that of the convex column 82, the friction plate 5 is provided with a first through hole 51, the fixing plate 6 is provided with a second through hole 61, the stripper plate 7 is provided with a third through hole 71, the diameter of the first through hole 51 and the diameter of the second through hole 61 are both greater than or equal to that of the limiting end 81, the diameter of the third through hole 71 is greater than that of the convex column 82 and smaller than that of the limiting end 81, the friction plate 5 is slidably connected with the punch 8 through the first through hole 51, the fixing plate 6 is slidably connected with the punch 8 through the second through hole 61, the stripper plate 7 is slidably connected with the punch 8 through the third through hole 71, one end of the large springs 9 is fixedly connected with the top end of the stripper plate 7, and the other end of the large springs 9 is fixedly connected with the top end of the fixing plate 6, the first small spring 10 is sleeved on the punch 8, one end of the first small spring 10 is fixedly connected with the bottom end of the fixing plate 6, the other end of the first small spring 10 is fixedly connected with the top end of the convex column 82, the concave die plate 11 is located below the stripper plate 7, the concave die plate 11 is used for placing a material plate to be formed or punched, the concave die plate 11 is provided with a plurality of forming grooves 111, the forming grooves 111 are matched with the punch 8, the forming grooves 111 are aligned with the punch 8, the concave die plate 11 is connected with the heightening block 13 through the die bottom plate 12, and the heightening block 13 is connected with the lower mounting plate 14. The upper mounting plate 1, the heightening block 2, the sliding block pad 3, the sliding block plate 4, the friction plate 5, the fixing plate 6 and the stripper plate 7 are arranged from top to bottom in sequence. The concave die plate 11, the die bottom plate 12, the heightening block 13 and the lower mounting plate 14 are arranged from top to bottom in sequence. The first power body 15 and the second power body 16 both comprise an air cylinder or an oil cylinder. The shapes of the bottom ends of the plurality of convex columns 82 comprise an ellipse, a circle, a square and a rectangle, and the shapes of the plurality of forming grooves 111 comprise an ellipse, a circle, a square and a rectangle. The bottom ends of the plurality of bosses 82 are identical or different in shape, and the dry forming grooves 111 are identical or different in shape. The slider plate 4 is connected with the slider pad 3 in a sliding manner along the horizontal direction, the friction plate 5 is connected with the punch 8 in a sliding manner along the vertical direction through the first through hole 51, the fixing plate 6 is connected with the punch 8 in a sliding manner along the vertical direction through the second through hole 61, and the stripper plate 7 is connected with the punch 8 in a sliding manner along the vertical direction through the third through hole 71.
The working principle is as follows:
as shown in fig. 1 to 2, the first power body 15 drives the slider plate 4 to slide left and right, the slider plate 4 is provided with a plurality of limiting grooves 41 and a plurality of protruding ends 42, the protruding ends 42 are located between two adjacent limiting grooves 41, when one punch 8 is located right below the limiting groove 41, the punch 8 moves to the position of the limiting groove 41 by the elastic force of the first small spring 10, when the other punch 8 is located right below the protruding end 42, the punch 8 moves to the position of the protruding end 42 by the elastic force of the first small spring 10, therefore, the height of the punch 8 moving to the position of the limiting groove 41 is higher than the punch 8 moving to the position of the protruding end 42, then the second power body 16 drives the plurality of punches 8 to slide downward, the diameter of the first through hole 51 and the diameter of the second through hole 61 are both greater than or equal to the width of the limiting end 81, the diameter of the third through hole 71 is greater than the width of the protruding column 82 and smaller than the width of the limiting end 81, therefore, the plurality of punches 8 slide downwards in the friction plate 5 and the fixing plate 6, when the plurality of punches 8 move to the stripper plate 7, the diameter of the third through hole 71 is larger than the width of the convex column 82 and smaller than the width of the limit end 81, the plurality of punches 8 drive the stripper plate 7 to continue to move downwards, at this time, the plurality of large springs 9 are stretched, the first small springs 10 are compressed, the distance of downward movement of the punches 8 moving to the position of the limit groove 41 is longer due to the power of the second power body 16, the distance of downward movement of the punches 8 moving to the position of the limit groove 41 is shorter due to the height of the punches 8 moving to the position of the convex end 42 being higher than the distance of downward movement of the punches 8 moving to the position of the convex end 42 being lower due to the power of the second power body 16, so that the gravity of the punches 8 moving to the position of the limit groove 41 does work more than the gravity of the punches 8 moving to the position of the convex end 42, therefore, the punch 8 moving to the position of the limiting groove 41 can move to the forming groove 111, the punch 8 moving to the position of the protruding end 42 cannot move to the forming groove 111, during forming, a material plate is placed on the forming groove 111, so that the punches below the limiting groove 41 are selected for forming or punching, the punches below the protruding end 42 are not selected for forming or punching, then the selected punches are matched with the forming grooves 111 aligned with the selected punches to form or punch the material plate, then the big spring 9 drives the punches to move upwards by the elastic force of resilience, when one punch 8 is positioned right below the limiting groove 41, the punch 8 is moved to the position of the limiting groove 41 by the elastic force of the first small spring 10, when the other punch 8 is positioned right below the protruding end 42, the punch 8 is moved to the position of the protruding end 42 by the elastic force of the first small spring 10, the material plate is formed or punched by the repeated movement.
The shapes of the bottom ends of the plurality of convex columns 82 comprise an ellipse, a circle, a square and a rectangle, the shapes of the plurality of forming grooves 111 comprise an ellipse, a circle, a square and a rectangle, if the shapes of the bottom ends of the plurality of convex columns 82 are the same, and the shapes of the dry forming grooves 111 are the same, the same shape of a plurality of different positions on the same material plate can be formed or punched, and the shapes of the dry forming grooves 111 are the same or different.
If the shapes of the bottom ends of the plurality of convex columns 82 are different and the shapes of the dry forming grooves 111 are different, the forming or punching machine can form or punch a plurality of different shapes at different positions on the same material plate, and can select the punch 8 which needs to form or punch the shape, so that the position where the shape is formed or punched can be selected according to the requirement of people.
As shown in fig. 3, the number of the punches 8 and the forming grooves 111 is 5, and the 5 punches 8 and the forming grooves 111 are all oval, so that the oval at 5 positions on the same material plate can be formed or punched, and the oval at 1 position, 2 positions, 3 positions or 4 positions on the same material plate can be formed or punched according to the requirements of customers.
As shown in fig. 4, the number of the punches 8 and the forming grooves 111 is 5, and the shapes of the 5 punches 8 and the forming grooves 111 are different, so that the present invention can form or die-cut the shapes of 5 positions on the same material plate, specifically, see fig. 4, and can form or die-cut the shapes of 1 position, 2 positions, 3 positions or 4 positions on the same material plate according to the requirements of customers.
The utility model discloses can once only take shape or die-cut same piece material board of different shapes, also can take shape or the material board of die-cut different shapes, consequently work efficiency is high, convenient to use, and is with low costs, and application scope is wide.
It should be noted that the above list is only one specific embodiment of the present invention. Obviously, the present invention is not limited to the above embodiments, and many modifications can be made, and in short, all modifications that can be directly derived or suggested by the person skilled in the art from the disclosure of the present invention should be considered as the protection scope of the present invention.

Claims (8)

1. A punching tool is characterized by comprising an upper mounting plate (1), a block-up block (2), a sliding block pad (3), a plurality of sliding block plates (4), a friction plate (5), a fixing plate (6), a stripper plate (7), a cavity plate (11), a die bottom plate (12), a heightening block (13), a lower mounting plate (14), a plurality of first power bodies (15), a second power body (16), a plurality of punches (8), a plurality of large springs (9) and a plurality of first small springs (10), wherein the upper mounting plate (1) is fixedly connected with the sliding block pad (3) through the block-up block (2), the sliding block plates (4) are in sliding connection with the sliding block pad (3), the sliding block plates (4) are electrically connected with the first power bodies (15), a plurality of limiting grooves (41) and a plurality of protruding ends (42) are arranged on the sliding block plates (4), and the protruding ends (42) are positioned between two adjacent limiting grooves (41), the punch (8) comprises a limiting end (81) and a convex column (82), the punch (8) is electrically connected with the second power body (16), the limiting end (81) is fixedly connected with the convex column (82), the width of the limiting end (81) is greater than that of the convex column (82), the friction plate (5) is provided with a first through hole (51), the fixing plate (6) is provided with a second through hole (61), the stripper plate (7) is provided with a third through hole (71), the diameter of the first through hole (51) and the diameter of the second through hole (61) are both greater than or equal to that of the limiting end (81), the diameter of the third through hole (71) is greater than that of the convex column (82) and less than that of the limiting end (81), the friction plate (5) is slidably connected with the punch (8) through the first through hole (51), and the fixing plate (6) is slidably connected with the punch (8) through the second through hole (61), the stripper plate (7) is slidably connected with the punch (8) through a third through hole (71), one end of each large spring (9) is fixedly connected with the top end of the stripper plate (7), the other end of each large spring (9) is fixedly connected with the top end of the fixing plate (6), the first small spring (10) is sleeved on the punch (8), one end of the first small spring (10) is fixedly connected with the bottom end of the fixing plate (6), the other end of the first small spring (10) is fixedly connected with the top end of the convex column (82), the concave die plate (11) is positioned below the stripper plate (7), the concave die plate (11) is used for placing a material plate to be formed or punched, the concave die plate (11) is provided with a plurality of forming grooves (111), the forming grooves (111) are matched with the punch (8), and the forming grooves (111) are aligned with the punch (8), the die plate (11) is connected with the heightening block (13) through the die bottom plate (12), the heightening block (13) is connected with the lower mounting plate (14), and the convex column (82) is used for forming or punching.
2. The punching tool according to claim 1, wherein the upper mounting plate (1), the block-up block (2), the slider pad (3), the slider plate (4), the friction plate (5), the fixing plate (6) and the stripper plate (7) are arranged from top to bottom in sequence.
3. The punching tool according to claim 1, characterized in that the cavity plate (11), the die bottom plate (12), the heightening block (13) and the lower mounting plate (14) are arranged from top to bottom in sequence.
4. The punching tool according to claim 1, wherein the first power body (15) and the second power body (16) comprise air cylinders or oil cylinders.
5. The punching tool according to claim 1, wherein the bottom end of the plurality of protruding columns (82) has an oval shape, a circular shape, a square shape or a rectangular shape, and the shape of the plurality of forming grooves (111) has an oval shape, a circular shape, a square shape or a rectangular shape.
6. The punching tool according to claim 5, wherein the bottom ends of the plurality of protruding columns (82) are identical in shape, and the dry forming grooves (111) are identical in shape.
7. The punching tool according to claim 5, wherein the bottom ends of the plurality of protruding columns (82) are different in shape, and the dry forming grooves (111) are different in shape.
8. The punching tool according to claim 1, wherein the slider plate (4) is connected with the slider pad (3) in a sliding manner in a horizontal direction, the friction plate (5) is connected with the punch (8) in a sliding manner in a vertical direction through the first through hole (51), the fixing plate (6) is connected with the punch (8) in a sliding manner in a vertical direction through the second through hole (61), and the stripper plate (7) is connected with the punch (8) in a sliding manner in a vertical direction through the third through hole (71).
CN201920782711.7U 2019-05-28 2019-05-28 Punching tool Active CN209935649U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920782711.7U CN209935649U (en) 2019-05-28 2019-05-28 Punching tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920782711.7U CN209935649U (en) 2019-05-28 2019-05-28 Punching tool

Publications (1)

Publication Number Publication Date
CN209935649U true CN209935649U (en) 2020-01-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110076234A (en) * 2019-05-28 2019-08-02 杭州杰恺自动化设备有限公司 A kind of punching tooling

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110076234A (en) * 2019-05-28 2019-08-02 杭州杰恺自动化设备有限公司 A kind of punching tooling

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