Thin gasket stamping and cutting device
By using a large stamping table, cross-type stamping heads, and conveyor belt design, the automated demolding and collection of thin gaskets is achieved, solving the problems of low efficiency and safety hazards in existing equipment, and improving production efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-04-10
AI Technical Summary
Existing thin gasket stamping equipment is inefficient during the demolding process and poses risks of gasket leakage and safety hazards, requiring manual collection, which affects production efficiency and safety.
It adopts a large stamping table with cross-type stamping heads, cross-type rollers and winding wheels, combined with vertically distributed conveyor belts and U-shaped channels to achieve automated demolding and collection.
It improves demolding efficiency, prevents gasket leakage, reduces manual operation, lowers safety risks, and improves production efficiency and safety.
Smart Images

Figure CN224101609U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to gasket cutting device field especially relates to a thin gasket stamping cutting device. BACKGROUND
[0002] Thin gasket is a kind of precision sealing element, and its thickness is usually between 0.01-1mm, which is widely used in mechanical, electronic, energy and other fields, and its core functions include gap compensation, sealing, damping and electric conduction and heat conduction etc.Thin gasket is usually formed by stamping cutting process.Currently, most stamping equipment is equipped with single stamping head.In the process of traditional stamping equipment operation, after the stamping of metal sheet is completed, secondary demolding operation is needed manually.Some new stamping equipment introduces demolding device, but the demolding effect is still unsatisfactory, and the problem of missing part of gasket often occurs.Not only that, after demolding is completed, gaskets are scattered everywhere, and still need to be collected manually.This process not only is inefficient, but also workers need to frequently contact equipment when collecting gaskets, which has safety hazards such as hand clamping and winding, greatly threatening the personal safety of operating personnel. SUMMARY
[0003] The thin gasket stamping cutting device solves the existing problems.
[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme: a kind of thin gasket stamping cutting device, including base, the base top is provided with stamping table, and the stamping table is connected with stamping cylinder, the stamping table one side is provided with unwinding mechanism, and the stamping table other side is provided with fixed platform, the fixed platform is connected with second roller shaft, the second roller shaft one side is provided with first conveyer belt, and the first conveyer belt bottom one side is provided with second conveyer belt, the first conveyer belt and second conveyer belt are vertically distributed, the second conveyer belt one side is provided with sliding platform, and the sliding platform is inclinedly arranged, the sliding platform both sides are provided with the first limiting plate of half-enclosing stereoscopic, the sliding platform bottom is provided with discharge table, the discharge table is internally provided with U-shaped groove.
[0005] Preferably, the unwinding mechanism includes a vertical plate, the vertical plate is in inverted L-shaped structure, and the vertical plate is connected with an unwinding wheel inside, the vertical plate one side is provided with first motor, and the first motor output end is connected with first roller shaft.
[0006] Preferably, the first motor one side is provided with fixed frame, and the fixed frame one side is provided with platform.
[0007] Preferably, the stamping table bottom is provided with multiple groups of stamping heads in cross distribution.
[0008] Preferably, one side of the fixing table is connected with a fixing column, a second motor is arranged outside the fixing column, a winding wheel is connected to the output end of the second motor, a limiting device is arranged on one side of the winding wheel, and the winding wheel and the second roller are staggered in the horizontal direction.
[0009] Preferably, a roller is arranged inside the first conveying belt, the roller is connected to the output end of a third motor, the second conveying belt is connected to the output end of a fourth motor through another roller, and a first baffle is arranged on one side of the second conveying belt.
[0010] Preferably, a second limiting plate is arranged inside the first limiting plate, a second baffle is arranged at the top end of the discharging table, and the top end of the second baffle is connected to the bottom of the first limiting plate.
[0011] Preferably, an auxiliary plate is arranged inside the U-shaped groove in a matched mode.
[0012] The utility model discloses the beneficial effects are:
[0013] 1. By adopting large -scale stamping table, and setting multiple groups of stamping head that are in the cross mode below, the stamping area is larger, and the efficiency is faster.
[0014] 2. By adopting the roller and the winding wheel that are in the cross mode in the horizontal direction on the side of the stamping table, the demolding effect of the gasket is better, and the problem of gasket omission is prevented.
[0015] 3. By arranging two groups of conveying belts that are in the vertical distribution and the U-shaped groove at the discharge port, the gaskets can be neatly stacked in the U-shaped groove, manual taking is more convenient, and safety hazards are reduced. DRAWINGS
[0016] Figure 1 It is the structure schematic drawing of the utility model.
[0017] Figure 2 It is another angle structure schematic drawing of the utility model.
[0018] Figure 3 It is the split schematic drawing of the stamping table of the utility model.
[0019] Figure 4 It is the winding mechanism schematic drawing of the utility model.
[0020] Figure 5 It is the discharging mechanism schematic drawing of the utility model.
[0021] Figure 6 It is the internal mechanism schematic drawing of the discharging table of the utility model.
[0022] The figure label: 1, base; 2, punching table; 3, punching cylinder; 4, punching head; 5, vertical plate; 6, unwinding wheel; 7, first motor; 8, first roller shaft; 9, fixed frame; 10, platform; 11, fixed table; 12, second roller shaft; 13, second motor; 14, fixed column; 15, winding wheel; 16, stopper; 17, first conveying belt; 18, third motor; 19, fourth motor; 20, first baffle; 21, second conveying belt; 22, first limiting plate; 23, sliding table; 24, second limiting plate; 25, second baffle; 26, U-shaped groove; 27, auxiliary plate; 28, discharging table. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0024] Reference Figures 1-6 A thin gasket punching and cutting device, including base 1, the top of base 1 is provided with punching table 2, and punching table 2 is connected with punching cylinder 3, one side of punching table 2 is provided with unwinding mechanism, the bottom of punching table 2 is provided with multiple groups of punching head 4 distributed in cross, and the other side of punching table 2 is provided with fixed table 11, second roller shaft 12 is connected between fixed table 11, one side of second roller shaft 12 is provided with first conveying belt 17, and one side of the bottom of first conveying belt 17 is provided with second conveying belt 21, first conveying belt 17 and second conveying belt 21 are vertically distributed, one side of second conveying belt 21 is provided with sliding table 23, and sliding table 23 is provided in an inclined manner, the both sides of sliding table 23 are provided with first limiting plate 22 in a half-enclosing three-dimensional manner, the bottom of sliding table 23 is provided with discharging table 28, and U-shaped groove 26 is formed in discharging table 28; one side of fixed table 11 is connected with fixed column 14, the outer side of fixed column 14 is provided with second motor 13, the output end of second motor 13 is connected with winding wheel 15, one side of winding wheel 15 is provided with stopper 16, and winding wheel 15 and the bottom second roller shaft 12 are distributed in a staggered manner in the horizontal direction; the inside of first conveying belt 17 is provided with roller shaft, the roller shaft is connected with the output end of third motor 18, second conveying belt 21 is connected with the output end of fourth motor 19 through another roller shaft, and one side of second conveying belt 21 is provided with first baffle 20; the inside of first limiting plate 22 is provided with second limiting plate 24, the top of discharging table 28 is provided with second baffle 25, and the top of second baffle 25 is connected with the bottom of first limiting plate 22; the inside of U-shaped groove 26 is provided with auxiliary plate 27 in a close-fitting manner;
[0025] In the implementation, when the gasket is processed and collected, the upper and lower movements of the punching cylinder 3 can drive the punching table 2 to move, and the punching heads 4 at the bottom of the punching table 2 in a cross shape can punch the iron sheet. After forming, the iron sheet continues to move forward. The movement of the second motor 13 can drive the winding wheel 15 to rotate. The second roller shaft 12 arranged below the winding wheel 15 can demold the gasket. The winding wheel 15 and the second roller shaft 12 arranged below are distributed in a staggered manner in the horizontal direction, so that the gasket can be better demolded to prevent the gasket from being missed. After demolding, the movement of the third motor 18 can drive the first conveyor belt 17 to move, and the demolded gasket can be moved to the top of the second conveyor belt 21. The movement of the fourth motor 19 can drive the second conveyor belt 21 to move. The first baffle 20 is arranged on one side of the second conveyor belt 21 to prevent the gasket falling from the first conveyor belt 17 from flying out of the second conveyor belt 21. The gasket reaches the top of the sliding table 23 through the second conveyor belt 21. The first limiting plate 22 and the second limiting plate 24 arranged on the side of the sliding table 23 in a half-enclosed three-dimensional manner enable the gasket to slide to the discharge table 28 at the bottom through the inclined sliding table 23. The U-shaped groove 26 is arranged in the discharge table 28, so that the gasket can be embedded in the U-shaped groove 26. The second baffle 25 is arranged on both sides of the discharge table 28 to prevent the gasket from flying out of the discharge table 28. The auxiliary plate 27 is arranged in the U-shaped groove 26 to enable the gasket to be placed in the U-shaped groove 26 in a vertical and orderly manner. The sliding block is arranged at the bottom of the auxiliary plate 27. The auxiliary plate 27 can be moved in the U-shaped groove 26 by the continuous increase of the gasket. Finally, the gasket is taken and placed in an orderly manner. Through the above operation, the gasket can be processed and collected.
[0026] Reference Figure 1 and Figure 2 The unwinding mechanism includes a vertical plate 5 in an inverted L-shaped structure, and the vertical plate 5 is connected with an unwinding wheel 6 on the inner side. A first motor 7 is arranged on one side of the vertical plate 5, and a first roller shaft 8 is connected to the output end of the first motor 7. A fixed frame 9 is arranged on one side of the first motor 7, and a pressing platform 10 is arranged on one side of the fixed frame 9.
[0027] In the implementation, when the gasket is processed and collected, the upper and lower movements of the punching cylinder 3 can drive the punching table 2 to move, and the punching heads 4 at the bottom of the punching table 2 in a cross shape can punch the iron sheet. After forming, the iron sheet continues to move forward. The movement of the second motor 13 can drive the winding wheel 15 to rotate. The second roller shaft 12 arranged below the winding wheel 15 can demold the gasket. The winding wheel 15 and the second roller shaft 12 arranged below are distributed in a staggered manner in the horizontal direction, so that the gasket can be better demolded to prevent the gasket from being missed. After demolding, the movement of the third motor 18 can drive the first conveyor belt 17 to move, and the demolded gasket can be moved to the top of the second conveyor belt 21. The movement of the fourth motor 19 can drive the second conveyor belt 21 to move. The first baffle 20 is arranged on one side of the second conveyor belt 21 to prevent the gasket falling from the first conveyor belt 17 from flying out of the second conveyor belt 21. The gasket reaches the top of the sliding table 23 through the second conveyor belt 21. The first limiting plate 22 and the second limiting plate 24 arranged on the side of the sliding table 23 in a half-enclosed three-dimensional manner enable the gasket to slide to the discharge table 28 at the bottom through the inclined sliding table 23. The U-shaped groove 26 is arranged in the discharge table 28, so that the gasket can be embedded in the U-shaped groove 26. The second baffle 25 is arranged on both sides of the discharge table 28 to prevent the gasket from flying out of the discharge table 28. The auxiliary plate 27 is arranged in the U-shaped groove 26 to enable the gasket to be placed in the U-shaped groove 26 in a vertical and orderly manner. The sliding block is arranged at the bottom of the auxiliary plate 27. The auxiliary plate 27 can be moved in the U-shaped groove 26 by the continuous increase of the gasket. Finally, the gasket is taken and placed in an orderly manner. Through the above operation, the gasket can be processed and collected.
[0028] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A thin gasket press cutting device comprising a base (1), characterized in that: The base (1) top is provided with a stamping table (2), and the stamping table (2) is connected with a stamping cylinder (3), one side of the stamping table (2) is provided with a unwinding mechanism, and the other side of the stamping table (2) is provided with a fixed table (11), the second roller shaft (12) is connected between the fixed table (11), one side of the second roller shaft (12) is provided with a first conveyor belt (17), and one side of the bottom of the first conveyor belt (17) is provided with a second conveyor belt (21), the first conveyor belt (17) and the second conveyor belt (21) are vertically distributed, one side of the second conveyor belt (21) is provided with a sliding table (23), and the sliding table (23) is inclinedly arranged, the sliding table (23) is provided with a first limiting plate (22) which is semi-enclosed and three-dimensional on both sides, and a discharge table (28) is arranged at the bottom of the sliding table (23), and a U-shaped groove (26) is formed in the discharge table (28).
2. A thin gasket punch and cut device as defined in claim 1, wherein: The unwinding mechanism comprises a vertical plate (5), the vertical plate (5) is in inverted L-shaped structure, and the vertical plate (5) is connected with a unwinding wheel (6) on the inner side, and a first motor (7) is arranged on one side of the vertical plate (5), and a first roller shaft (8) is connected to the output end of the first motor (7).
3. A thin gasket punch and cut device as defined in claim 2 wherein: The first motor (7) is provided with a fixed frame (9) on one side, and a platform (10) is arranged on one side of the fixed frame (9).
4. A thin gasket punch and cut device as defined in claim 1 wherein: The stamping table (2) is provided with a plurality of stamping heads (4) which are cross-distributed at the bottom.
5. A thin gasket punch and cut device as defined in claim 1 wherein: The fixed table (11) is connected with a fixed column (14) on one side, and a second motor (13) is arranged on the outer side of the fixed column (14), a winding wheel (15) is connected to the output end of the second motor (13), and a limiting stopper (16) is arranged on one side of the winding wheel (15), and the winding wheel (15) and the second roller shaft (12) at the bottom are horizontally staggered.
6. A thin gasket punch and cut device as defined in claim 1 wherein: The first conveyor belt (17) is provided with a roller shaft inside, the roller shaft is connected to the output end of a third motor (18), the second conveyor belt (21) is connected to the output end of a fourth motor (19) through another roller shaft, and a first baffle (20) is arranged on one side of the second conveyor belt (21).
7. A thin gasket punch and cut device as defined in claim 1 wherein: The first limiting plate (22) is provided with a second limiting plate (24) on the inner side, the discharge table (28) is provided with a second baffle (25) at the top, and the second baffle (25) is connected to the bottom of the first limiting plate (22) at the top.
8. A thin gasket punch and cut device as defined in claim 1 wherein: The U-shaped groove (26) is provided with an auxiliary plate (27) which is in close contact inside.