CN215697345U - Continuous stamping device of aluminium disk - Google Patents

Continuous stamping device of aluminium disk Download PDF

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Publication number
CN215697345U
CN215697345U CN202121448137.5U CN202121448137U CN215697345U CN 215697345 U CN215697345 U CN 215697345U CN 202121448137 U CN202121448137 U CN 202121448137U CN 215697345 U CN215697345 U CN 215697345U
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China
Prior art keywords
power
correcting
locking
rod
roller
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CN202121448137.5U
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Chinese (zh)
Inventor
胡云真
张长权
鲍立志
陈斌
尹峰
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Hunan Haosen New Material Technology Co ltd
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Hunan Haosen New Material Technology Co ltd
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Abstract

The utility model provides an aluminum wafer continuous stamping device which comprises a machine tool, wherein an upper die is arranged on a lifting arm of the machine tool, a lower die is arranged on a machine table below the upper die, a correcting seat is arranged on the machine table in the feeding direction of the lower die, two sides of the top of the correcting seat extend upwards to form correcting side plates, a correcting top plate is connected between the tops of the two correcting side plates, a correcting roller is movably arranged between the lower parts of the two correcting side plates through a roller shaft, one end of the roller shaft penetrates through the correcting side plates to be connected with a power ring, a power pin is fixed at the edge of one side of the power ring, a driven roller is movably arranged below the correcting top plate, a feeding area is formed between the driven roller and the correcting roller, a fixed supporting plate is horizontally fixed on the correcting seat in the output direction of the feeding area, a movable pressing plate is arranged above the output end of the fixed supporting plate, and a stop assembly is arranged above the input end of the fixed supporting plate.

Description

Continuous stamping device of aluminium disk
Technical Field
The utility model relates to the technical field of aluminum wafers, in particular to a continuous stamping device for aluminum wafers.
Background
The aluminum wafer is widely applied to electronics, daily chemicals, medicines, culture and education and automobile accessories. The industries of electrical appliances, heat preservation, mechanical manufacturing, automobiles, aerospace, war industry, molds, construction, printing and the like. For example, kitchen ware articles such as non-stick pans, pressure cookers and the like, and hardware articles such as lampshades, water heater shells, stretching tank bodies and the like are one of the deep processing products of aluminum alloy plate strips with the largest use amount. When the aluminum strip is adopted to punch the aluminum wafer, the aluminum strip needs to be conveyed, the aluminum strip is pushed to be pushed through an independent cylinder in the traditional method, a plurality of cylinders need to be additionally added in the traditional method to perform matching action, and the complexity of the structure is greatly increased.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provides the continuous aluminum wafer stamping device which is simple in structure and good in using effect.
In order to achieve the purpose, the technical scheme provided by the utility model is as follows: a continuous stamping device for aluminum wafers comprises a machine tool, wherein an upper die is arranged on a lifting arm of the machine tool, a lower die is arranged on a machine table below the upper die, a correction seat is arranged on the machine table in the feeding direction of the lower die, two sides of the top of the correction seat extend upwards to form correction side plates, a correction top plate is connected between the tops of the two correction side plates, a correction roller is movably arranged between the lower parts of the two correction side plates through a roller shaft, one end of the roller shaft penetrates through the correction side plates to be connected with a power ring, a power pin is fixed at the edge of one side of the power ring, a driven roller is movably arranged below the correction top plate, a feeding area is formed between the driven roller and the correction roller, a fixed supporting plate is horizontally fixed on the correction seat in the output direction of the feeding area, a movable pressing plate is arranged above the output end of the fixed supporting plate, a stop assembly is arranged above the input end of the fixed supporting plate, and a stop power rod is arranged below the lifting arm, and the upper part of the machine tool is provided with a power connecting rod which is hinged with a power pin.
The locking assembly comprises a locking shaft, a locking deflector rod and a locking spring, wherein the locking shaft is arranged between the upper parts of the two correction side plates, a locking shaft hole is formed in the middle of the locking deflector rod, the locking shaft hole is sleeved with the locking shaft, the upper part of the locking deflector rod inclines towards the outer upper part of the correction side plates to form a power end, a buffering power wheel is movably arranged at the power end, the lower part of the locking deflector rod inclines towards the direction of the correction roller to form a locking end, one end of the locking spring is abutted against the top of the locking end, the other end of the locking spring is abutted against the upper part of one of the correction side plates, and a locking area is formed between the bottom of the locking end and the input end of the fixed support plate.
The upper portion of the machine tool is provided with a power motor, a power disc is installed on a transmission shaft of the power motor, a connecting rod pin is fixed at the edge of one side of the power disc, one end of the power connecting rod is hinged to the connecting rod pin, the other end of the power connecting rod is hinged to the power pin, one end of a stopping power rod is connected with a lifting arm, the other end of the stopping power rod is suspended above a stopping driving lever, a touch rod is installed at the suspended end of the stopping power rod along the vertical direction, the lower portion of the touch rod inclines towards the direction of a correcting roller to form a contact end, and the contact end is located above a buffering power wheel.
And a correction area is formed between the movable pressing plate and the fixed supporting plate.
The correction roof below be equipped with driven roller board, driven roller board is n shape, the driven roller is installed between driven roller board both sides lateral wall lower part, driven roller board top is equipped with tension rod, the tension rod top upwards passes the correction roof and is connected with tension nut, the cover is equipped with tension spring on the tension rod, tension spring bottom is contradicted with the driven roller board, tension spring top is contradicted bottom the correction roof.
The surface of the correcting roller is coated with an anti-slip sleeve, and the anti-slip sleeve is made of rubber or silica gel.
After the scheme is adopted, the lifting arm descends to drive the die to punch, the touch rod is simultaneously driven to descend by the stop power rod, the contact end of the touch rod is contacted with the buffer power wheel when descending, the stop deflector rod is pressed down to enable the power end of the stop deflector rod to descend, the stop spring is compressed, the stop end rises and leaves the surface of the aluminum belt, the aluminum belt is not stopped, the power motor drives the power disc to rotate when the lifting arm descends, the power disc pulls the power connecting rod when rotating, the power connecting rod drives the power ring to rotate (the lifting arm descends once, the power ring rotates once), the power connecting rod drives the correction roller to rotate for a circle when rotating, the aluminum belt is conveyed into the machine tool for a distance when rotating, the conveyed aluminum belt is corrected by the movable pressing plate and the fixed supporting plate, and enters the machine tool after correction, the aluminum disc is punched by the die, when the lifting arm finishes one-time lifting, the stopping power rod drives the touch rod to lift, the contact end of the touch rod does not lift to be in contact with the buffering power wheel any more, the stopping spring stretches to drive the stopping end of the stopping deflector rod to fall to press the aluminum belt, and the aluminum belt is positioned.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
FIG. 2 is a schematic view of the stop assembly of the present invention.
Detailed Description
The utility model will be further described with reference to the accompanying drawings, in which preferred embodiments of the utility model are: referring to the attached drawings 1 and 2, the continuous stamping device for the aluminum wafer in the embodiment comprises a machine tool, wherein an upper die 7 is installed on a lifting arm of the machine tool, a lower die 8 is installed on a machine table below the upper die 7, a correcting seat 1 is installed on the machine table in the feeding direction of the lower die 8, two sides of the top of the correcting seat 1 extend upwards to form correcting side plates 2, a correcting top plate 3 is connected between the tops of the two correcting side plates 2, a correcting roller 4 is movably installed between the lower parts of the two correcting side plates 2 through a roller shaft, the surface of the correcting roller 4 is coated with an anti-slip sleeve, the anti-slip sleeve is made of rubber or silica gel, one end of the roller shaft penetrates through the correcting side plates 2 to be connected with a power ring 6, a power pin 9 is fixed at the edge of one side of the power ring 6, a driven roller 10 is movably installed below the correcting top plate 3, a feeding area is formed between the driven roller 10 and the correcting roller 4, and a fixed supporting plate 14 is horizontally fixed on the correcting seat 1 in the output direction of the feeding area, a movable pressing plate 15 is arranged above the output end of the fixed supporting plate 14, a correction area is formed between the movable pressing plate 15 and the fixed supporting plate 14, a stopping assembly is arranged above the input end of the fixed supporting plate 14, a stopping power rod 19 is arranged below the lifting arm, a power connecting rod 20 is arranged at the upper part of the machine tool, and the power connecting rod 20 is hinged with the power pin 9.
The stopping assembly comprises a stopping shaft 16, a stopping deflector rod 17 and a stopping spring 18, wherein the stopping shaft 16 is arranged between the upper parts of the two correcting side plates 2, a stopping shaft hole is formed in the middle of the stopping deflector rod 17 and is sleeved with the stopping shaft 16, the upper part of the stopping deflector rod 17 inclines towards the outer upper part of the correcting side plates 2 to form a power end, a buffering power wheel 23 is movably arranged at the power end, the lower part of the stopping deflector rod 17 inclines towards the direction of the correcting roller 4 to form a stopping end, one end of the stopping spring 18 is abutted against the top of the stopping end, the other end of the stopping spring is abutted against the upper part of one of the correcting side plates 2, and a stopping area is formed between the bottom of the stopping end and the input end of the fixed supporting plate 14.
A power motor is installed on the upper portion of the machine tool, a power disc 21 is installed on a transmission shaft of the power motor, a connecting rod pin is fixed on the edge of one side of the power disc 21, one end of a power connecting rod 20 is hinged to the connecting rod pin, the other end of the power connecting rod is hinged to the power pin 9, one end of a stopping power rod 19 is connected with a lifting arm, the other end of the stopping power rod is suspended above a stopping deflector rod 17, a touch rod 22 is installed at the suspended end of the stopping power rod 19 in the vertical direction, the lower portion of the touch rod 22 inclines towards the direction of a correcting roller 4 to form a contact end, and the contact end is located above a buffering power wheel 23.
3 below of correction roof are equipped with driven roller board 11, and driven roller board 11 is n shape, and driven roller 10 installs between 11 both sides lateral wall lower parts of driven roller board, and 11 tops of driven roller board are equipped with tension rod 12, and the top of tension rod 12 upwards passes correction roof 3 and is connected with tension nut, and the cover is equipped with tension spring 13 on tension rod 12, and tension spring 13 bottom is contradicted with driven roller board 11, and tension spring 13 top is contradicted with 3 bottoms of correction roof.
After the scheme is adopted in the embodiment, the lifting arm descends to drive the die to punch, the touch rod is simultaneously driven to descend through the stop power rod, the contact end of the touch rod starts to contact with the buffering power wheel when descending, the stop deflector rod is pressed down to enable the power end of the stop deflector rod to descend, the stop spring is compressed, the stop end rises and leaves the surface of the aluminum strip, the aluminum strip is not stopped, the power motor drives the power disc to rotate when descending the lifting arm, the power disc pulls the power connecting rod when rotating, the power connecting rod drives the power ring to rotate (the lifting arm descends once, the power ring rotates once), the power connecting rod drives the correction roller to rotate for a circle when rotating, the aluminum strip is conveyed into the machine tool for a distance while rotating the correction roller, the conveyed aluminum strip is corrected through the movable pressing plate and the fixed pressing plate, and enters the machine tool supporting plate after correction, the aluminum wafer is punched through the die, when the lifting arm finishes one-time lifting, the stopping power rod drives the touch rod to lift, the contact end of the touch rod does not lift to be in contact with the buffering power wheel any more, the stopping spring stretches to drive the stopping end of the stopping deflector rod to fall to press the aluminum belt, and the aluminum belt is positioned.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and the scope of the present invention is not limited thereto, so that the changes in the shape and principle of the present invention should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides a continuous stamping device of aluminium disk, it is including the lathe, installs on the lifing arm of lathe and goes up mould (7), installs lower mould (8), its characterized in that on the board of going up mould (7) below: a correcting seat (1) is installed on a machine table in the feeding direction of a lower die (8), two sides of the top of the correcting seat (1) extend upwards to form correcting side plates (2), a correcting top plate (3) is connected between the tops of the two correcting side plates (2), a correcting roller (4) is movably installed between the lower parts of the two correcting side plates (2) through a roller shaft, one end of the roller shaft penetrates through the correcting side plates (2) to be connected with a power ring (6), a power pin (9) is fixed at the edge of one side of the power ring (6), a driven roller (10) is movably installed below the correcting top plate (3), a feeding area is formed between the driven roller (10) and the correcting roller (4), a fixed supporting plate (14) is horizontally fixed on the correcting seat (1) in the output direction of the feeding area, a movable pressing plate (15) is installed above the output end of the fixed supporting plate (14), and a stopping assembly is installed above the input end of the fixed supporting plate (14), the lower part of the lifting arm is provided with a stop power rod (19), the upper part of the machine tool is provided with a power connecting rod (20), and the power connecting rod (20) is hinged with the power pin (9).
2. The continuous aluminum wafer stamping device as claimed in claim 1, wherein: the locking assembly comprises a locking shaft (16), a locking deflector rod (17) and a locking spring (18), wherein the locking shaft (16) is installed between the upper parts of the two correction side plates (2), a locking shaft hole is formed in the middle of the locking deflector rod (17), the locking shaft hole is sleeved with the locking shaft (16), the upper part of the locking deflector rod (17) inclines towards the outer upper part of the correction side plates (2) to form a power end, a buffering power wheel (23) is movably installed at the power end, the lower part of the locking deflector rod (17) inclines towards the direction of the correction roller (4) to form a locking end, one end of the locking spring (18) is abutted against the top of the locking end, the other end of the locking spring is abutted against the upper part of one of the correction side plates (2), and a locking area is formed between the bottom of the locking end and the input end of the fixed supporting plate (14).
3. The continuous aluminum wafer stamping device as claimed in claim 1, wherein: the power motor is installed on machine tool upper portion, power disc (21) is installed on power motor's the transmission shaft, power disc (21) wherein one side edge is fixed with the connecting rod round pin, power connecting rod (20) one end is articulated with the connecting rod round pin, the other end is articulated with power round pin (9), locking power rod (19) one end is connected with the lifing arm, the other end is unsettled in locking driving lever (17) top, the free end of locking power rod (19) is installed along vertical direction and is touched feeler lever (22), touch feeler lever (22) lower part forms the contact jaw to correction roller (4) direction slope, the contact jaw is located buffering power wheel (23) top.
4. The continuous aluminum wafer stamping device as claimed in claim 1, wherein: a correction area is formed between the movable pressing plate (15) and the fixed supporting plate (14).
5. The continuous aluminum wafer stamping device as claimed in claim 1, wherein: it is equipped with driven roller board (11) to rectify roof (3) below, driven roller board (11) are n shape, install between driven roller board (11) both sides lateral wall lower part driven roller (10), driven roller board (11) top is equipped with tension rod (12), tension rod (12) top upwards passes and rectifies roof (3) and is connected with tension nut, the cover is equipped with tension spring (13) on tension rod (12), tension spring (13) bottom is contradicted with driven roller board (11), tension spring (13) top is contradicted with rectification roof (3) bottom.
6. The continuous aluminum wafer stamping device as claimed in claim 1, wherein: the surface of the correcting roller (4) is coated with an anti-slip sleeve, and the anti-slip sleeve is made of rubber or silica gel.
CN202121448137.5U 2021-06-29 2021-06-29 Continuous stamping device of aluminium disk Active CN215697345U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121448137.5U CN215697345U (en) 2021-06-29 2021-06-29 Continuous stamping device of aluminium disk

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121448137.5U CN215697345U (en) 2021-06-29 2021-06-29 Continuous stamping device of aluminium disk

Publications (1)

Publication Number Publication Date
CN215697345U true CN215697345U (en) 2022-02-01

Family

ID=80045545

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121448137.5U Active CN215697345U (en) 2021-06-29 2021-06-29 Continuous stamping device of aluminium disk

Country Status (1)

Country Link
CN (1) CN215697345U (en)

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