CN224168647U - Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate - Google Patents

Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate

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Publication number
CN224168647U
CN224168647U CN202520819713.4U CN202520819713U CN224168647U CN 224168647 U CN224168647 U CN 224168647U CN 202520819713 U CN202520819713 U CN 202520819713U CN 224168647 U CN224168647 U CN 224168647U
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China
Prior art keywords
die
groove
locking piece
forging
heat dissipation
Prior art date
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Active
Application number
CN202520819713.4U
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Chinese (zh)
Inventor
岳国东
陈继忠
俞强
邵金娟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Ruitaike Heat Dissipation Technology Co ltd
Original Assignee
Suzhou Ruitaike Heat Dissipation Technology Co ltd
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Application filed by Suzhou Ruitaike Heat Dissipation Technology Co ltd filed Critical Suzhou Ruitaike Heat Dissipation Technology Co ltd
Priority to CN202520819713.4U priority Critical patent/CN224168647U/en
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Publication of CN224168647U publication Critical patent/CN224168647U/en
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Abstract

The utility model discloses a forging device for multi-station synchronous processing of a metal plate of a heat dissipation expansion plate, which comprises a lower base, a lower die, a first locking piece, an upper base, a lifting seat, a second die groove, an upper die, a second locking piece and a forging head, wherein the top of the lower base is provided with a first die groove, the lower die is assembled in the first die groove, the top of the lower die is provided with a plurality of forming grooves for positioning the plate, the end parts of the first locking piece are respectively and laterally inserted into a first movable groove of the lower base and a first slot of the lower die, the upper base is arranged on the lower base in a lifting manner through a strut at a corner, the lifting seat is in butt joint with a connecting shaft driven by lifting of the bottom of the upper base, the bottom of the upper die is provided with the second die groove, the upper die is assembled in the second die groove, the bottom of the upper die is driven by lifting of the second die groove, and the end parts of the second locking piece are respectively and laterally inserted into a second movable groove of the lifting seat and a second slot of the upper die. The utility model can solve the problems that the existing forging device is difficult to adapt to forging requirements of plate pieces with various specifications and shapes and has low production efficiency.

Description

Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate
Technical Field
The utility model relates to the technical field of forging devices, in particular to a forging device for multi-station synchronous processing of a metal plate of a heat dissipation expansion plate.
Background
When the metal substrate of the heat dissipation inflation plate is processed, forging and pressing processing is needed, so that the plate achieves the required size and shape. The forging process is a combination of forging and stamping, and generally refers to a forming processing method for obtaining a workpiece with a required shape and size by applying pressure to a blank by using a hammer head, an anvil block, a punch head or a die of a forging machine to make the blank plastically deformed. The blank positioning jig and the forging structure in the existing forging device are generally fixed on the surface of the device, so that the forging requirements of plates with various specifications and shapes are difficult to adapt, various forging devices are required to be equipped, the cost is increased, only a single plate can be forged at a time, and the production efficiency is low.
Disclosure of utility model
The utility model aims to solve the problems that the existing forging device is difficult to adapt to forging requirements of plates with various specifications and shapes and has low production efficiency, and provides a forging device for synchronously processing metal plates of a heat dissipation expansion plate in multiple stations.
In order to achieve the above purpose, the utility model adopts the following technical scheme that the forging device for synchronously processing the metal plate of the heat dissipation expansion plate comprises:
a lower base, the top of which is provided with a first mould groove;
The lower die is assembled in the first die groove, and a plurality of forming grooves for positioning the plate are formed in the top of the lower die;
The end parts of the first locking piece are respectively laterally inserted into the first movable groove of the lower base and the first slot of the lower die;
An upper base which is elevated and arranged on the lower base through a pillar at a corner;
The lifting seat is in butt joint with a connecting shaft driven by lifting at the bottom of the upper base, and a second die groove is formed in the bottom of the lifting seat;
The upper die is assembled in the second die groove, and the bottom of the upper die is provided with a forging head in a lifting driving manner;
The end parts of the second locking piece are respectively and laterally inserted into the second movable groove of the lifting seat and the second slot of the upper die.
As a further description of the above technical solution:
The first locking piece and the second locking piece are of U-shaped structures.
As a further description of the above technical solution:
The first movable groove is internally provided with a first elastic piece, the first elastic piece applies inward elastic tension to the first locking piece, one end of the first locking piece is provided with a first limiting block, and the first limiting block is abutted to the side face of the lower die and the outer side of the first slot.
As a further description of the above technical solution:
The second movable groove is internally provided with a second elastic piece, the second elastic piece applies inward elastic tension to the second locking piece, one end of the second locking piece is provided with a second limiting block, and the second limiting block is abutted to the side face of the upper die and the outer side of the second slot.
As a further description of the above technical solution:
The shaping groove sets up in the top of mounting box, the mounting box embedding location is in the mounting groove of bed die, set up first blotter between mounting groove and the mounting box.
As a further description of the above technical solution:
The lifting seat is assembled on the connecting shaft through a flange plate and bolts.
As a further description of the above technical solution:
The support column is arranged in the hole at the corner of the lifting seat in a sliding manner, the lower end of the connecting shaft is extended to form a positioning column, the positioning column is arranged in the connecting hole of the lifting seat and the upper die in a penetrating manner, and the lower end of the positioning column is inserted into the limiting groove of the lower die.
As a further description of the above technical solution:
And a second buffer cushion is arranged between the second die groove and the upper die.
In summary, due to the adoption of the technical scheme, compared with the prior art, the utility model has the following
The beneficial effects are that:
the upper die and the lower die for positioning the metal plate and arranging the forging heads in the forging device are detachably arranged with the device, so that the multistation and mass synchronous forging processing of plates with multiple specifications is satisfied, and the production efficiency is improved. The die and the corresponding structure are locked or unlocked through the locking piece, and the operation is simple and labor-saving. The upper die and the lower die are provided with buffer pads so as to buffer impact force transmitted to the dies when the forging head forges metal plates, and the service life of the device is prolonged. The device has high forging precision and good metal plate forming quality.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some embodiments of the present utility model and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural diagram of a forging device for multi-station synchronous processing of a metal plate of a heat dissipation expansion plate.
Fig. 2 is a cross-sectional view of a lower base, a lower die, a lifting seat and an upper die in a forging device for synchronously processing a metal plate of a heat dissipation expansion plate in multiple stations.
Legend description:
1. A lower base; 2, a first mould groove, 3, a lower mould, 4, a forming groove, 5, a first locking piece, 6, a first movable groove, 7, a first slot, 8, an upper base, 9, a strut, 10, a connecting shaft, 11, a lifting seat, 12, a second mould groove, 13, an upper mould, 14, a forging head, 15, a second locking piece, 16, a second movable groove, 17, a second slot, 18, a first elastic piece, 19, a first limiting block, 20, a second elastic piece, 21, a second limiting block, 22, a mounting box, 23, a mounting groove, 24, a first cushion pad, 25, a flange plate, 26, a positioning column, 27, a connecting hole, 28, a limiting groove and 29, a second cushion pad.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Referring to FIGS. 1-2, the present utility model provides a forging device for synchronously processing a metal plate of a heat dissipation and expansion plate at multiple stations, comprising:
a lower base 1, the top of which is provided with a first mold groove 2;
The lower die 3 is assembled in the first die groove 2, and a plurality of forming grooves 4 for positioning the plate are formed in the top of the lower die;
The end parts of the first locking piece 5 are respectively laterally inserted into the first movable groove 6 of the lower base 1 and the first slot 7 of the lower die 3;
An upper base 8 elevated on the lower base 1 by a pillar 9 at a corner;
The lifting seat 11 is in butt joint with the connecting shaft 10 driven by lifting at the bottom of the upper base 8, and the bottom of the lifting seat is provided with a second mould groove 12;
An upper die 13 fitted in the second die groove 12, and provided with a forging head 14 driven to rise and fall at the bottom thereof;
The end parts of the second locking piece 15 are respectively inserted into the second movable groove 16 of the lifting seat 11 and the second slot 17 of the upper die 13 in a lateral direction.
The first locking piece 5 and the second locking piece 15 are of U-shaped structures. After the locking piece is spliced with the corresponding structure, a gap is reserved between the middle part of the locking piece and the surface of the device so as to facilitate grabbing, and the locking piece is disassembled and assembled, so that the convenience of assembling the upper die and the lower die is improved.
The first movable groove 6 is internally provided with a first elastic piece 18, the first elastic piece 18 applies inward elastic tension to the first locking piece 5, one end of the first locking piece 5 is provided with a first limiting block 19, and the first limiting block 19 is abutted against the side surface of the lower die 3 and the outer side of the first slot 7. The second movable groove 16 is internally provided with a second elastic piece 20, the second elastic piece 20 applies inward elastic tension to the second locking piece 15, one end of the second locking piece 15 is provided with a second limiting block 21, and the second limiting block 21 is abutted against the side surface of the upper die 13 and the outer side of the second slot 17. Therefore, the elastic pre-tightening of the structure after the locking piece is spliced with the corresponding structure is realized, so that the positioning strength of the die is improved.
The forming groove 4 is arranged on the top of the mounting box 22, the mounting box 22 is embedded and positioned in a mounting groove 23 of the lower die 3, and a first cushion 24 is arranged between the mounting groove 23 and the mounting box 22. Therefore, impact force transmitted to the lower die 3 when the forging head 14 is used for forging the metal plate is buffered, structural damage of the device is reduced, and service life is prolonged.
The lifting seat 11 is assembled on the connecting shaft 10 through a flange plate 25 and bolts.
The support column 9 is slidably inserted into a hole at the corner of the lifting seat 11, a positioning column 26 extends from the lower end of the connecting shaft 10, the positioning column 26 is inserted into a connecting hole 27 of the lifting seat 11 and the upper die 13, and the lower end of the positioning column is inserted into a limiting groove 28 of the lower die 3. Thereby improving the stability of lifting seat 11 drive lifting, after upper and lower mould closure, the reference column 26 inserts spacing groove 28, guarantees the accurate amalgamation of two moulds from this, and forging head 14 and shaping groove 4 and inside plate's high accuracy butt joint, and then improves forging and pressing shaping precision.
A second cushion 29 is provided between the second mold groove 12 and the upper mold 13. Therefore, impact force transmitted to the upper die 13 when the forging head 14 is used for forging the metal plate is buffered, structural damage of the device is reduced, and service life is prolonged.
The connecting shaft 10 and the forging head 14 are driven to rise and fall by hydraulic cylinders, and other driving methods such as an air cylinder and an electric cylinder may be used instead.
The working principle of the forging device for multi-station synchronous processing of the metal plate of the heat dissipation and expansion plate comprises that before use, corresponding upper and lower dies are selected based on the metal plate corresponding to the heat dissipation and expansion plate, a locking piece is pulled out to be separated from a slot of the corresponding die, the dies are respectively assembled in the die slots, the locking piece is released, and therefore the dies are positioned on the device.
In summary, due to the adoption of the technical scheme, the forging device for multi-station synchronous processing of the metal plate of the heat dissipation and expansion plate has the following beneficial effects compared with the prior art:
the upper die and the lower die for positioning the metal plate and arranging the forging heads in the forging device are detachably arranged with the device, so that the multistation and mass synchronous forging processing of plates with multiple specifications is satisfied, and the production efficiency is improved. The die and the corresponding structure are locked or unlocked through the locking piece, and the operation is simple and labor-saving. The upper die and the lower die are provided with buffer pads so as to buffer impact force transmitted to the dies when the forging head forges metal plates, and the service life of the device is prolonged. The device has high forging precision and good metal plate forming quality.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (8)

1. The utility model provides a heat dissipation is forging and pressing device of synchronous processing of multistation for sheet metal of inflation board, its characterized in that includes:
a lower base, the top of which is provided with a first mould groove;
The lower die is assembled in the first die groove, and a plurality of forming grooves for positioning the plate are formed in the top of the lower die;
The end parts of the first locking piece are respectively laterally inserted into the first movable groove of the lower base and the first slot of the lower die;
An upper base which is elevated and arranged on the lower base through a pillar at a corner;
The lifting seat is in butt joint with a connecting shaft driven by lifting at the bottom of the upper base, and a second die groove is formed in the bottom of the lifting seat;
The upper die is assembled in the second die groove, and the bottom of the upper die is provided with a forging head in a lifting driving manner;
The end parts of the second locking piece are respectively and laterally inserted into the second movable groove of the lifting seat and the second slot of the upper die.
2. The forging device for synchronously processing metal plates of heat dissipation and expansion plates by multiple stations according to claim 1, wherein the first locking piece and the second locking piece are of U-shaped structures.
3. The forging device for multi-station synchronous processing of metal plates of a heat dissipation and expansion plate according to claim 1, wherein a first elastic piece is arranged in the first movable groove, the first elastic piece applies inward elastic tension to the first locking piece, one end of the first locking piece is provided with a first limiting block, and the first limiting block is abutted against the side face of the lower die and the outer side of the first slot.
4. The forging device for multi-station synchronous processing of metal plates of a heat dissipation and expansion plate according to claim 1, wherein a second elastic piece is arranged in the second movable groove, the second elastic piece applies inward elastic tension to the second locking piece, one end of the second locking piece is provided with a second limiting block, and the second limiting block is abutted against the side face of the upper die and the outer side of the second slot.
5. The forging device for synchronously processing the metal plate of the heat dissipation and expansion plate by multiple stations according to claim 1, wherein the forming groove is formed at the top of the mounting box, the mounting box is embedded and positioned in the mounting groove of the lower die, and a first buffer cushion is arranged between the mounting groove and the mounting box.
6. The forging device for synchronously processing metal plates of a heat dissipation and expansion plate according to claim 1, wherein the lifting seat is assembled on the connecting shaft through a flange plate and bolts.
7. The forging device for synchronously processing the metal plate of the heat dissipation and expansion plate by multiple stations according to claim 1, wherein the support posts are slidably arranged in holes at corners of the lifting seat in a penetrating manner, the lower ends of the connecting shafts are extended to form positioning columns, the positioning columns are arranged in connecting holes of the lifting seat and the upper die in a penetrating manner, and the lower ends of the positioning columns are inserted into limiting grooves of the lower die in a penetrating manner.
8. The forging device for synchronously processing the metal plate of the heat dissipation and expansion plate by multiple stations according to claim 1, wherein a second buffer pad is arranged between the second die groove and the upper die.
CN202520819713.4U 2025-04-28 2025-04-28 Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate Active CN224168647U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520819713.4U CN224168647U (en) 2025-04-28 2025-04-28 Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520819713.4U CN224168647U (en) 2025-04-28 2025-04-28 Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate

Publications (1)

Publication Number Publication Date
CN224168647U true CN224168647U (en) 2026-04-28

Family

ID=99539598

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520819713.4U Active CN224168647U (en) 2025-04-28 2025-04-28 Forging and pressing device for multi-station synchronous machining of metal plates of heat dissipation inflation plate

Country Status (1)

Country Link
CN (1) CN224168647U (en)

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