CN221581929U - Metal smelting press forging processing device - Google Patents

Metal smelting press forging processing device Download PDF

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Publication number
CN221581929U
CN221581929U CN202323401545.7U CN202323401545U CN221581929U CN 221581929 U CN221581929 U CN 221581929U CN 202323401545 U CN202323401545 U CN 202323401545U CN 221581929 U CN221581929 U CN 221581929U
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CN
China
Prior art keywords
bidirectional screw
mounting seat
base
die
clamping
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Application number
CN202323401545.7U
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Chinese (zh)
Inventor
杨巡武
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Foshan Honghui Shengye Environmental Protection Equipment Co ltd
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Foshan Honghui Shengye Environmental Protection Equipment Co ltd
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Priority to CN202323401545.7U priority Critical patent/CN221581929U/en
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Publication of CN221581929U publication Critical patent/CN221581929U/en
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Abstract

The utility model relates to a metal smelting press forging processing device, which belongs to the field of metal processing and comprises a base, a support frame, a mounting seat, a die, a connecting plate, a connecting mechanism and a support table; the support frame is arranged on the base; the mounting seat is rotatably arranged on the support frame; a rotating motor for driving the installation seat to turn over is arranged on the support frame; the die and the connecting plate are both provided with two; the two connecting plates are respectively arranged on the die; the die is arranged on the mounting seat; the mounting seat is provided with a mounting groove; the connecting mechanism is arranged in the mounting groove in a sliding way, is connected with the two connecting plates, and is abutted with the mounting seat; the two support tables are arranged, and the support tables are arranged on the base in a sliding manner; the supporting table is abutted with the mounting seat; the base is provided with a moving mechanism for driving the supporting table to move. The utility model can conveniently take out the press forging from the die.

Description

Metal smelting press forging processing device
Technical Field
The utility model relates to the field of metal processing, in particular to a metal smelting press forging processing device.
Background
Forging is a combination of forging and stamping, and is 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 forging machinery to make the blank plastically deformed. Forging and pressing are mainly classified according to a forming mode and a deformation temperature, and the forging and pressing can be classified into two main types according to the forming mode; forging and pressing according to deformation temperature can be classified into hot forging and pressing, cold forging and pressing, warm forging and pressing, isothermal forging and pressing, and the like.
When forging and pressing metal, the mould that uses is generally the integrated casting shaping for the metal die forging is difficult for taking out from the mould after the shaping, and drawing of patterns efficiency is lower, and convenient to use, traditional method is scribbled the release agent on the mould surface, has increased processing cost, and the release agent can pollute the die forging, pollutes the environment simultaneously, is unfavorable for environmental protection career.
Disclosure of utility model
The utility model aims at solving the problems in the background art and provides a metal smelting press forging processing device capable of conveniently taking a press forging out of a die.
The technical scheme of the utility model is as follows: a metal smelting press forging processing device comprises a base, a support frame, a mounting seat, a die, a connecting plate, a connecting mechanism and a support table;
The support frame is arranged on the base; the mounting seat is rotatably arranged on the support frame; a rotating motor for driving the installation seat to turn over is arranged on the support frame; the die and the connecting plate are both provided with two; the two connecting plates are respectively arranged on the die; the die is arranged on the mounting seat; the mounting seat is provided with a mounting groove; the connecting mechanism is arranged in the mounting groove in a sliding way, is connected with the two connecting plates, and is abutted with the mounting seat; the two support tables are arranged, and the support tables are arranged on the base in a sliding manner; the supporting table is abutted with the mounting seat; the base is provided with a moving mechanism for driving the supporting table to move.
Preferably, the connecting mechanism comprises a clamping block, a sliding frame and a first bidirectional screw rod; two clamping blocks are arranged, and the two clamping blocks are arranged on the sliding frame in a sliding way; the first bidirectional screw rod is rotatably arranged on the sliding frame; the two clamping blocks are in threaded connection with the first bidirectional screw rod; the clamping block is in butt joint with the connecting plate.
Preferably, the connecting plate is provided with a clamping strip; the clamping block is provided with a clamping groove; the clamping strip is embedded and arranged on the clamping groove; the clamping block is clamped with the clamping strip.
Preferably, both ends of the first bidirectional screw rod are respectively provided with a handle.
Preferably, the moving mechanism comprises a driving motor, a second bidirectional screw rod and a guide rail; the driving motor is arranged on the base, the output end of the driving motor is connected with the second bidirectional screw rod, the guide rail is arranged on the base, and the supporting table is arranged on the guide rail in a sliding manner; the first bidirectional screw rod and the second bidirectional screw rod respectively comprise a first threaded part and a second threaded part with opposite threaded directions; the two supporting tables are respectively in threaded connection with a first threaded part and a second threaded part on the second bidirectional screw rod.
Preferably, the clamping block is provided with a guide inclined plane.
Compared with the prior art, the utility model has the following beneficial technical effects:
In the utility model, the specification of the die and the connecting plate is selected according to the processing requirement, and the die and the connecting plate are fixed through the connecting mechanism; the rotary motor drives the installation seat to turn over, so that the installation seat can rotate in a horizontal position, the supporting table moves to the lower part of the installation seat in a closing manner to support the installation seat, and the stability of the installation seat can be ensured during processing; the rotary motor can drive the mount pad to overturn, and the upset of that one side of accomplishing the processing is to the below, and when overturning, the press forging in the mould can be influenced by its gravity and drop, and the mould that lies in the below before then can remove the top, can directly place the material and process, can conveniently take out the press forging of accomplishing the processing, and can improve production efficiency.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present utility model;
FIG. 2 is a schematic view of a partial structure of an embodiment of the present utility model;
fig. 3 is a schematic view of a partial enlarged structure at a in fig. 2.
Reference numerals: 1. a base; 2. a support frame; 3. a mounting base; 4. a mold; 5. a connecting plate; 501. a clamping strip; 6. a connecting mechanism; 601. a clamping block; 602. a carriage; 603. a first bidirectional screw rod; 604. a handle; 605. a clamping groove; 7. a support table; 8. a moving mechanism; 801. a driving motor; 802. a second bidirectional screw rod; 803. a guide rail; 9. a rotating electric machine.
Detailed Description
Example 1
As shown in fig. 1-3, the metal smelting press forging processing device provided by the utility model comprises a base 1, a support frame 2, a mounting seat 3, a die 4, a connecting plate 5, a connecting mechanism 6 and a support table 7;
the support frame 2 is arranged on the base 1; the mounting seat 3 is rotatably arranged on the support frame 2; the support frame 2 is provided with a rotating motor 9 for driving the installation seat 3 to turn over; the two moulds 4 and the two connecting plates 5 are respectively arranged; the two connecting plates 5 are respectively arranged on the die 4; the die 4 is arranged on the mounting seat 3; the mounting seat 3 is provided with a mounting groove; the connecting mechanism 6 is arranged in the mounting groove in a sliding way, the connecting mechanism 6 is connected with the two connecting plates 5, and the connecting plates 5 are abutted with the mounting seat 3; two support tables 7 are arranged, and the support tables 7 are arranged on the base 1 in a sliding manner; the supporting table 7 is abutted with the mounting seat 3; the base 1 is provided with a moving mechanism 8 for driving the support table 7 to move.
The moving mechanism 8 comprises a driving motor 801, a second bidirectional screw 802 and a guide rail 803; the driving motor 801 is arranged on the base 1, the output end of the driving motor 801 is connected with the second bidirectional screw rod 802, the guide rail 803 is arranged on the base 1, and the supporting table 7 is arranged on the guide rail 803 in a sliding manner; the first bidirectional screw 603 and the second bidirectional screw 802 each include a first threaded portion and a second threaded portion having opposite threaded directions; the two support stands 7 are respectively screwed with a first screw portion and a second screw portion on the second bidirectional screw rod 802.
In the embodiment, two connecting plates 5 are fixed through a connecting mechanism 6, the specifications of a die 4 and the connecting plates 5 are selected according to processing requirements, and the two connecting plates are fixed through the connecting mechanism 6; the installation seat 3 is driven to overturn through the rotating motor 9, so that the installation seat 3 can rotate to a horizontal position, the driving motor 801 drives the second bidirectional screw rod 802 to rotate the guide rail 803 to guide and support the supporting table 7, the second bidirectional screw rod 802 drives the supporting table 7 to move, so that the two supporting tables 7 are close to each other and move to the lower part of the installation seat 3, the installation seat 3 is supported, the stability of the installation seat 3 can be ensured during processing, after the processing is finished, the two supporting tables 7 are driven to be separated through the moving mechanism 8, the support to the installation seat 3 is relieved, the rotating motor 9 can drive the installation seat 3 to overturn, the processed side is overturned to the lower side, during overturning, a pressed forging product in the die 4 can fall under the influence of gravity of the pressed forging product, and the die 4 positioned below in the past can move to the upper side, materials can be directly placed for processing, the processed pressed forging product can be conveniently taken out, and the production efficiency can be improved.
Example two
As shown in fig. 1-3, in the apparatus for processing metal smelting press-forged products according to the present utility model, compared with the first embodiment, the connecting mechanism 6 in the present embodiment includes a clamping block 601, a sliding frame 602, and a first bidirectional screw 603; two clamping blocks 601 are arranged, and the two clamping blocks 601 are arranged on the sliding frame 602 in a sliding manner; the first bidirectional screw 603 is rotatably arranged on the sliding frame 602; the two clamping blocks 601 are in threaded connection with the first bidirectional screw rod 603; the engagement block 601 abuts against the connection plate 5. The connecting plate 5 is provided with a clamping strip 501; the clamping block 601 is provided with a clamping groove 605; the clamping strip 501 is embedded and arranged on the clamping groove 605; the clamping block 601 is clamped with the clamping strip 501. Both ends of the first bi-directional screw 603 are respectively provided with a handle 604. The clamping block 601 is provided with a guiding inclined plane.
In this embodiment, insert joint piece 601 into the mounting groove, place mould 4 and connecting plate 5 on the mount pad 3, rotate handle 604, handle 604 drives first two-way lead screw 603 and rotates, first two-way lead screw 603 drive joint piece 601 removes, carriage 602 supports and leads joint piece 601, make joint piece 601 can remove the top of connecting plate 5, and be located the top of joint strip 501, with joint piece 601 support on mould 4, reverse rotation handle 604, make joint piece 601 remove downwards, thereby make joint strip 501 imbed in the joint groove 605, make joint piece 601 card on joint strip 501, spacing fixedly to connecting plate 5, upper and lower two sides at mount pad 3 are pressed to two connecting plates 5, thereby fix connecting plate 5.
The embodiments of the present utility model have been described in detail with reference to the drawings, but the present utility model is not limited thereto, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present utility model.

Claims (6)

1. The metal smelting press forging processing device is characterized by comprising a base (1), a support frame (2), a mounting seat (3), a die (4), a connecting plate (5), a connecting mechanism (6) and a support table (7);
The support frame (2) is arranged on the base (1); the mounting seat (3) is rotatably arranged on the supporting frame (2); a rotating motor (9) for driving the installation seat (3) to turn over is arranged on the support frame (2); the die (4) and the connecting plate (5) are both provided with two; the two connecting plates (5) are respectively arranged on the die (4); the die (4) is arranged on the mounting seat (3); the mounting seat (3) is provided with a mounting groove; the connecting mechanism (6) is arranged in the mounting groove in a sliding way, the connecting mechanism (6) is connected with the two connecting plates (5), and the connecting plates (5) are abutted with the mounting seat (3); two support tables (7) are arranged, and the support tables (7) are arranged on the base (1) in a sliding manner; the supporting table (7) is abutted with the mounting seat (3); the base (1) is provided with a moving mechanism (8) for driving the supporting table (7) to move.
2. The metal smelting press forging processing apparatus as recited in claim 1, wherein the connecting mechanism (6) includes a clamping block (601), a carriage (602) and a first bidirectional screw (603); two clamping blocks (601) are arranged, and the two clamping blocks (601) are arranged on the sliding frame (602) in a sliding way; the first bidirectional screw rod (603) is rotatably arranged on the sliding frame (602); the two clamping blocks (601) are in threaded connection with the first bidirectional screw rod (603); the clamping block (601) is abutted with the connecting plate (5).
3. A metal smelting press forging processing apparatus as recited in claim 2, wherein a clamping strip (501) is provided on the connecting plate (5); a clamping groove (605) is arranged on the clamping block (601); the clamping strip (501) is embedded and arranged on the clamping groove (605); the clamping block (601) is clamped with the clamping strip (501).
4. A metal smelting press forging apparatus according to claim 3, wherein handles (604) are provided at both ends of the first bidirectional screw (603), respectively.
5. The metal smelting press-forging processing apparatus according to claim 4, wherein the moving mechanism (8) includes a drive motor (801), a second bidirectional screw (802), and a guide rail (803); the driving motor (801) is arranged on the base (1), the output end of the driving motor (801) is connected with the second bidirectional screw rod (802), the guide rail (803) is arranged on the base (1), and the supporting table (7) is arranged on the guide rail (803) in a sliding manner; the first bidirectional screw rod (603) and the second bidirectional screw rod (802) comprise a first threaded part and a second threaded part with opposite threaded directions; the two supporting tables (7) are respectively connected with a first thread part and a second thread part on the second bidirectional screw rod (802) in a threaded mode.
6. The apparatus for working a metal-smelting press-forged product according to claim 5, wherein the engaging block (601) is provided with a guide slope.
CN202323401545.7U 2023-12-13 2023-12-13 Metal smelting press forging processing device Active CN221581929U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323401545.7U CN221581929U (en) 2023-12-13 2023-12-13 Metal smelting press forging processing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323401545.7U CN221581929U (en) 2023-12-13 2023-12-13 Metal smelting press forging processing device

Publications (1)

Publication Number Publication Date
CN221581929U true CN221581929U (en) 2024-08-23

Family

ID=92406004

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323401545.7U Active CN221581929U (en) 2023-12-13 2023-12-13 Metal smelting press forging processing device

Country Status (1)

Country Link
CN (1) CN221581929U (en)

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