CN222198777U - Automatic turning device of forging processing - Google Patents

Automatic turning device of forging processing Download PDF

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Publication number
CN222198777U
CN222198777U CN202421008206.4U CN202421008206U CN222198777U CN 222198777 U CN222198777 U CN 222198777U CN 202421008206 U CN202421008206 U CN 202421008206U CN 222198777 U CN222198777 U CN 222198777U
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CN
China
Prior art keywords
bearing seat
motor
sliding block
sliding
forging processing
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Active
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CN202421008206.4U
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Chinese (zh)
Inventor
孙承财
孙承敏
朱永丽
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Yixing Zhonghui Mould Manufacturing Co ltd
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Yixing Zhonghui Mould Manufacturing Co ltd
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Abstract

The utility model discloses an automatic overturning device for forging processing, which comprises a workbench, wherein a sliding rail is fixed above the workbench, a first sliding block is arranged above the sliding rail, a base is fixed above the first sliding block, a first motor is arranged on one side above the base, a first screw rod is arranged at the upper output end of the first motor, a supporting frame is fixed on the other side above the base, a first sliding groove is formed in the surface of one side of the supporting frame, a second sliding block is sleeved on the inner side of the first sliding groove, a first bearing seat is fixed on one side of the second sliding block, and the first motor drives the first screw rod to rotate through the arrangement of the first motor, the supporting frame, the first sliding groove and the first bearing seat.

Description

Automatic turning device of forging processing
Technical Field
The utility model relates to the technical field related to forging processing, in particular to an automatic overturning device for forging processing.
Background
The forging refers to a workpiece or a blank obtained by forging and deforming a metal blank, the machining is a general term of a process for converting a raw material and a semi-finished product into target requirements through a certain procedure and a certain mode, the machining comprises machining and manual machining, the machining is divided into cold machining and hot machining, the cold machining comprises a clamp work and machining, the clamp work is manual, the machining comprises machining methods such as milling, planing, boring, grinding, drilling, extruding, rolling, drawing and the like, the hot machining comprises casting, welding, hot cutting and the like, and each surface of many forgings needs to be machined, so that the forgings need to be turned over.
But when the forging is overturned in the existing forging processing process, the forging is fixed and overturned manually according to the position of the forging, the process is dangerous and the labor is wasted, so that the automatic overturning device for forging processing is required to be provided.
Disclosure of utility model
The utility model aims to provide an automatic overturning device for forging processing, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the automatic overturning device for forging processing comprises a workbench, wherein a sliding rail is fixed above the workbench, a first sliding block is arranged above the sliding rail, a base is fixed above the first sliding block, a first motor is installed on one side above the base, a first lead screw is installed at the upper output end of the first motor, a supporting frame is fixed on the other side above the base, a first sliding groove is formed in one side surface of the supporting frame, a second sliding block is sleeved on the inner side of the first sliding groove, a first bearing seat is fixed on one side of the second sliding block, a first threaded hole is formed in the surface of the first bearing seat, a second motor is installed on one side of the first bearing seat, a support is installed at one side output end of the second motor, a third motor is installed on the inner side of the support, a second lead screw is installed at one side output end of the third motor, a second sliding groove is formed in the surface of the support, a third sliding block is sleeved on the inner side of the second sliding groove, a first bearing seat is fixed on one side of the third sliding block, and a mechanical clamp is installed on one side of the second bearing seat.
Preferably, the base forms a sliding structure with the sliding rail through the first sliding block, and the sliding rail is arranged in an I-shaped structure.
Preferably, the first bearing seat and the support frame form a sliding structure through a second sliding block, and the second sliding block is arranged in a T-shaped structure.
Preferably, the first bearing seat and the base form a lifting structure through a first screw rod, and the first bearing seat and the first screw rod are matched for use.
Preferably, the bracket and the first bearing seat form a rotating structure through the second motor, and the mechanical clamps are symmetrically arranged by the central axis of the bracket.
Preferably, a second threaded hole is formed in one side of the second bearing seat, a second threaded hole is formed in the inner side of the mechanical clamp, and a fixing screw is mounted in the inner side of the second threaded hole.
Preferably, the mechanical clamp is in threaded connection with the second bearing seat through a fixing screw, and the fixing screw is matched with the second threaded hole in size.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the automatic overturning device for forging processing, through the arrangement of the first motor, the first screw rod, the supporting frame, the first sliding groove and the first bearing seat, the first motor drives the first screw rod to rotate, so that the first bearing seat stably ascends and descends in the first sliding groove, and compared with a device in which a chain drives the ascending and descending, the automatic overturning device is very stable in mechanical clamp ascending and descending when clamping a forging, low in failure rate and simple in accessory replacement after abrasion;
2. According to the automatic overturning device for forging processing, the mechanical clamp is fixed on the second bearing seat through the second bearing seat, the mechanical clamp, the second threaded hole and the fixing screw, and if the mechanical clamp is worn, the mechanical clamp can be conveniently replaced by only disassembling the fixing screw, so that the operation intensity of workers is reduced;
3. This automatic turning device of forging processing, through base, first slider, second slider, third motor and mechanical clamp's setting, adjust the position of two pairs of mechanical clamps through first slider, second slider and third motor, carry out the centre gripping to the both sides of forging, compare more firmly from the centre gripping of one side alone, prevent that the forging from breaking away from mechanical clamp.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a base structure of the present utility model;
FIG. 3 is a schematic view of a support frame according to the present utility model;
FIG. 4 is a schematic top view of the support frame of the present utility model;
FIG. 5 is a schematic view of a mechanical clip of the present utility model;
FIG. 6 is a schematic view of a mechanical clamping planer of the present utility model.
In the figure, 1, a workbench; 2, a sliding rail, 3, a first sliding block, 4, a base, 5, a first motor, 6, a first screw rod, 7, a supporting frame, 8, a first sliding groove, 9, a second sliding block, 10, a first bearing seat, 11, a first threaded hole, 12, a second motor, 13, a bracket, 14, a third motor, 15, a second screw rod, 16, a second sliding groove, 17, a third sliding block, 18, a second bearing seat, 19, a mechanical clamp, 20, a second threaded hole, 21 and a fixing screw.
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.
Referring to fig. 1-2, the utility model provides a technical scheme that an automatic overturning device for forging processing comprises a workbench 1, wherein a slide rail 2 is fixed above the workbench 1, a first slide block 3 is arranged above the slide rail 2, a base 4 is fixed above the first slide block 3, the base 4 and the slide rail 2 form a sliding structure through the first slide block 3, the slide rail 2 is arranged in an I-shaped structure, the base 4 can slide along the slide rail 2 through the first slide block 3, and two pairs of mechanical clamps 19 are adjusted to a proper position to clamp a forging;
Referring to fig. 3-4, a first motor 5 is installed on one side above the base 4, a first screw rod 6 is installed at an upper output end of the first motor 5, a supporting frame 7 is fixed on the other side above the base 4, a first sliding groove 8 is formed in one side surface of the supporting frame 7, a second sliding block 9 is sleeved on the inner side of the first sliding groove 8, a first bearing seat 10 is fixed on one side of the second sliding block 9, a first threaded hole 11 is formed in the surface of the first bearing seat 10, the first bearing seat 10 and the supporting frame 7 form a sliding structure through the second sliding block 9, the second sliding block 9 is in a T-shaped structure, the first bearing seat 10 and the base 4 form a lifting structure through the first screw rod 6, the first bearing seat 10 and the first screw rod 6 are matched for use, the first motor 5 drives the first screw rod 6 to rotate, the first bearing seat 10 is stably lifted in the first sliding groove 8, compared with a device for driving a chain to lift, the mechanical clamp 19 is very stable in lifting when a forge piece is clamped, the mechanical clamp 19 is low in failure rate, and a worn accessory is replaced simply;
Referring to fig. 5-6, a second motor 12 is installed on one side of the first bearing seat 10, a bracket 13 is installed at an output end of one side of the second motor 12, the bracket 13 and the first bearing seat 10 form a rotating structure through the second motor 12, a mechanical clamp 19 is symmetrically arranged on one side of the second bearing seat 18 by a central axis of the bracket 13, the bracket 13 can be rotated through the second motor 12, thereby rotating the mechanical clamp 19 clamping a forging to a required angle, a third motor 14 is installed on the inner side of the bracket 13, a second screw rod 15 is installed at an output end of one side of the third motor 14, a second sliding groove 16 is formed in the surface of the bracket 13, a third sliding block 17 is sleeved on the inner side of the second sliding groove 16, a second bearing seat 18 is fixed on one side of the third sliding block 17, a mechanical clamp 19 is installed on one side of the second bearing seat 18, a second threaded hole 20 is formed on one side of the second bearing seat 18, a fixing screw 21 is installed on the inner side of the second threaded hole 20, the mechanical clamp 19 and is in threaded connection with the second bearing seat 18 through a fixing screw 21, the fixing screw 21 and the size of the fixing screw 21 is matched with the second threaded hole 21, and the mechanical clamp 19 is convenient to detach if the mechanical clamp is required.
When the automatic turnover device for forging processing is used, an external power supply is firstly connected, a switch of a slide rail 2 is turned on, a base 4 slides along the slide rail 2 through a first sliding block 3, two pairs of mechanical clamps 19 are adjusted to a proper position by the aid of the first sliding block, the switch of a first motor 5 is turned on, the first motor 5 drives a first screw rod 6 to rotate, a first bearing seat 10 is driven to slide along a first sliding groove 8 by the aid of the first motor, two pairs of mechanical clamps 19 are adjusted to a proper height by the aid of the first motor, then a switch of a third motor 14 is turned on, the third motor 14 drives a second screw rod 15 to rotate, the two pairs of mechanical clamps 19 slide along a second sliding groove 16, the distance between the two pairs of mechanical clamps 19 is adjusted by the aid of the second motor, the mechanical clamps 19 are clamped between two sides of forgings, the first motor 5 is started again to adjust the two pairs of mechanical clamps 19 to a proper height, the switch on the switch of the second motor 12 is turned on, the second motor 12 rotates a bracket 13, the mechanical clamps 19 are driven to rotate to a required angle, the first motor 5 is started again to descend the forgings, and finally the third motor 14 is started to adjust the distance between the two pairs of mechanical clamps 19 to be cut off, and the second motor type of the mechanical clamps are used for the automatic turnover device for processing of the forgings 2, and the automatic turnover device is used for manufacturing the type of the second motor 2, and the automatic turnover device is different from the model 2, and model of the automatic turnover device is used for the second motor is 2.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The automatic overturning device for forging processing comprises a workbench (1), and is characterized in that a sliding rail (2) is fixed above the workbench (1), a first sliding block (3) is arranged above the sliding rail (2), a base (4) is fixed above the first sliding block (3), a first motor (5) is installed on one side above the base (4), a first screw rod (6) is installed at the upper output end of the first motor (5), a supporting frame (7) is fixed on the other side above the base (4), a first sliding groove (8) is formed in the surface of one side of the supporting frame (7), a second sliding block (9) is sleeved on the inner side of the first sliding groove (8), a first bearing seat (10) is fixed on one side of the second sliding block (9), a first threaded hole (11) is formed in the surface of the first bearing seat (10), a second motor (12) is installed on one side of the first bearing seat (10), a first motor (13) is installed at one side output end of the second motor (12), a first sliding groove (13) is formed in the surface of the supporting frame (13), a third sliding groove (16) is formed in the inner side of the supporting frame (14), the inner side of the second sliding groove (16) is sleeved with a third sliding block (17), one side of the third sliding block (17) is fixedly provided with a second bearing seat (18), and one side of the second bearing seat (18) is provided with a mechanical clamp (19).
2. The automatic overturning device for forging processing according to claim 1, wherein the base (4) and the sliding rail (2) form a sliding structure through the first sliding block (3), and the sliding rail (2) is arranged in an I-shaped structure.
3. The automatic overturning device for forging processing according to claim 1, wherein the first bearing seat (10) and the supporting frame (7) form a sliding structure through a second sliding block (9), and the second sliding block (9) is arranged in a T-shaped structure.
4. The automatic overturning device for forging processing according to claim 1, wherein the first bearing seat (10) and the base (4) form a lifting structure through the first screw rod (6), and the first bearing seat (10) and the first screw rod (6) are matched for use.
5. An automatic turning device for forging processing according to claim 1, wherein the bracket (13) and the first bearing seat (10) form a rotary structure through the second motor (12), and the mechanical clamps (19) are symmetrically arranged with the central axis of the bracket (13).
6. The automatic turning device for forging processing according to claim 1, wherein a second threaded hole (20) is formed in one side of the second bearing seat (18), a second threaded hole (20) is formed in the inner side of the mechanical clamp (19), and a fixing screw (21) is mounted in the inner side of the second threaded hole (20).
7. The automatic turning device for forging processing according to claim 6, wherein the mechanical clamp (19) is in threaded connection with the second bearing seat (18) through a fixing screw (21), and the fixing screw (21) is in size fit with the second threaded hole (20).
CN202421008206.4U 2024-05-10 2024-05-10 Automatic turning device of forging processing Active CN222198777U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421008206.4U CN222198777U (en) 2024-05-10 2024-05-10 Automatic turning device of forging processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421008206.4U CN222198777U (en) 2024-05-10 2024-05-10 Automatic turning device of forging processing

Publications (1)

Publication Number Publication Date
CN222198777U true CN222198777U (en) 2024-12-20

Family

ID=93876302

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421008206.4U Active CN222198777U (en) 2024-05-10 2024-05-10 Automatic turning device of forging processing

Country Status (1)

Country Link
CN (1) CN222198777U (en)

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