Automobile part aluminum part processing die
Technical Field
The utility model relates to the technical field of automobile part machining, in particular to an automobile part aluminum part machining die.
Background
The stamping process is a processing method for obtaining a workpiece with certain size, shape and performance by applying external force to a blank through a die to make the blank plastically deformed or separated, has a very wide application range, can process metal plates and bars and can process various nonmetallic materials, and is usually carried out at normal temperature, and the stamping process analysis is to comprehensively determine the optimal stamping process through parameters in various aspects.
Patent publication number CN 219401883U discloses a conveniently get automobile parts mold processing of material, can send the auto parts that need process to the processing department through the cooperation use of supporting seat, supporting leg, conveyer belt and dwang, can send out this mould with the auto parts after the processing is accomplished, thereby promoted the convenience of this mould, can provide power for the device conveyer belt through the cooperation use of protecting crust, dwang, output shaft and servo motor, can drive the device conveyer belt work, thereby promoted the superiority of this mould, can adjust the ascending or decline mold processing through the cooperation use of spliced pole, telescopic column, connection pad and mold processing, can process the part that will send to here, thereby promoted the practicality of this mould.
However, since the processing mold for the automobile parts is generally large in size, high in risk in the process of opening and closing the mold, and narrow in clearance after opening the mold, the feeding assembly of the processing mold for the automobile parts needs to be optimized to solve the problems.
Disclosure of utility model
The utility model aims to solve the defects that in the prior art, the processing mould of the automobile part is large in general volume, high in danger in the process of opening and closing the mould and narrow in clearance after opening the mould.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the design of the processing mould for the aluminum parts of the automobile parts comprises a base, and is characterized in that,
The upper part of the base is fixedly provided with a support column, the left side of the upper part of the support column is fixedly provided with a working support plate, a plurality of rotating rollers are rotatably arranged between the inner walls of the left side and the right side of the working support plate, the left side of the working support plate is provided with a plurality of driving motors, and the driving ends of the driving motors extend to the inner side of the working support plate and are in driving connection with the rotating rollers;
A telescopic rod is arranged at the left opening of the base, the driving end of the telescopic rod is in driving connection with a connecting rod, and a plurality of straight plates are vertically and fixedly arranged on the upper surface of the connecting rod;
The right side of the upper part of the base is fixedly provided with a mounting frame, the mounting frame is provided with a feeding clamping mechanism, and the feeding clamping mechanism comprises a turntable, a mounting seat, a first servo motor, a first force arm, a second servo motor, a second force arm, a connecting rod, a third servo motor, a third force arm, a fourth servo motor, a clamping seat, a first sliding screw rod, a second sliding screw rod, a clamping plate and an electromagnet block;
The upper side of the mounting frame is vertically provided with a turntable, the upper side of the turntable is provided with a mounting seat in a driving mode, the left side of the mounting seat is provided with a first force arm in a rotating mode, the first force arm and the mounting seat are connected through a first servo motor in a driving mode, the upper side of the first force arm is provided with a second force arm in a rotating mode, the second force arm and the first force arm are connected through a second servo motor in a driving mode, the second servo motor is driven to control and extend and are connected to the right side of the connecting rod in a driving mode, the left side of the second force arm is provided with a third force arm in a rotating mode, the third force arm and the second force arm are connected through a third servo motor in a driving mode, the lower side of the third force arm is provided with a fourth servo motor in a driving mode, the driving end of the fourth servo motor is connected to the clamping seat, the lower surface of the clamping seat is fixedly connected to the shell of the first sliding screw, the driving end of the sliding screw is connected to the shell of the second sliding screw, the driving end of the sliding screw is connected to the clamping plate, and the lower side of the clamping plate is fixedly provided with a plurality of electromagnetic driving ends.
Preferably, the installation direction of the straight plates is the same as the direction of the rotating rollers.
Preferably, the plurality of straight plates are in one-to-one correspondence with gaps between the two rotating rollers, and when the telescopic rod lifts the straight plates, the straight plates can pass through the gaps between the rotating rollers.
Preferably, the driving translation directions of the first sliding screw and the second sliding screw are on the same horizontal line.
The processing die for the automobile part aluminum part has the beneficial effects that the problem that a gap is narrow after die opening is solved through the two sliding screw rods by arranging the feeding clamping mechanism, the clamping plate can be stretched into the die and the feeding operation is finished under the condition that the first arm of force and the second arm of force are not contacted with the die, and the plate to be processed can be jacked up conveniently by arranging the plurality of rotating rollers and the straight plate, so that the whole production line is more coherent.
Drawings
Fig. 1 is a schematic structural diagram of an aluminum part processing mold for automobile parts according to the present utility model;
fig. 2 is an enlarged schematic diagram of a part a of an aluminum part processing mold for an automobile part according to the present utility model;
Fig. 3 is a schematic side view structure of an aluminum part processing mold for an automobile part according to the present utility model.
10, A base, 11, a support column, 12, a mounting rack, 20, a working support plate, 21, a rotating roller, 22, a driving motor, 30, a telescopic rod, 31, a connecting rod, 32, a straight plate, 411, a turntable, 412, a mounting seat, 413, a first servo motor, 414, a first arm of force, 415, a second servo motor, 416, a second arm of force, 417, a connecting rod, 418, a third servo motor, 419, a third arm of force, 420, a fourth servo motor, 421, a clamping seat, 422, a first sliding screw, 423, a second sliding screw, 424, a clamping plate, 425 and an electromagnetic iron block.
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.
Referring to fig. 1-3, a processing mold for an aluminum part of an automobile part comprises a base 10, and is characterized in that,
A support column 11 is fixedly arranged above the base 10, a working support plate 20 is fixedly arranged on the left side above the support column 11, a plurality of rotating rollers 21 are rotatably arranged between the inner walls of the left side and the right side of the working support plate 20, a plurality of driving motors 22 are arranged on the left side of the working support plate 20, and driving ends of the driving motors 22 extend to the inner side of the working support plate 20 and are in driving connection with the rotating rollers 21;
A telescopic rod 30 is arranged at the left opening of the base 10, the driving end of the telescopic rod 30 is in driving connection with a connecting rod 31, and a plurality of straight plates 32 are vertically and fixedly arranged on the upper surface of the connecting rod 31;
The right side above the base 10 is fixedly provided with a mounting frame 12, the mounting frame 12 is provided with a feeding clamping mechanism, and the feeding clamping mechanism comprises a turntable 411, a mounting seat 412, a first servo motor 413, a first force arm 414, a second servo motor 415, a second force arm 416, a connecting rod 417, a third servo motor 418, a third force arm 419, a fourth servo motor 420, a clamping seat 421, a first sliding screw 422, a second sliding screw 423, a clamping plate 424 and an electromagnet block 425;
The upper part of the mounting frame 12 is vertically provided with a turntable 411 upwards, the upper part of the turntable 411 is provided with a mounting seat 412 in a driving way, the left side of the mounting seat 412 is rotatably provided with a first force arm 414, the first force arm 414 and the mounting seat 412 are in driving connection through a first servo motor 413, the upper part of the first force arm 414 is rotatably provided with a second force arm 416, the second force arm 416 and the first force arm 414 are in driving connection through a second servo motor 415, the second servo motor 415 is in driving control and is connected to the right side of a connecting rod 417 in an extending way, the left side of the second force arm 416 is rotatably provided with a third force arm 419, the third servo motor 418 is in driving control and is connected to the left side of the connecting rod 417, the lower part of the third force arm 419 is provided with a fourth servo motor 420, the driving end of the fourth servo motor 420 is in driving connection with a clamping seat 421, the lower surface of the clamping seat 421 is fixedly connected with a shell of a first sliding screw 422, the driving end of the sliding screw 422 is connected with a shell of the second sliding screw 424, the driving end of the sliding screw 422 is in driving connection with a driving end of the sliding screw 424, the driving end of the sliding screw 423 is fixedly connected with a driving end of the sliding screw 423, and a plurality of driving screws 423 are fixedly connected with a driving end of the sliding screw 423 of the driving end of the sliding screw 423 is connected with a driving end of the sliding screw 423.
As an optimization scheme of the present embodiment, the installation direction of the plurality of straight plates 32 is the same as the direction of the plurality of rotating rollers 21.
As an optimization scheme of this embodiment, the straight plates 32 are in one-to-one correspondence with the gaps between the two rotating rollers 21, and when the telescopic rod 30 lifts the straight plates 32, the straight plates 32 can pass through the gaps between the rotating rollers 21.
As an optimization scheme of this embodiment, the driving translation directions of the first sliding screw 422 and the second sliding screw 423 are on the same horizontal line.
The overall workflow of the utility model is as follows:
Firstly, a driving motor 22 is started, and the driving motor 22 can drive a plurality of rotating rollers 21 to rotate, so that the plurality of rotating rollers 21 convey left automobile part plates to be processed to the upper parts of a plurality of straight plates 32, and preliminary feeding preparation operation is completed;
Then, starting the telescopic rod 30, lifting the connecting rod 31 by lifting the telescopic rod 30, driving the straight plates 32 to lift while lifting the connecting rod 31, and synchronously lifting the plurality of straight plates 32 from gaps between the adjacent rotating rollers 21 and jacking up the automobile part plates to be processed;
Then, the turntable 411 is started, the turntable 411 rotates to drive the mounting seat 412 to rotate, then the first servo motor 413 is started, the first servo motor 413 drives the first power arm 414 to rotate, the second servo motor 415 is started to drive the second power arm 416 to rotate, then the third servo motor 418 is started to drive the third power arm 419 to rotate, then the fourth servo motor 420 is started to adjust the direction of the clamping seat 421, and the lower surface of the clamping seat 421 is fixedly connected with the shell of the first sliding screw 422, so that the first sliding screw 422, the second sliding screw 423, the clamping plate 424 and the electromagnet block 425 also rotate along with the clamping seat 421, the aim of aligning the automobile part plate to be processed can be achieved, and the automobile part plate to be processed can be adsorbed by starting the electromagnet block 425 and then sent into the automobile part processing die to be processed.
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.