CN105563134B - A kind of automobile aluminum component former - Google Patents
A kind of automobile aluminum component former Download PDFInfo
- Publication number
- CN105563134B CN105563134B CN201610116677.0A CN201610116677A CN105563134B CN 105563134 B CN105563134 B CN 105563134B CN 201610116677 A CN201610116677 A CN 201610116677A CN 105563134 B CN105563134 B CN 105563134B
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- China
- Prior art keywords
- expansion bracket
- positioning mechanism
- lower mould
- control device
- drive device
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P23/00—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass
- B23P23/04—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass for both machining and other metal-working operations
Abstract
The present invention proposes a kind of automobile aluminum component former, including base, mounting bracket, two lower die positioning mechanisms, die positioning mechanism on first, die positioning mechanism and controlling organization on second;Mounting bracket is arranged on base;Lower die positioning mechanism includes lower mould, first driving means, the first expansion bracket and lower support block;There is die cavity on lower mould, the drilling of connection die cavity is additionally provided with lower mould, lower support block is provided with and drilling is adapted is caught in head;Die positioning mechanism includes the second expansion bracket, the first upper die head, clamping cylinder and the second drive device on first;Die positioning mechanism includes the 3rd expansion bracket and the second upper die head on second, and the second upper die head lower end is provided with the drill bit being adapted with drilling;Controlling organization includes control device, first pressure sensor and second pressure sensor;First pressure sensor is used for the pressure signal for obtaining two lower mould upper ends, and second pressure sensor is used for the pressure signal for obtaining two mould intracavity walls.The present invention is easy to use, and operating efficiency is high.
Description
Technical field
The present invention relates to a kind of diel, and in particular to a kind of automobile aluminum component former.
Background technology
Then stamping forming aluminum component is taken out, is bored mostly using first punch forming by existing automobile aluminum component shaping
Hole and deburring, make aluminum component process clear aluminum component processing in this way, but processing efficiency is low.
The content of the invention
The technical problem existed based on background technology, the present invention proposes a kind of automobile aluminum component former.
A kind of automobile aluminum component former proposed by the present invention, including base, mounting bracket, two lower die positioning mechanisms,
Die positioning mechanism on one, die positioning mechanism and controlling organization on second;
Mounting bracket is arranged on base;
Lower die positioning mechanism includes lower mould, first driving means, the first expansion bracket and lower support block;Lower mould is arranged on base
On, mould under first driving means drive connection, the lower mould of first driving means driving has using horizontal direction as axial rotation on lower mould
There is the drilling that connection die cavity is additionally provided with die cavity, lower mould;First expansion bracket is arranged on base and below lower mould, lower support
Block is arranged on the first expansion bracket upper end, and the first expansion bracket telescopic direction is vertical direction, and lower support block is provided with mutually fits with drilling
That matches somebody with somebody is caught in head;
Die positioning mechanism is located at the surface of two lower moulds respectively on die positioning mechanism and second on first;
Die positioning mechanism includes the second expansion bracket, the first upper die head, clamping cylinder and the second drive device on first;Second stretches
Contracting frame is arranged on mounting bracket, and the first upper die head is arranged on the second expansion bracket lower end, and the second expansion bracket telescopic direction is vertical side
To clamping cylinder is arranged on mounting bracket, the second drive device drive connection clamping cylinder, and the second drive device driving clamping cylinder edge is perpendicular
Nogata is to movement;
Die positioning mechanism includes the 3rd expansion bracket and the second upper die head on second, and the second upper die head is arranged on the 3rd expansion bracket
Lower end, the second upper die head lower end is provided with the drill bit being adapted with drilling;
Controlling organization includes control device, first pressure sensor and second pressure sensor;First pressure sensor is used
In the pressure signal for obtaining two lower mould upper ends, second pressure sensor is used for the pressure signal for obtaining two mould intracavity walls;The
One pressure sensor, second pressure sensor, the first expansion bracket, the second expansion bracket, the 3rd expansion bracket, first driving means and
Two drive devices are communicated to connect with control device;
Control device first obtains the pressure signal of two mould intracavity walls by second pressure sensor, and judges on second
Whether there is shaped article on lower mould immediately below die positioning mechanism;Without operation if without shaped article, if there is shaped article,
Control device controls lower support block to move down by the first expansion bracket, then controls the 3rd expansion bracket to drive the second upper die head to move down, and makes
Drill bit drills to shaped article;After the completion of drilling, control device controls the 3rd expansion bracket to drive the second upper die head to rise to
Elemental height, then control first driving means to work, lower mould is rotated at least one week, lower mould is rotated after stopping, control device control
Make the first expansion bracket and rise to and be caught in head and the corresponding position of drilling;
Then control device obtains the pressure signal of two lower mould upper ends by first pressure sensor, and judges on first
Whether need to be processed object on lower mould immediately below die positioning mechanism, the end operation if without object to be processed, if having to be processed
Object, control device controls the work of the second drive device, moves down clamping cylinder and pushes down material, then controls the second expansion bracket driving the
One upper die head is moved down, and makes the first upper die head by object down-pressing forming to be processed;Control device control the after object to be processed shaping
Two expansion brackets drive the first upper die head to rise to elemental height, and drive clamping cylinder to rise to initial height by the second drive device
Degree.
Preferably, the 3rd drive device, the 3rd drive device drive connection mounting bracket, the 3rd driving dress are installed on base
Put the rotation of drive installation frame, the 3rd drive device communication connection control device;
Control device controls the 3rd drive device to work after each clamping cylinder rises to elemental height, determines mould on first
Die positioning mechanism is located at the surface of two lower moulds respectively in the mechanism and second of position, and corresponding after die positioning mechanism rotation on first
Lower mould rotated for die positioning mechanism on second before corresponding lower mould.
Preferably, two edging mechanisms are installed on base;Edging mechanism includes circular orbit, edging knife and the 4th driving
Device, four-drive device drive connection edging knife, four-drive device drives edging knife to be moved around circular orbit, two annulars
Track is located at two lower mould peripheries respectively.
Preferably, four-drive device communication connection control device;
After the completion of drilling and before the rising of the second upper die head, control device control the corresponding with die positioning mechanism on second the 4th
Drive device works, and makes edging knife to shaped article edging.
Preferably, it is provided with discharging opening below the lower mould of correspondence on base.
The present invention is coordinated by die positioning mechanism on first and the lower mould immediately below it can effectively treat processing object
It is press-formed, coordinates and effectively shaped article can be bored by die positioning mechanism on two and the lower mould immediately below it
Hole, the first expansion bracket and lower support block can provide support when object to be processed is molded for lower mould, when shaped article drills
Drilling offer space can also be separated into by being caught in head and drilling.The present invention is not only easy to use, and operating efficiency is high.
Brief description of the drawings
Fig. 1 is a kind of automobile aluminum component former structural representation proposed by the present invention.
Embodiment
Shown in reference picture 1, a kind of automobile aluminum component former proposed by the present invention, including base 1, mounting bracket 2, under two
Die positioning mechanism, die positioning mechanism on first, die positioning mechanism and controlling organization on second.
Mounting bracket 2, which is arranged on base 1, upper bed-plate 1, is provided with the 3rd drive device 11, and the driving of the 3rd drive device 11 connects
Mounting bracket 2 is connect, the drive installation frame 2 of the 3rd drive device 11 is rotated.
Lower die positioning mechanism includes lower mould 31, first driving means 32, the first expansion bracket 33 and lower support block 34;Lower mould 31
On base 1, mould 31 under the drive connection of first driving means 32, the lower mould 31 of the driving of first driving means 32 is with horizontal direction
There is the drilling that connection die cavity 311 is additionally provided with die cavity 311, lower mould 31 for axial rotation, on lower mould 31;First expansion bracket 33 is pacified
On base 1 and positioned at the lower lower section of mould 31, lower support block 34 is arranged on the upper end of the first expansion bracket 33, and the first expansion bracket 33 stretches
Direction is vertical direction, lower support block 34 be provided with drilling be adapted be caught in head.
Die positioning mechanism is located at the surface of two lower moulds 31 respectively on die positioning mechanism and second on first.
Die positioning mechanism includes the second expansion bracket 41, the first upper die head 42, the drive device of clamping cylinder 43 and second on first;
Second expansion bracket 41 is arranged on mounting bracket 2, and the first upper die head 42 is arranged on the lower end of the second expansion bracket 41, and the second expansion bracket 41 is stretched
Contracting direction is vertical direction, and clamping cylinder 43 is arranged on mounting bracket 2, the second drive device drive connection clamping cylinder 43, and second drives
Dynamic device driving clamping cylinder 43 is vertically moved;
Die positioning mechanism includes the 3rd expansion bracket 51 and the second upper die head 52 on second, and the second upper die head 52 is arranged on the 3rd
The lower end of expansion bracket 51, the lower end of the second upper die head 52 is provided with the drill bit being adapted with drilling.
Two edging mechanisms are installed on base 1;Edging mechanism includes circular orbit 121, edging knife 122 and the 4th and driven
Device, four-drive device drive connection edging knife 122, four-drive device driving edging knife 122 is around circular orbit movement, two
Individual circular orbit is located at two lower peripheries of mould 31 respectively.
Controlling organization includes control device, first pressure sensor and second pressure sensor;First pressure sensor is used
In the pressure signal for obtaining two lower mould upper ends, second pressure sensor is used for the pressure signal for obtaining two inwalls of die cavity 311;
First pressure sensor, second pressure sensor, the first expansion bracket 33, the second expansion bracket 41, the driving of the 3rd expansion bracket 51, first
Device 32, the second drive device, the 3rd drive device 11 and four-drive device are communicated to connect with control device.
Control device first obtains the pressure signal of two inwalls of die cavity 311 by second pressure sensor, and judges the
Whether there is shaped article on lower mould 31 on two immediately below die positioning mechanism;Without operation if without shaped article, if having into
Type object, control device controls lower support block 34 to move down by the first expansion bracket 33, then controls the 3rd expansion bracket 51 to drive second
Upper die head 52 is moved down, and drill bit is drilled shaped article;After the completion of drilling, control device control and mould localization machine on second
The work of structure corresponding four-drive device, makes edging knife 122 to shaped article edging, control device after the completion of shaped article edging
Control the 3rd expansion bracket 51 to drive the second upper die head 52 to rise to elemental height, then control first driving means to work, make lower mould
31 are rotated at least one week, and lower mould 31 is rotated after stopping, and control device controls the first expansion bracket 33 to rise to and is caught in head and drilling pair
The position answered;
Then control device obtains the pressure signal of two lower mould upper ends by first pressure sensor, and judges on first
Whether need to be processed object on lower mould 31 immediately below die positioning mechanism, the end operation if without object to be processed, if having to be added
Work object, control device controls the work of the second drive device, moves down clamping cylinder 43 and pushes down material, then controls the second expansion bracket 41
Drive the first upper die head 42 to move down, make the first upper die head 42 by object down-pressing forming to be processed;Controlled after object shaping to be processed
Device controls the second expansion bracket 41 to drive the first upper die head 42 to rise to elemental height, and drives compression by the second drive device
Cylinder 43 rises to elemental height, then controls the 3rd drive device 11 to work, and makes mould positioning on die positioning mechanism and second on first
Mechanism is located at the surface of two lower moulds 31 respectively, and corresponding lower mould 31 is mould on second after die positioning mechanism rotation on first
Corresponding lower mould 31 before detent mechanism is rotated.Then control device repeats the above steps.
In present embodiment, discharging opening 13 is provided with below the lower mould of correspondence on base 1, is easy to taking for impurity and shaped article
Go out.
The foregoing is only a preferred embodiment of the present invention, but protection scope of the present invention be not limited thereto,
Any one skilled in the art the invention discloses technical scope in, technique according to the invention scheme and its
Inventive concept is subject to equivalent substitution or change, should all be included within the scope of the present invention.
Claims (5)
1. a kind of automobile aluminum component former, it is characterised in that:Including base (1), mounting bracket (2), two lower die positioning mechanisms,
Die positioning mechanism on first, die positioning mechanism and controlling organization on second;
Mounting bracket (2) is arranged on base (1);
Lower die positioning mechanism includes lower mould (31), first driving means (32), the first expansion bracket (33) and lower support block (34);Under
Mould (31) is arranged on base (1), mould (31) under first driving means (32) drive connection, under first driving means (32) driving
Mould (31), which has using vertical direction as axial rotation, on lower mould (31) on die cavity (311), lower mould (31), is additionally provided with connection die cavity
(311) drilling;First expansion bracket (33) is arranged on base (1) and below lower mould (31), and lower support block (34) is installed
In the first expansion bracket (33) upper end, the first expansion bracket (33) telescopic direction is vertical direction, and lower support block (34) is provided with and brill
What hole was adapted is caught in head;
Die positioning mechanism is located at the surface of two lower moulds (31) respectively on die positioning mechanism and second on first;
Die positioning mechanism includes the second expansion bracket (41), the first upper die head (42), clamping cylinder (43) and the second driving dress on first
Put;Second expansion bracket (41) is arranged on mounting bracket (2), and the first upper die head (42) is arranged on the second expansion bracket (41) lower end, the
Two expansion brackets (41) telescopic direction is vertical direction, and clamping cylinder (43) is arranged on mounting bracket (2), and the driving of the second drive device connects
Clamping cylinder (43) is connect, the second drive device driving clamping cylinder (43) is vertically moved;
Die positioning mechanism includes the 3rd expansion bracket (51) and the second upper die head (52) on second, and the second upper die head (52) is installed in the
Three expansion brackets (51) lower end, the second upper die head (52) lower end is provided with the drill bit being adapted with drilling;
Controlling organization includes control device, first pressure sensor and second pressure sensor;First pressure sensor is used to obtain
The pressure signal of two lower mould upper ends is taken, second pressure sensor is used for the pressure signal for obtaining two die cavity (311) inwalls;The
One pressure sensor, second pressure sensor, the first expansion bracket (33), the second expansion bracket (41), the 3rd expansion bracket (51), first
Drive device (32) and the second drive device are communicated to connect with control device;
Control device first obtains the pressure signal of two die cavity (311) inwalls by second pressure sensor, and judges second
Whether there is shaped article on lower mould (31) immediately below upper die positioning mechanism;Without operation if without shaped article, if having into
Type object, control device controls lower support block (34) to move down by the first expansion bracket (33), then controls the 3rd expansion bracket (51) to drive
Dynamic second upper die head (52) is moved down, and drill bit is drilled shaped article;After the completion of drilling, control device control the 3rd is stretched
Frame (51) drives the second upper die head (52) to rise to elemental height, then controls first driving means to work, and rotates lower mould (31)
At least one week, lower mould (31) rotates stop after, control device control the first expansion bracket (33) to rise to be caught in head corresponding with drilling
Position;
Then control device obtains the pressure signal of two lower mould upper ends by first pressure sensor, and judges that mould is determined on first
Whether need to be processed object on lower mould (31) immediately below the mechanism of position, the end operation if without object to be processed, if having to be processed
Object, control device controls the work of the second drive device, moves down clamping cylinder (43) and pushes down material, then controls the second expansion bracket
(41) the first upper die head of driving (42) is moved down, and makes the first upper die head (42) by object down-pressing forming to be processed;Object to be processed into
Control device controls the second expansion bracket (41) to drive the first upper die head (42) to rise to elemental height after type, and passes through the second driving
Device driving clamping cylinder (43) rises to elemental height.
2. automobile aluminum component former according to claim 1, it is characterised in that:Base is provided with the 3rd driving on (1)
Device (11), the 3rd drive device (11) drive connection mounting bracket (2), the 3rd drive device (11) drive installation frame (2) is rotated,
3rd drive device (11) communicates to connect control device;
Control device controls the 3rd drive device (11) to work after each clamping cylinder (43) rises to elemental height, makes on first
Die positioning mechanism is located at the surface of two lower moulds (31) respectively on die positioning mechanism and second, and die positioning mechanism turns on first
Corresponding lower mould (31) is that die positioning mechanism rotates preceding corresponding lower mould (31) on second after dynamic.
3. automobile aluminum component former according to claim 2, it is characterised in that:Two edgings are installed on base (1)
Mechanism;Edging mechanism includes circular orbit (121), edging knife (122) and four-drive device, four-drive device drive connection
Edging knife (122), four-drive device driving edging knife (122) is moved around circular orbit, and two circular orbits are located at two respectively
Individual lower mould (31) periphery.
4. automobile aluminum component former according to claim 3, it is characterised in that:Four-drive device communication connection control
Device;
After the completion of drilling and before the second upper die head (52) rising, control device control the corresponding with die positioning mechanism on second the 4th
Drive device works, and makes edging knife (122) to shaped article edging.
5. automobile aluminum component former according to claim 1, it is characterised in that:Set on base (1) below the lower mould of correspondence
There is discharging opening (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201610116677.0A CN105563134B (en) | 2016-03-01 | 2016-03-01 | A kind of automobile aluminum component former |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201610116677.0A CN105563134B (en) | 2016-03-01 | 2016-03-01 | A kind of automobile aluminum component former |
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Publication Number | Publication Date |
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CN105563134A CN105563134A (en) | 2016-05-11 |
CN105563134B true CN105563134B (en) | 2017-10-27 |
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CN201610116677.0A Active CN105563134B (en) | 2016-03-01 | 2016-03-01 | A kind of automobile aluminum component former |
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101837544A (en) * | 2009-12-08 | 2010-09-22 | 艾欧史密斯(中国)热水器有限公司 | Manufacturing process method of water-heater bottom-cap heat exchange assembly and special tooling |
US20120279031A1 (en) * | 2011-05-06 | 2012-11-08 | Jie Pu | Production line for high temperature alloy furnace pipes and piperows used in petrochemical industry |
CN204545954U (en) * | 2015-04-23 | 2015-08-12 | 重庆群崴电子材料有限公司 | A kind of scolding tin post guillotine |
CN204686429U (en) * | 2015-06-24 | 2015-10-07 | 宁波市建设集团股份有限公司 | For the processing platform of support |
CN204935083U (en) * | 2015-06-12 | 2016-01-06 | 上海合丰电器有限公司 | Fan tapping finishing die |
-
2016
- 2016-03-01 CN CN201610116677.0A patent/CN105563134B/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101837544A (en) * | 2009-12-08 | 2010-09-22 | 艾欧史密斯(中国)热水器有限公司 | Manufacturing process method of water-heater bottom-cap heat exchange assembly and special tooling |
US20120279031A1 (en) * | 2011-05-06 | 2012-11-08 | Jie Pu | Production line for high temperature alloy furnace pipes and piperows used in petrochemical industry |
CN204545954U (en) * | 2015-04-23 | 2015-08-12 | 重庆群崴电子材料有限公司 | A kind of scolding tin post guillotine |
CN204935083U (en) * | 2015-06-12 | 2016-01-06 | 上海合丰电器有限公司 | Fan tapping finishing die |
CN204686429U (en) * | 2015-06-24 | 2015-10-07 | 宁波市建设集团股份有限公司 | For the processing platform of support |
Also Published As
Publication number | Publication date |
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CN105563134A (en) | 2016-05-11 |
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