CN210790939U - Multi-station transfer table device for automobile sheet metal parts - Google Patents
Multi-station transfer table device for automobile sheet metal parts Download PDFInfo
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- CN210790939U CN210790939U CN201921772603.8U CN201921772603U CN210790939U CN 210790939 U CN210790939 U CN 210790939U CN 201921772603 U CN201921772603 U CN 201921772603U CN 210790939 U CN210790939 U CN 210790939U
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- transverse beam
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- 239000002184 metal Substances 0.000 title claims abstract description 55
- 238000003825 pressing Methods 0.000 claims abstract description 25
- 230000017105 transposition Effects 0.000 claims description 12
- 238000004519 manufacturing process Methods 0.000 abstract description 7
- 238000000034 method Methods 0.000 description 4
- 230000003014 reinforcing effect Effects 0.000 description 3
- 238000010586 diagram Methods 0.000 description 2
- 238000005452 bending Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
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Abstract
The utility model provides a multi-station automobile sheet metal part transfer platform device, wherein the transfer platform frame comprises two oblique columns which are arranged in parallel and inclined backwards, supporting blocks for supporting sheet metal parts are respectively arranged at the front sides of the tops of the two oblique columns, a pneumatic overturning and pressing device is arranged beside the supporting blocks, and a positioning pin is arranged on a pressing block of one pneumatic overturning and pressing device at the upper end; the front sides of the two ends of the transverse beam are also provided with supporting blocks for supporting the sheet metal part, the positions of the two ends of the transverse beam, which correspond to the supporting blocks, are also provided with pneumatic overturning and pressing devices, and a positioning pin matched with a positioning hole in the sheet metal part is arranged above one of the supporting blocks positioned below; and a proximity switch is arranged at a position close to any one of the supporting blocks. The transportation between the stations is solved, the change of the station direction of the sheet metal part is realized, the logistics transportation amount and the transportation time are reduced as much as possible on the premise of meeting the production requirements, the flexible production capacity is improved, the space is saved, and the efficiency is improved.
Description
Technical Field
The utility model relates to a platform device is put in transfer of multistation car sheet metal component belongs to machinery.
Background
Automobile sheet metal part often involves a plurality of processing stations in the course of working, because processing robot's stroke is limited, need carry the sheet metal part to next station through the commodity circulation transport and process at present between every processing station. The handling time is long, and production efficiency is low, and the productivity effect is weak to the commodity circulation transport can occupy workshop space, is unfavorable for reduction in production cost.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a platform device is put in multistation car sheet metal component. The transfer table device is placed between two stations, so that the transfer of the sheet metal parts between the two stations is realized, the carrying amount is saved, the production efficiency is improved, and the space is saved.
In order to realize the above object of the utility model, the utility model provides a platform device is put in multistation car sheet metal component, including well transposition rack, its characterized in that: the middle transposition rack comprises two oblique columns which are arranged in parallel and inclined backwards, a transverse beam is arranged between the middle lower parts of the two oblique columns, supporting blocks used for supporting sheet metal parts are respectively arranged on the front sides of the tops of the two oblique columns, pneumatic overturning pressing devices are arranged beside the supporting blocks and correspond to the supporting blocks, and positioning pins matched with positioning holes in the sheet metal parts are arranged on a pressing block of one of the pneumatic overturning pressing devices;
the front sides of the two ends of the transverse beam are also provided with supporting blocks for supporting the sheet metal part, the two ends of the transverse beam are also provided with pneumatic overturning and pressing devices corresponding to the supporting blocks, and a positioning pin matched with a positioning hole in the sheet metal part is arranged above one of the supporting blocks on the transverse beam; a proximity switch is arranged at least at a position close to any one of the supporting blocks; the automobile sheet metal part is supported on the four supporting blocks in a leaning mode, the positioning pins are inserted into the corresponding positioning holes in the sheet metal part, and the sheet metal part is pressed on the supporting blocks by the pneumatic overturning pressing devices from the front of the sheet metal part.
By adopting the scheme, when the transfer table device is used, the transfer table device is placed between two stations, and the mechanical arm of the previous station and the mechanical arm of the next station can reach positions. The sheet metal part is taken out by the mechanical arm at the previous station, and is placed on the middle transposition rack from the back (the oblique column is used for placing the sheet metal part by the mechanical arm at the previous station conveniently), the sheet metal part is supported on the four supporting blocks by leaning against the back, and the positioning pin is inserted into the positioning hole of the sheet metal part to play a role in supporting and positioning. When the proximity switch senses the sheet metal part, the signal is transmitted to the controller, the controller controls the pneumatic overturning and pressing device to press the sheet metal part, and the mechanical arm of the previous station loosens the sheet metal part to leave. And the mechanical arm of the next station then picks the sheet metal part from the front on the transfer table device to carry out the next processing procedure.
In the scheme, the method comprises the following steps: the middle transposition rack further comprises a supporting beam, the supporting beam is arranged on the rear side of each inclined column, reinforced connecting beams are connected between the lower ends of the inclined columns and the lower ends of the supporting beams corresponding to the inclined columns, the reinforced connecting beams are also connected between the lower ends of the two inclined columns and between the lower ends of the two supporting beams, and the four reinforced connecting beams enclose a rectangular frame. The stability of the middle transposition rack is ensured.
In the scheme, the lower ends of four corners of the rectangular frame are respectively provided with a fixed mounting plate, and the middle transposition rack is fixedly mounted through the fixed mounting plates. The fixed mounting plate is fixed on the corresponding workshop floor through bolts.
In the scheme, the method comprises the following steps: a positioning pin is arranged below a pressing block of the pneumatic overturning pressing device on the left side of the upper end, and a positioning pin is arranged above a supporting block on the right side of the transverse beam; the proximity switch is arranged above the supporting block at the upper end of the right side.
Has the advantages that: the utility model discloses a transfer platform device in multistation car sheet metal component solves the transportation between the station, realizes the change of the station direction of sheet metal component, and under the prerequisite that satisfies the production requirement, the volume of commodity circulation transport and handling time of minimizing improve flexible production ability, save space, raise the efficiency.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a use state diagram.
Fig. 3 is a partially enlarged view of fig. 1A.
The specific implementation mode is as follows:
the present invention will be described in further detail with reference to the following examples and drawings.
Example 1
The upper, lower, left, right, front and back directional words in the utility model only represent the relative position in figure 1, and do not represent the absolute position of the product.
As shown in fig. 1-2, the multi-station transfer table device for automobile sheet metal parts of the present invention comprises a transfer table frame 1, a supporting block 2, a pneumatic turning and pressing device 3, a positioning pin 4 and a proximity switch 5.
The middle transposition rack 1 comprises two parallel inclined columns 101 which are arranged in a backward inclining mode, a supporting beam 102 is arranged on the rear side of each inclined column 101, the upper end of each supporting beam 102 is connected to the middle upper portion of each inclined column 101, a reinforcing connecting beam 103 is connected between the lower end of each inclined column 101 and the lower end of the corresponding supporting beam 102, reinforcing connecting beams 103 are also connected between the lower ends of the two inclined columns 101 and between the lower ends of the two supporting beams 102, and the four reinforcing connecting beams 103 form a rectangular frame in an enclosing mode. The lower ends of four corners of the rectangular frame are respectively provided with a fixed mounting plate 104, and the middle transposition rack 1 is fixedly installed through the fixed mounting plates 104. A transverse beam 105 is provided between the lower and middle portions of the two diagonal columns 101.
The front sides of the tops of the two oblique columns 101 are respectively provided with a supporting block 2 for supporting the sheet metal part 6, pneumatic overturning pressing devices 3 are arranged beside the supporting blocks 2 and correspond to the supporting blocks 2, and a positioning pin 4 matched with a positioning hole in the sheet metal part 6 is arranged on a pressing block 301 of one pneumatic overturning pressing device 3 located at the upper end. Which is arranged below the left-hand holding-down block 301 in the figure.
Pneumatic upset closing device 3 is prior art, including cylinder 303 as figure 1, the mount pad, swing arm 302 and connecting pin axle etc, swing arm 302 includes n shape arm, the tip of two landing legs of this n shape arm is buckled to same direction, mount pad and cylinder 303 fixed connection, the portion of bending of two landing legs of swing arm 302 is located the upper and lower side of the front portion of mount pad respectively, and rotate through connecting pin axle and connect on the mount pad, the rotatable joint with cylinder piston rod front end of connecting pin axle links to each other (not shown in the figure). The hold-down block 301 is connected to the swing arm 302 by a connecting arm. Swing arm 302 can realize the swing of turning over from beginning to end to drive guard shield compact heap 301 upset and compress tightly on sheet metal component 6 or leave sheet metal component 6 and give the place to for getting of arm to get sheet metal component 6.
The front sides of the two ends of the transverse beams 105 are also provided with supporting blocks 2 for supporting the sheet metal part 6, the positions of the two ends of the transverse beams 105 corresponding to the supporting blocks 2 are also provided with pneumatic overturning and pressing devices 3, and a positioning pin 4 matched with a positioning hole in the sheet metal part 6 is arranged above the supporting block 2 on one transverse beam 105. A proximity switch 5 is provided at least in a position close to any one of the support blocks 4. And a positioning pin 4 is arranged above the supporting block 2 on the right side of the transverse beam, and a proximity switch 5 is arranged above the supporting block 2 at the upper end of the right side.
The automobile sheet metal part 6 is supported on four supporting blocks 2 in a leaning manner, the positioning pins 4 are inserted into corresponding positioning holes in the sheet metal part 6, and the sheet metal part 6 is pressed on the supporting blocks 2 from the front of the sheet metal part 6 by the four pneumatic overturning pressing devices 3.
The above description is provided for the purpose of describing the present invention in more detail with reference to the preferred embodiments, and it should not be construed that the present invention is limited to these descriptions, and it will be apparent to those skilled in the art that the present invention can be implemented in many ways without departing from the spirit and scope of the present invention.
Claims (4)
1. The utility model provides a multistation car sheet metal component transfer platform device, includes well transposition rack, its characterized in that: the middle transposition rack comprises two oblique columns which are arranged in parallel and inclined backwards, a transverse beam is arranged between the middle lower parts of the two oblique columns, supporting blocks used for supporting sheet metal parts are respectively arranged on the front sides of the tops of the two oblique columns, pneumatic overturning pressing devices are arranged beside the supporting blocks and correspond to the supporting blocks, and positioning pins matched with positioning holes in the sheet metal parts are arranged on a pressing block of one of the pneumatic overturning pressing devices;
the front sides of the two ends of the transverse beam are also provided with supporting blocks for supporting the sheet metal part, the two ends of the transverse beam are also provided with pneumatic overturning and pressing devices corresponding to the supporting blocks, and a positioning pin matched with a positioning hole in the sheet metal part is arranged above one of the supporting blocks on the transverse beam; a proximity switch is arranged at least at a position close to any one of the supporting blocks; the automobile sheet metal part is supported on the four supporting blocks in a leaning mode, the positioning pins are inserted into the corresponding positioning holes in the sheet metal part, and the sheet metal part is pressed on the supporting blocks by the pneumatic overturning pressing devices from the front of the sheet metal part.
2. The transfer table device of a multi-station automobile sheet metal part according to claim 1, characterized in that: the middle transposition rack further comprises support beams, the support beams are arranged on the rear side of each inclined column, reinforced connecting beams are connected between the lower ends of the inclined columns and the lower ends of the support beams corresponding to the inclined columns, the reinforced connecting beams are also connected between the lower ends of the two inclined columns and between the lower ends of the two support beams, and the four reinforced connecting beams form a rectangular frame in a surrounding mode.
3. The transfer table device of a multi-station automobile sheet metal part according to claim 2, characterized in that: and the lower ends of the four corners of the rectangular frame are respectively provided with a fixed mounting plate, and the middle transposition rack is fixedly mounted through the fixed mounting plates.
4. The transfer table device for the multi-station automobile sheet metal part according to any one of claims 1 to 3, wherein: a positioning pin is arranged below a pressing block of the pneumatic overturning pressing device on the left side of the upper end, and a positioning pin is arranged above a supporting block on the right side of the transverse beam; the proximity switch is arranged above the supporting block at the upper end of the right side.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921772603.8U CN210790939U (en) | 2019-10-22 | 2019-10-22 | Multi-station transfer table device for automobile sheet metal parts |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921772603.8U CN210790939U (en) | 2019-10-22 | 2019-10-22 | Multi-station transfer table device for automobile sheet metal parts |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN210790939U true CN210790939U (en) | 2020-06-19 |
Family
ID=71238817
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201921772603.8U Active CN210790939U (en) | 2019-10-22 | 2019-10-22 | Multi-station transfer table device for automobile sheet metal parts |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN210790939U (en) |
-
2019
- 2019-10-22 CN CN201921772603.8U patent/CN210790939U/en active Active
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