CN218461405U - Pressure maintaining clamp dismounting device - Google Patents

Pressure maintaining clamp dismounting device Download PDF

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Publication number
CN218461405U
CN218461405U CN202222510858.5U CN202222510858U CN218461405U CN 218461405 U CN218461405 U CN 218461405U CN 202222510858 U CN202222510858 U CN 202222510858U CN 218461405 U CN218461405 U CN 218461405U
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China
Prior art keywords
dismounting
assembly
station
pressure maintaining
clamp
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CN202222510858.5U
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Chinese (zh)
Inventor
刘晓强
雷中华
杜寿雷
苏凯豪
刘玉金
许华兵
何阳
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Dongguan Huabei Electronic Technology Co Ltd
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Dongguan Huabei Electronic Technology Co Ltd
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Priority to CN202222510858.5U priority Critical patent/CN218461405U/en
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Abstract

The utility model provides a pressure maintaining clamp dismounting device, which comprises a frame, a station switching driving mechanism, a positioning component and a dismounting mechanism, wherein the frame is provided with a material taking station and a dismounting station; the station switching driving mechanism is arranged on the rack; the positioning assembly is arranged on the station switching driving mechanism, the station switching driving mechanism can drive the positioning assembly to move to and fro between the material taking station and the disassembling station, and the positioning assembly is used for positioning the pressure maintaining clamp group; the dismounting mechanism is arranged on the rack and located at a dismounting station, the dismounting mechanism can movably clamp the first and second pressure maintaining clamps located above in the pressure maintaining clamp group on the positioning assembly, and can drive the first pressure maintaining clamp located above in the pressure maintaining clamp group to move and detach the second pressure maintaining clamp located above. The utility model discloses a pressurize anchor clamps dismounting device can dismantle pressurize anchor clamps group automatically, reduces workman and points operation intensity, reduces operation in-process tong risk.

Description

Pressure maintaining clamp dismounting device
Technical Field
The utility model relates to an intelligence wrist-watch production technical field especially relates to a pressurize anchor clamps dismounting device.
Background
In the assembly process of TP (touch screen) and the A shell of intelligence wrist-watch, need to adopt the pressurize anchor clamps to carry out the pressurize usually, two pressurize anchor clamps carry out the pressurize to a set of TP and A shell subassembly, and the pressurize anchor clamps that eleven pressurize anchor clamps stack from top to bottom are a set of to form batch pressurize to ten groups of TP and A shell subassemblies. However, after the pressure maintaining is completed, workers are required to manually disassemble the pressure maintaining clamps one by one to take away the TP and the shell a assembly, and since eight pairs of strong magnets are attached between the two pressure maintaining clamps, the manual disassembly of the pressure maintaining clamps requires a finger to apply force of 3-4kgF, which easily causes fatigue of the workers and results in low disassembly efficiency. In addition, the adsorption force between the pressure maintaining clamps is 3-4kgF, so that fingers of operators are easily injured by clamping, and the requirements of UPH350 can be met only by the joint operation of two workers.
Therefore, it is necessary to provide a pressure holding jig dismounting device capable of automatically dismounting the pressure holding jig set.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a pressurize anchor clamps dismounting device that can dismantle to pressurize anchor clamps group automatically.
In order to achieve the purpose, the utility model provides a pressure maintaining clamp dismounting device, which comprises a frame, a station switching driving mechanism, a positioning component and a dismounting mechanism, wherein the frame is provided with a material taking station and a dismounting station; the station switching driving mechanism is arranged on the rack; the positioning assembly is arranged on the station switching driving mechanism, the station switching driving mechanism can drive the positioning assembly to move to and fro between the material taking station and the disassembling station, and the positioning assembly is used for positioning the pressure maintaining clamp group; the disassembling mechanism is arranged on the rack and located at the disassembling station, the disassembling mechanism can movably clamp the pressure maintaining clamps located at the first and the second above in the pressure maintaining clamp group on the positioning assembly, and can drive the pressure maintaining clamp located at the first above in the pressure maintaining clamp group to move to detach the pressure maintaining clamp located at the second above.
Preferably, the station switching driving mechanism includes a station switching linear driving assembly, a station switching slide rail and a station switching sliding member, the station switching linear driving assembly is disposed on the frame, the station switching slide rail is disposed on the frame along the direction of the material taking station and the direction of the disassembling station, the station switching sliding member is slidably disposed on the station switching slide rail, the station switching linear driving assembly is connected with the station switching sliding member and can drive the station switching sliding member to slide, and the positioning assembly is disposed on the station switching sliding member.
Preferably, the positioning assembly includes a positioning base, a first positioning member and a second positioning member, the positioning base is disposed on the station switching driving mechanism, the first positioning member and the second positioning member are disposed on the positioning base at intervals, the first positioning member is provided with a first clamping groove, the second positioning member is provided with a second clamping groove, the first clamping groove and the second clamping groove are disposed oppositely, and the first clamping groove and the second clamping groove are used for clamping the pressure maintaining clamp group.
Preferably, a base magnet for adsorbing and positioning the pressure maintaining clamp group is arranged on the positioning base.
Preferably, a photoelectric switch for sensing the pressure maintaining clamp group is arranged on the positioning base.
Preferably, the dismounting mechanism includes a first dismounting movement driving assembly, a first clamping jaw assembly, a second dismounting movement driving assembly and a second clamping jaw assembly, the first dismounting movement driving assembly is disposed on the frame, the first clamping jaw assembly and the second dismounting movement driving assembly are respectively disposed on the first dismounting movement driving assembly, and the second clamping jaw assembly is disposed on the second dismounting movement driving assembly; the first clamping jaw assembly and the second dismounting movement driving assembly are driven to move by the first dismounting movement driving assembly, and the second dismounting movement driving assembly drives the second clamping jaw assembly to move, so that the first clamping jaw assembly clamps the pressure maintaining clamp positioned on the second upper part in the pressure maintaining clamp group, and the second clamping jaw assembly clamps the pressure maintaining clamp positioned on the first upper part in the pressure maintaining clamp group.
Preferably, the first dismounting and moving driving assembly comprises a dismounting and rotating driving module, a screw rod, a nut and a first lifting mounting member, the dismounting and rotating driving module is arranged on the frame, the screw rod is pivoted on the frame, the dismounting and rotating driving module is connected with the screw rod, the nut is sleeved on the screw rod, the first lifting mounting member is connected with the nut, and the first clamping jaw assembly and the second dismounting and moving driving assembly are respectively arranged on the first lifting mounting member; the screw rod is driven to rotate by the disassembling and rotating driving module, so that the first lifting installation part is driven to lift through the nut.
Preferably, the second is dismantled and is removed drive assembly including dismantling telescopic cylinder, dismantlement slide rail and dismantlement slider, dismantle telescopic cylinder with dismantle the slide rail set up respectively in on the first lift installed part, dismantle the slider can set up with sliding from top to bottom dismantle on the slide rail, dismantle telescopic cylinder with dismantle slider connection and can drive dismantle the slider and slide from top to bottom, second clamping jaw subassembly set up in dismantle on the slider.
Preferably, a first jack and a second jack are arranged on the side surface of the pressure maintaining clamp, the first clamping jaw assembly can be inserted into the second jack and clamps the pressure maintaining clamp, and the second clamping jaw assembly can be inserted into the first jack and clamps the pressure maintaining clamp.
Preferably, a blanking port located at the disassembling station is arranged on the frame, and the disassembling mechanism can release the disassembled pressure maintaining clamp towards the direction of the blanking port.
Compared with the prior art, the utility model discloses a pressurize anchor clamps dismounting device sets up on station switches actuating mechanism through the locating component who will be used for location pressurize anchor clamps group, utilizes station to switch actuating mechanism drive locating component removes extremely dismantle the station, through dismounting mechanism removes to clip on the locating component the pressurize anchor clamps that lie in the first and second in top in the pressurize anchor clamps group are ordered about lie in the first in top in the pressurize anchor clamps group the pressurize anchor clamps remove to detach and lie in the second in the top the pressurize anchor clamps are located the first in top in the pressurize anchor clamps group after the pressurize anchor clamps are dismantled, switch the actuating mechanism drive through the station the locating component removes to getting the material station to be convenient for lie in the top in the pressurize anchor clamps group this moment TP on the pressurize anchor clamps takes away with A shell subassembly, so repetition to dismantle the pressurize anchor clamps on the pressurize anchor clamps group one by one another. Therefore, the utility model discloses a pressurize anchor clamps dismounting device can dismantle pressurize anchor clamps group automatically, has greatly made things convenient for the workman to take out multiunit TP and A shell subassembly respectively from pressurize anchor clamps group, reduces workman finger operation intensity, reduces the operation in-process tong risk, just the utility model discloses a pressurize anchor clamps dismounting device simple structure, the easy operation, low in manufacturing cost is applicable to extensive using widely.
Drawings
Fig. 1 is a three-dimensional structure view of the pressure maintaining jig detaching device of the present invention.
Fig. 2 is a plan view of the pressure maintaining jig detaching device of the present invention.
Fig. 3 is a perspective view of the detaching mechanism of the present invention.
Fig. 4 is a perspective view of the positioning assembly of the present invention.
Fig. 5 is a perspective view of the holding pressure jig set.
Detailed Description
In order to explain the technical contents and structural features of the present invention in detail, the following description is made with reference to the embodiments and the accompanying drawings.
Referring to fig. 1, fig. 2 and fig. 5, the pressure maintaining clamp detaching device 100 of the present invention includes a frame 1, a station switching driving mechanism 2, a positioning assembly 3 and a detaching mechanism 4, wherein the frame 1 is provided with a material taking station 11 and a detaching station 12; the station switching driving mechanism 2 is arranged on the frame 1; the positioning component 3 is arranged on the station switching driving mechanism 2, the station switching driving mechanism 2 can drive the positioning component 3 to move to and fro between the material taking station 11 and the disassembling station 12, and the positioning component 3 is used for positioning the pressure maintaining clamp group 5; the dismounting mechanism 4 is arranged on the frame 1 and located at the dismounting station 12, the dismounting mechanism 4 can move to clamp the first and second holding clamps 51 located above in the holding clamp group 5 on the positioning assembly 3, and can drive the first holding clamp 51 located above in the holding clamp group 5 to move to detach the second holding clamp 51 located above.
With reference to fig. 1 and fig. 2, in the present embodiment, the station switching driving mechanism 2 includes a station switching linear driving assembly 21, a station switching sliding rail 22 and a station switching sliding member 23, the station switching linear driving assembly 21 is disposed on the frame 1, the station switching sliding rail 22 is disposed on the frame 1 along the direction of the material taking station 11 and the disassembling station 12, the station switching sliding member 23 is slidably disposed on the station switching sliding rail 22, the station switching linear driving assembly 21 is connected to the station switching sliding member 23 and can drive the station switching sliding member 23 to slide, and the positioning assembly 3 is disposed on the station switching sliding member 23. Specifically, the station-switching linear driving assembly 21 may adopt an existing rodless cylinder structure, but not limited thereto, for example, the station-switching linear driving assembly 21 may also adopt an existing structure in which a rotating motor is connected to a screw rod mechanism.
Referring to fig. 4, in the present embodiment, the positioning assembly 3 includes a positioning base 31, a first positioning element 32 and a second positioning element 33, the positioning base 31 is disposed on the station switching driving mechanism 2, the first positioning element 32 and the second positioning element 33 are disposed on the positioning base 31 at intervals, the first positioning element 32 is provided with a first engaging groove 321, the second positioning element 33 is provided with a second engaging groove 331, the first engaging groove 321 and the second engaging groove 331 are disposed opposite to each other, and the first engaging groove 321 and the second engaging groove 331 are used for engaging the pressure maintaining clamp group 5. The pressure maintaining jig set 5 is positioned by placing the pressure maintaining jig set 5 on the positioning base 31 and being clamped between the first clamping groove 321 and the second clamping groove 331. Further, the positioning base 31 is provided with a base magnet 311 for attracting the positioning and pressure holding jig group 5. Adsorb the location to pressurize anchor clamps group 5 through base magnet 311, further guarantee the steadiness to pressurize anchor clamps group 5 location. Furthermore, the positioning base 31 is provided with a photoelectric switch 312 for sensing the pressure maintaining jig set 5. This photoelectric switch 312 can with the control system electric connection that control station switches actuating mechanism 2 operation, but when photoelectric switch 312 detects and senses that there is pressurize anchor clamps group 5 on the positioning base 31, photoelectric switch 312 feeds back the signal to control system, and control system control station switches actuating mechanism 2 operation for station switches actuating mechanism 2 and drives locating component 3 and remove to dismantling station 12, thereby drives pressurize anchor clamps group 5 and removes to dismantling station 12 from getting material station 11. The specific control principle of the control system is the prior art, and therefore, is not described herein.
Referring to fig. 1 and 3, the detaching mechanism 4 includes a first detaching movement driving assembly 41, a first clamping jaw assembly 42, a second detaching movement driving assembly 43 and a second clamping jaw assembly 44, the first detaching movement driving assembly 41 is disposed on the frame 1, the first clamping jaw assembly 42 and the second detaching movement driving assembly 43 are respectively disposed on the first detaching movement driving assembly 41, and the second clamping jaw assembly 44 is disposed on the second detaching movement driving assembly 43. The first clamping jaw assembly 42 and the second dismounting movement driving assembly 43 are driven to move by the first dismounting movement driving assembly 41, and the second dismounting movement driving assembly 43 drives the second clamping jaw assembly 44 to move, so that the first clamping jaw assembly 42 clamps the pressure maintaining clamp 51 positioned on the second upper side in the pressure maintaining clamp group 5, the second clamping jaw assembly 44 clamps the pressure maintaining clamp 51 positioned on the first upper side in the pressure maintaining clamp group 5, and the second dismounting movement driving assembly 43 drives the second clamping jaw assembly 44 to move, so that the second clamping jaw assembly 44 drives the pressure maintaining clamp 51 positioned on the first upper side in the pressure maintaining clamp group 5 to move and dismount from the pressure maintaining clamp 51 positioned on the second upper side, and the purpose of dismounting the pressure maintaining clamps 51 one by one is achieved.
Referring to fig. 3, in the present embodiment, the first detaching and moving driving assembly 41 includes a detaching and rotating driving module 411, a screw rod 412, a nut 413 and a first lifting/lowering mounting member 414, the detaching and rotating driving module 411 is disposed on the rack 1, the screw rod 412 is pivotally connected to the rack 1, the detaching and rotating driving module 411 is connected to the screw rod 412, the nut 413 is sleeved on the screw rod 412, the first lifting/lowering mounting member 414 is connected to the nut 413, and the first clamping jaw assembly 42 and the second detaching and moving driving assembly 43 are respectively disposed on the first lifting/lowering mounting member 414. The screw rod 412 is driven to rotate by the disassembling rotary driving module 411, so as to drive the first lifting installation part 414 to lift through the nut 413, and further drive the first clamping jaw assembly 42, the second disassembling movable driving assembly 43 and the second clamping jaw assembly 44 to lift. The first lifting/lowering mounting element 414 may further include a sliding rail, and the first lifting/lowering mounting element 414 is slidably disposed on the sliding rail, but not limited thereto. Specifically, the second dismounting moving driving assembly 43 is located above the first clamping jaw assembly 42, the second dismounting moving driving assembly 43 includes a dismounting telescopic cylinder 431, a dismounting slide rail 432 and a dismounting slide member 433, the dismounting telescopic cylinder 431 and the dismounting slide rail 432 are respectively disposed on the first lifting mounting member 414, the dismounting slide member 433 is slidably disposed on the dismounting slide rail 432 up and down, the dismounting telescopic cylinder 431 is connected with the dismounting slide member 433 and can drive the dismounting slide member 433 to slide up and down, and the second clamping jaw assembly 44 is disposed on the dismounting slide member 433. The disassembling telescopic cylinder 431 is telescopic, so that the disassembling sliding piece 433 is driven to slide along the disassembling sliding rail 432 to ascend and descend, and the second clamping jaw assembly 44 is driven to ascend and descend. The second clamping jaw assembly 44 is driven to descend, so that the second clamping jaw assembly 44 clamps the pressure maintaining clamp 51 positioned first above in the pressure maintaining clamp group 5; the second clamping jaw assembly 44 is driven to ascend, so as to drive the holding clamp 51 located at the first upper position in the holding clamp group 5 to move and detach the holding clamp 51 located at the second upper position.
Referring to fig. 3 and 5, in the drawings, the x-axis direction is a front-back direction, the y-axis direction is a left-right direction, the z-axis direction is a vertical direction, the side surface of the pressure maintaining clamp 51 is provided with a first insertion hole 511 and a second insertion hole 512, the first clamping jaw assembly 42 can be inserted into the second insertion hole 512 and clamps the pressure maintaining clamp 51, and the second clamping jaw assembly 44 can be inserted into the first insertion hole 511 and clamps the pressure maintaining clamp 51. In the present embodiment, the front side and the rear side of the holding pressure jig 51 are respectively provided with a first insertion hole 511, the left side and the right side of the holding pressure jig 51 are respectively provided with a second insertion hole 512, the first jaw assembly 42 clamps the left side and the right side of the holding pressure jig 51 through the second insertion hole 512 at the left side and the right side of the holding pressure jig 51, and the second jaw assembly 44 clamps the front side and the rear side of the holding pressure jig 51 through the first insertion hole 511 at the front side and the rear side of the holding pressure jig 51. However, the positions of the first insertion hole 511 and the second insertion hole 512 at the side where the dwell jig 51 is clamped are not limited to this, and for example, in other embodiments, the position of the first insertion hole 511 may be interchanged with the position of the second insertion hole 512. More specifically, the first clamping jaw assembly 42 includes a first clamping jaw cylinder 421 and a first clamping jaw member 422, the first clamping jaw cylinder 421 is disposed on the first lifting/lowering mounting member 414 of the first dismounting/moving driving assembly 41, the two first clamping jaw members 422 are disposed on the first clamping jaw cylinder 421 at intervals along the left-right direction, the first clamping jaw cylinder 421 drives the two first clamping jaw members 422 to approach or separate from each other along the left-right direction to clamp or release the pressure maintaining clamp 51, and the first clamping jaw member 422 can be inserted into the second insertion hole 512 and clamp the pressure maintaining clamp 51. The second clamping jaw assembly 44 includes a second clamping jaw cylinder 441 and a second clamping jaw member 442, the second clamping jaw cylinder 441 is disposed on the detaching sliding member 433 of the second detaching moving driving assembly 43, the two second clamping jaw members 442 are disposed on the second clamping jaw cylinder 441 at intervals along the front-rear direction, the two second clamping jaw members 442 are driven by the second clamping jaw cylinder 441 to approach or separate from each other along the front-rear direction so as to clamp or release the pressure maintaining clamp 51, and the second clamping jaw member 442 can be inserted into the first insertion hole 511 and clamp the pressure maintaining clamp 51.
Referring to fig. 1, the frame 1 is provided with a blanking port 121 located at the disassembling station 12, and the disassembling mechanism 4 can release the disassembled holding clamp 51 toward the blanking port 121. Specifically, when the station switching driving mechanism 2 drives the positioning component 3 to drive the pressure maintaining clamp group 5 to move to the dismounting station 12, the positioning component 3 is located above the blanking port 121. After the second dismounting moving driving component 43 of the dismounting mechanism 4 drives the second clamping jaw component 44 to move and dismount the pressure maintaining clamp 51 positioned at the first upper position in the pressure maintaining clamp group 5 from the pressure maintaining clamp 51 positioned at the second upper position, the station switching driving mechanism 2 drives the positioning component 3 to drive all the pressure maintaining clamps 51 left by the pressure maintaining clamp group 5 to move to the material taking station 11, the blanking port 121 is positioned below the dismounting mechanism 4, the second clamping jaw component 44 of the dismounting mechanism 4 can release the pressure maintaining clamp 51 obtained by dismounting the second clamping jaw component to the blanking port 121, a belt line can be arranged below the blanking port 121, so that the no-load pressure maintaining clamp 51 can fall onto the belt line through the blanking port 121, and then flow back to the upper pressure maintaining station through the belt line.
With reference to fig. 1 to 5, the pressure maintaining clamp detaching device 100 of the present invention has the following specific working principle:
place pressurize anchor clamps group 5 on being located the locating component 3 of getting material station 11, pressurize anchor clamps group 5 card is between first draw-in groove 321 and second draw-in groove 331, base magnet 311 on the location base 31 adsorbs the location to pressurize anchor clamps group 5, photoelectric switch 312 detects to have pressurize anchor clamps group 5 on the location base 31, station switching actuating mechanism 2 moves, station switching linear drive assembly 21 drives station switching slider 23 and drives locating component 3 and pressurize anchor clamps group 5 and remove to dismantling station 12, locating component 3 is located the top of blanking mouth 121. The first removing movement driving assembly 41 of the removing mechanism 4 drives the first clamping jaw assembly 42, the second removing movement driving assembly 43 and the second clamping jaw assembly 44 to descend, so that the first clamping jaw assembly 42 clamps the pressure maintaining clamp 51 located at the second upper position in the pressure maintaining clamp group 5, specifically, the first clamping jaw member 422 of the first clamping jaw assembly 42 extends into the second insertion hole 512 of the pressure maintaining clamp 51 and clamps the pressure maintaining clamp 51, the second removing movement driving assembly 43 drives the second clamping jaw assembly 44 to descend, so that the second clamping jaw assembly 44 clamps the pressure maintaining clamp 51 located at the first upper position in the pressure maintaining clamp group 5, specifically, the second clamping jaw member 442 of the second clamping jaw assembly 44 extends into the first insertion hole 511 and clamps the pressure maintaining clamp 51, and the second removing movement driving assembly 43 drives the second clamping jaw assembly 44 to ascend, so that the pressure maintaining clamp 51 located at the first upper position in the pressure maintaining clamp group 5 is moved away from the clamp 51 located at the second upper position. After the pressure holding jig 51 located at the first upper position in the pressure holding jig group 5 is detached, the station switching driving mechanism 2 drives the positioning assembly 3 to move to the material taking station 11, so as to take away the TP and the a-shell assembly located on the pressure holding jig 51 located at the uppermost position in the pressure holding jig group 5 at this time, and the second jaw assembly 44 of the detaching mechanism 4 can release the detached pressure holding jig 51 to the material dropping port 121. This is repeated, so as to detach the holding pressure jig 51 on the holding pressure jig group 5 one by one, and then take the TP and the a-shell component on each holding pressure jig 51 away.
To sum up, the utility model discloses a pressurize anchor clamps dismounting device 100 can dismantle pressurize anchor clamps group 5 automatically, has greatly made things convenient for the workman to take out multiunit TP and A shell subassembly respectively from pressurize anchor clamps group 5, reduces workman finger operation intensity, reduces operation in-process tong risk, just the utility model discloses a pressurize anchor clamps dismounting device 100 simple structure, easy operation, low in manufacturing cost is applicable to extensive using widely.
The above disclosure is only a preferred embodiment of the present invention, and the scope of the claims of the present invention should not be limited thereby, and all the equivalent changes made in the claims of the present invention are intended to be covered by the present invention.

Claims (10)

1. The utility model provides a pressurize anchor clamps dismounting device which characterized in that includes:
the device comprises a rack, a material taking station and a disassembling station are arranged on the rack;
the station switching driving mechanism is arranged on the rack;
the positioning assembly is arranged on the station switching driving mechanism, the station switching driving mechanism can drive the positioning assembly to move to and fro between the material taking station and the disassembling station, and the positioning assembly is used for positioning the pressure maintaining clamp group;
the disassembly mechanism is arranged on the rack and positioned at the disassembly station, can movably clamp the pressure maintaining clamps positioned at the first upper part and the second upper part in the pressure maintaining clamp group on the positioning assembly, and can drive the pressure maintaining clamp positioned at the first upper part in the pressure maintaining clamp group to move to separate the pressure maintaining clamp positioned at the second upper part.
2. The pressure holding jig dismounting device according to claim 1, wherein the station switching drive mechanism includes a station switching linear drive assembly, a station switching slide rail, and a station switching slide member, the station switching linear drive assembly is disposed on the frame, the station switching slide rail is disposed on the frame in a direction of the take-out station and the dismounting station, the station switching slide member is slidably disposed on the station switching slide rail, the station switching linear drive assembly is connected to the station switching slide member and can drive the station switching slide member to slide, and the positioning assembly is disposed on the station switching slide member.
3. The pressure maintaining clamp dismounting device according to claim 1, wherein the positioning assembly includes a positioning base, a first positioning member, and a second positioning member, the positioning base is disposed on the station switching driving mechanism, the first positioning member and the second positioning member are disposed on the positioning base at intervals, the first positioning member is provided with a first clamping groove, the second positioning member is provided with a second clamping groove, the first clamping groove and the second clamping groove are disposed opposite to each other, and the first clamping groove and the second clamping groove are used for clamping the pressure maintaining clamp group.
4. The holding pressure jig dismounting device according to claim 3, wherein a base magnet for positioning the holding pressure jig group by adsorption is provided on the positioning base.
5. The holding pressure clamp dismounting device according to claim 3, wherein a photoelectric switch for sensing the holding pressure clamp group is provided on the positioning base.
6. The dwell clamp disassembly apparatus of claim 1, wherein the disassembly mechanism includes a first disassembly movement drive assembly disposed on the frame, a first jaw assembly, a second disassembly movement drive assembly, and a second jaw assembly, the first and second disassembly movement drive assemblies being disposed on the first disassembly movement drive assembly, respectively, the second jaw assembly being disposed on the second disassembly movement drive assembly; the first clamping jaw assembly and the second dismounting movement driving assembly are driven to move by the first dismounting movement driving assembly, and the second dismounting movement driving assembly drives the second clamping jaw assembly to move, so that the first clamping jaw assembly clamps the pressure maintaining clamp positioned on the second upper part in the pressure maintaining clamp group, and the second clamping jaw assembly clamps the pressure maintaining clamp positioned on the first upper part in the pressure maintaining clamp group.
7. The holding pressure clamp dismounting device according to claim 6, wherein the first dismounting moving drive assembly includes a dismounting rotating drive module, a lead screw, a nut, and a first lifting mounting member, the dismounting rotating drive module is disposed on the frame, the lead screw is pivoted to the frame, the dismounting rotating drive module is connected to the lead screw, the nut is sleeved on the lead screw, the first lifting mounting member is connected to the nut, and the first clamping jaw assembly and the second dismounting moving drive assembly are disposed on the first lifting mounting member, respectively; the screw rod is driven to rotate by the disassembling and rotating driving module, so that the first lifting installation part is driven to lift through the nut.
8. The holding pressure jig dismounting device according to claim 7, wherein the second dismounting movement driving assembly includes a dismounting telescopic cylinder, a dismounting slide rail, and a dismounting slide member, the dismounting telescopic cylinder and the dismounting slide rail are respectively provided on the first lifting/lowering mounting member, the dismounting slide member is slidably provided on the dismounting slide rail up and down, the dismounting telescopic cylinder is connected to the dismounting slide member and can drive the dismounting slide member to slide up and down, and the second clamping jaw assembly is provided on the dismounting slide member.
9. The dwell clamp disassembly apparatus of any one of claims 6 to 8, wherein a side of the dwell clamp is provided with a first socket and a second socket, the first clamping jaw assembly being insertable into the second socket and clamping the dwell clamp, the second clamping jaw assembly being insertable into the first socket and clamping the dwell clamp.
10. The pressure holding jig dismounting device according to claim 1, wherein a blanking opening is provided in the frame at the dismounting station, and the dismounting mechanism is configured to release the dismounted pressure holding jig in a direction toward the blanking opening.
CN202222510858.5U 2022-09-21 2022-09-21 Pressure maintaining clamp dismounting device Active CN218461405U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222510858.5U CN218461405U (en) 2022-09-21 2022-09-21 Pressure maintaining clamp dismounting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222510858.5U CN218461405U (en) 2022-09-21 2022-09-21 Pressure maintaining clamp dismounting device

Publications (1)

Publication Number Publication Date
CN218461405U true CN218461405U (en) 2023-02-10

Family

ID=85143530

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222510858.5U Active CN218461405U (en) 2022-09-21 2022-09-21 Pressure maintaining clamp dismounting device

Country Status (1)

Country Link
CN (1) CN218461405U (en)

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