CN215748833U - Vehicle instrument screen laminating frock - Google Patents

Vehicle instrument screen laminating frock Download PDF

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Publication number
CN215748833U
CN215748833U CN202023028272.2U CN202023028272U CN215748833U CN 215748833 U CN215748833 U CN 215748833U CN 202023028272 U CN202023028272 U CN 202023028272U CN 215748833 U CN215748833 U CN 215748833U
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China
Prior art keywords
clamp
vehicle
instrument screen
quick
sub
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CN202023028272.2U
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Chinese (zh)
Inventor
鲍向朝
韩春阳
刘胜利
房炜
李小佳
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EXCELLENCE (SUZHOU) AUTOMATION EQUIPMENT CO LTD
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EXCELLENCE (SUZHOU) AUTOMATION EQUIPMENT CO LTD
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Abstract

The utility model discloses a vehicle-mounted instrument screen fitting tool which comprises a main body clamp and a sub-clamp, wherein the main body clamp is used for positioning a bottom shell half assembly in a vehicle-mounted instrument screen, the sub-clamp is used for positioning a glass screen in the vehicle-mounted instrument screen, the sub-clamp is arranged above the main body clamp, and the sub-clamp is butted with external automatic production equipment; driven by automatic production equipment, the sub-clamp can be turned over by 180 degrees integrally, so that the glass screen positioned on the sub-clamp is attached to the bottom shell half assembly positioned on the main clamp to form a complete vehicle-mounted instrument screen. The utility model ensures the consistency of the whole mounting process in a high-precision product positioning mode and meets the precision requirement of mounting operation. In addition, in the structure of the utility model, the locking and unlocking parts are exquisite in design and stable in performance, so that the tool can realize stable transition in the connection process of front and rear processes, and the overall production efficiency of an enterprise is obviously improved.

Description

Vehicle instrument screen laminating frock
Technical Field
The utility model relates to a high-precision mounting tool, in particular to a vehicle-mounted instrument screen laminating tool, and belongs to the technical field of assembly in industrial automation.
Background
With the continuous improvement of industrial technology level and the continuous promotion of industrialized development process worldwide in recent years, as a core industry in the industrial field, the technology updating speed of the automobile industry is remarkably accelerated, and the manufacturing level of parts in the automobile industry is also greatly improved.
Taking the assembly and processing of the current vehicle-mounted electronic instrument product as an example, along with technical iteration of the automobile industry, the vehicle-mounted electronic instrument product is continuously developed towards the liquid crystal and integration direction, and the matched automatic production equipment is correspondingly updated and widely put into use.
In summary, how to provide a new attaching tool for the vehicle instrument screen assembly process in view of the above problems and combining the existing technical conditions, not only ensures higher mounting accuracy, but also can be conveniently and better docked with the automatic production equipment, which is a problem to be solved by the technical staff in the art.
SUMMERY OF THE UTILITY MODEL
In view of the above defects in the prior art, the utility model provides a vehicle instrument screen attaching tool, which comprises the following components.
A vehicle instrument screen laminating tool comprises a main body clamp and a sub clamp, wherein the main body clamp is used for positioning a bottom shell half assembly in a vehicle instrument screen, the sub clamp is used for positioning a glass screen in the vehicle instrument screen, the sub clamp is arranged above the main body clamp, and the sub clamp is in butt joint with external automatic production equipment; driven by automatic production equipment, the sub-clamp can be turned over by 180 degrees integrally, so that the glass screen positioned on the sub-clamp is attached to the bottom shell half assembly positioned on the main clamp to form a complete vehicle-mounted instrument screen.
Preferably, the main body fixture is composed of an upper half part and a lower half part, and the upper half part of the main body fixture is detachably arranged on the upper end surface of the lower half part of the main body fixture.
Preferably, the upper half part of the main body fixture comprises an upper substrate, and a supporting block, a positioning block and a positioning pin which are fixedly arranged on the upper end surface of the upper substrate, and the arrangement positions of the supporting block, the positioning block and the positioning pin on the upper end surface of the upper substrate are matched and correspond to the positioning position of a bottom shell half assembly in a vehicle instrument screen on the main body fixture; and the upper end surface of the upper substrate is also fixedly provided with a coding chip mounting block for assisting in arranging a coding chip on a bottom shell half assembly in a vehicle-mounted instrument screen.
Preferably, two connecting through holes are respectively arranged on two sides of the upper substrate in a penetrating manner, and a plurality of quick-change positioning pin through holes are arranged at the corner positions of the upper substrate in a penetrating manner.
Preferably, the lower half part of the main body clamp comprises a lower substrate and locking mechanisms fixedly arranged on two sides of the lower substrate respectively; the lower substrate is further provided with an unlocking mechanism, a return spring and a linear guide rail, the unlocking mechanism and the return spring are arranged oppositely, transmission is achieved between the unlocking mechanism and the return spring through a connecting plate, and the unlocking mechanism is in transmission connection with the locking mechanism.
Preferably, the upper end face of the lower base plate is further fixedly provided with a plurality of quick-change positioning pins, the quick-change positioning pins are matched with the quick-change positioning pin through holes, each quick-change positioning pin corresponds to one quick-change positioning pin through hole, and the upper base plate is connected with the lower base plate through the matching between the quick-change positioning pin and the quick-change positioning pin through hole.
Preferably, in a connection state of the upper substrate and the lower substrate, the quick-change positioning pin penetrates through the quick-change positioning pin through hole, the locking mechanisms integrally penetrate through the connection through hole and are exposed on the upper end face of the upper substrate, and the two locking mechanisms are matched with each other to jointly lock and position the half bottom shell assembly in the vehicle-mounted instrument screen.
Preferably, the sub-clamp comprises a clamp substrate and a glass support plate embedded on the clamp substrate, and the clamp substrate is connected with and can be driven by external automatic production equipment; the fixture comprises a fixture base plate and is characterized in that four equal-height blocks for mechanical limiting in the vertical direction are fixedly arranged on the upper end face of the fixture base plate, and the four equal-height blocks are uniformly distributed at four corner positions of the upper end face of the fixture base plate.
Preferably, a locking block, a quick-change head and two positioning bushings are respectively arranged at two sides of the upper end face of the clamp substrate, and the locking block is matched with the quick-change head to lock and position a glass screen in a vehicle-mounted instrument screen.
Preferably, a plurality of traceless suckers are embedded on the glass supporting plate, a vacuum pressure retaining valve is fixedly arranged on the lower end face of the clamp substrate, and the traceless suckers are respectively communicated with a vacuum pressure retaining valve pipeline; under the action of the vacuum pressure retaining valve, the traceless suckers are matched together to complete the adsorption and clamping of the glass screen in the vehicle-mounted instrument screen.
Compared with the prior art, the utility model has the advantages that:
the vehicle-mounted instrument screen attaching tool provided by the utility model ensures the consistency of the whole attaching process in a high-precision product positioning mode and meets the precision requirement of attaching operation. In addition, in the structure of the utility model, the locking and unlocking parts are exquisite in design and stable in performance, so that the tool can realize stable transition in the connection process of front and rear processes, and the overall production efficiency of an enterprise is obviously improved.
Meanwhile, the structure of the utility model is flexible and changeable, has good compatibility and can be quickly changed among various products of the same type. The sub-fixture is also provided with a quick-change structure and is provided with a gas-electric module, and the whole fixture can be quickly butted with external automatic production equipment to realize free switching among different processes, so that the application scenes of the utility model are further enriched.
In addition, the automatic production line and the automatic production line are compact in overall structure, can be well suitable for various automatic production equipment and narrow operation space in the automatic production line, reserve space for arrangement of other equipment, further optimize the arrangement of the automatic production equipment and the automatic production line in a processing enterprise, and guarantee the overall production efficiency of the enterprise.
The utility model also provides reference for other related problems in the same field, can be expanded and extended on the basis of the reference, is applied to other technical schemes of the fitting tool, and has very wide application prospect.
The following detailed description of the embodiments of the present invention is provided in connection with the accompanying drawings for the purpose of facilitating understanding and understanding of the technical solutions of the present invention.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a top view of the overall structure from another perspective of the present invention;
FIG. 3 is a schematic view showing the overall structure of a main body clamp part according to the present invention;
fig. 4 is a schematic view of the overall structure of the sub-clip part of the present invention.
Wherein: 1. a body clamp; 111. an upper substrate; 112. a support block; 113. positioning blocks; 114. positioning pins; 115. a coding chip mounting block; 121. a lower substrate; 122. a locking mechanism; 123. an unlocking mechanism; 124. a return spring; 125. a connecting plate; 126. quickly replacing a positioning pin; 127. a linear guide rail; 2. a sub-clamp; 21. a clamp substrate; 22. a glass support plate; 23. equal-height blocks; 24. a locking block; 25. quickly replacing the head; 26. a traceless sucker; 27. a vacuum pressure retaining valve; 28. the bushing is positioned.
Detailed Description
The utility model discloses a vehicle-mounted instrument screen laminating tool, which adopts the following specific scheme.
As shown in fig. 1 to 4, a vehicle instrument screen attaching tool includes a main fixture 1 for positioning a bottom case half assembly in a vehicle instrument screen and a sub-fixture 126 for positioning a glass screen in the vehicle instrument screen. When the bottom case half assembly is fixed on the main body jig 1 and the glass screen is fixed on the sub-jig 126, the process production such as surface cleaning, plasma activation, glue coating treatment, etc. for the vehicle instrument screen can be performed.
The sub-jig 126 is disposed above the main body jig 1 and the sub-jig 126 is docked with an external automated production apparatus.
Under the drive of the automatic production equipment, the sub-clamp 126 can be integrally turned over by 180 degrees, so that the glass screen positioned on the sub-clamp 126 is attached to the bottom shell half assembly positioned on the main clamp 1, then the locking mechanism 122 inside the main clamp 1 is used for locking and pressure maintaining, the unlocking is carried out after the specified pressure maintaining time is reached, finally, a complete vehicle-mounted instrument screen is formed, and then the automatic production equipment drives the sub-clamp 126 to reset. In this embodiment, the automated apparatus is a robot.
The main part anchor clamps 1 comprises first half and latter half two parts, the first half detachably of main part anchor clamps 1 set up in the up end of the latter half of main part anchor clamps 1.
The upper half part of the main body clamp 1 comprises an upper substrate 111, and a supporting block 112, a positioning block 113 and a positioning pin 114 which are fixedly arranged on the upper end surface of the upper substrate 111, wherein the arrangement positions of the supporting block 112, the positioning block 113 and the positioning pin 114 on the upper end surface of the upper substrate 111 correspond to the positioning positions of a bottom shell half assembly in a vehicle instrument screen on the main body clamp 1 in a matching manner; and the upper end surface of the upper substrate 111 is also fixedly provided with a coding chip mounting block 115 for assisting in arranging a coding chip on a bottom shell half assembly in a vehicle instrument screen.
Two connecting through holes are respectively arranged on two sides of the upper substrate 111 in a penetrating mode, and a plurality of quick-change positioning pin through holes are arranged at corner positions of the upper substrate 111 in a penetrating mode.
The lower half part of the main body clamp 1 comprises a lower substrate 121 and locking mechanisms 122 which are respectively and fixedly arranged on two sides of the lower substrate 121; the lower substrate 121 is further provided with an unlocking mechanism 123, a return spring 124 and a linear guide rail 127, the unlocking mechanism 123 and the return spring 124 are arranged oppositely, transmission is realized between the unlocking mechanism 123 and the return spring 124 through a connecting plate 125, and the unlocking mechanism 123 is in transmission connection with the locking mechanism 122.
The upper end face of the lower substrate 121 is further fixedly provided with a plurality of quick-change positioning pins 126, the quick-change positioning pins 126 are matched with the quick-change positioning pin through holes, each quick-change positioning pin 126 corresponds to one quick-change positioning pin through hole, and the upper substrate 111 is connected with the lower substrate 121 through the matching between the quick-change positioning pin 126 and the quick-change positioning pin through hole.
Under the connection state of the upper substrate 111 and the lower substrate 121, the quick-change positioning pin 126 penetrates through the quick-change positioning pin through hole, the locking mechanism 122 integrally penetrates through the connection through hole and is exposed on the upper end face of the upper substrate 111, and the two locking mechanisms 122 are matched and jointly realize locking and positioning of the half-assembly of the bottom shell in the vehicle instrument screen.
The sub-clamp 126 comprises a clamp substrate 21 and a glass support plate 22 embedded on the clamp substrate 21, wherein the clamp substrate 21 is connected with and driven by external automatic production equipment; the upper end surface of the fixture base plate 21 is further fixedly provided with four equal-height blocks 23 for performing mechanical limiting in the vertical direction, and the four equal-height blocks 23 are uniformly distributed at four corner positions of the upper end surface of the fixture base plate 21.
The locking device is characterized in that a locking block 24, a quick-change head 25 and two positioning bushes 28 are respectively arranged at two sides of the upper end face of the clamp substrate 21, and the locking block 24 is matched with the quick-change head 25 to lock and position a glass screen in a vehicle-mounted instrument screen.
A plurality of traceless suction cups 26 are embedded on the glass support plate 22, a vacuum pressure retaining valve 27 is fixedly arranged on the lower end face of the clamp base plate 21, and the traceless suction cups 26 are respectively communicated with the vacuum pressure retaining valve 27 through pipelines; under the action of the vacuum pressure retaining valve 27, the traceless suction cups 26 are matched together to complete the adsorption and clamping of the glass screen in the vehicle-mounted instrument screen.
After the dispensing process of the half assembly of the vehicle bottom shell on the main fixture 1 is completed, the automatic equipment attaches the sub-fixture 126 fixed with the glass screen to the main fixture 1, the sub-fixture 126 utilizes four of the same height blocks to realize mechanical spacing and always keep the distance between the glass screen and the half assembly of the vehicle bottom shell, and meanwhile, the locking mechanism is used for maintaining pressure, so that the sealant is stably cured to achieve a stable mounting effect.
In conclusion, the vehicle-mounted instrument screen attaching tool provided by the utility model ensures the consistency of the whole attaching process in a high-precision product positioning mode and meets the precision requirement of attaching operation. In addition, in the structure of the utility model, the locking and unlocking parts are exquisite in design and stable in performance, so that the tool can realize stable transition in the connection process of front and rear processes, and the overall production efficiency of an enterprise is obviously improved.
Meanwhile, the structure of the utility model is flexible and changeable, has good compatibility and can be quickly changed among various products of the same type. The sub-fixture is also provided with a quick-change structure and is provided with a gas-electric module, and the whole fixture can be quickly butted with external automatic production equipment to realize free switching among different processes, so that the application scenes of the utility model are further enriched.
In addition, the automatic production line and the automatic production line are compact in overall structure, can be well suitable for various automatic production equipment and narrow operation space in the automatic production line, reserve space for arrangement of other equipment, further optimize the arrangement of the automatic production equipment and the automatic production line in a processing enterprise, and guarantee the overall production efficiency of the enterprise.
The utility model also provides reference for other related problems in the same field, can be expanded and extended on the basis of the reference, is applied to other technical schemes of the fitting tool, and has very wide application prospect.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein, and any reference signs in the claims are not intended to be construed as limiting the claim concerned.
Finally, it should be understood that although the present description refers to embodiments, not every embodiment contains only a single technical solution, and such description is for clarity only, and those skilled in the art should integrate the description, and the technical solutions in the embodiments can be appropriately combined to form other embodiments understood by those skilled in the art.

Claims (10)

1. The utility model provides a vehicle instrument screen laminating frock which characterized in that: the device comprises a main body clamp (1) used for positioning a bottom shell half assembly in a vehicle instrument screen and a sub clamp (2) used for positioning a glass screen in the vehicle instrument screen, wherein the sub clamp (2) is arranged above the main body clamp (1), and the sub clamp (2) is butted with external automatic production equipment; driven by automatic production equipment, the sub-clamp (2) can be integrally turned over for 180 degrees, so that the glass screen positioned on the sub-clamp (2) is attached to the bottom shell half assembly positioned on the main clamp (1) to form a complete vehicle-mounted instrument screen.
2. The vehicle-mounted instrument screen laminating tool of claim 1, characterized in that: the main part anchor clamps (1) comprise first half and the latter half two parts, the first half detachably of main part anchor clamps (1) set up in the up end of the latter half of main part anchor clamps (1).
3. The vehicle-mounted instrument screen laminating tool of claim 2, characterized in that: the upper half part of the main body clamp (1) comprises an upper substrate (111), and a supporting block (112), a positioning block (113) and a positioning pin (114) which are fixedly arranged on the upper end surface of the upper substrate (111), wherein the arrangement positions of the supporting block (112), the positioning block (113) and the positioning pin (114) on the upper end surface of the upper substrate (111) are matched and correspond to the positioning position of a bottom shell half assembly in a vehicle instrument screen on the main body clamp (1); and the upper end face of the upper base plate (111) is also fixedly provided with a coding chip mounting block (115) for assisting in arranging a coding chip on a bottom shell half assembly in a vehicle-mounted instrument screen.
4. The vehicle-mounted instrument screen laminating tool of claim 3, characterized in that: two sides of the upper substrate (111) are respectively provided with two connecting through holes in a penetrating mode, and a plurality of quick-change positioning pin through holes are arranged at the corner positions of the upper substrate (111) in a penetrating mode.
5. The vehicle-mounted instrument screen laminating tool of claim 4, characterized in that: the lower half part of the main body clamp (1) comprises a lower substrate (121) and locking mechanisms (122) which are respectively and fixedly arranged on two sides of the lower substrate (121); the lower base plate (121) is further provided with an unlocking mechanism (123), a return spring (124) and a linear guide rail (127), the unlocking mechanism (123) and the return spring (124) are oppositely arranged, transmission is achieved between the unlocking mechanism and the return spring through a connecting plate (125), and the unlocking mechanism (123) is in transmission connection with the locking mechanism (122).
6. The vehicle-mounted instrument screen laminating tool of claim 5, characterized in that: the upper end face of the lower base plate (121) is further fixedly provided with a plurality of quick-change positioning pins (126), the quick-change positioning pins (126) are matched with the quick-change positioning pin through holes, each quick-change positioning pin (126) corresponds to one quick-change positioning pin through hole, and through the matching between the quick-change positioning pins (126) and the quick-change positioning pin through holes, the upper base plate (111) is connected with the lower base plate (121).
7. The vehicle-mounted instrument screen laminating tool of claim 6, characterized in that: under the connection state of the upper substrate (111) and the lower substrate (121), the quick-change positioning pin (126) penetrates through the quick-change positioning pin through hole, the locking mechanism (122) integrally penetrates through the connecting through hole and is exposed out of the upper end face of the upper substrate (111), and the two locking mechanisms (122) are matched and jointly realize locking and positioning of a bottom shell half assembly in a vehicle-mounted instrument screen.
8. The vehicle-mounted instrument screen laminating tool of claim 1, characterized in that: the sub-clamp (2) comprises a clamp substrate (21) and a glass support plate (22) embedded on the clamp substrate (21), and the clamp substrate (21) is connected with and driven by external automatic production equipment; the fixture comprises a fixture base plate (21), and is characterized in that four equal-height blocks (23) for mechanical limiting in the vertical direction are further fixedly arranged on the upper end face of the fixture base plate (21), and the four equal-height blocks (23) are uniformly distributed at four corner positions of the upper end face of the fixture base plate (21).
9. The vehicle-mounted instrument screen laminating tool of claim 8, characterized in that: the locking device is characterized in that a locking block (24), a quick-change head (25) and two positioning bushes (28) are respectively arranged at two sides of the upper end face of the clamp substrate (21), and the locking block (24) and the quick-change head (25) are matched to lock and position a glass screen in a vehicle-mounted instrument screen.
10. The vehicle-mounted instrument screen laminating tool of claim 9, characterized in that: a plurality of traceless suckers (26) are embedded on the glass supporting plate (22), a vacuum pressure retaining valve (27) is fixedly arranged on the lower end face of the clamp base plate (21), and the traceless suckers (26) are respectively communicated with the vacuum pressure retaining valve (27) through pipelines; under the action of the vacuum pressure retaining valve (27), the traceless suckers (26) are matched together to complete the adsorption and clamping of the glass screen in the vehicle-mounted instrument screen.
CN202023028272.2U 2020-12-16 2020-12-16 Vehicle instrument screen laminating frock Active CN215748833U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023028272.2U CN215748833U (en) 2020-12-16 2020-12-16 Vehicle instrument screen laminating frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023028272.2U CN215748833U (en) 2020-12-16 2020-12-16 Vehicle instrument screen laminating frock

Publications (1)

Publication Number Publication Date
CN215748833U true CN215748833U (en) 2022-02-08

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ID=80071019

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023028272.2U Active CN215748833U (en) 2020-12-16 2020-12-16 Vehicle instrument screen laminating frock

Country Status (1)

Country Link
CN (1) CN215748833U (en)

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