CN217120896U - Automatic flatness detection machine for backlight source shell - Google Patents

Automatic flatness detection machine for backlight source shell Download PDF

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Publication number
CN217120896U
CN217120896U CN202123305671.3U CN202123305671U CN217120896U CN 217120896 U CN217120896 U CN 217120896U CN 202123305671 U CN202123305671 U CN 202123305671U CN 217120896 U CN217120896 U CN 217120896U
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module
feeding
detection
unloading
flatness
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张春
王开群
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SHENZHEN BAOMING TECHNOLOGY Ltd
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SHENZHEN BAOMING TECHNOLOGY Ltd
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Abstract

The utility model discloses a backlight shell plane degree automated inspection machine, detect unloading conveyor line module, plane degree detection waste discharge conveyor line module and plane degree detection unloading transfer chain module including rotary platform module, plane degree detection unloading conveyor belt module, plane degree detection unloading mechanism, plane degree detection unloading conveyor line module, plane degree detection module detects the straight line module including fixing plane degree detection support on mounting platform, fixed mounting, the plane degree detection straight line module of setting on plane degree detection straight line module, sets up the plane degree detection mounting panel on plane degree detection straight line module and installs the plane degree 3D detection camera on plane degree detection mounting panel. The automatic detection machine for the flatness of the backlight source shell has the advantages of being high in detection speed, high in detection efficiency, good in detection precision and the like, time and labor cost can be reduced when the automatic detection machine is applied, detection and production quality are improved, and production benefits of enterprises are improved.

Description

Automatic flatness detection machine for backlight source shell
Technical Field
The utility model relates to a backlight shell detection area, especially a backlight shell plane degree automated inspection machine.
Background
In the production process of the backlight shell, the flatness of the shell is greatly related to the quality of the whole backlight, and therefore, the flatness of the shell is very necessary to be detected.
The existing shell flatness detection mechanism generally adopts a linear detection mechanism, has the defects of low automation degree, low detection efficiency, high labor cost, inconvenience in waste discharge and the like, influences the product to carry out high-efficiency production, and needs to be improved urgently.
In view of the above, the present invention provides a new technical solution to solve the existing technical drawbacks.
SUMMERY OF THE UTILITY MODEL
In order to overcome the not enough of prior art, the utility model provides a backlight shell plane degree automated inspection machine has solved technical defect such as the degree of automation that prior art exists is low, detection efficiency is low, the cost of labor is high.
The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a backlight shell plane degree automated inspection machine, includes that mounting platform and fixed mounting rotate platform module, plane degree detection feeding conveyer belt module, plane degree detection unloading mechanism, plane degree detection unloading conveyer line module, plane degree detection waste discharge conveyer line module on mounting platform, plane degree detection unloading conveyer line module and plane degree detection waste discharge conveyer line module between be provided with plane degree detection unloading transfer chain module, plane degree detection module detects the straight-line movement module including fixing plane degree detection support, fixed mounting on plane degree detection support, sets up the plane degree detection mounting panel on plane degree detection straight-line movement module and install the plane degree 3D detection camera on plane degree detection mounting panel on mounting platform.
As an improvement of the above technical scheme, the rotary platform module includes a rotary motor base and a rotary motor fixedly mounted on the rotary motor base, the output end of the rotary motor is provided with a rotary platform, four groups of positioning jig assemblies are evenly arranged on the rotary platform along the circumferential direction, each positioning jig assembly includes a jig bottom plate and a plurality of positioning blocks fixedly arranged on the jig bottom plate, the positioning blocks are formed with workpiece placing positions for positioning workpieces on the jig bottom plate, and the positioning blocks are provided with guiding slopes for guiding the side edges of the workpieces on the inner sides of the positioning blocks close to the workpiece placing positions.
As a further improvement of the above technical solution, the rotating platform is a circular platform, a middle fixing hole for connecting with the rotating electrical machine is formed in the middle of the rotating platform, four fixing grooves are uniformly formed on the periphery of the circular platform, fixing step positions are formed on the side walls of the fixing grooves, and a jig bottom plate of the positioning jig assembly is fixedly arranged at the fixing step positions and fixedly connected with the rotating platform through screws.
As a further improvement of the technical scheme, a clearance groove is arranged between two adjacent fixing grooves on the rotary platform.
As a further improvement of the above technical solution, each group of the positioning jig assemblies includes a jig base plate, two positioning blocks are respectively disposed on four sides of the jig base plate, a middle spacer block is disposed at a middle position of the jig base plate, guide slopes are disposed on two sides of the middle spacer block, and two workpiece placing positions are formed on the jig base plate by the middle spacer block and the positioning blocks.
As a further improvement of the technical scheme, waist-shaped adjusting holes for adjusting the fixing positions of the positioning blocks and the middle spacing blocks are formed in the positioning blocks and the middle spacing blocks.
As the further improvement of above-mentioned technical scheme, the flatness detects last unloading mechanism and includes last unloading mechanism support and material loading rectilinear movement module, the unloading rectilinear movement module of fixed mounting on last unloading mechanism support, the output of material loading rectilinear movement module is provided with the flatness and detects material loading lift cylinder, the output that the flatness detected material loading lift cylinder is provided with material loading suction nozzle mounting panel, be provided with a plurality of material loading suction nozzles on the material loading suction nozzle mounting panel, the output of unloading rectilinear movement module is provided with the flatness and detects unloading lift cylinder, the output that the flatness detected unloading lift cylinder is provided with the unloading suction nozzle mounting panel, be provided with a plurality of unloading suction nozzles on the unloading suction nozzle mounting panel.
As an improvement of the above technical solution, the support of the feeding and discharging mechanism is an L-shaped support, which includes a first fixing rod and a second fixing rod that are perpendicular to each other, the feeding linear movement module and the discharging linear movement module are respectively and fixedly mounted on the first fixing rod and the second fixing rod, and a moving direction of the feeding linear movement module is perpendicular to a moving direction of the discharging linear movement module.
As a further improvement of the above technical scheme, a feeding moving module mounting plate and a discharging moving module mounting plate are arranged on the feeding and discharging mechanism support, and the feeding linear moving module and the discharging linear moving module are respectively and fixedly mounted on the feeding moving module mounting plate and the discharging moving module mounting plate.
As a further improvement of the above technical scheme, a feeding moving mounting plate is arranged at the output end of the feeding linear moving module, and the flatness detection feeding lifting cylinder is fixedly mounted on the feeding moving mounting plate;
the output end of the blanking linear moving module is provided with a blanking moving mounting plate, and the flatness detection blanking lifting cylinder is fixedly mounted on the blanking moving mounting plate.
As a further improvement of the technical scheme, the feeding suction nozzle mounting plate is provided with a strip-shaped through groove for adjusting the position of the feeding suction nozzle, and the blanking suction nozzle mounting plate is provided with a strip-shaped through groove for adjusting the position of the blanking suction nozzle.
As a further improvement of the above technical solution, the feeding linear movement module includes a feeding linear module frame, and a feeding module motor, a feeding module guide rail, and a feeding module screw nut pair disposed on the feeding linear module frame, the feeding module guide rail is provided with a feeding module slide carriage, an output end of the feeding module motor is connected to one end of a screw of the feeding module screw nut pair, a nut of the feeding module screw nut pair is fixedly connected to the feeding module slide carriage, the flatness detection feeding lifting cylinder is directly or indirectly mounted on the feeding module slide carriage, and the feeding module motor can drive the feeding module slide carriage to slide on the feeding module guide rail and synchronously drive the flatness detection feeding lifting cylinder to linearly move.
As a further improvement of the above technical scheme, the blanking linear movement module comprises a blanking linear module frame and a blanking module motor, a blanking module guide rail and a blanking module screw nut pair arranged on the blanking linear module frame, the blanking module guide rail is provided with a blanking module slide seat, the output end of the blanking module motor is connected to one end of a screw rod of the blanking module screw nut pair, the nut of the blanking module screw nut pair is fixedly connected with the blanking module slide seat, the flatness detection blanking lifting cylinder is directly or indirectly arranged on the blanking module slide seat, and the blanking module motor can drive the blanking module slide seat to slide on the blanking module guide rail and synchronously drive the flatness detection blanking lifting cylinder to linearly move.
As a further improvement of the technical scheme, the flatness detection feeding conveyor belt module comprises a feeding conveyor belt frame, a feeding driving motor, a feeding driving shaft and a feeding driven shaft, wherein the feeding driving motor, the feeding driving shaft and the feeding driven shaft are arranged on the feeding conveyor belt frame;
as the further improvement of above-mentioned technical scheme, the flatness detects unloading transfer chain module includes transfer conveying line frame and sets up transfer driving motor, transfer driving shaft, the transfer driven shaft on transfer conveying line frame, around being equipped with the transfer conveyer belt between transfer driving shaft and the transfer driven shaft, the output of transfer driving motor passes through coupling joint to transfer driving shaft and accessible transfer driving shaft drive transfer conveyer belt operation.
As a further improvement of the technical scheme, the flatness detection blanking conveying line module comprises a blanking conveying line frame, a blanking driving motor, a blanking driving shaft and a blanking driven shaft, wherein the blanking driving motor, the blanking driving shaft and the blanking driven shaft are arranged on the blanking conveying line frame;
as the further improvement of above-mentioned technical scheme, the plane degree detects waste conveyor line module includes waste conveyor line frame and sets up waste driving motor, the waste driving shaft, the waste driven shaft on waste conveyor line frame, around being equipped with waste conveyor belt between waste driving shaft and the waste driven shaft, waste driving motor's output is connected to waste driving shaft and accessible waste driving shaft drive waste conveyor belt operation through the shaft coupling.
The utility model has the advantages that: the utility model provides a backlight shell plane degree automated inspection machine, this kind of backlight shell plane degree automated inspection machine passes through rotary platform module, the plane degree detection module, the plane degree detects material loading conveyer belt module, the last unloading mechanism of plane degree detection, the plane degree detects unloading conveyer belt module, the plane degree detects the plane degree detection work that realizes the automation to the backlight shell that the conveyer belt module that gives up and plane degree detection unloading transfer chain module, it is fast to have a detection speed, advantages such as detection efficiency height, can save manual work and time cost when using, promote the productivity effect of enterprise.
In conclusion, the automatic detection machine for the flatness of the outer shell of the backlight source overcomes the technical defects of low automation degree, low detection efficiency, high labor cost and the like in the prior art.
Drawings
The present invention will be further explained with reference to the drawings and examples.
FIG. 1 is a schematic assembly view of the present invention;
fig. 2 is an assembly schematic view of a rotary platform module according to the present invention;
FIG. 3 is an assembly view from another perspective of the present invention;
fig. 4 is a schematic structural diagram of a rotating platform according to the present invention;
fig. 5 is an assembly schematic view of the positioning jig assembly of the present invention;
fig. 6 is an assembly diagram of the feeding and discharging mechanism for detecting the middle flatness of the utility model.
Detailed Description
The conception, the specific structure, and the technical effects produced by the present invention will be clearly and completely described below in conjunction with the embodiments and the accompanying drawings to fully understand the objects, the features, and the effects of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention. In addition, all the connection/connection relations referred to in the patent do not mean that the components are directly connected, but mean that a better connection structure can be formed by adding or reducing connection auxiliary components according to specific implementation conditions. The technical features of the present invention can be combined interactively without conflicting with each other, as shown in fig. 1 to 6.
An automatic flatness detector for a backlight shell comprises a mounting platform, a rotary platform module 1, a flatness detection module 3, a flatness detection feeding conveyer belt module 4, a flatness detection feeding and discharging mechanism 2, a flatness detection discharging conveyer belt module 5 and a flatness detection waste discharge conveyer belt module 6 which are fixedly mounted on the mounting platform, wherein a flatness detection discharging transfer conveyer belt module 7 is arranged between the flatness detection discharging conveyer belt module 5 and the flatness detection waste discharge conveyer belt module 6, the flatness detection module 3 comprises a flatness detection support 31 fixed on the mounting platform, a flatness detection linear moving module 32 fixedly mounted on the flatness detection support 31, a flatness detection mounting plate 33 arranged on the flatness detection linear moving module 32 and a flatness 3D detection camera 34 mounted on the flatness detection mounting plate 33, the flatness detection feeding conveyer belt module 4 is used for feeding workpieces to be detected, the flatness feeding and discharging mechanism 2 is used for feeding the workpieces into the rotary platform module 1 from the flatness detection feeding conveyer belt module 4 for detection and feeding the workpieces which are detected in the rotary platform module 1 into the flatness detection discharging transfer conveyer belt module 7, the flatness detection module 3 can detect the flatness of the workpiece on the rotary platform module 1 through the flatness 3D detection camera 34, the flatness detection blanking transfer conveyor line module 7 is used for sending the qualified workpiece into the flatness detection blanking conveyor line module 5 and sending the qualified workpiece into the next working procedure through the flatness detection blanking conveyor line module (5), or the flatness detection blanking transfer conveyor line module 7 is used for sending the unqualified workpieces to the flat flatness detection waste discharge conveyor line module 6 and sending the unqualified workpieces to the waste discharge material box through the flatness detection waste discharge conveyor line module 6.
The rotary platform module 1 comprises a rotary motor base 11 and a rotary motor 12 fixedly mounted on the rotary motor base 11, the output end of the rotary motor 12 is provided with a rotary platform 13, four groups of positioning jig assemblies 14 are uniformly arranged on the rotary platform 13 along the circumferential direction, each positioning jig assembly 14 comprises a jig base plate 141 and a plurality of positioning blocks 142 fixedly arranged on the jig base plate 141, the positioning blocks 142 are provided with workpiece placing positions 140 for positioning workpieces on the jig base plate 141, and the positioning blocks 142 are provided with guide slopes 143 for guiding the side edges of the workpieces on the inner sides close to the workpiece placing positions 140. Specifically, each group of the positioning jig assemblies 14 includes one jig base plate 141, two positioning blocks 142 are respectively disposed on four sides of the jig base plate 141, a middle spacing block 144 is disposed in the middle of the jig base plate 141, guide slopes 143 are disposed on two sides of the middle spacing block 144, and two workpiece placing positions 140 are formed on the jig base plate 141 by the middle spacing block 144 and the positioning blocks 142; the positioning block 142 and the middle spacer block 144 are provided with waist-shaped adjusting holes 145 for adjusting the fixing positions thereof.
In this embodiment, the rotating platform 13 is a circular platform, a middle fixing hole 131 for connecting with the rotating electrical machine 12 is formed in the middle of the circular platform, four fixing grooves 132 are uniformly formed on the periphery of the circular platform, fixing step positions 133 are formed on the side walls of the fixing grooves 132, and the jig base plate 141 of the positioning jig assembly 14 is fixedly arranged at the fixing step positions 133 and is fixedly connected with the rotating platform 13 through screws; a clearance groove 134 is formed between two adjacent fixing grooves 132 on the rotary platform 13.
Detailed implementation the utility model discloses in the time, each group's positioning jig subassembly 14 sets up two work pieces and places position 140, when needing to carry out the plane degree and detect, the work piece is carried the work piece and is placed in position 140, rotating electrical machines 12 drive rotary platform 13 is rotatory, rotary platform 13 drives positioning jig subassembly 14 and instrument arrival preset detection position and carries out the plane degree and detect, this kind of detection mode can avoid the production line to stop the line, is favorable to promoting production efficiency, and the cost of labor is lower, can promote the productivity effect.
The plane degree detects last unloading mechanism 2 including last unloading mechanism support 21 and fixed mounting material loading rectilinear movement module 22, unloading rectilinear movement module 23 on last unloading mechanism support 21, the output of material loading rectilinear movement module 22 is provided with the plane degree and detects material loading lift cylinder 24, the output that the plane degree detected material loading lift cylinder 24 is provided with material loading suction nozzle mounting panel 25, be provided with a plurality of material loading suction nozzles 26 on the material loading suction nozzle mounting panel 25, the output of unloading rectilinear movement module 23 is provided with the plane degree and detects unloading lift cylinder 27, the output that the plane degree detected unloading lift cylinder 27 is provided with unloading suction nozzle mounting panel 28, be provided with a plurality of unloading suction nozzles 29 on the unloading suction nozzle mounting panel 28. The feeding linear moving module 22 comprises a feeding linear module frame, and a feeding module motor, a feeding module guide rail and a feeding module screw nut pair which are arranged on the feeding linear module frame, wherein a feeding module sliding seat is arranged on the feeding module guide rail, the output end of the feeding module motor is connected to one end of a screw of the feeding module screw nut pair, a nut of the feeding module screw nut pair is fixedly connected with the feeding module sliding seat, the flatness detection feeding lifting cylinder 24 is directly or indirectly arranged on the feeding module sliding seat, and the feeding module motor can drive the feeding module sliding seat to slide on the feeding module guide rail and synchronously drive the flatness detection feeding lifting cylinder 24 to linearly move; unloading linear movement module 23 includes unloading linear module frame and sets up unloading module motor, unloading module guide rail, unloading module screw-nut pair on the unloading linear module frame, be provided with unloading module slide on the unloading module guide rail, the output of unloading module motor is connected to the vice lead screw one end of unloading module screw-nut, the vice nut of unloading module screw-nut and unloading module slide fixed connection, the flatness detects unloading lift cylinder 27 and directly or indirectly installs on unloading module slide, unloading module motor can drive unloading module slide and synchronous drive flatness detection unloading lift cylinder 27 linear movement on the unloading module guide rail.
Preferably, in this embodiment, the loading and unloading mechanism support 21 is an L-shaped support, and includes a first fixing rod and a second fixing rod that are perpendicular to each other, the loading linear movement module 22 and the unloading linear movement module 23 are respectively and fixedly mounted on the first fixing rod and the second fixing rod, and a movement direction of the loading linear movement module 22 is perpendicular to a movement direction of the unloading linear movement module 23; the loading and unloading mechanism bracket 21 is provided with a loading moving module mounting plate 211 and an unloading moving module mounting plate 212, and the loading linear moving module 22 and the unloading linear moving module 23 are respectively and fixedly mounted on the loading moving module mounting plate 211 and the unloading moving module mounting plate 212; the output end of the feeding linear moving module 22 is provided with a feeding moving mounting plate 221, and the flatness detection feeding lifting cylinder 24 is fixedly mounted on the feeding moving mounting plate 221; the output end of the blanking linear moving module 23 is provided with a blanking moving mounting plate 231, and the flatness detection blanking lifting cylinder 27 is fixedly mounted on the blanking moving mounting plate 231; the feeding suction nozzle mounting plate 25 is provided with a strip-shaped through groove for adjusting the position of the feeding suction nozzle 26, and the discharging suction nozzle mounting plate 28 is provided with a strip-shaped through groove for adjusting the position of the discharging suction nozzle 29.
Detailed implementation the utility model discloses the time, when the work piece need carry out the plane degree and detect the material loading, material loading rectilinear movement module 22 drive plane degree detects material loading lift cylinder 24 and material loading suction nozzle 26 and removes and take the work piece to take and detect the station, detects the completion back, detects unloading lift cylinder 27 and unloading suction nozzle 29 through 23 drive plane degrees of unloading rectilinear movement module and moves suitable position and will accomplish the work piece that detects and see off the detection position, accomplishes the unloading. The whole feeding and discharging process is automatic, the efficient feeding and discharging process has the advantages of being high in feeding and discharging efficiency, labor cost can be reduced, the process of manual participation is reduced, and safety is improved.
The flatness detection feeding conveyor belt module 4 comprises a feeding conveyor frame, a feeding driving motor, a feeding driving shaft and a feeding driven shaft, wherein the feeding driving motor, the feeding driving shaft and the feeding driven shaft are arranged on the feeding conveyor frame; the flatness detection blanking transfer conveyor line module 7 comprises a transfer conveyor line frame, a transfer driving motor, a transfer driving shaft and a transfer driven shaft, wherein the transfer driving motor, the transfer driving shaft and the transfer driven shaft are arranged on the transfer conveyor line frame; the flatness detection blanking conveying line module 5 comprises a blanking conveying line frame, a blanking driving motor, a blanking driving shaft and a blanking driven shaft, wherein the blanking driving motor, the blanking driving shaft and the blanking driven shaft are arranged on the blanking conveying line frame; the plane degree detects waste discharge transfer chain module 6 includes waste discharge conveying line frame and sets up waste discharge driving motor, waste discharge driving shaft, the waste discharge driven shaft on waste discharge conveying line frame, around being equipped with waste discharge conveyor belt between waste discharge driving shaft and the waste discharge driven shaft, waste discharge driving motor's output is connected to waste discharge driving shaft and accessible waste discharge driving shaft drive waste discharge conveyor belt operation through the shaft coupling.
While the preferred embodiments of the present invention have been described, the present invention is not limited to the above embodiments, and those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention, and such equivalent modifications or substitutions are intended to be included within the scope of the present invention as defined by the appended claims.

Claims (10)

1. The utility model provides a backlight shell plane degree automated inspection machine which characterized in that: comprises a mounting platform, a rotary platform module (1) fixedly mounted on the mounting platform, a flatness detection module (3), a flatness detection feeding conveyor belt module (4), a flatness detection feeding and discharging mechanism (2), a flatness detection discharging conveyor line module (5) and a flatness detection waste discharge conveyor line module (6), a flatness detection blanking transfer conveyor line module (7) is arranged between the flatness detection blanking conveyor line module (5) and the flatness detection waste discharge conveyor line module (6), the flatness detection module (3) comprises a flatness detection support (31) fixed on the mounting platform, a flatness detection linear movement module (32) fixedly mounted on the flatness detection support (31), a flatness detection mounting plate (33) arranged on the flatness detection linear movement module (32) and a flatness 3D detection camera (34) mounted on the flatness detection mounting plate (33).
2. The automatic flatness detecting machine for the backlight shell according to claim 1, wherein: the rotary platform module (1) comprises a rotary motor base (11) and a rotary motor (12) fixedly mounted on the rotary motor base (11), the output end of the rotary motor (12) is provided with a rotary platform (13), four groups of positioning jig assemblies (14) are uniformly arranged on the rotary platform (13) along the circumferential direction, each positioning jig assembly (14) comprises a jig base plate (141) and a plurality of positioning blocks (142) fixedly arranged on the jig base plate (141), the positioning blocks (142) are formed with workpiece placing positions (140) used for positioning workpieces, and the positioning blocks (142) are provided with guide slopes (143) used for guiding the sides of the workpieces on the inner sides close to the workpiece placing positions (140).
3. The backlight source casing flatness automatic detection machine according to claim 2, characterized in that: the rotary platform (13) is a circular platform, a middle fixing hole (131) used for being connected with the rotary motor (12) is formed in the middle of the rotary platform, four fixing grooves (132) are uniformly formed in the periphery of the circular platform, fixing step positions (133) are formed in the side walls of the fixing grooves (132), and a jig bottom plate (141) of the positioning jig assembly (14) is fixedly arranged at the fixing step positions (133) and is fixedly connected with the rotary platform (13) through screws;
and a clearance groove (134) is arranged between two adjacent fixing grooves (132) on the rotary platform (13).
4. The backlight source casing flatness automatic detection machine according to claim 2, characterized in that: each group of positioning jig components (14) comprises one jig bottom plate (141), two positioning blocks (142) are arranged on each of the four side edges of the jig bottom plate (141), a middle spacing block (144) is arranged in the middle of the jig bottom plate (141), guide slopes (143) are arranged on two sides of the middle spacing block (144), and two workpiece placing positions (140) are formed on the jig bottom plate (141) by the middle spacing block (144) and the positioning blocks (142);
waist-shaped adjusting holes (145) for adjusting the fixing positions of the positioning blocks (142) and the middle spacing blocks (144) are formed in the positioning blocks.
5. The automatic flatness detecting machine for the backlight shell according to claim 1, wherein: the flatness detection feeding and discharging mechanism (2) comprises a feeding and discharging mechanism bracket (21), a feeding linear moving module (22) and a discharging linear moving module (23) which are fixedly arranged on the feeding and discharging mechanism bracket (21), the output end of the feeding linear moving module (22) is provided with a flatness detection feeding lifting cylinder (24), the output end of the flatness detection feeding lifting cylinder (24) is provided with a feeding suction nozzle mounting plate (25), a plurality of feeding suction nozzles (26) are arranged on the feeding suction nozzle mounting plate (25), the output end of the blanking linear moving module (23) is provided with a flatness detection blanking lifting cylinder (27), the output end of the flatness detection blanking lifting cylinder (27) is provided with a blanking suction nozzle mounting plate (28), the blanking suction nozzle mounting plate (28) is provided with a plurality of blanking suction nozzles (29).
6. The backlight source casing flatness automatic detection machine according to claim 5, characterized in that: the feeding and discharging mechanism support (21) is an L-shaped support and comprises a first fixing rod and a second fixing rod which are perpendicular to each other, the feeding linear moving module (22) and the discharging linear moving module (23) are fixedly installed on the first fixing rod and the second fixing rod respectively, and the moving direction of the feeding linear moving module (22) is perpendicular to the moving direction of the discharging linear moving module (23);
last unloading mechanism support (21) are last to be provided with material loading removal module mounting panel (211) and unloading removal module mounting panel (212), material loading rectilinear movement module (22) and unloading rectilinear movement module (23) are fixed mounting respectively on material loading removal module mounting panel (211) and unloading removal module mounting panel (212).
7. The backlight source casing flatness automatic detection machine according to claim 5, characterized in that: the output end of the feeding linear moving module (22) is provided with a feeding moving mounting plate (221), and the flatness detection feeding lifting cylinder (24) is fixedly mounted on the feeding moving mounting plate (221);
the output end of the blanking linear moving module (23) is provided with a blanking moving mounting plate (231), and the flatness detection blanking lifting cylinder (27) is fixedly mounted on the blanking moving mounting plate (231);
the feeding suction nozzle mounting plate (25) is provided with a strip-shaped through groove for adjusting the position of the feeding suction nozzle (26), and the blanking suction nozzle mounting plate (28) is provided with a strip-shaped through groove for adjusting the position of the blanking suction nozzle (29).
8. The backlight source casing flatness automatic detection machine according to claim 5, characterized in that: the feeding linear moving module (22) comprises a feeding linear module frame, and a feeding module motor, a feeding module guide rail and a feeding module screw rod nut pair which are arranged on the feeding linear module frame, wherein a feeding module sliding seat is arranged on the feeding module guide rail, the output end of the feeding module motor is connected to one end of a screw rod of the feeding module screw rod nut pair, a nut of the feeding module screw rod nut pair is fixedly connected with the feeding module sliding seat, the flatness detection feeding lifting cylinder (24) is directly or indirectly arranged on the feeding module sliding seat, and the feeding module motor can drive the feeding module sliding seat to slide on the feeding module guide rail and synchronously drive the flatness detection feeding lifting cylinder (24) to linearly move;
unloading linear movement module (23) are in including unloading linear module frame and setting unloading module motor, unloading module guide rail, unloading module screw-nut pair on the unloading linear module frame, be provided with unloading module slide on the unloading module guide rail, the output of unloading module motor is connected to the vice lead screw one end of unloading module screw-nut, the vice nut of unloading module screw-nut and unloading module slide fixed connection, flatness detects unloading lift cylinder (27) and directly or indirectly installs on unloading module slide, unloading module motor can drive unloading module slide and synchronous drive flatness detection unloading lift cylinder (27) linear movement on unloading module guide rail.
9. The automatic flatness detecting machine for the backlight shell according to claim 1, wherein: the flatness detection feeding conveyor belt module (4) comprises a feeding conveyor belt frame, a feeding driving motor, a feeding driving shaft and a feeding driven shaft, wherein the feeding driving motor, the feeding driving shaft and the feeding driven shaft are arranged on the feeding conveyor belt frame;
flatness detects unloading transfer conveyer line module (7) including transfer conveyer line frame and set up transfer driving motor, transfer driving shaft, the transfer driven shaft on transfer conveyer line frame, around being equipped with transfer conveyer belt between transfer driving shaft and the transfer driven shaft, transfer driving motor's output passes through the coupling joint and is connected to transfer driving shaft and accessible transfer driving shaft drive transfer conveyer belt operation.
10. The automatic flatness detecting machine for the backlight shell according to claim 1, wherein: the flatness detection blanking conveying line module (5) comprises a blanking conveying line frame, a blanking driving motor, a blanking driving shaft and a blanking driven shaft, wherein the blanking driving motor, the blanking driving shaft and the blanking driven shaft are arranged on the blanking conveying line frame;
the flatness detects conveyor line module (6) of wasting discharge and includes waste discharge conveyor line frame and sets up waste discharge driving motor, the driving shaft of wasting discharge, the driven shaft of wasting discharge on waste discharge conveyor line frame, around being equipped with waste discharge conveyor belt between waste discharge driving shaft and the driven shaft of wasting discharge, waste discharge driving motor's output is connected to waste discharge driving shaft and accessible waste discharge driving shaft drive waste discharge conveyor belt through the shaft coupling and is operated.
CN202123305671.3U 2021-12-24 2021-12-24 Automatic flatness detection machine for backlight source shell Active CN217120896U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123305671.3U CN217120896U (en) 2021-12-24 2021-12-24 Automatic flatness detection machine for backlight source shell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123305671.3U CN217120896U (en) 2021-12-24 2021-12-24 Automatic flatness detection machine for backlight source shell

Publications (1)

Publication Number Publication Date
CN217120896U true CN217120896U (en) 2022-08-05

Family

ID=82619452

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Application Number Title Priority Date Filing Date
CN202123305671.3U Active CN217120896U (en) 2021-12-24 2021-12-24 Automatic flatness detection machine for backlight source shell

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Country Link
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