CN209086340U - A kind of buffer type weatherometer - Google Patents
A kind of buffer type weatherometer Download PDFInfo
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- CN209086340U CN209086340U CN201821616103.0U CN201821616103U CN209086340U CN 209086340 U CN209086340 U CN 209086340U CN 201821616103 U CN201821616103 U CN 201821616103U CN 209086340 U CN209086340 U CN 209086340U
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Abstract
The utility model relates to electronic product the field of test technology, a kind of buffer type weatherometer, including aging furnace body are specifically disclosed, further includes: transport passage for transporting, it is set to the side of the aging furnace body, the transport passage for transporting includes the feeder connection and channel outlet for being respectively arranged at its both ends;Handling device is set in the transport passage for transporting, for panel to be transported in the ageing oven body by feeder connection, and is used to move out the workpiece after aging by the aging furnace body, and the panel after aging is carried to the channel outlet;Caching carries mould group, is set in the transport passage for transporting, for carrying the carrier being set on the handling device, the caching carrier and the carrier being transported to the handling device.Handling device makes weatherometer high degree of automation, has saved cost of labor.Caching, which carries mould group, can cache carrier, to provide carrier at any time for handling device, improve the handling efficiency of handling device.
Description
Technical field
The utility model relates to electronic product the field of test technology more particularly to a kind of buffer type weatherometers.
Background technique
Panel weatherometer in the prior art includes the aging furnace body for carrying out aging to panel, the transport under line
Equipment will need the panel for carrying out burn-in test to be transported to aging furnace body, and by panel is manually packed into aging furnace body.But by
Transporting equipment under line can not be realized with aging furnace body to be docked on line, and the degree of automation is low, and working efficiency is low.
Utility model content
The purpose of this utility model is to provide a kind of buffer type weatherometers, to improve its degree of automation and work
Efficiency.
For this purpose, the utility model uses following technical scheme:
A kind of buffer type weatherometer, including aging furnace body, further includes:
Transport passage for transporting, is set to the side of the aging furnace body, and the transport passage for transporting includes being respectively arranged at its both ends
Feeder connection and channel outlet;
Handling device is set in the transport passage for transporting, for panel to be transported to the aging furnace body by feeder connection
It is interior, and be used to move out the workpiece after aging by the aging furnace body, and the panel after aging is carried to the channel outlet;
Caching carry mould group, be set in the transport passage for transporting, for carry the carrier being set on the handling device,
It caches the carrier and the carrier is transported to the handling device.
Preferably, the handling device includes contraposition module, the contraposition module is disposed in proximity to the feeder connection
One end, the contraposition module is used to panel in conjunction with testing pressure head and forming workpiece to be aging.
Preferably, the caching, which carries mould group, is set to side of the contraposition module far from the feeder connection, and
For caching the carrier and the carrier is carried to the contraposition module, or the carrier is removed by the contraposition module
Out.
Preferably, the caching carrying mould group includes:
Carrying mechanism, including pedestal, the pedestal are moveable to the underface of the contraposition module and described fold up component
Underface, and for carrying the carrier;
Cache mechanism, including component is folded up, the component that folds up is vertically movable, and for clamping the load
Tool.
Preferably, the contraposition module includes:
Moving arm, the side of mould group is carried positioned at the caching, and the moving arm is used for the predeterminated position of the carrier;
Location component, for detecting the position for the panel being placed on the carrier.
Preferably, the moving arm includes:
Moving arm sucker stand;
Moving arm actuator is connect with the moving arm sucker stand, for driving the moving arm sucker stand along institute
State length direction and the vertical direction movement of transport passage for transporting;
Moving arm sucker is connected to the moving arm actuator, for adsorbing the panel;
Position correction component, is set to the moving arm sucker stand, and connect with the moving arm sucker, for making corrections
The panel, is set to the predeterminated position of the carrier by the position of the moving arm sucker.
Preferably, the handling device further includes pan feeding mould group, the pan feeding mould group is set at the feeder connection,
The panel is delivered to the contraposition module for accepting the panel by the pan feeding mould group.
Preferably, the handling device further includes conveying mould group, the conveying mould group is for the workpiece to be aging
Carrier is delivered to the aging furnace body and the workpiece after aging is moved away from the aging furnace body;
The conveying mechanism that the conveying mould group includes the second guide rail and can move along second guide rail, described second leads
The length direction of rail is consistent with the length direction of the transport passage for transporting, and second guide rail be located at the aging furnace body with it is described
Between contraposition module.
Preferably, the handling device includes moving out mould group, the mould group that moves out is set to the channel exit, institute
It states and moves out mould group for the panel after aging to be transported to the channel outlet.
Preferably, being provided with the aging furnace body along the two sides of the length direction of the transport passage for transporting.
The utility model has the beneficial effects that the handling device in transport passage for transporting is arranged in, handling device and aging are realized
It is docked on the line of furnace body, panel is placed in ageing oven by handling device automatically, and by the workpiece after aging by the ageing oven
Body moves out, and the panel after aging is carried to the channel outlet, so that weatherometer high degree of automation, has saved people
Work cost, caching, which carries mould group, can cache carrier, to provide carrier at any time for handling device, improve removing for handling device
Transport efficiency.
Detailed description of the invention
Fig. 1 is the top view of buffer type weatherometer provided by the embodiment of the utility model;
Fig. 2 is the structural representation that pan feeding mould group, contraposition module and caching provided by the embodiment of the utility model carry mould group
Figure;
Fig. 3 is the structural schematic diagram of pan feeding mould group provided by the embodiment of the utility model;
Fig. 4 is the partial structure diagram that caching provided by the embodiment of the utility model carries mould group;
Fig. 5 is another visual angle that pan feeding mould group, contraposition module and caching provided by the embodiment of the utility model carry mould group
Structural schematic diagram;
Fig. 6 is the enlarged drawing in Fig. 5 at A;
Fig. 7 is the partial structure diagram of contraposition module provided by the embodiment of the utility model;
Fig. 8 is the cross-sectional view of carrier provided by the embodiment of the utility model;
Fig. 9 is the partial structure diagram of conveying mould group provided by the embodiment of the utility model;
Figure 10 is the structural schematic diagram provided by the embodiment of the utility model for moving out mould group;
Figure 11 is the structural schematic diagram at another visual angle provided by the embodiment of the utility model for moving out mould group;
Figure 12 is the enlarged drawing in Figure 10 at B;
Figure 13 is the structural schematic diagram of the carrying component provided by the embodiment of the utility model for moving out mould group.
In figure:
1, aging furnace body;
2, transport passage for transporting;21, feeder connection;22, channel outlet;
3, pan feeding mould group;31, pan feeding absorption platform;32, pan feeding rotary drive;33, the first actuator;34, it first leads
Rail;35, the second actuator;
4, contraposition module;42, moving arm;421, moving arm sucker stand;422, moving arm actuator;4221, horizontal to drive
Moving part;4222, vertical actuator;423, moving arm sucker;424, position correction component;43, location component;44, the 5th driving
Part;45, component is pushed;451, pressure head;452, mounting plate;453, third actuator;454, fourth drive member;
5, caching carries mould group;51, carrying mechanism;511, actuator is carried;512, pedestal;52, cache mechanism;521, delay
Deposit rotary drive;522, component is folded up;5221, bracket is cached;5222, clamping jaw;5223, clamping jaw actuator;
6, mould group is conveyed;61, the second guide rail;62, conveying mechanism;63, feed drive component;64, objective table is conveyed;
7, mould group is moved out;71, absorbent module;711, suction nozzle;712, solenoid valve;713, shunt assembly;72, adsorption support;
73, component is carried;731, sliding rail;732, absorption platform is carried;733, venthole;74, articles holding table;75, upright driving mechanism;
76, horizontal drive mechanism;77, frame sliding track;78, bracket slide;79, release mechanism is crimped;791, plate is unlocked;792, supporting plate;
793, plate driving cylinder is unlocked;
10, carrier;101, supporting plate;102, briquetting component;1021, attachment base;1022, briquetting;1023, driving lever;1024, bullet
Property part;1025, backing pin;
20, Working rack;30, column.
Specific embodiment
Further illustrate the technical solution of the utility model below with reference to the accompanying drawings and specific embodiments.It can manage
Solution, specific embodiment described herein are used only for explaining the utility model, rather than the restriction to the utility model.Separately
It is outer it should also be noted that, illustrating only part relevant to the utility model for ease of description, in attached drawing and not all.
A kind of buffer type weatherometer is present embodiments provided, in the degradation of electronic product, to improve it
The degree of automation and working efficiency.
As shown in Figure 1, buffer type weatherometer provided in this embodiment includes aging furnace body 1, transport passage for transporting 2, caching
Carry mould group 5 and handling device.Transport passage for transporting 2 is set to the side of aging furnace body 1, and transport passage for transporting 2 includes being respectively arranged at it
The feeder connection 21 and channel outlet 22 at both ends;Handling device is set in transport passage for transporting 2, is used for panel by feeder connection 21
It is transported in aging furnace body 1, and is used to move out the workpiece after aging by aging furnace body 1, and the panel after aging is carried to
Channel outlet 22;Caching is carried mould group 5 and is set in transport passage for transporting 2, for carrying the carrier 10 being set on handling device, delaying
It deposits carrier 10 and carrier 10 is transported to handling device.
In the present embodiment, carrier 10 is used for bearing panel, and caching, which carries mould group 5, can be transported to carrier 10 carrying dress
It sets, the panel of carrying is placed on the predeterminated position of carrier 10 by handling device.Testing pressure head, test pressure are provided on carrier 10
Head includes the briquetting 1022 being arranged on carrier 10 and the circuit board for being connected to 1022 lower end of briquetting, and handling device is by panel and carries
Testing pressure head on tool 10, which combines, forms workpiece to be aging.Wherein, the carrier 10 for being provided only with circuit board is known as zero load
The carrier 10 for carrying workpiece to be aging is known as fully loaded carrier 10, before workpiece to be aging refers to panel aging by carrier 10
Fully loaded carrier 10, the workpiece after aging refer to the fully loaded carrier 10 after panel aging.
Handling device in transport passage for transporting 2 is set, realizes and is docked on handling device and the line of aging furnace body 1, is carried
Panel is placed in ageing oven 1 by device automatically, and the workpiece after aging is moved out by the aging furnace body 1, and will be after aging
Panel be carried to the channel outlet 22 so that weatherometer high degree of automation, has saved cost of labor.Caching is carried
Mould group 5 can cache carrier 10, to provide carrier 10 at any time for handling device, improve the handling efficiency of handling device.
As shown in Figure 1, providing in the present embodiment, the length direction of transport passage for transporting 2 is X-direction, and vertical direction is the side Z
To the direction vertical with X and Z-direction is Y-direction.
In the present embodiment, aging furnace body 1, handling device energy are provided with along the two sides of the length direction of transport passage for transporting 2
It is enough to be placed in workpiece to be aging in the aging furnace body 1 of 2 two sides of transport passage for transporting.2 two sides of transport passage for transporting are respectively provided with aging furnace body 1,
Improve space utilization rate, the utilization rate of handling device and the working efficiency for improving weatherometer.
Further, handling device includes the pan feeding mould group set gradually from feeder connection 21 to 22 place side of channel outlet
3, contraposition module 4 and mould group 7 is moved out, wherein caching carries mould group 5 and is located at contraposition module 4 and moves out between mould group 7;Pan feeding mould
Group 3 is positioned close to one end of feeder connection 21, moves out one end that channel outlet 22 is arranged in mould group 7.Handling device further includes
Mould group 6 is conveyed, conveying mould group 6 is arranged at intervals with two groups, and two groups of conveying mould groups 6 are separately positioned on two groups of aging furnace bodies 1 and mutually lean on
Close side, and pan feeding mould group 3, contraposition module 4, caching carry mould group 5 and move out mould group 7 between two groups of conveying mould groups 6.
Handling device can also include Working rack 20, and pan feeding mould group 3, contraposition module 4, caching carry mould group 5, move out mould group 7 and defeated
Mould group 6 is sent to be all set on Working rack 20.
Pan feeding mould group 3 is used to accept the panel being sent into buffer type weatherometer, and panel is delivered to contraposition module
4。
Caching carries mould group 5 and is used to cache unloaded carrier 10 and unloaded carrier 10 is being carried to contraposition module 4 just
Lower section.
Contraposition module 4 can adsorb the panel in pan feeding mould group 3, and panel is placed in the default position of carrier 10
It sets, make panel in conjunction with testing pressure head and forms workpiece to be aging.
Conveying mould group 6 is used to the carrier 10 being fully loaded with being carried to aging furnace body 1, and will be after the aging in aging furnace body 1
Workpiece handling moves out mould group 7 and is used for the panel on the workpiece after aging by removing in conveying mould group 6 to mould group 7 is moved out, and will
It is transported to channel outlet 22, and unloaded carrier 10 is carried to caching again and carries mould group 5 by conveying mould group 6, and caching carries mould
Group 5 caches the carrier 10 of the zero load.
In other embodiments, caching carries mould group 5 and can also move out the fully loaded carrier 10 at contraposition module 4 to defeated
Mould group 6 is sent, then fully loaded carrier 10 is carried in aging furnace body 1 by conveying mould group 6.
As shown in Figures 2 and 3, pan feeding mould group 3 includes pan feeding absorption platform 31, pan feeding rotary drive 32 and pan feeding translation
Actuator.
Pan feeding driven in translation part may include being set to Working rack 20 and the first actuator 33 and edge along Y-direction setting
Second actuator 35 of X-direction setting.First guide rail 34 parallel with the first actuator 33 is additionally provided on Working rack 20, the
Two actuators 35 are connected on the first actuator 33 and the first guide rail 34, and the first actuator 33 drives the second actuator 35 along the side Y
To movement.First actuator 33 and the second actuator 35 can be cylinder, or direct driving motor, this is not restricted.
Pan feeding rotary drive 32 is connect with the second actuator 35, and it is flat that pan feeding absorption is connected on pan feeding rotary drive 32
Platform 31, pan feeding absorption platform 31 is for adsorbing panel, and pan feeding rotary drive 32 is for driving pan feeding absorption platform 31 in level
It is rotated in face, to adjust the position of panel to the second actuator 35 drives pan feeding rotary drive 32 and pan feeding absorption platform 31 along X
Direction movement, is transported to contraposition module 4 for the panel that previous process is transported to pan feeding absorption platform 31.
As shown in Figure 2 and Figure 4, column 30 is provided on Working rack 20.It includes 52 He of cache mechanism that caching, which carries mould group 5,
Carrying mechanism 51, cache mechanism 52 include folding up component 522, it is vertically movable to fold up component 522, and carry for clamping
Tool 10.Cache mechanism 52 can also include the lifting driving assembly being set on column 30, and lifting driving assembly connection folds up group
It is vertically moving to fold up component 522 for driving for part 522.
Carrying mechanism 51 is set on Working rack 20, and carrying mechanism (51) includes pedestal (512), the pedestal
(512) it is moveable to the underface and the underface for folding up component (522) of the contraposition module (4), and for carrying institute
State carrier (10);Carrying mechanism 51 can also include carrying actuator 511 to carry the connection pedestal 512 of actuator 511, carry driving
Part 511 is used to that pedestal 512 to be driven to move to the underface of contraposition module 4 along the length direction of transport passage for transporting 2 and fold up component 522
Underface;Carrying actuator 511 can be cylinder, or direct driving motor, as long as pedestal 512 can be driven to transport in X direction
Dynamic, this is not restricted.
Lifting driving assembly includes screw rod, caching rotary drive 521 and nut.Wherein, caching rotary drive 521 with
Column 30 connects, and the output end of caching rotary drive 521 is connect with screw rod, for driving screw rod to rotate around own axes, delays
Depositing rotary drive 521 can be motor, motor, or the driving that screw rod is rotated around own axes may be implemented in other
Part;Screw rod is vertically arranged, and nut is spirally connected with screw rod, when screw rod forward or reverse when, nut realizes the movement that rises or falls, folder
It puts component 522 to be fixedly connected with nut, and then with lift nut.In other embodiments, lifting driving assembly may be gas
Cylinder etc. can be realized the actuator for folding up the lifting of component 522.
The carrier 10 being placed on pedestal 512 can be clamped or the carrier 10 of clamping is placed in pedestal by folding up component 522
On 512.When pedestal 512 does not need unloaded carrier 10, unloaded carrier 10, which can be cached in, to be folded up on component 522, with
Just carrier 10 is provided for pedestal 512 at any time, improves handling efficiency.
Folding up component 522 includes caching 5221, two clamping jaws 5222 of bracket and clamping jaw actuator 5223.Cache bracket 5221
It being connect with lifting driving assembly, two clamping jaws 5222 are spaced and face is set on caching bracket 5221, specifically, two clamping jaws
5222 set gradually in X direction.
At least one clamping jaw 5222 is set on caching bracket 5221 by clamping jaw actuator 5223, clamping jaw actuator 5223
For driving a clamping jaw 5222 close to or far from another clamping jaw 5222, so that clamping jaw 5222 clamps or decontrols carrier 10.This implementation
In example, each clamping jaw 5222 is connect with a clamping jaw actuator 5223, and two clamping jaw actuators 5223 drive two folders simultaneously
Pawl 5222 is close to each other or separate, improves clamping efficiency.
The opposite sides of column 30 is provided with caching and carries mould group 5, and two groups of cachings carry mould groups 5 along Y-direction successively
Setting.
The work step that caching provided in this embodiment carries mould group 5 is as follows:
1, unloaded carrier 10 is transported to the underface for folding up component 522, lifting driving assembly driving folder by conveying mould group 6
It puts component 522 to move downward, clamping jaw actuator 5223 drives two clamping jaws 5222 close to each other, and holds unloaded carrier
10, lifting driving assembly driving folds up component 522 and moves upwards, and unloaded carrier 10 is cached in cache mechanism 52;
2, carrying actuator 511 drives pedestal 512 to move to the underface for folding up component 522, lifting driving assembly driving
It folds up component 522 to move downward, clamping jaw actuator 5223 drives two clamping jaws 5222 to be located remotely from each other, and unloaded carrier 10 is placed
In on pedestal 512;
3, the moving arm sucker that actuator 511 drives pedestal 512 and the carrier 10 of zero load moves to contraposition module 4 is carried
423 lower sections, meanwhile, cache mechanism 52 repeats step 1.
As shown in Figure 5 and Figure 6, contraposition module 4 includes moving arm 42 and location component 43.Moving arm 42 is set to carrying implement
Panel is placed in positioned at pedestal by the top of structure 51 and the side for being located at cache mechanism 52, moving arm 42 for carrying panel
Panel is placed in the carrier 10 on pedestal 512 by the predeterminated position of 512 carrier 10, specifically, moving arm 42 by pan feeding mould group 3
Predeterminated position.
Moving arm 42 includes moving arm sucker stand 421, moving arm actuator 422, moving arm sucker 423 and position correction
Component 424.
The setting of moving arm actuator 422 is connect on Working rack 20, and with moving arm sucker stand 421, and moving arm is inhaled
Disk 423 is set to the lower end of moving arm actuator 422 for adsorbing panel, and specifically, moving arm actuator 422 includes horizontal drives
Moving part 4221 and vertical actuator 4222 are respectively used to driving moving arm sucker stand 421 and move in X direction with Z-direction, mobile
Arm sucker stand 421 moves the different location that panel can be placed sequentially in carrier 10, moving arm sucker stand in X direction
421 move along Z-direction and can be placed into panel on carrier 10 or adsorb panel from carrier 10.
Position correction component 424 is set to moving arm sucker stand 421, and connect with moving arm sucker 423.Specifically,
Position correction component 424 includes the motor and driving moving arm sucker for respectively driving moving arm sucker 423 and moving along X, Y-direction
Panel is set to carrier 10 so as to the position for the moving arm sucker 423 that makes corrections by 423 motors planar rotated
Predeterminated position.
As shown in Figure 7 and Figure 8, carrier 10 includes supporting plate 101 and the briquetting component 102 being arranged on supporting plate 101, briquetting group
Part 102 is used for the panel for crimping circuit board and being placed on supporting plate 101.
As shown in figure 8, briquetting component 102 includes attachment base 1021, briquetting 1022, elastic component 1024 and driving lever 1023, connect
Joint chair 1021 is connected on supporting plate 101, and circuit board is connected to the lower surface of briquetting 1022, and circuit board can be with the upper of briquetting 1022
It is lower movement and move.Driving lever 1023 is rotationally connected with attachment base 1021, and driving lever 1023 can drive briquetting 1022 to move upwards, tool
Body, backing pin 1025 is provided on briquetting 1022,1023 one end of driving lever presses on the downside of backing pin 1025, pushes driving lever 1023
The other end, one end move upwards, and briquetting 1022 is driven to move upwards.
Briquetting 1022 can slide up and down by elastic component 1024 and be set on attachment base 1021, the lower end of elastic component 1024
It being connected on briquetting 1022, the upper end is connected on attachment base 1021, when not pushing the other end of driving lever 1023, briquetting 1022
Under self gravity and the effect of the pressure of elastic component 1024, it is pressed on circuit board on supporting plate 101;When push driving lever 1023 it is another
When one end, driving lever 1023 drives briquetting 1022 to move upwards, and briquetting 1022 and circuit board leave supporting plate 101.
In the present embodiment, the X-direction along attachment base 1021 is arranged at intervals with multiple briquetting components 102, so that often
Placing a supporting plate 101 can be set multiple panels, improve working efficiency.
As shown in fig. 7, contraposition module 4 further includes the pushing component 45 being set on Working rack 20,45 energy of component is pushed
It enough moves downward and pushes driving lever 1023, lift briquetting 1022, pushing component 45 can also move upwards, driving lever 1023 is left,
Briquetting 1022 pushes.Pushing component 45 includes mounting plate 452, pressure head 451, third actuator 453, fourth drive member 454.
Mounting plate 452 is arranged on Working rack 20, and fourth drive member 454 is fixed on mounting plate 452, for driving pressure
First 451 and third actuator 453 move in X direction, so that pressure head 451 be enable to be depressed into multiple positions of briquetting component 102.
Third actuator 453 is connect with fourth drive member 454, and pressure head 451 is connect with third actuator 453, third driving
453 drive ram 451 of part is vertically moving, so that pressure head 451 compresses in briquetting component 102,453 He of third actuator
Fourth drive member 454 can be cylinder.
As shown in fig. 7, location component 43 is set on Working rack 20, and is located at the lower section of pedestal 512, put for detecting
It is placed in the position of the panel on carrier 10, to guarantee panel in conjunction with testing pressure head.When detection, pedestal 512 moves along the x-axis pre-
If position, be provided with through slot on carrier 10, Transparent Parts be installed, panel is placed in Transparent Parts, location component 43 in through slot
By the position of Transparent Parts detection panel, if panel is not placed on predeterminated position, moving arm sucker 423 adsorbs panel, position
Set correction component 424 to act, make panel that the predeterminated position of carrier 10 is set, realize the combination of testing pressure head and panel formed to
Aging workpiece is prepared for workpiece to be aging to be placed into aging furnace body 1.
In the present embodiment, location component 43 is also connected with the 5th actuator 44 for driving it to move along X-axis, so as to survey
Hyte part 43 is able to detect the location information of various sizes of panel.Location component 43 can be CCD camera.
In the present embodiment, Y-direction is provided with two groups of contraposition modules 4 on Working rack 20, two groups of contraposition modules 4 and slow
It is corresponding to deposit carrying mould group 5.Two groups of contraposition modules 4 are respectively that two groups of conveying mould groups 6 provide workpiece to be aging, two groups of contraposition modules
4 and two groups of conveying mould groups 6 work at the same time, the working efficiency of weatherometer can be improved.Pan feeding absorption platform 31 can be along the side Y
To movement, and pan feeding absorption platform 31 can rotate, to provide the panel for meeting angle requirement for two groups of contraposition modules 4.
As shown in Fig. 1 and Fig. 9, conveying mould group 6 is used to the carrier 10 for carrying workpiece to be aging being delivered to aging furnace body 1
And for carrier 10 to be moved away from aging furnace body 1.
The conveying mechanism 62 that conveying mould group 6 guide rail 61 and can be moved along the second guide rail 61 including second, the second guide rail 61
Length direction it is consistent with the length direction of transport passage for transporting 2, and the second guide rail 61 is between aging furnace body 1 and contraposition module 4.
Conveying mechanism 62 includes feed drive component 63 and the conveying objective table 64 for being connected to driving assembly, feed drive group
Part 63 is moved for driving objective table along Y-direction Z-direction, so that conveying objective table 64 extend into the lower section for folding up component 522, is
Caching carries mould group 5 and provides unloaded carrier 10, and so that conveying objective table 64 extend into the carrier 10 on pedestal 512
Lower section, accept fully loaded carrier 10.
It as shown in Fig. 1 and Figure 10, moves out mould group 7 and is set at channel outlet 22, move out mould group 7 and be used for the face after aging
Plate is transported to channel outlet 22.Mould group 7 is moved out to include absorbent module 71, carry component 73 and articles holding table 74.
Two groups of parallel articles holding tables 74 are provided on Working rack 20, and two groups of articles holding tables 74 are arranged along Y-direction interval, two
The parallel articles holding table 74 of group is respectively used to accept the carrier 10 that two groups of conveying mould groups 6 are transported.
As shown in Figure 10 and Figure 11, two groups of crimping release mechanisms 79, and two groups of crimping are arranged at intervals on Working rack 20
Release mechanism 79 is divided to for positioned at the side that two groups of articles holding tables 74 mutually deviate from;Crimping release mechanism 79 includes that can slide up and down to set
It is placed on Working rack 20 and unlocks plate 791, one end of driving lever 1023 can be pushed by unlocking plate 791, lift briquetting 1022.
Specifically, it is connected with supporting plate 792 on Working rack 20, is provided on supporting plate 792 and unlocks plate driving cylinder 793, solution
It opens plate driving cylinder 793 and is connected to and unlock the driving of plate 791 and unlock the lifting of plate 791, unlock plate 791 and lift briquetting 1022 and be depressed into support
Plate 101 unlocks one end that plate 791 is depressed into driving lever 1023, lifts briquetting 1022, and absorbent module 71 can adsorb and carrying face
Plate.
Convey the partial routine of conveying 64 conveying carrier 10 of objective table of mould group 6 are as follows: it unlocks plate 791 and is in lifting status,
Conveying mould group 6 is placed in conveying objective table 64 on articles holding table 74, unlocks plate 791 and is depressed on driving lever 1023, absorbent module 71
Absorption and carrying panel are unlocked plate 791 and are lifted after the completion of panel is carried, and unloaded carrier 10 is transported to caching by conveying mould group 6
Carry mould group 5.
As shown in fig. 10 and fig. 12, carrying component 73 can move in X direction, and be located between two groups of articles holding tables 74, inhale
Attached component 71 adsorbs the panel on the carrier 10 of two groups of articles holding tables 74, moves to and carries component 73, carries component 73 in X direction
Movement, is transported to channel outlet 22 for panel.
In the present embodiment, absorbent module 71 is connected on Working rack 20 by adsorption support 72, and adsorption support 72 can be along Y
Direction is set to slidingly back and forth on Working rack 20, and absorbent module 71 is enable to be located at two groups of articles holding tables 74 and carrying group
The top of part 73, and the panel on two groups of articles holding tables 74 is carried to and is carried on component 73.Specifically, it is arranged on Working rack 20
There is frame sliding track 77, bracket slide 78 is provided on adsorption support 72, is provided in bracket slide 78 and is slided with frame sliding track 77
The sliding slot of cooperation is additionally provided with horizontal drive mechanism 76 on Working rack 20, for driving adsorption support 72 along frame sliding track 77
It reciprocatingly slides, horizontal drive mechanism 76 can be linear motor or driving cylinder.
Absorbent module 71 can also pump relative to Working rack 20 along Z-direction, will put on articles holding table 74
The panel absorption set, and panel is placed into and is carried on component 73.
Specifically, upright driving mechanism 75 is provided on Working rack 20, upright driving mechanism 75 drives adsorption support 72
It is moved relative to Working rack 20 along Z-direction, upright driving mechanism 75 can be linear motor or driving cylinder.
As shown in fig. 10 and fig. 12, multiple groups absorbent module 71 in parallel, every group of absorbent module are provided on adsorption support 72
71 include multiple suction nozzles 711 and solenoid valve 712, and multiple suction nozzles 711 are for adsorbing panel.
Solenoid valve 712 is controlled to a vacuum pump, can be with by solenoid valve 712 for controlling the vacuum state of multiple suction nozzles 711
Control whether every group of absorbent module 71 can adsorb panel.
Every group of absorbent module 71 can also include shunt assembly 713, shunt assembly 713 and solenoid valve 712 and multiple suction nozzles
711 connections, it is different so as to determine to open according to the size of panel for controlling the vacuum state of each suction nozzle 711 respectively
The suction nozzle 711 of number, improves the use scope of absorbent module 71.It is no longer superfluous herein since shunt assembly 713 is the prior art
It states.
As shown in figure 13, it carries component 73 to include sliding rail 731 and carry absorption platform 732, sliding rail 731 is set to work branch
On frame 20, and it is located between two groups of articles holding tables 74, the length direction of sliding rail 731 is parallel with Y-direction, and it is logical to carry absorption platform 732
Linear motor or driving cylinder driving are crossed, is slidably disposed on sliding rail 731, for adsorbing and carrying panel, and is transported
Channel outlet 22 is transported to, specifically, carrying absorption platform 732 can be connected to vacuum pump, between carrying 732 upper surface of absorption platform
Every being provided with multiple ventholes 733, the vacuum suction carried in absorption platform 732 is realized by vacuum pump, passes through venthole 733
The panel of a variety of different dimensions can be adsorbed.It is simple to carry 73 structure of component, occupies little space, and transports high-efficient.
Obviously, the above embodiments of the present invention is used for the purpose of clearly illustrating examples for clearly illustrating the present invention, and
It is not limitations of the embodiments of the present invention.For those of ordinary skill in the art, in above description
On the basis of can also make other variations or changes in different ways.There is no need and unable to give all embodiments
Exhaustion.Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention etc., should be included in
Within the protection scope of the utility model claims.
Claims (10)
1. a kind of buffer type weatherometer, including aging furnace body (1), which is characterized in that further include:
Transport passage for transporting (2), is set to the side of the aging furnace body (1), the transport passage for transporting (2) include be respectively arranged at its two
The feeder connection (21) and channel outlet (22) at end;
Handling device is set in the transport passage for transporting (2), for panel to be transported to the ageing oven by feeder connection (21)
In body (1), and for moving out the workpiece after aging by the aging furnace body (1), and the panel after aging is carried to described
Channel outlet (22);
Caching carries mould group (5), is set in the transport passage for transporting (2), for carrying the load being set on the handling device
Tool (10) caches the carrier (10) and the carrier (10) is transported to the handling device.
2. buffer type weatherometer according to claim 1, which is characterized in that the handling device includes contraposition module
(4), the contraposition module (4) is disposed in proximity to one end of the feeder connection (21), and the contraposition module (4) is used for panel
In conjunction with testing pressure head and form workpiece to be aging.
3. buffer type weatherometer according to claim 2, which is characterized in that the caching carries mould group (5) setting
In the side of the contraposition module (4) far from the feeder connection (21), and for caching the carrier (10) and by the load
Tool (10) is carried to the contraposition module (4), or the carrier (10) is moved out by the contraposition module (4).
4. buffer type weatherometer according to claim 2, which is characterized in that the caching carries mould group (5) and includes:
Cache mechanism (52), including component (522) are folded up, the component (522) that folds up is vertically movable, and for pressing from both sides
Hold the carrier (10);
Carrying mechanism (51), including pedestal (512), the pedestal (512) be moveable to the contraposition module (4) underface and
The underface for folding up component (522), and for carrying the carrier (10).
5. buffer type weatherometer according to claim 2, which is characterized in that the contraposition module (4) includes:
Moving arm (42) is located at the side that the caching carries mould group (5), and the moving arm (42) is for placing the panel
The predeterminated position of the carrier (10);
Location component (43), for detecting the position for the panel being placed on the carrier (10).
6. buffer type weatherometer according to claim 5, which is characterized in that the moving arm (42) includes:
Moving arm sucker stand (421);
Moving arm actuator (422) is connect, for driving the moving arm sucker branch with the moving arm sucker stand (421)
Frame (421) is moved along the length direction and vertical direction of the transport passage for transporting (2);
Moving arm sucker (423) is connected to the moving arm actuator (422), for adsorbing the panel;
Position makes corrections component (424), is set to the moving arm sucker stand (421), and even with the moving arm sucker (423)
It connects, for the position for the moving arm sucker (423) that makes corrections, the panel is set to the default position of the carrier (10)
It sets.
7. buffer type weatherometer according to claim 2, which is characterized in that the handling device further includes pan feeding mould
Group (3), the pan feeding mould group (3) are set at the feeder connection (21), and the pan feeding mould group (3) is for accepting the face
Plate, and the panel is delivered to the contraposition module (4).
8. buffer type weatherometer according to claim 2, which is characterized in that the handling device further includes conveying mould
Group (6), the conveying mould group (6) are used to the workpiece to be aging be delivered to the aging furnace body (1) and by the work after aging
Part moves away from the aging furnace body (1);
Conveying mould group (6) includes the second guide rail (61) and can be along the conveying mechanism of second guide rail (61) movement
(62), the length direction of second guide rail (61) is consistent with the length direction of the transport passage for transporting (2), and second guide rail
(61) between the aging furnace body (1) and the contraposition module (4).
9. buffer type weatherometer according to claim 1, which is characterized in that the handling device includes moving out mould group
(7), the mould group (7) that moves out is set at the channel outlet (22), and described move out mould group (7) are for will be described in after aging
Panel is transported to the channel outlet (22).
10. buffer type weatherometer described in -9 any one according to claim 1, which is characterized in that lead to along described carry
The two sides of the length direction in road (2) are provided with the aging furnace body (1).
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CN201821616103.0U CN209086340U (en) | 2018-09-30 | 2018-09-30 | A kind of buffer type weatherometer |
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Application Number | Priority Date | Filing Date | Title |
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CN201821616103.0U CN209086340U (en) | 2018-09-30 | 2018-09-30 | A kind of buffer type weatherometer |
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CN209086340U true CN209086340U (en) | 2019-07-09 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108983012A (en) * | 2018-09-30 | 2018-12-11 | 苏州精濑光电有限公司 | A kind of buffer type weatherometer |
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2018
- 2018-09-30 CN CN201821616103.0U patent/CN209086340U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108983012A (en) * | 2018-09-30 | 2018-12-11 | 苏州精濑光电有限公司 | A kind of buffer type weatherometer |
CN108983012B (en) * | 2018-09-30 | 2024-04-16 | 苏州精濑光电有限公司 | Cache type aging testing machine |
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