Controllable discharging temporary storage equipment suitable for carrying plate placement

By designing a controllable discharge buffer device suitable for carrier plate placement, the problem that existing buffer racks cannot achieve first-in-first-out retrieval was solved. This enabled the vertical stacking and vertical movement of carrier plates, meeting the first-in-first-out buffer requirement and reducing usage costs and space occupation.

CN223591792UActive Publication Date: 2025-11-25SUZHOU SILICON MICROELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423320926.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The existing buffer racks cannot achieve the order of storing first and then retrieving, which may cause the picking equipment to pick up the wrong workpiece, increasing the cost of use and occupying a lot of space.

Method used

A controllable discharge buffer device suitable for carrier plate placement is designed, comprising a base plate, a support plate, a feeding guide device, a spacing guide bar, a drive rod, a guide assembly, a belt assembly, and a drive device. Through the coordinated work of these components, the longitudinal stacking and vertical movement of the carrier plates are realized, ensuring the first-in-first-out buffer order.

Benefits of technology

It enables temporary placement and convenient access to the carrier board, reduces the space occupied by the cache station, lowers the cost of use, and meets the controllable cache requirements of first-in-first-out.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a controllable discharge buffer device suitable for placing carrier plates, which comprises a device bottom plate, bearing plates are mounted on two sides of the device bottom plate in a mirroring manner, a plurality of feeding guide devices are mounted between the bearing plates, and interval guide strips are mounted between the feeding guide devices. The feeding guiding device comprises a driving rod movably arranged between the bearing plates in a penetrating mode, a guiding assembly is arranged on the portion, located on the inner sides of the bearing plates, of the driving rod, the guiding assembly is sleeved with a belt assembly, a conduction assembly is installed on the portion, located on the outer sides of the bearing plates, of the driving rod, movable supports are distributed on the outer sides of the bearing plates, and a driving device is installed on the movable supports. The driving device is in butt joint with the conduction assembly. Therefore, the feeding guide device is arranged, temporary placement of the carrier plates can be achieved, longitudinal stacking distribution is met, and occupation of the space where the temporary storage station is located is reduced. And a single driving device is adopted to drive a plurality of feeding guide devices, so that the integrated layout is met, and the use cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of carrier plate caching equipment, especially a kind of controllable discharging caching equipment suitable for carrier plate placement. BACKGROUND

[0002] For batch processing of workpiece, it is placed on the carrier plate to transfer between stations. Due to the different waiting time of processing steps, there are often carrier plates waiting at the station. If there are too many such carrier plates, a caching rack is often placed at the docking position of the station for temporary caching and stacking of carrier plates.

[0003] However, the current carrier plate in the caching and stacking state is often taken from top to bottom by the material taking equipment. If the workpieces placed on the carrier plate are in different processing sequences, the wrong carrier plate may be taken. That is, the existing caching rack cannot achieve the sequence of first storing and then taking out. For this situation, independent storage and retrieval shelves and independent feeding and taking devices need to be configured according to different process sequences, which increases the use cost and makes the entire processing equipment too large in size, occupying additional factory space.

[0004] In view of the above defects, the present design person actively researches and innovates to create a controllable discharging caching equipment suitable for carrier plate placement, which has more industrial utilization value. INVENTION CONTENTS

[0005] To solve the above technical problems, the purpose of the utility model is to provide a controllable discharging caching equipment suitable for carrier plate placement.

[0006] The controllable discharging caching equipment suitable for carrier plate placement of the utility model comprises a device bottom plate, wherein: mirror image mounting is provided on both sides of the device bottom plate, a plurality of feeding guide devices are mounted between the carrier plates, and a spacing guide strip is mounted between the feeding guide devices. The feeding guide device comprises a driving rod movably penetrating between the carrier plates, a guide assembly is provided on the inner side of the carrier plate, a belt assembly is sleeved on the guide assembly, a conduction assembly is mounted on the outer side of the driving rod, movable supports are distributed on the outer side of the carrier plate, a driving device is mounted on the movable support, and the driving device is connected with the conduction assembly.

[0007] Further, the controllable discharging caching equipment suitable for carrier plate placement, wherein the spacing guide strip is a POM guide strip, and the POM guide strip is connected with the carrier plate through locking screws.

[0008] Further, the controllable discharging caching equipment suitable for carrier plate placement, wherein the spacing guide strip is a POM guide strip, and the POM guide strip is connected with the carrier plate through locking screws. The angle of the docking bevel is 5 to 20 degrees.

[0009] Further, the controlled discharging buffer device for placing the carrier plate, wherein the angle of the docking bevel is 15 degrees.

[0010] Further, the controlled discharging buffer device for placing the carrier plate, wherein the cross section of the driving rod is hexagonal, forming a hexagonal rod.

[0011] Further, the controlled discharging buffer device for placing the carrier plate, wherein the guiding component is a belt pulley.

[0012] Further, the controlled discharging buffer device for placing the carrier plate, wherein the conducting component is a passive gear, the driving device comprises a carrier plate connected with the movable support, a cylinder is installed on the carrier plate, a motor device is installed on the driving end of the cylinder, a driving gear is installed on the driving end of the motor device, and the driving gear is engaged with the passive gear in the conducting docking state.

[0013] Further, the controlled discharging buffer device for placing the carrier plate, wherein a supporting rod is installed between the carrier plates.

[0014] Further, the controlled discharging buffer device for placing the carrier plate, wherein a positioning block is installed on the carrier plate.

[0015] By the above scheme, the utility model has at least the following advantages:

[0016] 1. The feeding guide device is provided, the temporary placement of the carrier plate can be realized, the longitudinal stacking distribution is met, and the occupation of the space where the buffer station is located is reduced.

[0017] 2. The movable support can be moved in the vertical direction under the guidance of the external displacement device, the driving device can be switched between the feeding guide devices, a single driving device is used to drive multiple feeding guide devices, the integrated layout is met, and the use cost is reduced.

[0018] 3. The interval guide strip is provided, the carrier plate can be assisted to enter and exit, the carrier plate is prevented from being inclined, and the storage and access guidance is facilitated.

[0019] 4. The overall structure is simple, the temporary placement station of the carrier plate processing device can be directly laid out, and the controllable buffer placement requirements of the first-in and first-out convenience are met.

[0020] The above description is only a summary of the technical scheme of the utility model, in order to more clearly understand the technical means of the utility model, and the content of the specification can be implemented, the following preferred embodiments of the utility model are described in detail with reference to the drawings. DETAILED DESCRIPTION

[0021] Figure 1 is a structural schematic view of the controllable discharging buffer device suitable for carrier plate placement.

[0022] The meanings of the reference numerals in the drawings are as follows.

[0023] 1 device base plate 2 carrier plate

[0024] 3 feeding guide device 4 spacing guide strip

[0025] 5 driving rod 6 guide assembly

[0026] 7 belt assembly 8 transmission assembly

[0027] 9 movable support 10 carrier plate

[0028] 11 air cylinder 12 motor device

[0029] 13 support rod 14 positioning block DETAILED DESCRIPTION

[0030] The specific embodiments of the present application will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the present application, but are not used to limit the scope of the present application.

[0031] As Figure 1 The controllable discharging buffer device suitable for carrier plate placement comprises a device base plate 1, which is different in that mirror image carrier plates 102 are installed on both sides of the device base plate 1, and a plurality of feeding guide devices 3 are installed between the carrier plates 102. In this way, the carrier plates 10 sent from external devices can be placed on the feeding guide devices 3, realizing temporary buffering. Meanwhile, the present application installs spacing guide strips 4 between the feeding guide devices 3. When the carrier plates 10 are in and out, the sharp edges of the carrier plates 10 can be prevented from directly contacting the carrier plates 102, so that the carrier plates 102 are not scratched. Furthermore, in order to enable the carrier plates 10 to automatically return to the entrance of the device when the carrier plates 10 need to be taken out after ending buffering placement, the carrier plates 10 are convenient for docking with material taking devices such as mechanical hands, realizing rapid discharging preparation. The feeding guide device 3 comprises a driving rod 5 movably arranged between the carrier plates 102, a guide assembly 6 arranged on the inner side of the carrier plates 102, and a belt assembly 7 sleeved on the guide assembly 6. During implementation, a transmission assembly 8 is installed on the outer side of the carrier plates 102. In order to select different feeding guide devices 3 for feeding driving, movable supports 9 are distributed on the outer side of the carrier plates 102, driving devices are installed on the movable supports 9, and the driving devices are docked with the transmission assembly 8.

[0032] In combination with a preferred embodiment of the utility model, the interval guiding strip 4 is a POM guiding strip, and the POM guiding strip is connected with the bearing plate 102 through a locking screw. In this way, the self-lubricating effect of a certain contact is used, and the contact jamming does not occur, and the movement of the bearing plate 10 is not affected. Meanwhile, the two ends of the interval guiding strip 4 are provided with butt joint bevels, and the angle of the butt joint bevel is 5 to 20 degrees. During manufacturing, the angle of the butt joint bevel is preferably 15 degrees. In this way, when the bearing plate 10 is loaded and unloaded, appropriate butt joint guiding is realized, and a certain contact end tolerance is possessed, so that the jamming does not occur, and the abnormal friction does not occur.

[0033] Further, the cross section of the driving rod 5 is hexagonal, and the driving rod 5 constitutes a hexagonal rod, and the guiding assembly 6 is a belt pulley. In this way, the driving rod 5 can drive the belt pulley to rotate synchronously, and the slippage does not occur when the subsequent motor device 12 is driven.

[0034] In combination with the actual implementation, the transmission assembly 8 is a passive gear, the driving device comprises the bearing plate 10 connected with the movable support 9, the bearing plate 10 is provided with the air cylinder 11, and the driving end of the air cylinder 11 is provided with the motor device 12. In this way, the motor device 12 can realize appropriate forward and backward movement, and the switching needs of meshing driving and separate movement are met. In cooperation with the displacement equipment butted with the movable support 9, the same motor device 12 drives a plurality of feeding guiding devices 3 in sequence. During implementation, the driving end of the motor device 12 is provided with a driving gear (not shown in the figure), and when the transmission butt joint state is in the transmission butt joint state, the driving gear is meshed with the passive gear.

[0035] Further, the support rod 13 is installed between the bearing plates 102. In this way, the perpendicularity between the bearing plates 102 can be ensured, and the assembly misplacement is avoided. During installation, the support rod 13 is staggered with the distribution of the feeding guiding devices 3, and the access path of the bearing plate 10 is avoided from being shielded. Meanwhile, the bearing plate 102 is provided with the positioning block 14. In this way, the utility model can be installed into the corresponding storage equipment of the bearing plate 10 machining equipment through the plug-in positioning of the positioning block 14, and the occupation of the work station in the factory area is reduced.

[0036] The working principle of the utility model is as follows:

[0037] During machining, the external feeding device sequentially puts the bearing plate 10 into the utility model, and the feeding guiding device 3 is used for temporarily buffering loading. Meanwhile, the sequence of putting in is recorded by the bearing plate 10 machining equipment.

[0038] When the bearing plate 10 needs to enter the next process, the machining equipment calls the stored sequence, and drives the displacement equipment to drive the driving device to reach the side end of the feeding guiding device 3 corresponding to the first bearing plate 10 put in.

[0039] Afterwards, the cylinder 11 pushes out the motor device 12 forward, and the driving gear of the motor device 12 is engaged with the driven gear outside the feeding guide device 3. Then, the motor device 12 operates, and the belt assembly 7 sends out the carrier plate 10. The material taking equipment outside the utility model clamps the carrier plate 10, and the discharging is completed.

[0040] Subsequently, the cylinder 11 resets the motor device 12, and moves it to the feeding guide device 3 corresponding to the second carrier plate 10 put in, and continues the corresponding material taking driving.

[0041] Therefore, the controllable and sequential buffering of the first-in and first-out of the carrier plate 10 can be realized.

[0042] As can be seen from the above description and the drawings, the utility model has the following advantages:

[0043] 1. The feeding guide device is arranged, the temporary placement of the carrier plate can be realized, the longitudinal stacking distribution is met, the occupation of the space of the buffering station is reduced.

[0044] 2. The movable support can be guided by the external displacement equipment to move vertically, the driving device can be switched between the feeding guide devices, a single driving device is used to drive multiple feeding guide devices, the integrated layout is met, and the use cost is reduced.

[0045] 3. The interval guide strip is arranged, the carrier plate can be assisted to enter and exit, the skew of the carrier plate is avoided, and the storage and taking guide is facilitated.

[0046] 4. The whole structure is simple, and the temporary placement station of the carrier plate processing equipment can be directly laid out, and the controllable buffering and placing requirements of the first-in and first-out are met.

[0047] In addition, the indicated direction or position relationship described in the utility model is the direction or position relationship shown in the drawings, and is only used for facilitating the description of the utility model and simplifying the description, and does not indicate or imply that the indicated device or structure must have a specific direction or be operated in a specific direction, so it cannot be understood as a limitation on the utility model.

[0048] The preferred embodiments of the utility model are described above, and the utility model is not limited to the above, and it should be pointed out that, for ordinary skilled persons in the technical field, some improvements and modifications can be made without departing from the technical principles of the utility model, and the improvements and modifications should also be regarded as the protection range of the utility model.

Claims

1. A controllable discharge buffer device suitable for use with a carrier board placement, comprising a device base plate, characterised in that: The equipment bottom plate is mirror installed with two bearing plates, a plurality of feeding guide devices are installed between the bearing plates, interval guide strips are installed between the feeding guide devices, the feeding guide device comprises a driving rod movably penetrating between the bearing plates, a guide assembly is arranged on the inner side of the bearing plate, a belt assembly is sleeved on the guide assembly, a transmission assembly is installed on the outer side of the driving rod, movable supports are distributed on the outer side of the bearing plate, a driving device is installed on the movable support, and the driving device is in butt joint with the transmission assembly.

2. The controllable outfeed buffer device suitable for placement of carrier plates according to claim 1, characterized in that: The interval guide strip is a POM guide strip, and the POM guide strip is connected with the bearing plate through a locking screw.

3. The controllable outfeed buffer device suitable for placement of carrier plates according to claim 1, characterized in that: Both ends of the interval guide strip are provided with butt joint bevels, and the angle of the butt joint bevel is 5-20 degrees.

4. The controllable outfeed buffer device suitable for placement of carrier plates according to claim 3, characterized in that: The angle of the butt joint bevel is 15 degrees.

5. The controllable dispensing buffer device for carrier placement according to claim 1, wherein: The cross section of the driving rod is hexagonal, and the driving rod is a hexagonal rod.

6. The controllable dispensing buffer device for carrier placement according to claim 1, wherein: The guide assembly is a belt pulley.

7. The controllable dispensing buffer device for carrier placement according to claim 1, wherein: The transmission assembly is a passive gear, the driving device comprises a carrier plate connected with the movable support, a cylinder is installed on the carrier plate, a motor device is installed on the driving end of the cylinder, a driving gear is installed on the driving end of the motor device, and the driving gear is in mesh with the passive gear in the transmission butt joint state.

8. The controllable dispensing buffer device for carrier placement according to claim 1, wherein: Support rods are installed between the bearing plates.

9. The controllable dispensing buffer device for carrier placement according to claim 1, wherein: Positioning blocks are installed on the bearing plates.