Anti-locking blanking structure

By introducing telescopic rod cylinder, clamping assembly and needle clamping connection holes into the cutting structure, the problem of jamming caused by extrusion bending deformation during the cutting of the sheet is solved, and the effect of jamming is achieved.

CN223002245UActive Publication Date: 2025-06-20ZHE JIANG YI ZHONG FENG ZHUANG JI SHU YOU XIAN GONG SI +2
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Patent Information

Application Number
CN202422114730.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-06-20
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

During chip production, the sheet is often bending and deformed due to extrusion when unloading, resulting in jamming when automatically loading the flow box.

Method used

An anti-jamming and unloading structure is designed, using a cylinder with a telescopic rod, and a clamping assembly and clamping plate are provided at the end of the cylinder. Through the fitting of the pin-card connection hole, the extrusion of the material plate is reduced, deformation is prevented, and the positioning and installation of the needle is ensured by adjusting the installation cavity and locking bolts.

Benefits of technology

It effectively prevents the sheet from bending and deforming due to extrusion during the discharge process, reduces the problem of stuck material during loading, and improves the stability and efficiency of the discharge process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-jamming blanking structure, and belongs to the technical field of chip split charging. The anti-jamming discharging structure solves the problem that materials are prone to jamming in an existing discharging structure and comprises an air cylinder provided with a telescopic rod, a driving motor is arranged at one end of the air cylinder, a clamping assembly is arranged at the tail end of the telescopic rod of the air cylinder, a clamping plate is arranged on the clamping assembly, a mounting base is arranged at one end of the clamping plate, and an adjusting base plate is arranged on the mounting base. A shifting needle is arranged at the tail end of the adjusting seat plate, two parallel guide plates are arranged below the air cylinder, a material plate is arranged between the guide plates, a plurality of clamping holes are evenly distributed in the material plate, and a containing assembly is arranged on one side of each guide plate. The automatic feeding device has the advantages of being capable of preventing locking and wide in application range.
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Description

Technical Field

[0001] The utility model belongs to the technical field of chip packaging, and relates to a material blanking structure, in particular to a material blanking structure. Background Art

[0002] The pneumatic driven feeding structure is a power transmission and control system based on the principles of gas mechanics, and is widely used in industrial automation, robotics manufacturing, material handling and other fields.

[0003] During chip production, the chips are placed on sheets for processing. The processed sheets need to be placed in the flow box in turn. When the sheets are unloaded from the production equipment, a cylinder is usually used to drive the pusher to move the sheet. However, conventional pushers squeeze the sheet and then move it. The squeezed sheet will bend and deform. The bent sheet will cause jamming when automatically loaded into the flow box. Summary of the invention

[0004] The utility model aims to solve the above problems existing in the prior art and provides a material cutting structure which is easy to disassemble and install to prevent jamming.

[0005] The purpose of the utility model can be achieved through the following technical solutions: an anti-stuck material feeding structure, characterized in that it includes a cylinder with a telescopic rod, a driving motor is provided at one end of the cylinder, a clamping assembly is provided at the end of the telescopic rod of the cylinder, a clamping plate is provided on the clamping assembly, a mounting seat is provided at one end of the clamping plate, an adjustment seat plate is provided on the mounting seat, a dial pin is provided at the end of the adjustment seat plate, two parallel guide plates are provided below the cylinder, a material plate is provided between the guide plates, a plurality of clamping holes are evenly distributed on the material plate, and a storage assembly is provided on one side of the guide plate.

[0006] In the above-mentioned anti-stuck material feeding structure, a circulation material box is provided on the storage component, a plurality of material plate storage cavities are provided on the circulation material box, and a linear drive component is provided at the bottom of the circulation material box.

[0007] In the above-mentioned anti-stuck material feeding structure, a plurality of adjustment installation cavities are provided on the adjustment seat plate, and locking bolts are provided in the adjustment installation cavities.

[0008] In the above-mentioned anti-stuck material feeding structure, a pin locking cavity is provided on the adjusting seat plate, a locking bolt is provided on the adjusting seat plate, and a flexible sleeve is provided on the pin.

[0009] In the above-mentioned anti-stuck material feeding structure, a clamping flat square is provided at the end of the telescopic rod, and a limiting bolt is provided on the clamping plate.

[0010] In the above-mentioned anti-stuck material feeding structure, a pressure plate claw is also provided on the telescopic rod.

[0011] Compared with the prior art, the present anti-stuck material discharge structure is provided with a pin engaging hole, which reduces the extrusion of the material plate by moving the material plate through the pin, prevents the deformation of the material plate caused by extrusion, reduces the problem of material jamming during loading, and adjusts the installation cavity and the locking bolt to enable the pin to be positioned and installed, thereby increasing the adaptability of the pin, and the pressure plate and the claw assist in the advancement of subsequent materials. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a structural schematic diagram of the anti-stuck material cutting structure.

[0013] Figure 2 It is a structural schematic diagram of the anti-stuck material cutting structure.

[0014] In the figure, 1. driving motor; 2. cylinder; 3. telescopic rod; 4. clamping flat square; 5. clamping assembly; 6. material plate storage cavity; 7. flow material box; 8. storage assembly; 9. linear drive assembly; 10. pressure plate claw; 11. material plate; 12. snap-on hole; 13. guide plate; 14. locking bolt; 15. adjustment mounting cavity; 16. adjustment seat plate; 17. shifting pin 18. shifting pin locking cavity; 19. flexible sleeve; 20. mounting seat; 21. limit bolt; 22. clamping plate. DETAILED DESCRIPTION

[0015] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.

[0016] like Figure 1 , 2 As shown, the anti-stuck material discharge structure includes a cylinder 2 with a telescopic rod 3, a driving motor 1 is provided at one end of the cylinder 2, a clamping assembly 5 is provided at the end of the telescopic rod 3 of the cylinder 2, a clamping plate 22 is provided on the clamping assembly 5, a mounting seat 20 is provided at one end of the clamping plate 22, an adjusting seat plate 16 is provided on the mounting seat 20, a shifting pin 17 is provided at the end of the adjusting seat plate 16, two parallel guide plates 13 are provided below the cylinder 2, a material plate 11 is provided between the guide plates 13, a plurality of clamping holes 12 are evenly distributed on the material plate 11, and a storage assembly 8 is provided on one side of the guide plate 13. When discharging, the driving motor 1 controls the cylinder 2 to rotate so that the shifting pin 17 is clamped in the clamping hole 12. When the cylinder 2 is driven, the material plate 11 enters the storage assembly 8, the driving motor 1 and the cylinder 2 are reset in turn, and the material plate 11 is continuously discharged by repeated operation.

[0017] Preferably, a circulation material box 7 is provided on the storage component 8 , a plurality of material plate storage cavities 6 are provided on the circulation material box 7 , and a linear drive component 9 is provided at the bottom of the circulation material box 7 .

[0018] Preferably, a plurality of adjusting mounting cavities 15 are provided on the adjusting seat plate 16, and locking bolts 14 are provided in each of the adjusting mounting cavities 15. Loosen the locking bolts 14 to align the dial pin 17 with the clamping hole 12, and locking completes the positioning.

[0019] Preferably, a dial pin locking cavity 18 is provided on the adjusting seat plate 16, a locking bolt 14 is provided on the adjusting seat plate 16, and a flexible sleeve 19 is provided on the dial pin 17. The flexible sleeve 19 reduces the loosening of the locking bolt 14, resulting in the detachment of the dial pin 17.

[0020] Preferably, a clamping flat is provided at the end of the telescopic rod 3, and a limiting bolt 21 is provided on the clamping plate 22.

[0021] Preferably, a pressing plate claw 10 is further provided on the telescopic rod 3.

[0022] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains can make various modifications or supplements to the described specific embodiments or use similar methods for substitution, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.

[0023] Although terms such as drive motor 1, cylinder 2, telescopic rod 3, clamping flat 4, clamping assembly 5, stock plate storage cavity 6, transfer stock box 7, storage assembly 8, linear drive assembly 9, pressing plate claw 10, stock plate 11, clamping hole 12, guide plate 13, locking bolt 14, adjusting mounting cavity 15, adjusting seat plate 16, dial pin 17, dial pin locking cavity 18, flexible sleeve 19, mounting seat 20, limiting bolt 21, clamping plate 22 are used more in this article, the possibility of using other terms is not excluded. Using these terms is only for more convenient description and explanation of the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.

Claims

1. An anti-stuck material feeding structure, characterized in that: The invention comprises a cylinder (2) provided with a telescopic rod (3), wherein a driving motor (1) is provided at one end of the cylinder (2), a clamping assembly (5) is provided at the end of the telescopic rod (3) of the cylinder (2), a clamping plate (22) is provided on the clamping assembly (5), a mounting seat (20) is provided at one end of the clamping plate (22), an adjustment seat plate (16) is provided on the mounting seat (20), a dial pin (17) is provided at the end of the adjustment seat plate (16), two parallel guide plates (13) are provided below the cylinder (2), a material plate (11) is provided between the guide plates (13), a plurality of clamping holes (12) are evenly distributed on the material plate (11), and a storage assembly (8) is provided on one side of the guide plate (13).

2. The anti-stuck material feeding structure according to claim 1, characterized in that: The storage component (8) is provided with a circulation material box (7), the circulation material box (7) is provided with a plurality of material plate storage cavities (6), and a linear drive component (9) is provided at the bottom of the circulation material box (7).

3. The anti-stuck material feeding structure according to claim 1, characterized in that: The adjustment seat plate (16) is provided with a plurality of adjustment installation cavities (15), and each of the adjustment installation cavities (15) is provided with a locking bolt (14).

4. The anti-stuck material feeding structure according to claim 1, characterized in that: A pin locking cavity (18) is provided on the adjustment seat plate (16), a locking bolt (14) is provided on the adjustment seat plate (16), and a flexible sleeve (19) is provided on the pin (17).

5. The anti-stuck material feeding structure according to claim 1, characterized in that: A clamping flat plate (4) is provided at the end of the telescopic rod (3), and a limiting bolt (21) is provided on the clamping plate (22).

6. The anti-stuck material feeding structure according to claim 1, characterized in that: The telescopic rod (3) is also provided with a pressure plate claw (10).