Receiving box suitable for PC boards of multiple specifications

By incorporating an adjustment plate and guide rod structure within the PC board receiving box, the problem of traditional PC board bending machine receiving boxes being unable to adapt to different specifications is solved, achieving efficient and flexible PC board collection and improving production efficiency.

CN223763189UActive Publication Date: 2026-01-06苏州天华超净科技有限公司
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Patent Information

Application Number
CN202423261055.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-06
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Traditional PC board bending machines have separate loading, feeding, and bending processes, which results in long process changeover times and complicated connection between the receiving box and the loading frame, making it difficult to accommodate the collection of PC boards of different specifications.

Method used

A PC board receiving box suitable for multiple specifications was designed. The receiving box body has multiple parallel mounting slots and adjustment plates. The adjustment plates are tilted to accommodate the width and length of PC boards of different specifications. Combined with guide rods and slot structures, it can achieve precise orientation and stable collection of PC boards.

Benefits of technology

It enables efficient collection of PC boards in different specifications, reduces process changeover time, improves production efficiency, and simplifies the replacement process of receiving boxes.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223763189U_ABST
    Figure CN223763189U_ABST
Patent Text Reader

Abstract

The utility model provides a material receiving box suitable for PC boards of multiple specifications, which comprises a material receiving box body, the material receiving box body is of a hollow structure, the inner wall of a bottom plate of the material receiving box body is provided with a plurality of first mounting grooves which are arranged in parallel at intervals, the first mounting grooves are perpendicular to guide rods, a first adjusting plate is inserted into the material receiving box body, and a second adjusting plate is inserted into the material receiving box body. The upper end of the first adjusting plate is attached to the inner wall corresponding to the material taking opening of the material collecting box body, the lower end of the first adjusting plate is connected with the first mounting grooves in an inserted mode, so that the first adjusting plate is obliquely arranged, and different first mounting grooves are selected for insertion connection according to the widths of different bent PC plates; due to the fact that the first adjusting plate is obliquely arranged, the upper end of the first adjusting plate plays a guiding role until the bent PC boards sequentially fall into the bottom of the material collecting box body to be collected, and therefore the material collecting box adapts to the PC boards of different specifications.
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Description

Technical Field

[0001] This utility model relates to the field of PC board processing technology, and more specifically, to a PC board receiving box applicable to multiple specifications. Background Technology

[0002] Currently, PC sheets, also known as polycarbonate films, are mainly composed of polycarbonate, an amorphous, odorless, non-toxic, highly transparent colorless or slightly yellow thermoplastic engineering plastic. It possesses excellent physical and mechanical properties, especially outstanding impact resistance, high tensile strength, flexural strength, and compressive strength; low creep and dimensional stability; good heat and low-temperature resistance; and stable mechanical properties, dimensional stability, electrical properties, and flame retardancy over a wide temperature range. PC sheets are mainly used for insulation in power systems, disk drives, keyboards, televisions / monitors, computer motherboards, new energy power batteries, and energy storage batteries.

[0003] Before PC boards are put into use, they sometimes need to be bent by a bending machine to be used in different applications. However, in the traditional PC board bending machine, the feeding, conveying and bending processes are independent and lack linkage, which makes the process change of PC boards take a lot of time and the bending efficiency is poor.

[0004] Existing patent CN220180127U discloses a general-purpose PC board bending machine. The receiving table includes a material carrier frame, a linear guide rail, an alternating receiving box, a second material sensor, an alternating cylinder, and a limiting buffer frame. The material carrier frame is provided at one end of the assembly frame. The top of the material carrier frame is fixedly connected to the linear guide rail. The top of the linear guide rail is slidably connected to the alternating receiving box. Multiple second material sensors are provided on the inner side of the alternating receiving box. An alternating cylinder is fixedly connected to the inner side of the material carrier frame, and the output end of the alternating cylinder is fixedly connected to the alternating receiving box. A limiting buffer frame is fixedly connected to the inner side of the material carrier frame away from the alternating cylinder.

[0005] However, the specifications of PC boards are different. If it is necessary to collect and stack the bent PC boards neatly, a receiving box of the same specifications is required. However, since the receiving box is connected to the material carrier frame through a linear guide rail, it is relatively troublesome to disassemble and replace it. Utility Model Content

[0006] The purpose of this utility model is to provide a PC board receiving box applicable to multiple specifications, including a receiving box body 10. The receiving box body 10 has a hollow structure. The upper part of the receiving box body 10 is provided with a feeding port 11 for feeding bent PC boards into the receiving box body 10 for collection. A dispensing port 12 is provided on one side wall of the receiving box body 10 for removing the collected and stacked bent PC boards for the next process. A guide rod 80 is provided at the feeding port 11. The inner wall of the bottom plate of the receiving box body 10 is provided with multiple parallel first mounting grooves 30, which are perpendicular to the guide rods 80. A first adjusting plate 40 is inserted inside the box body 10. The upper end of the first adjusting plate 40 is abutted against the inner wall corresponding to the material inlet 12 of the receiving box body 10, and the lower end of the first adjusting plate 40 is inserted into the first mounting groove 30, so that the first adjusting plate 40 is set at an angle. Different first mounting grooves 30 are selected for insertion according to the width of different bent PC boards. When the bent PC boards are collected, the upper end of the first adjusting plate 40 plays a guiding role due to its angled setting, until the bent PC boards fall into the bottom of the receiving box body 10 for collection, thereby accommodating PC boards of different specifications.

[0007] A PC board receiving box applicable to multiple specifications includes a receiving box body 10, which is a hollow structure. The upper part of the receiving box body 10 has a feeding port 11 for feeding bent PC boards into the receiving box body 10 for collection. A dispensing port 12 is provided on one side wall of the receiving box body 10 for removing the collected and stacked bent PC boards for further processing. A guide rod 80 is provided at the feeding port 11. The characteristic feature is that the inner wall of the bottom plate of the receiving box body 10 has multiple parallel first mounting grooves 30, which are perpendicular to the guide rods 80. A first adjusting plate 40 is inserted inside the receiving box body 10. The upper end of the first adjusting plate 40 is abutted against the inner wall corresponding to the material inlet 12 of the receiving box body 10, and the lower end of the first adjusting plate 40 is inserted into the first mounting groove 30, so that the first adjusting plate 40 is set at an angle. Different first mounting grooves 30 are selected for insertion according to the width of different bent PC boards. When the bent PC boards are collected, due to the angle of the first adjusting plate 40, the upper end of the first adjusting plate 40 plays a guiding role until the bent PC boards fall into the bottom of the receiving box body 10 for collection, thereby accommodating PC boards of different specifications.

[0008] In some embodiments, the first mounting groove 30 is provided with multiple parallel second mounting grooves 50 arranged vertically and alternately. The second mounting grooves 50 are arranged parallel to the guide rod 80. A second adjusting plate is inserted inside the receiving box body 10. The upper end of the second adjusting plate is abutted against the inner wall of the receiving box body 10 corresponding to the guide rod 80. The lower end of the second adjusting plate is inserted into the second mounting groove 50, so that the second adjusting plate is set at an angle. Different second mounting grooves 50 are selected for insertion according to the different lengths of the bent PC boards. When the bent PC boards are collected, the upper end of the second adjusting plate plays a guiding role due to the angled setting of the second adjusting plate, until the bent PC boards fall into the bottom of the receiving box body 10 for collection, thereby accommodating PC boards of different specifications.

[0009] Furthermore, the upper ends of both the first adjusting plate 40 and the second adjusting plate are fixed together with adhesive tape.

[0010] Furthermore, a blocking block 20 is provided on one side of the material inlet 12. The blocking block 20 is fixedly connected to one side of the material inlet 12 to prevent the PC board from sliding out directly if the length is too small.

[0011] In some embodiments, the connection between the feed inlet 11 and the guide rod 80 is provided with a plurality of symmetrically arranged slots 70, which can be selected according to different specifications of PC boards to accurately control the direction of falling into the bottom of the receiving box body 10.

[0012] Furthermore, the slot 70 is provided with a guide surface 71 and a hook surface 72. The guide surface 71 facilitates the insertion of the guide rod 80 into the slot 70, and the hook surface 72 prevents the guide rod 80 from sliding out of the slot 70.

[0013] Furthermore, both ends of the guide rod 80 are provided with locking blocks 90. The locking blocks 90 are tightly abutted against the outer wall of the receiving box body 10 at the lower part of the slot 70 by nuts, so that the guide rod 80 is tightly locked in the slot 70.

[0014] Furthermore, the locking block 90 is made of plastic, which increases the friction between it and the outer wall of the receiving box body 10.

[0015] The beneficial effects of this utility model are as follows: This utility model proposes a PC board receiving box applicable to multiple specifications, including a receiving box body 10. The receiving box body 10 has a hollow structure. The upper part of the receiving box body 10 is provided with a feeding port 11 for feeding the bent PC boards into the receiving box body 10 for collection. A material removal port 12 is provided on one side wall of the receiving box body 10 for removing the collected and stacked bent PC boards for the next process. A guide rod 80 is provided at the feeding port 11. The inner wall of the bottom plate of the receiving box body 10 is provided with multiple parallel first mounting grooves 30, which are perpendicular to the guide rods 80. A first adjusting plate 40 is inserted inside the receiving box body 10. The upper end of the first adjusting plate 40 is abutted against the inner wall corresponding to the material dispensing port 12 of the receiving box body 10, and the lower end of the first adjusting plate 40 is inserted into the first mounting groove 30, so that the first adjusting plate 40 is set at an angle. Different first mounting grooves 30 are selected for insertion according to the width of different bent PC boards. When the bent PC boards are collected, the upper end of the first adjusting plate 40 plays a guiding role due to the angled setting of the first adjusting plate 40, until the bent PC boards fall into the bottom of the receiving box body 10 in sequence for collection, thereby accommodating PC boards of different specifications. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of a PC board receiving box applicable to multiple specifications according to this application.

[0017] Figure 2 This is a schematic diagram of the adjustment plate structure of a PC board receiving box applicable to multiple specifications according to this application.

[0018] Explanation of main component symbols

[0019] Material receiving box body 10; feed inlet 11; material dispensing inlet 12; blocking block 20; first mounting groove 30; first adjusting plate 40; second mounting groove 50; slot 70; guide surface 71; hook surface 72; guide rod 80; locking block 90.

[0020] The following detailed description, in conjunction with the accompanying drawings, will further illustrate this utility model. Detailed Implementation Example 1

[0021] like Figure 1-2As shown, a PC board receiving box applicable to multiple specifications includes a receiving box body 10, which has a hollow structure. The upper part of the receiving box body 10 has a feeding port 11 for feeding bent PC boards into the receiving box body 10 for collection. A dispensing port 12 is provided on one side wall of the receiving box body 10 for removing the collected and stacked bent PC boards for further processing. A guide rod 80 is provided at the feeding port 11. The inner wall of the bottom plate of the receiving box body 10 has multiple parallel first mounting grooves 30, which are perpendicular to the guide rods 80. An internal first adjusting plate 40 is inserted. The upper end of the first adjusting plate 40 is abutted against the inner wall corresponding to the material inlet 12 of the receiving box body 10, and the lower end of the first adjusting plate 40 is inserted into the first mounting groove 30, so that the first adjusting plate 40 is set at an angle. Different first mounting grooves 30 are selected for insertion according to the width of different bent PC boards. When the bent PC boards are collected, due to the angled setting of the first adjusting plate 40, the upper end of the first adjusting plate 40 plays a guiding role until the bent PC boards fall into the bottom of the receiving box body 10 in sequence for collection, thereby accommodating PC boards of different specifications.

[0022] The first mounting groove 30 is vertically intersected with multiple parallel second mounting grooves 50. The second mounting grooves 50 are arranged parallel to the guide rod 80. A second adjusting plate is inserted inside the receiving box body 10. The upper end of the second adjusting plate is abutted against the inner wall of the receiving box body 10 corresponding to the guide rod 80. The lower end of the second adjusting plate is inserted into the second mounting groove 50, so that the second adjusting plate is tilted. Different second mounting grooves 50 are selected for insertion according to the length of different bent PC boards. When the bent PC boards are collected, the upper end of the second adjusting plate plays a guiding role due to the tilting setting of the second adjusting plate, until the bent PC boards fall into the bottom of the receiving box body 10 for collection, thereby accommodating PC boards of different specifications.

[0023] The upper ends of the first adjusting plate 40 and the second adjusting plate are both fixed together with adhesive tape.

[0024] A blocking block 20 is provided on one side of the material inlet 12. The blocking block 20 is fixedly connected to one side of the material inlet 12 to prevent the PC board from sliding out directly if the length is too small.

[0025] The connection between the feed inlet 11 and the guide rod 80 is provided with a plurality of symmetrically arranged slots 70. The corresponding slot 70 can be selected according to different specifications of PC boards to accurately control the direction of falling into the bottom of the receiving box body 10. The slot 70 is provided with a guide surface 71 and a hook surface 72. The guide surface 71 facilitates the insertion of the guide rod 80 into the slot 70, and the hook surface 72 prevents the guide rod 80 from slipping out of the slot 70. Both ends of the guide rod 80 are provided with locking blocks 90. The locking blocks 90 are tightly abutted against the outer wall of the receiving box body 10 below the slot 70 by nuts, so that the guide rod 80 is tightly locked in the slot 70. The locking blocks 90 are made of plastic, which increases the friction between them and the outer wall of the receiving box body 10.

[0026] The beneficial effects of this utility model are as follows: This utility model proposes a PC board receiving box applicable to multiple specifications, including a receiving box body 10. The receiving box body 10 has a hollow structure. The upper part of the receiving box body 10 is provided with a feeding port 11 for feeding the bent PC boards into the receiving box body 10 for collection. A material removal port 12 is provided on one side wall of the receiving box body 10 for removing the collected and stacked bent PC boards for the next process. A guide rod 80 is provided at the feeding port 11. The inner wall of the bottom plate of the receiving box body 10 is provided with multiple parallel first mounting grooves 30, which are perpendicular to the guide rods 80. A first adjusting plate 40 is inserted inside the receiving box body 10. The upper end of the first adjusting plate 40 is abutted against the inner wall corresponding to the material dispensing port 12 of the receiving box body 10, and the lower end of the first adjusting plate 40 is inserted into the first mounting groove 30, so that the first adjusting plate 40 is set at an angle. Different first mounting grooves 30 are selected for insertion according to the width of different bent PC boards. When the bent PC boards are collected, the upper end of the first adjusting plate 40 plays a guiding role due to the angled setting of the first adjusting plate 40, until the bent PC boards fall into the bottom of the receiving box body 10 in sequence for collection, thereby accommodating PC boards of different specifications.

[0027] Although this application discloses several aspects and embodiments, other aspects and embodiments will be obvious to those skilled in the art. Various modifications and improvements can be made without departing from the concept of this application, and these all fall within the scope of protection of this application. The various aspects and embodiments disclosed in this application are for illustrative purposes only and are not intended to limit this application. The actual scope of protection of this application is determined by the claims.

Claims

1. A multi-specification PC plate collecting box, comprising a collecting box body (10), the collecting box body (10) is a hollow structure, the upper part of the collecting box body (10) is provided with a feeding port (11), which is used for feeding the bent PC plate into the collecting box body (10) for collection, one side wall of the collecting box body (10) is provided with a taking port (12), which is used for taking the bent PC plate which is stacked and collected to enter the next process, a guide rod (80) is arranged at the feeding port (11), characterized in that: The inner wall of the bottom plate of the material collecting box body (10) is provided with a plurality of first installation grooves (30) which are parallel and spaced, the first installation grooves (30) are vertically arranged with guide rods (80), a first adjusting plate (40) is inserted in the material collecting box body (10), the upper end of the first adjusting plate (40) is abutted against the inner wall of the material outlet (12) of the material collecting box body (10), and the lower end of the first adjusting plate (40) is inserted into the first installation groove (30), so that the first adjusting plate (40) is arranged obliquely, different first installation grooves (30) are selected for insertion according to the width of the bent PC plate, and when the bent PC plate is collected, the upper end of the first adjusting plate (40) plays a guiding role due to the oblique arrangement of the first adjusting plate (40), and the bent PC plate falls into the bottom of the material collecting box body (10) in sequence for collection, so that different specifications of PC plates can be adapted. ​ 2. The multi-specification PC board receiving box according to claim 1, wherein: The first installation groove (30) is vertically and staggered provided with a plurality of second installation grooves (50) which are parallel and spaced, the second installation grooves (50) are arranged in parallel with the guide rods (80), a second adjusting plate is inserted in the material collecting box body (10), the upper end of the second adjusting plate is abutted against the inner wall of the guide rod (80) of the material collecting box body (10), and the lower end of the second adjusting plate is inserted into the second installation groove (50), so that the second adjusting plate is arranged obliquely, different second installation grooves (50) are selected for insertion according to the length of the bent PC plate, and when the bent PC plate is collected, the upper end of the second adjusting plate plays a guiding role due to the oblique arrangement of the second adjusting plate, and the bent PC plate falls into the bottom of the material collecting box body (10) in sequence for collection, so that different specifications of PC plates can be adapted.

3. The multi-specification PC board receiving box according to claim 1, wherein: The upper end of the first adjusting plate (40) and the second adjusting plate is fixed by adhesive tape.

4. The multi-specification PC board receiving box according to claim 1, wherein: One side of the material outlet (12) is provided with a blocking block (20) which is fixedly connected with one side of the material outlet (12) to prevent the PC plate from directly sliding out due to too small length specification.

5. The multi-specification PC board receiving box according to claim 1, wherein: A plurality of symmetrically arranged clamping grooves (70) are arranged at the connection between the material inlet (11) and the guide rod (80), different clamping grooves (70) can be selected according to different specifications of PC plates to accurately control the direction of falling into the bottom of the material collecting box body (10).

6. The multi-specification PC board receiving box according to claim 5, wherein: The clamping groove (70) is provided with a guide surface (71) and a hook surface (72), the guide surface (71) facilitates clamping the guide rod (80) into the clamping groove (70), and the hook surface (72) prevents the guide rod (80) from sliding out of the clamping groove (70).

7. The multi-specification PC board receiving box according to claim 5, wherein: Locking blocks (90) are arranged at both ends of the guide rod (80), the locking blocks (90) are tightly abutted against the outer wall of the material collecting box body (10) at the lower part of the clamping groove (70) through nuts, so that the guide rod (80) is tightly clamped in the clamping groove (70).

8. The multi-specification PC board receiving box according to claim 7, wherein: The locking blocks (90) are made of plastic material, which increases the friction between the locking blocks (90) and the outer wall of the material collecting box body (10).

Citation Information

Patent Citations

  • Universal bending machine for pc board

    CN220180127U