An anti-stack receiving mechanism
By combining the guide cylinder and intermittent feeding assembly with the abutment limiting component, the problem of messy material stacking is solved, and the orderly receiving and stable release of materials is achieved, thereby improving production efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2026-07-03
AI Technical Summary
Traditional material receiving methods result in materials being piled up haphazardly in the receiving area, increasing manual processing workload and reducing production efficiency.
The material is guided by a guide cylinder to fall into the intermittent feeding component, and the release and limiting of the material are controlled by the intermittent feeding component and the abutment limiting component on the receiving platform. The orderly release and rotation of the material are achieved by using a drive cylinder and a drive motor, and the abutment limiting component prevents disorderly stacking.
It improved the orderliness and stability of material receiving, increased production efficiency, reduced manual handling workload, and ensured the continuity and quality of production.
Smart Images

Figure CN224444387U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of material receiving technology, and in particular to an anti-stacking material receiving mechanism. Background Technology
[0002] In the production process of punching and cutting metal discs, the material receiving stage is a crucial part. With the continuous development of industrial production, the requirements for the efficiency and quality of material receiving are becoming increasingly stringent. An efficient and stable receiving mechanism can ensure production continuity, reduce manual intervention, lower production costs, and improve product quality and production efficiency.
[0003] Currently, in the traditional process of receiving metal discs, the material collection and sorting are typically achieved by directly connecting the feeding track to the receiving container, allowing the material processed by the punching die to fall freely into the container via the feeding track. This method is simple and direct, requiring no complex equipment or operations. In addition, some factories use conveyor belts or other conveying equipment to transport materials to the receiving area, where they are then collected and sorted manually or by other means.
[0004] However, the aforementioned traditional material receiving method has significant drawbacks. In actual production, when materials fall from the feeding track, due to the lack of effective control and limiting measures, the materials tend to pile up haphazardly in the receiving area. This haphazard stacking of materials makes subsequent sorting and processing difficult, increases manual workload, and reduces production efficiency, thus requiring improvement. Utility Model Content
[0005] To address the problem of materials being piled up haphazardly using traditional receiving methods, this application provides an anti-stacking receiving mechanism.
[0006] This application provides an anti-stacking material receiving mechanism, which adopts the following technical solution:
[0007] An anti-stacking material receiving mechanism includes a frame and a guide cylinder mounted on the frame. The inlet of the guide cylinder abuts against the end of the unloading track away from the punching die. An intermittent material feeding component for intermittently releasing material is provided below the outlet of the guide cylinder. A receiving platform is provided below the intermittent material feeding component. An abutment limiting member is provided on the receiving platform, and the abutment limiting member can form an abutment limiting cooperation with the material released by the intermittent material feeding component.
[0008] By adopting the above technical solution, the material is guided down from the feeding track through the guide cylinder to the intermittent feeding component, and then intermittently released to the receiving platform by the intermittent feeding component. At the same time, the material is stopped and limited by the abutment limit component on the receiving platform to avoid the material from stacking up randomly, improve the orderliness and stability of receiving, and finally solve the problem that the traditional receiving method is prone to causing the material to stack up randomly, thereby improving production efficiency.
[0009] Preferably, the intermittent feeding assembly includes a sealing plate and a driving cylinder for driving the sealing plate to extend and retract horizontally to feed material. The driving cylinder is fixedly connected to the frame, the sealing plate is fixedly connected to the piston rod of the driving cylinder, and the sealing plate is located directly below the discharge port of the guide cylinder.
[0010] By adopting the above technical solution, the sealing plate is horizontally extended and retracted by the driving cylinder to realize the intermittent release of materials, effectively control the falling rhythm of materials, and at the same time limit the material by the abutment limit component to avoid the materials from being piled up randomly on the receiving platform.
[0011] Preferably, the receiving platform is provided with a receiving tray, and the abutting limiting members are arranged in an array along the circumference of the receiving tray. A drive motor is provided below the receiving platform, and the side of the receiving tray closest to the drive motor is fixedly connected to the output shaft of the drive motor.
[0012] By adopting the above technical solution, multiple abutment limiting members are arranged in a circumferential array on the receiving tray. When one of the abutment limiting members receives a certain amount of material, the drive motor drives the receiving tray to rotate and switch to the next abutment limiting member to receive material. This allows for the orderly receipt of more material and enables the simultaneous receipt of material from the abutment limiting member that has already received material for processing.
[0013] Preferably, the abutting and limiting member includes abutting shafts arranged in an array along the circumference of the material, and the abutting shafts form a limiting space around the material, wherein the sidewall of any of the abutting shafts forms an abutting and limiting engagement with the sidewall of the material within the limiting space.
[0014] By adopting the above technical solution, the abutment shaft is arranged in a circumferential array along the material to form a limiting space, which abuts and limits the material from multiple directions on the side wall of the material, thereby enhancing the limiting effect on the material and preventing the material from deviating.
[0015] Preferably, any of the abutment shafts is detachably connected to the receiving tray.
[0016] By adopting the above technical solution, the abutment shaft can be detachably connected to the receiving tray, which facilitates the replacement, maintenance and cleaning of the abutment shaft to adapt to different material sizes and usage requirements.
[0017] Preferably, any of the aforementioned limiting spaces is provided with a protrusion that is fixedly connected to the receiving tray.
[0018] By adopting the above technical solution, the bump pad is placed under the material in the limiting space, which can create a gap between the material and the receiving tray, making it easier to pick up the material.
[0019] Preferably, the guide cylinder has an avoidance opening at its discharge port, and the driving cylinder drives the sealing plate to extend and retract within the avoidance opening to discharge material.
[0020] By adopting the above technical solution, an avoidance opening is opened at the discharge port of the guide cylinder, so that the drive cylinder can drive the sealing plate to extend and retract within the avoidance opening to release material. This can ensure the stability of the sealing plate's action and ensure that the intermittent release of material is more accurate and reliable.
[0021] Preferably, the feed inlet of the guide cylinder is provided with a blocking plate to prevent material from falling out.
[0022] By adopting the above technical solution, a blocking plate is set at the feed inlet of the guide cylinder to prevent the material from falling out of the feed inlet of the guide cylinder and ensure that the material enters the guide cylinder stably.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. The guide tube guides the material to fall to the intermittent feeding component, and then the intermittent feeding component releases the material to the receiving platform. At the same time, the abutment limit component is used to abut and limit the material to avoid the material from piling up messily, thereby improving production efficiency.
[0025] 2. A receiving platform is equipped with a receiving tray, and abutment limiters are arranged in an array around the circumference of the receiving tray. Combined with a drive motor to drive the receiving tray to rotate, it can orderly receive more materials and simultaneously pick up materials from the abutment limiters of the received materials for processing.
[0026] 3. The abutment shaft is detachably connected to the receiving tray, which facilitates the replacement, maintenance and cleaning of the abutment shaft to adapt to different material sizes and usage requirements. The protrusion pad is placed under the material in the limiting space, which can create a gap between the material and the receiving tray, making it easy to pick up the material. Attached Figure Description
[0027] Figure 1 This is an isometric schematic diagram that mainly illustrates the overall structure in the embodiments of this application.
[0028] Reference numerals in the attached drawings: 1. Frame; 2. Guide cylinder; 21. Blocking plate; 22. Clearance opening; 3. Intermittent feeding assembly; 31. Sealing plate; 32. Drive cylinder; 4. Receiving platform; 41. Support frame; 5. Receiving tray; 51. Threaded hole; 6. Abutment limiting component; 61. Abutment shaft; 62. Limiting space; 7. Drive motor; 8. Protrusion. Detailed Implementation
[0029] The following is in conjunction with the appendix Figure 1 This application will be described in further detail.
[0030] This application discloses an anti-stack receiving mechanism.
[0031] Reference Figure 1 An anti-stacking material receiving mechanism includes a frame 1 and a guide cylinder 2 fixedly connected to the frame 1 by bolts. The inlet of the guide cylinder 2 abuts against the end of the material feeding track away from the punching die, and an intermittent material feeding component 3 for intermittently releasing material is provided below the outlet of the guide cylinder 2. In this embodiment, the cross-section of the outlet of the guide cylinder 2 is set to be circular corresponding to the shape of the material, and the inner diameter of the outlet of the guide cylinder 2 is slightly larger than the outer diameter of the material.
[0032] Reference Figure 1 Below the intermittent feeding assembly 3, a receiving platform 4 is provided, and a receiving tray 5 is provided on the receiving platform 4. Abutment limiting members 6 are arranged in an array along the circumference of the receiving tray 5, and any of the abutment limiting members 6 can form an abutment limiting cooperation with the material released by the intermittent feeding assembly 3. Below the receiving platform 4, a drive motor 7 is provided, and the side of the receiving tray 5 near the drive motor 7 is fixedly connected to the output shaft of the drive motor 7. In this embodiment, the receiving tray 5 is embedded in the receiving platform 4. A support frame 41 is fixedly connected to the receiving platform 4 by welding, and the drive motor 7 is fixedly connected to the support frame 41 by bolts. The output shaft of the drive motor 7 passes through the receiving platform 4 and is fixedly connected to the receiving tray 5 by welding.
[0033] In practical use, the guide cylinder 2 can guide the material to fall to the intermittent feeding component 3. The cross-section of the discharge port of the guide cylinder 2 is set to be circular, and the inner diameter of the discharge port of the guide cylinder 2 is slightly larger than the outer diameter of the material. This can prevent the material from getting stuck in the guide cylinder 2 and being unable to fall further, ensuring that the material is stably transmitted to the intermittent feeding component 3. When the material received on the intermittent feeding component 3 reaches a certain quantity, the intermittent feeding component 3 will release the material to the receiving tray 5 on the receiving platform 4. At the same time, the abutting limiter 6 on the receiving tray 5 will abut and limit the material, avoiding messy stacking of materials and improving the orderliness and stability of receiving.
[0034] Multiple abutment limiting members 6 are arranged in a circumferential array on the receiving tray 5. When one of the abutment limiting members 6 receives a certain amount of material, the drive motor 7 drives the receiving tray 5 to rotate and switch the next abutment limiting member 6 to the area directly below the guide cylinder 2 to receive material. This allows for the orderly receipt of more material and enables the simultaneous receipt of material from the abutment limiting member 6 that has already received material for processing, thereby improving the overall processing and production efficiency.
[0035] Reference Figure 1The feed inlet of the guide cylinder 2 is provided with a blocking plate 21 to prevent material from falling out. In this embodiment, the blocking plate 21 is recessed towards the side closer to the guide cylinder 2. One end of the blocking plate 21 is fixedly connected to the frame 1 by bolts, and the other end of the blocking plate 21 is located on the side of the guide cylinder 2 away from the feeding track. The other end of the blocking plate 21 is fixedly connected to the side wall of the feed inlet of the guide cylinder 2 by bolts. In actual use, the concave setting of the blocking plate 2 towards the side closer to the guide cylinder 2 can prevent material from falling out of the feed inlet of the guide cylinder 2, ensuring that the material enters the guide cylinder 2 stably and falls to the sealing plate 31.
[0036] Reference Figure 1 The intermittent feeding assembly 3 includes a sealing plate 31 and a driving cylinder 32 for driving the sealing plate 31 to horizontally extend and retract to feed material. The driving cylinder 32 is fixedly connected to the frame 1 by bolts. The sealing plate 31 is fixedly connected to the piston rod of the driving cylinder 32 by welding, and the sealing plate 31 is located directly below the discharge port of the guide cylinder 2. The discharge port of the guide cylinder 2 is provided with an avoidance port 22, and the driving cylinder 32 drives the sealing plate 31 to extend and retract to feed material within the avoidance port 22. In this embodiment, there are two avoidance ports 22 along the extension and retraction direction of the sealing plate 31.
[0037] In practical use, when the material received on the sealing plate 31 reaches a certain quantity, the drive cylinder 32 drives the sealing plate 31 to retract rapidly, releasing the material onto the receiving tray 5 on the receiving platform 4. The receiving tray 5 uses the abutment limiting member 6 to abut and limit the material, preventing the material from piling up randomly on the receiving platform 4. Then, the drive cylinder 32 drives the sealing plate 31 to extend rapidly, so as to continue to receive material and wait for the next release. The discharge port of the guide cylinder 2 has an avoidance opening 22, which allows the drive cylinder 32 to drive the sealing plate 31 to extend and retract within the avoidance opening 22 to release material. This ensures the stability of the sealing plate 31's movement and makes the intermittent release of material more accurate and reliable.
[0038] Reference Figure 1 The abutting and limiting member 6 includes abutting shafts 61 arranged in a circumferential array along the material, and the abutting shafts 61 form a limiting space 62 around the material. Any abutting shaft 61 is detachably connected to the receiving tray 5, and the side wall of any abutting shaft 61 forms an abutting and limiting fit with the side wall of the material in the limiting space 62. In this embodiment, the receiving tray 5 is provided with a plurality of threaded holes 51, and the end of any abutting shaft 61 near the receiving tray 5 is threadedly connected to the receiving tray 5 through the threaded holes 51.
[0039] In practical use, the abutment shaft 61 is arranged in a circumferential array along the material to form a limiting space 62, which can simultaneously abut and limit the material from multiple directions on the side wall of the material, thus enhancing the limiting effect on the material. The abutment shaft 61 is threaded to the receiving tray 5 through the threaded hole 51, making the abutment shaft 61 easy to disassemble, thereby facilitating the replacement, maintenance and cleaning of the abutment shaft 61. At the same time, it is easy to adjust the abutment shaft 61 to adapt to different material sizes and usage requirements.
[0040] Reference Figure 1 Each of the limiting spaces 62 is provided with a protrusion 8 that is fixedly connected to the receiving tray 5. In the embodiments of this application, each of the protrusions 8 is fixedly connected to the receiving tray 5 by bolts. In actual use, the protrusion 8 is placed under the material in the limiting space 62, which can create a gap between the material and the receiving tray 5, making it easier to pick up the material.
[0041] The implementation principle of this application embodiment is as follows: the material enters the guide cylinder 2 through the feeding track. The inlet of the guide cylinder 2 is equipped with a blocking plate 21 to prevent the material from falling out and ensure that the material enters the guide cylinder 2 stably. The outlet of the guide cylinder 2 is adapted to the shape of the material, and the inner diameter of the outlet of the guide cylinder 2 is slightly larger than the outer diameter of the material, so as to guide the material to fall smoothly onto the sealing plate 31 of the intermittent feeding component 3. When the material received on the sealing plate 31 reaches a certain amount, the driving cylinder 32 drives the sealing plate 31 to quickly retract in the relief port 22, and accurately releases the material to the receiving tray 5. At the same time, the abutting shaft 61 in the abutting limit member 6 located on the receiving tray 5 forms a limiting space 62 around the material to abut and limit the material released by the sealing plate 31, so as to prevent the material from piling up randomly on the receiving platform 4. Then the driving cylinder 32 drives the sealing plate 31 to quickly extend in the relief port 22 so as to continue to receive the material and wait for the next release.
[0042] Multiple abutment limiting members 6 are arranged in a circumferential array on the receiving tray 5. When the limiting space 62 formed by one of the abutment limiting members 6 receives a certain amount of material, the drive motor 7 below the receiving platform 4 drives the receiving tray 5 to rotate, switching to the next abutment limiting member 6 directly below the guide cylinder 2 to continue receiving material, realizing orderly receiving and synchronous material picking processing, thereby improving the overall processing and production efficiency. The abutment shaft 61 in any abutment limiting member 6 is threadedly connected to the receiving tray 5 through the threaded hole 51, which facilitates the replacement, maintenance and cleaning of the abutment shaft 61, and also facilitates the adjustment of the abutment shaft 61 to adapt to different material sizes and usage requirements. The protrusion 8 in any limiting space 62 is placed under the material, which can create a gap between the material and the receiving tray 5, making it easy to pick up the material.
[0043] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A stack prevention and lacing mechanism, characterized by: The device includes a frame (1) and a guide cylinder (2) mounted on the frame (1). The inlet of the guide cylinder (2) is in contact with the end of the unloading track away from the punching die. An intermittent feeding assembly (3) for intermittently releasing material is provided below the outlet of the guide cylinder (2). A receiving platform (4) is provided below the intermittent feeding assembly (3). An abutment limiting member (6) is provided on the receiving platform (4). The abutment limiting member (6) can form an abutment limiting cooperation with the material released by the intermittent feeding assembly (3).
2. A de-stacking mechanism according to claim 1, wherein: The intermittent feeding assembly (3) includes a sealing plate (31) and a driving cylinder (32) for driving the sealing plate (31) to horizontally extend and retract to feed material. The driving cylinder (32) is fixedly connected to the frame (1), and the sealing plate (31) is fixedly connected to the piston rod of the driving cylinder (32). The sealing plate (31) is located directly below the discharge port of the guide cylinder (2).
3. A stack preventing material receiving mechanism according to claim 1, characterized by: The receiving platform (4) is provided with a receiving tray (5), and the abutting limiting member (6) is arranged in an array along its circumference on the receiving tray (5). A drive motor (7) is provided below the receiving platform (4), and the side of the receiving tray (5) close to the drive motor (7) is fixedly connected to the output shaft of the drive motor (7).
4. A de-stacking mechanism according to claim 3, wherein: The abutting and limiting member (6) includes abutting shafts (61) arranged in a circumferential array along the material, and the abutting shafts (61) form a limiting space (62) around the material, and the side wall of any abutting shaft (61) forms an abutting and limiting fit with the side wall of the material in the limiting space (62).
5. A de-stacking mechanism according to claim 4, wherein: Any of the aforementioned abutment shafts (61) can be detachably connected to the receiving tray (5).
6. A de-stacking mechanism according to claim 4, wherein: A protrusion (8) fixedly connected to the receiving tray (5) is provided in any of the limiting spaces (62).
7. A de-stacking mechanism according to claim 2, wherein: The guide cylinder (2) has an avoidance opening (22) on its discharge port, and the driving cylinder (32) drives the sealing plate (31) to extend and retract within the avoidance opening (22) to discharge material.
8. A stack preventing material receiving mechanism according to claim 1, characterized by: The feed inlet of the guide cylinder (2) is provided with a baffle plate (21) to prevent material from falling out.