Rotating mechanism for full-automatic forming foot cutter
The rotating mechanism of the fully automatic forming and cutting machine, through the cooperation of the rotating disk and the deflector, realizes the continuous turning of materials and intermittent feeding, which solves the problem of low turning efficiency in the existing technology and improves processing efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN CHENGXING ELECTRONICS CO LTD
- Filing Date
- 2025-04-24
- Publication Date
- 2026-04-17
AI Technical Summary
Existing cutting machines are inefficient when turning materials, and cannot achieve intermittent feeding at equal times and distances, which affects the efficiency of subsequent processing.
A rotating mechanism for a fully automatic forming and cutting machine is designed, including a rotating disk, an inclined track, an inlet pipe track, a placement slot, a deflector plate, and a drive assembly. By intermittently driving the rotating disk and the deflector plate, continuous material turning and intermittent feeding are achieved.
It improves the efficiency of material flipping and the accuracy of feeding, ensuring the continuity and quality of subsequent processing, and enhancing processing efficiency and quality.
Smart Images

Figure CN224128482U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of electronic component processing technology, and in particular relates to a rotating mechanism for a fully automatic forming and cutting machine. Background Technology
[0002] Lead cutting machines are also known as lead trimming machines or lead chopping machines. Based on rotation speed, lead cutting machines can be divided into high-speed and low-speed lead cutting machines. During the processing of electronic components, after the leads are cut, the finished product needs to be manually flipped for further processing. However, manually flipping the finished product not only wastes a lot of manpower but also greatly reduces the processing efficiency of electronic components, making it very inconvenient.
[0003] To address the aforementioned issues, a technical solution for flipping materials is disclosed in patent number CN202120130356.2. However, this technical solution still has some problems in its use. Generally, during product processing, the feeding interval of products needs to be the same to ensure continuous processing. However, in the use of this technical solution, the track needs to be filled and rotated each time it is flipped. After the object is discharged, it needs to be rotated in the opposite direction and filled again. This method not only results in low flipping efficiency but also makes it impossible to intermittently feed the flipped material to achieve feeding at equal distances and times, thus affecting the feeding speed, efficiency, and accuracy. Utility Model Content
[0004] To address the problems existing in the prior art, this utility model provides a rotating mechanism for a fully automatic forming and cutting machine, which solves the problem that the existing equipment has low efficiency when flipping materials, cannot achieve intermittent feeding at equal times and distances, and affects the efficiency of subsequent processing.
[0005] This utility model is implemented as follows: a rotating mechanism for a fully automatic forming and cutting machine includes a rotating disk, which is mounted on a fixed frame. The fixed frame is equipped with an inclined track and an inlet pipe track. It also includes:
[0006] A placement slot is set at equal angles on the rotating disk for placing materials;
[0007] A material unloading assembly, installed in a placement trough, is used to unload materials from the placement trough, including a rotating conveyor belt installed in the placement trough;
[0008] A rotating plate for separating materials is mounted on a fixed frame and positioned above an inclined track.
[0009] The drive assembly, located on the lower side of the fixed frame, is used to intermittently drive the rotating disk and the dial plate.
[0010] In a preferred embodiment of this invention, the rotating disk is disposed between the inclined track and the inlet track, with the height of the inclined track being higher than the height of the conveyor belt and the height of the inlet track being lower than the height of the conveyor belt.
[0011] As a preferred embodiment of this invention, the unloading assembly further includes two rotating shafts rotatably disposed within the placement trough, the conveyor belt being connected to the two rotating shafts, and the rotating shafts being driven by a drive source installed within the placement trough.
[0012] In a preferred embodiment of this invention, the number of the dial plates is at least four, and the dial plates are arranged in a ring. The dial plates are rotatably mounted on the fixed frame via a rotating rod, and the rotating rod is connected to the drive assembly.
[0013] As a preferred embodiment of this utility model, the drive assembly includes a gearbox mounted on the lower side of the fixed frame, and the output end of the gearbox is fixedly connected to the rotating rod. A full gear is mounted on the input end of the gearbox, a gear ring is provided below the rotating disk, a drive motor is mounted on the fixed frame, and a first intermittent gear that meshes with the gear ring and a second intermittent gear that meshes with the full gear are mounted on the output end of the drive motor.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0015] This invention effectively achieves continuous operation during material turning by setting multiple placement slots on the rotating disk. This allows the equipment to turn materials without reverse-drive the packing during operation. The baffle plate in the equipment, in conjunction with the rotation of the rotating disk, enables intermittent feeding during material turning, ensuring the efficiency of the equipment during operation and the equal distance and time for conveying materials to the inlet pipe track. This ensures subsequent processing and avoids the impact of inconsistent material conveying times on subsequent processing, further improving the processing efficiency and quality of the equipment. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure from the upper side view of this utility model. Figure 1 ;
[0017] Figure 2 This is a schematic diagram of the structure from the upper side view of this utility model. Figure 2 ;
[0018] Figure 3 This is a schematic diagram of the structure from the lower side view of this utility model;
[0019] Figure 4 This is a partial top view structural diagram of the present invention.
[0020] In the picture:
[0021] 1. Fixed frame; 2. Inclined track; 3. Inlet pipe track; 4. Rotary disk; 5. Placement trough; 6. Conveyor belt; 7. Drive source; 8. Pulley; 9. Gear ring; 10. Gearbox; 11. Full gear; 12. Drive motor; 13. First intermittent gear; 14. Second intermittent gear. Detailed Implementation
[0022] To further understand the utility model content, features and effects of this utility model, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.
[0023] The structure of this utility model will now be described in detail with reference to the accompanying drawings.
[0024] like Figures 1 to 4 As shown in the figure, the rotating mechanism for a fully automatic forming and cutting machine provided in this embodiment of the utility model includes a rotating disk 4, which is applied on a fixed frame 1. The fixed frame 1 is provided with an inclined rail 2 and an inlet rail 3, and also includes:
[0025] The placement slot 5 is set at equal angles on the rotating disk 4 for placing materials;
[0026] The unloading assembly is installed in the placement trough 5 and is used to unload the material in the placement trough 5, including rotating the conveyor belt 6 installed in the placement trough 5;
[0027] A rotating plate 8 for material separation is mounted on the fixed frame 1 and is positioned above the inclined track 2.
[0028] The drive assembly, located on the lower side of the fixed frame 1, is used to intermittently drive the rotating disk 4 and the dial plate 8.
[0029] As a preferred embodiment of this utility model, the rotating disk 4 is disposed between the inclined track 2 and the inlet track 3, and the height of the inclined track 2 is higher than the height of the conveyor belt 6, while the height of the inlet track 3 is lower than the height of the conveyor belt 6, which facilitates the placement of materials on the conveyor belt 6 and the pushing of materials on the conveyor belt 6 onto the inlet track 3.
[0030] As a preferred embodiment of this utility model, the unloading assembly further includes two rotating shafts rotatably disposed in the placement groove 5. The conveyor belt 6 is connected to the two rotating shafts, and the rotating shafts are driven by a drive source 7 installed in the placement groove 5, which facilitates driving the conveyor belt 6 to rotate. The drive source 7 can use a drive motor as a power source.
[0031] As a preferred embodiment of this utility model, the number of the paddle plates 8 is at least four, and the paddle plates 8 are arranged in a ring. The paddle plates 8 are rotatably mounted on the fixed frame 1 via a rotating rod, and the rotating rod is connected to the drive assembly for transmission, which facilitates the distribution of materials on the inclined track 2, allowing them to enter the placement slot 5 intermittently, thereby realizing the delivery of materials at equal time and distance.
[0032] As a preferred embodiment of this utility model, the drive assembly includes a gearbox 10 installed on the lower side of the fixed frame 1, and the output end of the gearbox 10 is fixedly connected to the rotating rod. A full gear 11 is installed at the input end of the gearbox 10. A gear ring 9 is provided below the rotating disk 4. A drive motor 12 is installed on the fixed frame 1, and a first intermittent gear 13 that meshes with the gear ring 9 and a second intermittent gear 14 that meshes with the full gear 11 are installed at the output end of the drive motor 12. This facilitates the intermittent rotation of the rotating disk 4 and the dial plate 8, thereby realizing intermittent feeding of materials, continuous operation, and ensuring the material conveying efficiency.
[0033] The working principle of this utility model:
[0034] refer to Figure 1 When the equipment is working, the inclined track 2 will convey the material to one side of the rotating disk 4. When the material moves to the deflector 8, the material will be blocked by the deflector 8 and will stop on one side of the deflector 8. At this time, the opening... Figure 3 The drive motor 12 in the middle drives the first intermittent gear 13 and the second intermittent gear 14 to rotate simultaneously. When the second intermittent gear 14 meshes with the full gear 11, the first intermittent gear 13 is disengaged from the gear ring 9. When the second intermittent gear 14 drives the full gear 11 to rotate, the full gear 11 drives the gearbox 10 to rotate. Figure 1 The turntable 8 rotates, and when the turntable 8 rotates, the turntable on the turntable 8 will push a piece of material to the other side of the turntable 8. At the same time, the second intermittent gear 14 and the full gear 11 disengage, and the material moves with the conveying of the inclined track 2 to the placement groove 5 in the rotating disk 4. When the material enters the placement groove 5, the first intermittent gear 13 meshes with the gear ring 9, and at this time the first intermittent gear 13 drives the rotating disk 4 to rotate through the gear ring 9, so that the discharge port of the placement groove 5 faces the inlet pipe track 3, and then the control is activated. Figure 4 When the drive source 7 is working, the drive source 7 drives the conveyor belt 6 to rotate outward, thereby conveying the material on the conveyor belt 6 to the inlet pipe track 3, and then completing the material flipping. After the material is discharged, the second intermittent gear 14 meshes with the full gear 11 again, and the first intermittent gear 13 disengages from the gear ring 9 again. The push plate 8 pushes a piece of material to the other side again, thus performing a cycle, which can effectively ensure the intermittent conveying of materials and ensure the continuous operation of the equipment.
[0035] This invention, through the multiple placement slots 5 set on the rotating disk 4, can effectively achieve continuous operation during material turning. This allows the equipment to turn materials without reverse-drive the packing during operation. The deflector 8 in the equipment, in conjunction with the rotation of the rotating disk 4, allows for intermittent feeding during material turning, ensuring the efficiency of the equipment during operation and the equal distance and time for conveying materials to the inlet pipe track 3. This ensures subsequent processing and avoids the impact of inconsistent material conveying times on subsequent processing, further improving the processing efficiency and quality of the equipment.
[0036] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotating mechanism for a full-automatic forming and cutting foot machine, comprising a rotating disc (4), the rotating disc (4) is applied to a fixing frame (1), the fixing frame (1) is provided with an inclined track (2) and a pipe entering track (3), characterized in that: Also includes: Multiple placement slots (5) are set at equal angles on the rotating disk (4) for placing materials; The unloading assembly is set in the placement trough (5) for unloading materials in the placement trough (5), including rotating the conveyor belt (6) set in the placement trough (5); A rotating plate (8) for material separation is mounted on a fixed frame (1) and is positioned above the inclined track (2). The drive assembly is located on the lower side of the fixed frame (1) and is used to intermittently drive the rotating disk (4) and the dial plate (8).
2. A rotating mechanism for a full-automatic forming and cutting foot machine according to claim 1, characterized in that: The rotating disk (4) is set between the inclined track (2) and the inlet track (3), and the height of the inclined track (2) is higher than the height of the conveyor belt (6), while the height of the inlet track (3) is lower than the height of the conveyor belt (6).
3. The rotary mechanism for a full-automatic forming and cutting foot machine according to claim 2, characterized in that: The unloading assembly also includes two rotating shafts rotatably disposed in the placement trough (5), the conveyor belt (6) being drivenly connected to the two rotating shafts, and the rotating shafts being driven by a drive source (7) installed in the placement trough (5).
4. The rotating mechanism for a fully automatic forming and cutting machine as described in claim 3, characterized in that: The number of the dial plates (8) is at least four, and the multiple dial plates (8) are arranged in a ring. The multiple dial plates (8) are rotatably mounted on the fixed frame (1) through a rotating rod, and the rotating rod is connected to the drive assembly for transmission.
5. The rotary mechanism for a full-automatic forming and cutting foot machine according to claim 4, characterized in that: The drive assembly includes a gearbox (10) mounted on the lower side of the fixed frame (1), and the output end of the gearbox (10) is fixedly connected to the rotating rod. A full gear (11) is mounted on the input end of the gearbox (10). A gear ring (9) is provided below the rotating disk (4). A drive motor (12) is mounted on the fixed frame (1), and a first intermittent gear (13) that meshes with the gear ring (9) and a second intermittent gear (14) that meshes with the full gear (11) are mounted on the output end of the drive motor (12).
Citation Information
Patent Citations
Rotating mechanism for foot cutter
CN214920078U