一种纽扣电池摆盘装置
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Filing Date
- 2025-09-10
- Publication Date
- 2026-07-17
Smart Images

Figure CN224512414U_ABST
Abstract
Claims
1. A coin cell cell tray apparatus, characterized by, include: The first conveying mechanism is used to convey button batteries; The second conveying mechanism is used to convey pallets; A flow guiding mechanism is provided in the middle section of the first conveying mechanism to guide each button battery that passes through, so that each button battery entering the downstream section is arranged in a linear manner. A material blocking mechanism is provided on the second conveying mechanism and is used to block or allow the pallet to reach the preset position; The feeding mechanism is used to pick up multiple button batteries arranged in a linear fashion and place them into one of the slots in the corresponding tray.
2. The button cell tray device of claim 1, wherein, The second conveying mechanism is disposed on one side of the first conveying mechanism, and the conveying direction of the second conveying mechanism is parallel to the conveying direction of the first conveying mechanism.
3. The button cell tray device of claim 1, wherein, The flow guiding mechanism includes multiple flow guiding components, each of which is arranged sequentially at staggered intervals along the conveying direction of the first conveying mechanism, and each flow guiding component guides the flow of each button battery multiple times.
4. The button cell tray device of claim 3, wherein, The flow guiding assembly includes a flow guiding plate, at least one support, and at least one mounting rod. The flow guiding plate is inclined along the conveying direction of the first conveying mechanism, with its upstream end close to the side of the first conveying mechanism and its downstream end close to the center of the first conveying mechanism. The flow guiding plate guides the flow of each button battery. Each support is fixedly connected to the side plate of the first conveying mechanism. Each mounting rod is horizontally arranged, with one end of each mounting rod corresponding to one of the supports, and the other end of each mounting rod fixedly connected to the flow guiding plate.
5. The button cell tray device of claim 2, wherein, The material blocking mechanism corresponds to the downstream section of the first conveying mechanism. It includes a blocking rod and a first telescopic drive member. The blocking rod is arranged along the conveying direction perpendicular to the second conveying mechanism. The output end of the first telescopic drive member is connected to the blocking rod and is used to drive the blocking rod to make horizontal reciprocating linear motion along the conveying direction perpendicular to the second conveying mechanism, so that the blocking rod blocks or releases the pallet.
6. The button cell tray device of claim 2, wherein, The material-picking mechanism corresponds to the downstream section of the first conveying mechanism and includes a material-picking component, a lifting component, and a translation component. The material-picking component is located above the first and second conveying mechanisms and is used to pick up or release multiple button batteries arranged in a linear fashion. The lifting component is located above the first and second conveying mechanisms and is connected to the material-picking component to drive the material-picking component to move up and down. The translation component is connected to the lifting component and is used to drive the lifting component to perform horizontal reciprocating linear motion along a direction perpendicular to the conveying direction of the first conveying mechanism, so that the material-picking component reaches directly above the first or second conveying mechanism.
7. The button cell tray device of claim 6, wherein, The material handling assembly includes multiple mounting brackets, at least two first guide rods, multiple mounting blocks, multiple connecting brackets, multiple suction cups, a vacuum pump, an inflation pump, and a second telescopic drive component. Each first guide rod is horizontally arranged along the conveying direction of the first conveying mechanism, and both ends of each first guide rod are fixedly connected to the mounting bracket. Each mounting block is spaced apart along the length of the first guide rod, and each mounting block is fitted onto each first guide rod. The middle mounting block is fixedly connected to each first guide rod, while the remaining mounting blocks are slidably connected to each first guide rod. Each connecting bracket has a telescopic structure, and each connecting bracket corresponds one-to-one with each mounting block. The adjacent connecting frames are interconnected, and each suction cup is connected to each mounting block in a one-to-one correspondence. The inlet end of the vacuum pump is connected to each suction cup and is used to extract air from each suction cup to create a vacuum state inside each suction cup. The outlet end of the air pump is connected to each suction cup and is used to fill each suction cup with air to balance the air pressure inside and outside each suction cup. The fixed end of the second telescopic drive member is connected to the mounting frame, and the output end of the second telescopic drive member is connected to the outermost mounting block to drive the corresponding mounting block to slide along the length direction of the first guide rod. The lifting assembly is connected to the mounting frame and is used to drive the mounting frame to move up and down.
8. The button cell tray device of claim 7, wherein, The lifting assembly includes a support frame, multiple second guide rods, and a third telescopic drive component. Each second guide rod is vertically arranged, and the bottom of each second guide rod is fixedly connected to the support frame. The mounting frame is sleeved on each second guide rod and is slidably connected to each second guide rod. The fixed end of the third telescopic drive component is connected to the support frame, and the output end of the third telescopic drive component is connected to the mounting frame for driving the mounting frame to move up and down. The translation component is connected to the support frame for driving the support frame to perform horizontal reciprocating linear motion along a direction perpendicular to the conveying direction of the first conveying mechanism.
9. The button cell tray device of claim 8, wherein, The translation component includes a support frame, at least one third guide rod, a lead screw, and a rotation drive. Each of the third guide rods and the lead screw is horizontally positioned above the first and second conveying mechanisms along a direction perpendicular to the conveying direction of the first conveying mechanism. Both ends of each third guide rod are fixedly connected to the support frame, and both ends of the lead screw are rotatably connected to the support frame. The support frame is sleeved on each of the third guide rods and the lead screw, and is slidably connected to each of the third guide rods and screwed to the lead screw. The fixed end of the rotation drive is connected to the support frame, and the output end of the rotation drive is connected to one end of the lead screw to drive the lead screw to rotate, so that the support frame reciprocates along the length direction of each of the third guide rods.
10. The button cell tray device of claim 1, wherein, A return conveyor mechanism is also included, the inlet end of which is in communication with the outlet end of the first conveyor mechanism, and the outlet end of which is in communication with the inlet end of the first conveyor mechanism, to return the linearly aligned individual button cells to the first conveyor mechanism.