一种气雾罐钢珠落料设备
By adopting a sliding connection guide pipe structure in the aerosol can steel ball feeding device, the height adjustment is simplified, the complex and cumbersome problems of existing equipment are solved, and the production efficiency is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUHAI JULI BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-09-12
- Publication Date
- 2026-07-17
AI Technical Summary
The existing aerosol can steel ball feeding equipment is complicated and cumbersome to adjust the height of the feeding device, which leads to increased downtime.
The design of the feed tube includes a first conduit and a second conduit that are interconnected. The second conduit can slide up and down to connect. By adjusting the distance between the second conduit and the conveying device, the height requirements of different sizes of aerosol cans can be adapted, simplifying the adjustment process.
It enables rapid adjustment of the guide tube height, shortens the downtime of the aerosol can steel ball feeding equipment, and improves production efficiency.
Smart Images

Figure CN224512485U_ABST
Abstract
Claims
1. A device for feeding steel balls from an aerosol can, characterized in that, include: Rack (400); A feed tube (100) is provided on the frame (400); A conveying device (300) is provided on the frame (400) and located below the guide pipe (100). The area between the lower end of the guide pipe (100) and the conveying device (300) is used for moving the aerosol cans. The conveying device (300) is used to convey multiple aerosol cans so that the multiple aerosol cans move sequentially to the area below the guide pipe (100). A discharge device (200) is provided on the frame (400). The discharge end of the discharge device (200) is connected to the guide pipe (100). The discharge device (200) is used to make steel balls fall into the guide pipe (100) so that the steel balls in the guide pipe (100) fall into the aerosol can. The guide pipe (100) includes a first guide pipe (110) and a second guide pipe (120) that are interconnected. The upper end of the first guide pipe (110) is connected to the frame (400) and communicates with the discharge end of the unloading device (200). The upper end of the second guide pipe (120) is slidably connected to the lower end of the first guide pipe (110) in the vertical direction, so that the height of the area between the lower end of the second guide pipe (120) and the conveying device (300) can be adjusted.
2. The aerosol can steel bead blanking apparatus of claim 1, wherein: The inner wall of the lower end of the first conduit (110) is provided with a guide groove (111) parallel to the vertical direction, and the upper end of the second conduit (120) is provided with a guide block (121) that extends into the guide groove (111).
3. The aerosol can steel bead blanking apparatus of claim 2, wherein: The first conduit (110) and the second conduit (120) are coaxially arranged. The guide block (121) is a cylinder with the same inner diameter as the second conduit (120). The cylinder and the second conduit (120) are coaxially arranged, and the cylinder extends into the guide groove (111).
4. The aerosol can steel bead blanking apparatus of claim 2, wherein: It also includes a fastener (130), and the inner bottom wall of the guide groove (111) is provided with a threaded hole. The fastener (130) is threaded to the inner wall of the threaded hole and pressed onto the guide block (121) so that the second guide tube (120) is fixed on the first guide tube (110).
5. The aerosol can steel bead blanking apparatus of claim 2, wherein: The outer wall of the guide block (121) is provided with a length scale (122) parallel to the vertical direction. The length scale (122) is matched with the bottom surface of the first conduit (110) to indicate the distance between the bottom surface of the first conduit (110) and the top surface of the second conduit (120).
6. The aerosol can steel bead blanking apparatus of claim 1, wherein: The material feeding device (200) includes a turntable (210), a feeding disc (220), and a barrier (230). The feeding disc (220) is mounted on the frame (400) and has a feeding hole (221). The upper end of the guide pipe (100) is connected to the feeding disc (220) and communicates with the feeding hole (221). The turntable (210) is rotatably connected to the feeding disc (220) and is located above the feeding disc (220). The barrier (230) is mounted on the frame (400) and is located above the turntable (210). The barrier (230) and the turntable (210) enclose a receiving area for receiving materials. The steel ball is provided with a plurality of positioning holes (211) on the turntable (210). The plurality of positioning holes (211) are circumferentially distributed along the axis of the turntable (210). The steel ball in the receiving area can roll into the plurality of positioning holes (211) so that the material dropping plate (220) can support the steel ball in the positioning hole (211). The gap between the enclosure (230) and the material dropping plate (220) is used for the steel ball in the positioning hole (211) to pass through. The turntable (210) can rotate so that the plurality of positioning holes (211) are connected to the material dropping hole (221) in sequence, and the steel ball in the plurality of positioning holes (211) falls into the guide tube (100) in sequence.
7. The aerosol can steel bead blanking apparatus of claim 6, wherein: The turntable (210) is provided with an annular groove (212), and a plurality of positioning holes (211) are provided on the bottom wall of the annular groove (212).
8. The aerosol can steel bead blanking apparatus of claim 6, wherein: The material feeding device (200) also includes a funnel (240) connected to the enclosure (230), the lower end of the funnel (240) extending into the receiving area, and the funnel (240) being used to pour the steel balls in.
9. The aerosol can steel bead blanking apparatus of claim 8, wherein: The turntable (210) has a rubber block (250) in the middle, which is located below the funnel (240) so that the steel ball in the funnel (240) falls onto the rubber block (250).
10. The aerosol can steel bead blanking apparatus of claim 9, wherein: The adhesive block (250) is conical in shape, narrow at the top and wide at the bottom.