一种腰部出料的振冲器
By combining the waist-mounted discharge design with the feeding mechanism, the problems of uneven packing release and frequent clogging in traditional vibratory compactors are solved, achieving automated material feeding and convenient maintenance, and improving construction efficiency and equipment stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING VIBROFLOTATION ENG MACHINERY
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional vibratory compactors have shortcomings in terms of filler release method, overturning auxiliary structure, material guiding sealing device and maintainability, resulting in uneven material output, frequent blockage, low construction efficiency and inconvenient maintenance.
It adopts a waist-discharge design, combined with a feeding mechanism, a tilting frame, a clamping claw, a sealing mechanism, and a multi-pulley structure to achieve automated and stable introduction of filler, and an inspection port is set at the bottom of the feed hopper for convenient maintenance.
It improves the continuity of packing and construction efficiency, reduces the risk of clogging, enhances the flexibility and ease of maintenance of equipment, and ensures the stability and safety of construction.
Smart Images

Figure CN224514185U_ABST
Abstract
Claims
1. A waist-discharging vibrator comprising a material tube (1), the bottom of the material tube (1) being connected with a vibration head (2), characterized in that: The lower end of the material pipe (1) is provided with discharge ports (11) on both sides; The top of the material pipe (1) is connected to a feeding mechanism (3), which is used to fill the material into the material pipe (1), and the material filled into the material pipe (1) will be discharged through the discharge port (11). The feeding mechanism (3) includes a lifting head (31) connected to the top of the material pipe (1), a flipping frame (32) is rotatably connected to the top of the lifting head (31), and a hopper (33) is provided on one side of the lifting head (31). The hopper (33) is used to store the material to be filled. When the hopper (33) is pulled to the height of the lifting head (31), the hopper (33) will be flipped with the assistance of the flipping frame (32), and the material in the hopper (33) will be poured into the lifting head (31).
2. A hip-discharge shaker according to claim 1, characterized in that: The lifting head (31) includes a connecting pipe (311) connected to the material pipe (1), and the connecting pipe (311) and the material pipe (1) are interconnected; A feed hopper (312) is fixedly connected to the side of the connecting pipe (311); a feed inlet (3111) is provided through the side of the connecting pipe (311), and the feed inlet (3111) is located inside the feed hopper (312); When the material in the hopper (33) is poured into the guide bin (312), it will enter the connecting pipe (311) through the feed port (3111), and then the material will enter the feed pipe (1); The connecting pipe (311) is provided with a sealing mechanism (34). The sealing mechanism (34) includes a cylinder (341) and a sealing plate (342) rotatably connected above the feed inlet (3111). A linkage arm (343) is connected between the telescopic end of the cylinder (341) and the back of the sealing plate (342). After feeding is completed, the cylinder (341) drives the sealing plate (342) to rotate through the linkage arm (343), so that the sealing plate (342) seals the feed port (3111).
3. A hip-discharge shaker according to claim 2, wherein: Both sides of the feed hopper (312) are fixedly connected with locking claws (313); A locking post (332) is fixedly connected to the outer edge of the opening end of the hopper (33); When the hopper (33) is flipped, the locking pin (332) will be locked into the locking claw (313), allowing the hopper (33) to flip around the locking pin (332) as the axis.
4. A hip-discharge shaker according to claim 3, wherein: The feed hopper (312) is symmetrically and fixedly connected to a support frame (314); The top of the hopper (33) is fixedly connected to a suspension rod (333); After the hopper (33) is flipped, the support frame (314) will support the suspension rod (333), thereby limiting the maximum flipping angle of the hopper (33).
5. A hip-discharge shaker according to claim 4, wherein: The top of the suspension rod (333) is symmetrically provided with fourth pulleys (3331), and one end of the suspension steel rope is fixed to the suspension rod (333) and passes between the two fourth pulleys (3331); The tilting frame (32) is symmetrically provided with a second pulley (322) at one end, and a third pulley (323) is provided on one side of the second pulley (322); The steel cable fixed to the suspension rod (333) passes between the second pulley (322) and the third pulley (323).
6. A hip-discharge shaker according to claim 2, wherein: The top of the connecting pipe (311) is provided with a first pulley (316) for suspending the steel rope of the material pipe (1) and winding it around the first pulley (316).
7. A hip-discharge shaker according to claim 2, wherein: The back of the feed hopper (312) is symmetrically fixedly connected with pin plates (315), and one end of the tilting frame (32) is symmetrically provided with pin arms (321), and the pin arms (321) and pin plates (315) are rotatably connected.
8. A hip-discharge shaker according to claim 2, wherein: The bottom side of the feed hopper (312) is provided with an inspection port (3121), and the inspection port (3121) and the discharge port (11) are at the same height.
9. A hip-discharge shaker according to claim 2, wherein: The bottom of the hopper (33) is provided with a support leg (331).
10. A hip-discharge shaker according to claim 2, wherein: It also includes a purging and venting mechanism for purging compressed air into the connecting pipe (311). The purging and venting mechanism includes a three-way valve, an inflation valve, a deflation valve, and a safety valve. The first end of the three-way valve is connected to the inside of the connecting pipe (311), the second end of the three-way valve is connected to the inflation valve, and the third end of the three-way valve is connected to the deflation valve. The safety valve is connected to the inside of the connecting pipe (311).