用于净选去杂生产线的振动给料装置
By designing a vibrating feeding device, efficient screening of Chinese medicinal materials was achieved, solving the problem of incomplete screening of beneficial components during the cleaning process of Chinese medicinal materials, reducing resource waste and economic losses, and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KUNPENG SHENNONG PHARM EQUIP (TIANJIN) CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-07-17
AI Technical Summary
During the cleaning process of Chinese medicinal materials, beneficial components may not be completely screened and may enter into impurities, resulting in economic losses and waste of resources.
A vibrating feeding device was designed, including a support structure, a vibrating screening structure, a feeding structure, and an impurity sorting structure. The device screens Chinese medicinal materials through a screen, and impurities that do not pass the screening are pushed to an impurity collection box by a cylinder, thereby achieving the separation and collection of impurities.
It reduces resource waste, saves production costs, and improves the efficiency and yield of cleaning Chinese medicinal materials.
Smart Images

Figure CN224507618U_ABST
Abstract
Claims
1. A vibrating feeder for a clean and selective production line, characterized in that It consists of a support structure, a vibrating screening structure, a feeding structure, and an impurity sorting structure. The vibrating screening structure is installed above the support structure, the feeding structure is installed below the vibrating screening structure, and the feeding structure is installed on one side of the vibrating screening structure.
2. A vibrating feeder for a clean-to-spec production line according to claim 1, characterized in that The supporting structure consists of a long column A, a long column B, a short column A, a short column B, a side plate A, and a side plate B. The long column B is installed on one side of the long column A, the short column A is installed on the other side of the long column A, the short column B is installed on one side of the short column A, the side plate A is installed above the long column A and the short column A, and the side plate B is installed above the long column B and the short column B.
3. A vibrating feeder for a clean-to-spec production line according to claim 2, characterized in that The feeding structure consists of a support plate and a feeding plate. The support plate is installed between the side plate A and the side plate B, and the feeding plate is installed on one side of the support plate.
4. A vibrating feeder for a clean-to-spec production line according to claim 3, characterized in that The vibrating screening structure consists of side plate A, side plate B, screen, vibrating spring, and motor housing. Several vibrating springs are installed on the top of side plate A and side plate B. Side plate A is installed on the upper end of the vibrating spring on side plate A, and side plate B is installed on the upper end of the vibrating spring on side plate B. Screen is installed between side plate A and side plate B. Motor housing is installed between long support column A, long support column B, short support column A, and short support column B. The motor inside the motor housing is electrically connected to the vibrating spring.
5. A vibrating feeder for a clean-to-spec production line according to claim 4, characterized in that The impurity sorting structure consists of a support column, a cylinder, a pusher plate, a receiving plate, a baffle plate, an impurity discharge plate, an impurity collection box, and a back plate. A receiving plate is installed at one end of the screen, a baffle plate is installed on one side of the receiving plate, an impurity discharge plate is installed on the other side of the receiving plate, and an impurity collection box is installed below the impurity discharge plate. A support column is installed on one side of the short support column A, a back plate is installed above the support column, a cylinder is installed on one side of the back plate, a pusher plate is installed on the top of the output shaft of the cylinder, and the pusher plate is positioned above the receiving plate.