一种给料装置和粉状助剂加注系统
By combining a liquid conveying mechanism with a feeding device, the negative pressure effect is used to achieve automatic mixing and conveying of powdered additives and water, which solves the problems of large water consumption and raw material waste in traditional powder feeding methods, and improves production efficiency and the uniformity of powder mixing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN SON TECH PRECISION MACHINERY
- Filing Date
- 2025-07-29
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional powdered additive feeding methods require a large amount of water to dissolve, increasing water consumption and dyeing bath ratio. Furthermore, powder flying and adhesion lead to raw material waste, high labor intensity, and complex processes.
The system combines a liquid conveying mechanism with a feeding device. Through the feeding container and feeding pipe, the negative pressure effect is used to achieve automatic mixing and conveying of powdered additives and water, reducing water consumption and preventing powder from flying and adhering. A flushing mechanism is designed for automatic cleaning.
The dyeing bath ratio was reduced, water consumption and processes were decreased, production efficiency was improved, raw material waste and labor intensity were reduced, and precise feeding and uniform mixing of powder were achieved.
Smart Images

Figure CN224513837U_ABST
Abstract
Claims
1. A dosing device, characterized in that, It includes a liquid conveying mechanism, a first tube body, and a feeding mechanism, wherein the feeding mechanism includes a feeding container and a feeding assembly, and the feeding assembly includes a feeding container; The liquid conveying mechanism is connected to one end of the first pipe body, and the liquid conveying mechanism and the first pipe body are in communication; the bottom of the feeding container is connected to the side wall of the first pipe body, and the feeding container and the first pipe body are in communication; the top of the feeding container is provided with a feeding port; the feeding container is located above the feeding container and is in communication with the feeding container through the feeding port.
2. The dosing device of claim 1, wherein The feeding assembly further includes a feeding pipe, the bottom of the feeding container and the side wall of the first pipe body are connected through the feeding pipe, and the feeding container and the first pipe body are connected through the feeding pipe. The axes of the first tube and the feeding tube are perpendicular to each other.
3. The dosing device of claim 2, wherein The top of the feeding container is provided with a water inlet channel, and the inside of the feeding container is provided with a feeding channel. The water inlet channel, the inlet, the feeding channel, the feeding pipe and the first pipe body are connected in sequence.
4. The dosing device of claim 3, wherein It also includes a rinsing mechanism, which includes a rinsing pipe located outside the feeding container. One end of the rinsing pipe is connected to the first pipe body, and the other end is connected to the water inlet channel.
5. The dosing device of claim 4, wherein The flushing mechanism also includes a valve body for opening and closing the flushing pipe, the valve body being disposed on the flushing pipe.
6. The dosing device of claim 1, wherein, It also includes a material conveying mechanism; The material conveying mechanism includes a conveying body and a conveying drive mechanism and a conveying component disposed within the conveying body. The conveying body is disposed at the bottom of the feeding container and communicates with the feeding container. One end of the conveying body is provided with a discharge port, which is located above the inlet. The conveying drive mechanism and the conveying component are connected to convey the powder in the feeding container to the feeding container.
7. A dosing device according to claim 6, characterized in that The conveying assembly includes a rotating shaft and helical blades disposed on the outer side wall of the rotating shaft; The conveying drive mechanism is located at the other end of the conveying body. One end of the rotating shaft is connected to the conveying drive mechanism, and the other end extends to the discharge port.
8. The dosing device of claim 6, wherein The top of the feeding container is equipped with a dust cover, which covers the inlet; the conveying body is inserted into the dust cover so that the outlet is placed inside the dust cover.
9. The dosing device of claim 6, wherein, One end of the conveying body is provided with a movable cover for closing or opening the discharge port, and the movable cover is movably connected to the conveying body.
10. A powdered adjuvant filling system characterized by, It includes a dyeing device, a second tube, and a feeding device as described in any one of claims 1-9, wherein the dyeing device is connected to the other end of the first tube, and the liquid conveying mechanism is connected to the dyeing device through the first tube; the dyeing device is connected to the liquid conveying mechanism through the second tube.