Liquid adjuvant powder adsorption device
Patent Information
- Application Number
- CN202522188741.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-16
AI Technical Summary
[0012]相比现有技术,磁铁矿杂质颗粒物需要进行吸附,所以将含有磁铁矿杂质颗粒物的粉体物料通过物料通道引导助剂粉料进入,依靠驱动电机和驱动叶片相互配合,可以将这些助剂粉料进行打散,在打散的时候,可以依靠吸附部件进行颗粒物的吸附,吸附部件可以采用电磁导杆,依靠电磁导杆内部多组电磁线圈释放磁场,这样可以依靠吸附电磁导杆可以吸附磁铁矿杂质颗粒物,这样可以将磁铁矿杂质颗粒物和助剂粉料进行吸附分离,在吸附处理的过程中,助剂粉料可以从顶部卸料平台的卸料细孔板确保物料流入底部卸料平台,助剂粉料处理好之后,操作人员抽动活动挡板,使得助剂粉料从顶部卸料平台上的细孔流入底部卸料平台,利用底部卸料平台进行收集处理过的助剂分离,然后可以将处理后的助剂粉料进行集中的处理,底部封堵螺纹端盖则有效进行开合卸料端口,依靠卸料端口可以将助剂粉料卸出吸附装置。
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Figure CN224778229U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a material powder adsorption component, specifically to a liquid additive powder adsorption device. Background Technology
[0002] The preparation of liquid additives requires additive powder, which needs to be stirred. However, repeated stirring can introduce impurities, necessitating the use of a powder adsorption device to adsorb magnetite impurities. This powder adsorption device demonstrates superior performance. During material processing, it precisely adsorbs target powders, effectively removing impurities and significantly improving product purity and quality. It ensures thorough mixing and contact between the powder and additives, maximizing adsorption efficiency. Its operation is stable and reliable, and its ease of use greatly reduces labor costs and intensity. It has a wide range of applications, suitable for production lines in chemical, pharmaceutical, and food industries, and can adsorb other impurities in powdered additives.
[0003] In the prior art, there is a vibration powder spreading and adsorption device for silica aerogel powder (202221888910.4). This utility model provides a vibration powder spreading and adsorption device for silica aerogel powder. The device is located behind the web-laying machine in a needle-punching production line. The device includes a vibration powder spreading mechanism positioned above the fiberglass mat and an adsorption mechanism positioned below the fiberglass mat. The vibration powder spreading mechanism includes: a powder spreading and distributing box; and a powder spreading nozzle, which is connected to the powder spreading and distributing box. The system is configured with a powder-spreading nozzle located at the lower end of the powder-spreading distribution box and above the fiberglass mat. Multiple feeding fan ducts are connected to the upper end of the powder-spreading distribution box, with the other end of each duct connected to the outlet of a conveying fan. A first screen is located in the middle of the feeding fan ducts. A powder feeding pipe, connected to the feeding fan ducts and located above the first screen, is used to uniformly and efficiently fill the fiberglass mat with extremely low-density silica aerogel powder.
[0004] However, existing powder adsorption devices cannot adsorb particulate matter in powder materials, making it difficult to adsorb particulate powder. Utility Model Content
[0005] In order to overcome the shortcomings of the prior art, this utility model provides a liquid additive powder adsorption device.
[0006] This utility model is achieved using the following technical solution: a liquid additive powder adsorption device, comprising an adsorption box with an adsorption space inside, a top cover plate on the top of the adsorption box, the top cover plate being fixed to the adsorption box by bolts, a material channel on the top cover plate for introducing the powdered additive into the adsorption box, a drive motor on the top of the adsorption box with a drive shaft and drive blades mounted on the drive shaft, an adsorption component inside the adsorption box (which is an adsorption mounting bracket with an mounting platform and multiple adsorption electromagnetic guide rods mounted on the mounting platform).
[0007] The mounting platform is provided with an external boss, and the external boss is provided with threads. The external boss and the adsorption electromagnetic guide rod are further assembled by means of the threads.
[0008] The adsorption electromagnetic guide rod is equipped with multiple sets of electromagnetic coils inside, and a power transmission component is provided on the adsorption electromagnetic guide rod, which is a cable for power transmission.
[0009] The adsorption box is provided with a bottom material hopper at the bottom, and a bottom unloading component is provided on the bottom material hopper. The bottom unloading component is divided into a top unloading platform and a bottom unloading platform, and an installation position is provided on the top unloading platform.
[0010] The installation position is the drive shaft installation position. The top unloading platform has unloading positions on both sides. The unloading positions are equipped with unloading fine orifice plates. A movable baffle is provided below the unloading fine orifice plates. The movable baffle controls the opening and closing of the suction fine orifice plates.
[0011] Below the top unloading platform is a bottom unloading platform, and the bottom unloading platform is provided with an unloading port. The unloading port is provided with a sealing module, which is a bottom sealing threaded end cap.
[0012] Compared to existing technologies, magnetite impurity particles need to be adsorbed. Therefore, powder containing magnetite impurity particles is guided into the auxiliary powder through a material channel. The auxiliary powder is dispersed by the cooperation of a drive motor and drive blades. During dispersion, the particles are adsorbed by an adsorption component, which can be an electromagnetic guide rod. Multiple sets of electromagnetic coils inside the guide rod release a magnetic field, allowing the magnetite impurity particles to be adsorbed and separated from the auxiliary powder. During the adsorption process, the auxiliary powder flows from the top unloading platform through a fine orifice plate to the bottom unloading platform. After processing, the operator pulls a movable baffle, allowing the auxiliary powder to flow from the top unloading platform through the fine orifice into the bottom unloading platform. The bottom unloading platform collects the processed auxiliary powder, which is then centrally processed. The bottom sealing threaded end cap effectively opens and closes the unloading port, allowing the auxiliary powder to be discharged from the adsorption device. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model;
[0014] Figure 2 This is a sectional view of the present invention;
[0015] Figure 3 This is a sectional view of the present invention;
[0016] In the diagram: 1 is the adsorption chamber, 2 is the top cover, 3 is the material channel, 4 is the drive motor, 5 is the drive shaft, 6 is the drive blade, 7 is the adsorption mounting bracket, 8 is the adsorption electromagnetic guide rod, 9 is the external boss, 10 is the top unloading platform, 11 is the bottom unloading platform, 12 is the installation position, 13 is the unloading fine hole plate, 14 is the unloading port, and 15 is the power transmission component. Detailed Implementation
[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0018] A liquid additive powder adsorption device includes an adsorption chamber 1 with an adsorption space inside. A top cover 2 is fixed to the adsorption chamber 1 with bolts. A material channel 3 is provided on the top cover 2 to guide the powdered additive into the adsorption chamber 1. A drive motor 4 is located on the top of the adsorption chamber 1, with a drive shaft 5 mounted on the drive motor 4 and drive blades 6 installed on the drive shaft 5. An adsorption component, which is an adsorption mounting bracket 7, is located inside the adsorption chamber 1. An installation platform is provided on the adsorption mounting bracket 7, and multiple adsorption electromagnetic guide rods 8 are mounted on the installation platform.
[0019] An external boss 9 is provided on the mounting platform. The external boss 9 is provided with threads. The external boss 9 and the adsorption electromagnetic guide rod 8 are further assembled by the threads. Multiple sets of electromagnetic coils are provided inside the adsorption electromagnetic guide rod 8. A power transmission component 15 is provided on the adsorption electromagnetic guide rod 8. The power transmission component is a cable for power transmission.
[0020] The bottom of the adsorption box 1 is provided with a bottom material hopper, and a bottom unloading component is provided on the bottom material hopper. The bottom unloading component is divided into a top unloading platform 10 and a bottom unloading platform 11. An installation position 12 is provided on the top unloading platform 10.
[0021] To better adsorb and treat the magnetite impurity particles in the additive powder, the powder material to be adsorbed is guided into the material channel 3. The additive powder is dispersed by the cooperation of the drive motor 4 and the drive blades 6. During the dispersion, the particles can be adsorbed by the adsorption component. The adsorption component can be an adsorption electromagnetic guide rod 8. The magnetic field is released by multiple sets of electromagnetic coils inside the adsorption electromagnetic guide rod 8. In this way, the magnetite impurity particles can be adsorbed by the adsorption electromagnetic guide rod, and the magnetite impurity particles and the additive powder can be adsorbed and separated. During the adsorption process, the additive powder can flow from the discharge fine hole plate 13 of the top discharge platform 10 to the bottom discharge platform.
[0022] Installation position 12 is the drive shaft installation position. Discharge positions are provided on both sides of the top unloading platform 10. Discharge fine orifice plates 13 are provided at the discharge positions. A movable baffle is provided below the top unloading platform 10. The movable baffle controls the opening and closing of the suction fine orifice plate. After the adsorption treatment, the movable baffle can be pulled to open the discharge fine baffle, and the adsorbed auxiliary powder flows to the bottom unloading platform 11. The bottom unloading platform 11 is provided with a discharge port 14. A sealing module is provided on the discharge port 14. The sealing module is a bottom sealing threaded end cap.
[0023] The additive powder flows from the fine holes on the top unloading platform 10 into the bottom unloading platform 11. The bottom unloading platform 11 is used to collect and separate the processed additives. Then the processed additive powder can be centrally processed. The bottom sealing threaded end cap can effectively open and close the unloading port 14. The additive powder can be discharged from the adsorption device by relying on the unloading port 14.
[0024] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. A liquid additive powder adsorption device, comprising an adsorption chamber, wherein an adsorption space is provided within the adsorption chamber, a top cover is provided on the top of the adsorption chamber, the top cover is fixed to the adsorption chamber by bolts, a material channel is provided on the top cover of the adsorption chamber, the material channel guides the powdered additive into the adsorption chamber, a drive motor is provided on the top of the adsorption chamber, a drive shaft is provided on the drive motor, and drive blades are mounted on the drive shaft, characterized in that: The adsorption box is equipped with an adsorption component, which is an adsorption mounting bracket. The adsorption mounting bracket is equipped with a mounting platform, and the mounting platform is equipped with multiple adsorption electromagnetic guide rods.
2. The liquid additive powder adsorption device according to claim 1, characterized in that: The mounting platform is provided with an external boss, and the external boss is provided with threads. The external boss and the adsorption electromagnetic guide rod are further assembled by means of the threads.
3. The liquid additive powder adsorption device according to claim 2, characterized in that: The adsorption electromagnetic guide rod is equipped with multiple sets of electromagnetic coils inside, and a power transmission component is provided on the adsorption electromagnetic guide rod, which is a cable for power transmission.
4. The liquid additive powder adsorption device according to claim 1, characterized in that: The adsorption box is provided with a bottom material hopper at the bottom, and a bottom unloading component is provided on the bottom material hopper. The bottom unloading component is divided into a top unloading platform and a bottom unloading platform, and an installation position is provided on the top unloading platform.
5. The liquid additive powder adsorption device according to claim 4, characterized in that: The installation position is the drive shaft installation position. The top unloading platform has unloading positions on both sides. The unloading positions are provided with unloading fine hole plates. The unloading fine hole plates are provided with movable baffles below them.
6. The liquid additive powder adsorption device according to claim 5, characterized in that: Below the top unloading platform is a bottom unloading platform, and the bottom unloading platform is provided with an unloading port. The unloading port is provided with a sealing module, which is a bottom sealing threaded end cap.
Citation Information
Patent Citations
Vibration dusting and adsorption device for silicon dioxide aerogel powder
CN217709866U