Hose feeding device
Through the design of the extrusion roller rotation and sealing connection of the hose feeding device, the blockage problem during the iron phosphate transportation process is solved, efficient material transportation and precise control are achieved, and production efficiency and device stability are improved.
Patent Information
- Application Number
- CN202421840993.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-07-31
AI Technical Summary
During the existing iron phosphate transportation process, due to its viscous properties, the spiral pipe is prone to stick to and blocked, resulting in low production efficiency, high equipment maintenance costs and long downtime.
A hose feeding device is designed, and a rotating device is used to drive the extrusion roller to rotate in the extrusion groove. By extruding and pushing viscous materials, combined with the flexible connection and sealing design of the hose, the smooth transportation and precise control of the materials are achieved.
It effectively avoids material adhesion and clogging, improves conveying efficiency, reduces equipment maintenance costs, meets the needs of different production processes, and extends the service life of the hose.
Smart Images

Figure CN223073334U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of iron phosphate production, in particular to a hose feeding device. Background Art
[0002] In today's energy field, as an important battery material, iron phosphate requires crucial technical improvements in its production and processing. When performing anti-static operations on iron phosphate, in order to achieve the desired effect, the method of increasing humidity is often used to humidify it. However, the humidified iron phosphate becomes sticky, which brings great difficulties to subsequent transportation.
[0003] Existing transportation technologies usually adopt screw transportation. However, due to the sticky characteristics of iron phosphate, even screw transportation has serious problems. The material easily adheres to the screw rod, resulting in blockage of the screw tube, which not only affects production efficiency but also increases equipment maintenance costs and downtime. Summary of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the technical problem solved by the utility model is a hose feeding device, which can effectively avoid adhesion and blockage of sticky iron phosphate during transportation, improve production efficiency, and reduce equipment maintenance costs and downtime.
[0005] To solve the above problems, the technical solution adopted by the utility model is: a hose feeding device, characterized in that: it includes a base, and a plurality of fixing frames are arranged at the upper end of the base, and the fixing frames are fixedly connected to the base. An inlet cylinder is arranged at the upper end of the fixing frame, and the inlet cylinder is fixedly connected to the mounting seat; a circular extrusion groove is arranged inside the base, and a discharge port is arranged at the lower end of the extrusion groove. A rotating device is arranged inside the extrusion groove, and an extrusion roller is arranged on the rotating device, and the rotating device drives the extrusion roller to rotate inside the extrusion groove; a hose is arranged at the lower end of the inlet cylinder and is connected to the inlet cylinder, and the other end passes through the extrusion groove and extends to the position of the discharge port.
[0006] The beneficial effects produced by this solution are: the rotating device drives the extrusion roller to rotate inside the extrusion groove, which can effectively extrude and push the sticky material, ensuring that the material smoothly passes through the hose and is discharged from the discharge port, improving the transportation efficiency. Due to the design of the extrusion and pushing of the rotating roller driven by the rotation of the rotating device, the adhesion and accumulation of the material during transportation are reduced, effectively avoiding the common blockage problems in screw transportation devices. The connection design of the hose makes the position and direction of the discharge port have high flexibility, which can adapt to different production layouts and process requirements. The transportation speed and flow rate of the material can be accurately controlled by adjusting the rotation speed of the rotating device and the pressure of the extrusion roller, meeting the needs of different production processes.
[0007] Further, the hose at the position of the fixing frame is arranged vertically and is arranged inside the fixing frame. The fixing frame can play a role in protecting the hose, avoiding damage or interference to the hose from the outside, extending the service life of the hose, and at the same time avoiding the shaking of the hose. At the same time, the vertical arrangement also avoids the diversion of the conveyed material during extrusion. The vertically arranged hose can reduce the resistance of the material during transportation, make the material flow more smoothly, improve the transportation efficiency, and the hose inside the fixing frame can be conveniently observed to timely detect whether the hose is blocked or other problems occur, so as to carry out maintenance and repair.
[0008] Further, the hose is arranged along the side wall of the extrusion groove. The hose is located on the side wall, and the extrusion roller can apply pressure more directly, effectively extruding the material out of the hose to ensure the smooth transportation of the material. This setting method can make the pressure applied by the extrusion roller on the hose more uniform, avoiding the situation of excessive or insufficient local extrusion, thereby improving the extrusion quality of the material. Through better extrusion, the accumulation and blockage of the material in the hose can be reduced, the hose can be kept unobstructed, and the production efficiency can be improved.
[0009] Further, there are two extrusion rollers. The two extrusion rollers are arranged in parallel. The two parallel extrusion rollers can simultaneously extrude the material in the hose, increasing the contact area and acting force of the extrusion, thereby improving the extrusion efficiency. The parallel arrangement of the two extrusion rollers can increase the stability of the device. During the extrusion process, they can support each other, reduce the shaking and vibration of the rollers, thereby improving the operating stability of the entire device. For materials with different properties and viscosities, the two extrusion rollers can adjust the distance and pressure between them as needed to adapt to different material characteristics and improve the versatility of the device.
[0010] Further, a support frame is arranged at the lower end of the base. The support frame is fixedly connected to the base. The support frame can increase the contact area between the base and the ground or other support surfaces, thereby improving the stability of the entire device. This helps to prevent the device from shaking or tilting during operation and ensures safe operation. The support frame can raise the base by a certain height, keeping the device at a certain distance from the ground. This helps to avoid the direct contact of the base with moisture, dust or other pollutants on the ground, thereby extending the service life of the device.
[0011] Further, the hose is hermetically connected to the feeding cylinder. The hermetic connection can ensure that the material will not leak from the connection between the hose and the feeding cylinder during transportation. This is very important for preventing material waste, protecting the environment and ensuring the safety of the production process. The hermetic connection can maintain the pressure inside the hose to ensure that the material can be smoothly extruded. If there is a leak at the connection, the pressure will decrease, which may lead to unsmooth or uneven material transportation. At the same time, the hermetic connection can prevent external impurities, dust or other pollutants from entering the hose and the feeding cylinder, thereby ensuring the purity and quality of the material.
[0012] Furthermore, the motor is a speed-regulating motor. The output shaft of the motor is fixedly connected to the rotating device. By adjusting the motor speed, the extrusion amount of the material in the hose can be accurately controlled, achieving precise control of the discharge amount. This is very important for applications that require precise batching or quantitative conveying. Different materials may have different viscosities and fluidities. The speed-regulating motor can adjust the speed according to the characteristics of the material to ensure that the material can be extruded smoothly, avoiding blockage or over-extrusion.
[0013] Furthermore, the rotating device is arranged at the central position of the extrusion groove. The rotating device located at the central position can make the pressure exerted by the extrusion roller on the hose more evenly distributed, thereby ensuring that the material is evenly extruded throughout the length of the hose, improving the extrusion effect and the consistency of product quality. The arrangement at the central position can make the rotating device and the extrusion roller receive more balanced forces, reducing vibration and wear caused by eccentric force. This helps to extend the service life of the equipment and improve the operating stability. The arrangement at the central position can reduce the flow resistance of the material in the extrusion groove, making the material pass through the hose more smoothly. This helps to improve production efficiency and reduce the risk of material blockage. Description of the Drawings
[0014] Figure 1 is a schematic structural view of the present utility model; Detailed Embodiments
[0015] The reference numerals in the accompanying drawings of the specification include: base 1, support frame 2, fixing frame 3, motor 4, extrusion groove 5, extrusion roller 6, hose 7, feed cylinder 8, rotating device 9, mounting seat 10.
[0016] Embodiment 1 is basically as shown in the attached Figure 1 figures: A hose feeding device includes a base 1. A plurality of fixing frames 3 are arranged at the upper end of the base 1. The fixing frames 3 are fixedly connected to the base 1. A feed cylinder 8 is arranged at the upper end of the fixing frames 3. The feed cylinder 8 is fixedly connected to the mounting seat 10. An extrusion groove 5 is circularly arranged inside the base 1. A discharge port 11 is arranged at the lower end of the extrusion groove 5. A rotating device 9 is arranged inside the extrusion groove 5. An extrusion roller 6 is arranged on the rotating device 9. The rotating device 9 drives the extrusion roller 6 to rotate inside the extrusion groove 5. A hose 7 is connected to the lower end of the feed cylinder 8 and is connected to the feed cylinder 8. The other end passes through the extrusion groove 5 and extends to the position of the discharge port 11.
[0017] In this embodiment, the hose 7 at the position of the fixing frame is arranged vertically and is arranged inside the fixing frame to ensure the stability and vertical feeding of the hose 7. The hose 7 is arranged against the side wall of the extrusion groove 5 so as to better contact with the extrusion roller 6 to achieve effective extrusion and conveying. There are two extrusion rollers 6 arranged in parallel, which can uniformly extrude the hose 7 to ensure the smooth extrusion of the material. A support frame 2 is arranged at the lower end of the base 1 and is fixedly connected to the base 1 to provide stable support. The hose 7 is hermetically connected to the feed cylinder 8 to prevent leakage and contamination. The motor 4 is a speed-regulating motor, and its output shaft is fixedly connected to the rotating device 9, and the rotation speed can be adjusted according to needs to achieve the control of the material conveying speed. The rotating device 9 is arranged at the central position of the extrusion groove 5, so that the pressure exerted by the extrusion roller 6 on the hose 7 is more uniform, improving the extrusion effect and the consistency of product quality.
[0018] During use, the material is added into the feed cylinder 8. The driving device 4 drives the rotating device 9 to rotate, and the extrusion roller 6 rotates accordingly to extrude the hose 7, so that the material is extruded from the discharge port. The rotation speed of the extrusion roller 6 can be adjusted through the speed-regulating motor, thereby controlling the material conveying speed and the discharge amount. The whole device has a simple structure and is convenient to operate, and can meet the feeding requirements of different materials.
[0019] The above has described in detail the embodiments of the present utility model in conjunction with the accompanying drawings, but the present utility model is not limited to the described embodiments. For those skilled in the art, without departing from the principle and spirit of the present utility model, various changes, modifications, substitutions and variations made to these embodiments still fall within the protection scope of the present utility model.
Claims
1. A hose feeding device, characterized in that: It includes a base. At the upper end of the base, a plurality of fixing frames are provided, and the fixing frames are fixedly connected to the base. At the upper end of the fixing frames, a feed cylinder is provided, and the feed cylinder is fixedly connected to the mounting seat. Inside the base, a circular extrusion groove is provided. At the lower end of the extrusion groove, a discharge port is provided. Inside the extrusion groove, a rotating device is provided, and the rotating device is fixedly connected to the output shaft of the motor. On the rotating device, an extrusion roller is provided, and the rotating device drives the extrusion roller to rotate inside the extrusion groove. At the lower end of the feed cylinder, a hose is provided and connected to the feed cylinder, and the other end extends through the extrusion groove to the position of the discharge port.
2. The hose feeding device according to claim 1, wherein: The hose at the position of the fixing frame is vertically arranged and is arranged inside the fixing frame.
3. A hose feeding device according to claim 1, characterized in that: The hose is arranged along the side wall of the extrusion groove.
4. A hose feeding device according to claim 1, characterized in that: There are two extrusion rollers, and the two extrusion rollers are arranged in parallel.
5. The hose feeding device according to claim 1, characterized in that: At the lower end of the base, a support frame is provided, and the support frame is fixedly connected to the base.
6. The hose feeding device according to claim 1, wherein: The hose is hermetically connected to the feed cylinder.
7. A hose feeding device according to claim 1, characterized in that: The motor is a speed-regulating motor, and the output shaft of the motor is fixedly connected to the rotating device.
8. A hose feeding device according to claim 1, characterized in that: The rotating device is arranged at the central position of the extrusion groove.