Main shaft adjusting mechanism of roller powder removing machine
By designing an adjustable main shaft adjustment mechanism for the drum desiccant, the problem of insufficient main shaft fixation in traditional equipment has been solved, enabling flexible adjustment and stable support of the main shaft, improving the efficiency and quality of lithium battery waste recycling, and enhancing the stability and safety of the equipment.
Patent Information
- Application Number
- CN202423274223.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-28
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-28
AI Technical Summary
Traditional drum desiccant machines have a fixed main shaft design that cannot be flexibly adjusted, which affects the applicability and recycling efficiency of the equipment, and the stability and safety of the main shaft are insufficient.
Design an adjustable main shaft adjustment mechanism for a drum de-drying machine, including a movable adjustable support roller frame and support rollers. The main shaft length and support height can be flexibly adjusted by adjusting bolts. An adjustable support shaft mechanism is provided to ensure the stability and safety of the main shaft during rotation.
It improves the flexibility and applicability of the equipment, optimizes the powder removal effect, enhances the stability and safety of the equipment, simplifies the operation process, reduces the failure rate and maintenance costs, and improves the efficiency and quality of lithium battery waste recycling.
Smart Images

Figure CN223728822U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lithium battery recycling processing technical field especially relates to a cylinder powder separating machine main shaft adjusting mechanism. BACKGROUND
[0002] In the field of lithium battery waste recycling, the cylinder powder separating machine as an important equipment is widely used in the separation and recycling process of lithium battery materials. The cylinder powder separating machine realizes effective powder removal and material separation of waste through the rotation of its internal cylinder. However, the traditional cylinder powder separating machine has some deficiencies in design, especially in the adjustment and fixation of the main shaft.
[0003] The main shaft of the traditional cylinder powder separating machine is often designed as fixed, which cannot be flexibly adjusted according to actual needs, thus limiting the application range and flexibility of the equipment to some extent. In addition, due to the fixation of the main shaft, it may not achieve the best powder removal effect when processing different specifications or types of lithium battery waste, thus affecting the recycling efficiency and quality.
[0004] In order to solve the above problems, some cylinder powder separating machines with adjustable main shafts have appeared in the market. However, the adjustment mechanism of the main shaft of these devices is often complex in design, inconvenient to operate, and limited in adjustment precision. At the same time, some devices also have deficiencies in the bearing of the main shaft, which cannot ensure the stability and safety of the main shaft during rotation. Therefore, it is necessary to design a new type of cylinder powder separating machine main shaft adjusting mechanism to solve the problems existing in the prior art. INNOVATIVE CONTENT
[0005] The utility model aims at overcoming the problems existing in the prior art, providing a new type of cylinder powder separating machine main shaft adjusting mechanism, which should be able to realize flexible adjustment and fixation of both ends of the main shaft, ensure the stability and safety of the main shaft during rotation, and have the advantages of simple structure, convenient operation, high adjustment precision, etc., to adapt to the processing needs of different specifications and types of lithium battery waste, and improve the recycling efficiency and quality.
[0006] The utility model is realized through the following technical schemes: a cylinder powder separating machine main shaft adjusting mechanism, including the cylinder powder separating machine main shaft that two ends are adjustably set, one end of the cylinder powder separating machine main shaft is connected with the rotary drive source, the other end of the cylinder powder separating machine main shaft is provided with adjustable shaft bearing mechanism, the bearing height of adjustable shaft bearing mechanism can be adjusted, the cylinder powder separating machine main shaft is set with the feed inlet on one end corresponding adjustable shaft bearing mechanism, the cylinder powder separating machine main shaft is set with the discharge port on the position close to the feed inlet.
[0007] In order to further optimize the utility model, the following technical schemes can be preferred:
[0008] Preferably, the adjustable supporting shaft mechanism comprises a supporting wheel frame, left and right supporting wheels are symmetrically arranged on the supporting wheel frame, the left and right supporting wheels are arranged at the lower part of the main shaft and can move radially along the main shaft.
[0009] Preferably, the left and right adjusting fixed plates are arranged on the supporting wheel frame corresponding to the positions of the left and right supporting wheels, the left supporting wheel is rotatably arranged on the left adjusting fixed plate, and the right supporting wheel is rotatably arranged on the right adjusting fixed plate.
[0010] Preferably, limit stop plates are arranged on the supporting wheel frame corresponding to the positions of the outer ends of the left and right adjusting fixed plates, and a plurality of limit stop bolts are arranged on the limit stop plates along the radial direction of the main shaft, and the inner ends of the limit stop bolts abut against the left and right adjusting fixed plates.
[0011] Preferably, the first and second stop plates are arranged on the drum powder removing machine main shaft corresponding to the positions of the discharge ports, the drum powder removing machine main shaft comprises a solid section and a hollow section with a feeding port, the first and second stop plates are connected with the hollow section and the solid section respectively, and the material enters the area between the first and second stop plates from the feeding port of the hollow section.
[0012] Preferably, a plurality of material falling partitions are connected between the first and second stop plates, and the material falling partitions are arranged in a circumferential direction of the drum powder removing machine main shaft.
[0013] Preferably, the first and second stop plates are arranged on the drum powder removing machine main shaft corresponding to the positions of the discharge ports, the drum powder removing machine main shaft comprises a solid section and a hollow section with a feeding port, the first and second stop plates are connected with the hollow section and the solid section respectively, and the material enters the area between the first and second stop plates from the feeding port of the hollow section.
[0014] The drum powder removing machine main shaft adjusting mechanism disclosed by the utility model has remarkable beneficial effects in the field of lithium battery waste recycling, which is embodied in the following aspects:
[0015] (1) Improving the flexibility of the equipment: by designing the drum powder removing machine main shaft with movable adjustment at both ends, the utility model realizes flexible adjustment of the length of the main shaft, so that it can adapt to the processing needs of lithium battery waste of different sizes and specifications. This design not only widens the application range of the equipment, but also improves the flexibility and practicality of the equipment.
[0016] (2) Optimizing the effect of removing powder: The introduction of the adjustable supporting shaft mechanism allows the supporting height of the main shaft of the drum powder removing machine to be adjusted according to actual needs. This adjustment ensures that the drum maintains the optimal working angle during rotation, thereby optimizing the effect of removing powder and improving the recovery efficiency and quality of lithium battery waste.
[0017] (3) Enhancing the stability of the equipment: The adjustable supporting shaft mechanism not only has adjustment functions but also provides stable supporting force, ensuring that the drum does not vibrate or shake during high-speed rotation, which affects the effect of removing powder or causes damage to the equipment. This design enhances the stability and safety of the equipment and prolongs the service life of the equipment.
[0018] (4) Simplifying the operation process: The drum powder removing machine main shaft adjusting mechanism of the utility model has a simple and clear design, making it easy to operate. Users only need to perform simple adjustment operations to adjust the length of the main shaft and change the supporting height, without the need for complex installation and debugging processes, reducing the difficulty of operation and labor costs.
[0019] (5) Improving economic benefits: Due to the many advantages of the drum powder removing machine main shaft adjusting mechanism of the utility model, the recovery efficiency and quality of lithium battery waste can be significantly improved in actual applications, reducing equipment failure rates and maintenance costs. This will undoubtedly bring significant economic and social benefits to lithium battery waste recycling enterprises.
[0020] In summary, the drum powder removing machine main shaft adjusting mechanism disclosed by the utility model has wide application prospects and important practical value in the field of lithium battery waste recycling. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a schematic view of the overall structure of the drum powder removing machine main shaft adjusting mechanism;
[0022] Figure 2 is a schematic view of the structure of the discharge port;
[0023] Figure 3 is an enlarged schematic view of the structure at A;
[0024] Figure 4 is a schematic view of the end structure of the drum powder removing machine main shaft.
[0025] Wherein: 1 - drum powder removing machine main shaft; 2 - feed inlet; 3 - adjustable supporting shaft mechanism; 4 - discharge port; 5 - first baffle; 6 - second baffle; 7 - material falling partition; 8 - hollow section; 9 - solid section; 10 - supporting wheel frame; 11 - left adjusting fixed plate; 12 - right adjusting fixed plate; 13 - limiting baffle; 14 - limiting bolt; 15 - long waist hole; 16 - adjusting bolt; 17 - left supporting wheel; 18 - right supporting wheel; 19 - reinforcing rib plate. DETAILED DESCRIPTION
[0026] In the description of the utility model, it is necessary to point out that, unless there is definite stipulation and limitation, the terms "arrange", "install", "connect", "connect" should be understood broadly, for example, it can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be direct connection, also can through the intermediate medium indirectly connect, can be the intercommunication of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.
[0027] The technical scheme in the embodiments of the utility model will be described clearly and completely in the description of the embodiments of the utility model in conjunction with the drawings, obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary skilled in the art without making creative labor belong to the scope of protection of the utility model.
[0028] Embodiment 1
[0029] As Figures 1-4 The utility model discloses a cylinder powder removing machine main shaft adjusting mechanism, including the movable adjustment installation of both ends cylinder powder removing machine main shaft 1, the one end of cylinder powder removing machine main shaft is connected with the rotary drive source, the other end of cylinder powder removing machine main shaft is installed with adjustable support shaft mechanism 3, the support height of adjustable support shaft mechanism can adjust, the one end of cylinder powder removing machine main shaft corresponds adjustable support shaft mechanism 3 and is set up with feed inlet 2, the position of cylinder powder removing machine main shaft near feed inlet is installed with discharge outlet 4.
[0030] Wherein adjustable support shaft mechanism 3 includes the supporting wheel frame 10, the symmetrical installation of left supporting wheel 17, right supporting wheel 18 is installed on the supporting wheel frame, left supporting wheel, right supporting wheel supports the lower part installation of main shaft, left supporting wheel, right supporting wheel can be along the radial transverse displacement of main shaft, this structure can realize: accurate adjustment and stable support, through the symmetrical installation of left supporting wheel and right supporting wheel on supporting wheel frame, and can be along the radial transverse displacement of main shaft, realizes the accurate adjustment of the supporting position of main shaft. This design not only ensures the stability of main shaft in the process of rotation, but also makes the equipment can adapt to the lithium battery waste processing demand of different sizes and weights, further improves the powder removing effect and recovery efficiency.
[0031] As a further preferred embodiment, the left and right idler wheel positions on the idler wheel frame 10 are respectively provided with left and right adjusting fixed plates 11 and 12, the left idler wheel is rotatably installed on the left adjusting fixed plate, the right idler wheel is rotatably installed on the right adjusting fixed plate, a plurality of long waist holes 15 are formed on the left and right adjusting fixed plates along the radial direction of the main shaft, and the left and right adjusting fixed plates are installed on the idler wheel frame through adjusting bolts 16 in the long waist holes. The design of the plurality of long waist holes formed on the left and right adjusting fixed plates along the radial direction of the main shaft and the installation of the left and right adjusting fixed plates on the idler wheel frame through the adjusting bolts in the long waist holes enable the user to easily adjust the positions of the left and right idler wheels according to actual needs. This adjustment method is not only simple to operate, but also has high adjustment accuracy, meeting the use requirements in different working conditions. In addition, through accurate adjustment of the positions of the left and right idler wheels, uniform supporting force can be ensured on the main shaft during rotation, avoiding equipment wear and damage caused by uneven force.
[0032] As a further preferred embodiment, a limiting baffle 13 is installed on the idler wheel frame at a position corresponding to one end of the left and right adjusting fixed plates on the outside, a plurality of limiting bolts 14 are installed on the limiting baffle along the radial direction of the main shaft, and one end of the limiting bolts 14 is supported on the left and right adjusting fixed plates. This design can effectively prevent the left and right idler wheels from moving excessively or falling off during adjustment. This design not only enhances the stability of the structure, but also improves the safety of the equipment, ensuring the safety of the operators and the smooth progress of the production process.
[0033] As a further preferred embodiment, a first baffle 5 and a second baffle 6 are installed on the main shaft 1 of the drum flour separator corresponding to the discharge port position, the main shaft of the drum flour separator includes a solid section 9 and a hollow section 8 with a feed port, the first baffle and the second baffle are connected to the hollow section 8 and the solid section 9 respectively, and the material enters the area between the first baffle and the second baffle from the feed port of the hollow section. The above structure design can optimize the material processing flow: by installing the first baffle and the second baffle on the main shaft of the drum flour separator corresponding to the discharge port position, and designing the main shaft of the drum flour separator as a solid section and a hollow section with a feed port, the material can enter the area between the first baffle and the second baffle from the feed port of the hollow section for flour removal treatment. This design not only optimizes the material processing flow, but also improves the flour removal efficiency and material utilization rate.
[0034] As a further preferred embodiment, a plurality of material falling partitions 7 are connected between the first baffle 5 and the second baffle 6, the plurality of material falling partitions 7 are installed in a circumferential uniform distribution around the drum de-powdering machine main shaft, and the material falling partitions, the first baffle, and the second baffle form a material falling opening. The above structure design can improve the uniformity and efficiency of de-powdering: the plurality of material falling partitions connected between the first baffle and the second baffle are installed in a circumferential uniform distribution around the drum de-powdering machine main shaft, and the material falling partitions, the first baffle, and the second baffle form a material falling opening. This design enables the material to be more uniformly distributed and flowed in the drum, thereby improving the uniformity and efficiency of de-powdering. At the same time, the setting of the material falling partitions can also prevent the material from excessive accumulation or blockage in the drum, ensuring the stable operation of the equipment.
[0035] As a further preferred embodiment, a plurality of reinforcing rib plates 19 are installed on the outer side walls of the first baffle 5 and the second baffle 6 at the positions connected to the drum de-powdering machine main shaft, and the reinforcing rib plates are installed in a circumferential uniform distribution around the drum de-powdering machine main shaft. The above structure design can enhance the structural strength and stability: the reinforcing rib plates installed on the outer side walls of the first baffle and the second baffle at the positions connected to the drum de-powdering machine main shaft are installed in a circumferential uniform distribution around the drum de-powdering machine main shaft. This design not only enhances the connection strength between the first baffle, the second baffle, and the drum de-powdering machine main shaft, but also improves the structural stability and carrying capacity of the entire equipment. This design can ensure the stability and safety of the equipment during long-time operation or processing of a large amount of material.
[0036] In addition, the above structure design also prolongs the service life of the equipment: the introduction of the reinforcing rib plates and the setting of the material falling partitions not only improve the structural strength and stability of the equipment, but also reduce the impact and wear of the material on the equipment. This design not only prolongs the service life of the equipment, but also reduces the maintenance cost and replacement frequency, bringing higher economic benefits to enterprises.
[0037] Finally, it should be noted that the above description is only a preferred embodiment of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some technical features, as long as they are within the spirit and principles of the present application. Any modification, equivalent substitution, improvement, etc. made within the scope of the present application shall be included in the protection scope of the present application.
Claims
1. A cylinder dresser main shaft adjusting mechanism characterized by: The application discloses a roller powder removing machine spindle with adjustable ends, one end of the roller powder removing machine spindle is connected with a rotating driving source, the other end of the roller powder removing machine spindle is provided with an adjustable supporting shaft mechanism, the supporting height of the adjustable supporting shaft mechanism can be adjusted, a feeding port is arranged at one end of the roller powder removing machine spindle corresponding to the adjustable supporting shaft mechanism, and a discharging port is arranged on the roller powder removing machine spindle close to the feeding port.
2. A cylinder shaker main shaft adjustment mechanism according to claim 1, characterized in that: The adjustable supporting shaft mechanism comprises a supporting wheel frame, left supporting wheels and right supporting wheels are symmetrically arranged on the supporting wheel frame, the left supporting wheels and the right supporting wheels are arranged on the lower part of the main shaft in a supporting mode, and the left supporting wheels and the right supporting wheels can move along the radial direction of the main shaft.
3. A cylinder shaker main shaft adjustment mechanism according to claim 2, characterized in that: Left adjusting fixed plates and right adjusting fixed plates are arranged on the supporting wheel frame corresponding to positions of the left supporting wheels and the right supporting wheels respectively, the left supporting wheels are arranged in a rotating mode on the left adjusting fixed plates, the right supporting wheels are arranged in a rotating mode on the right adjusting fixed plates, a plurality of long waist holes are arranged on the left adjusting fixed plates and the right adjusting fixed plates in the radial direction of the main shaft, and the left adjusting fixed plates and the right adjusting fixed plates are arranged on the supporting wheel frame through adjusting bolts on the long waist holes.
4. A cylinder shaker main shaft adjustment mechanism according to claim 3, characterized in that: Limiting baffle plates are arranged on the supporting wheel frame corresponding to positions of one end of the outer side of the left adjusting fixed plates and the right adjusting fixed plates, a plurality of limiting bolts are arranged on the limiting baffle plates in the radial direction of the main shaft, and one end of the inner side of the limiting bolts is supported on the left adjusting fixed plates and the right adjusting fixed plates.
5. A cylinder shaker main shaft adjustment mechanism according to claim 1, characterized in that: First baffle plates and second baffle plates are arranged on the roller powder removing machine spindle corresponding to positions of the discharging port in a relative mode, the roller powder removing machine spindle comprises a solid section and a hollow section with a feeding port, the first baffle plates and the second baffle plates are connected with the hollow section and the solid section respectively, and materials enter the area between the first baffle plates and the second baffle plates from the feeding port of the hollow section.
6. A cylinder shaker main shaft adjustment mechanism according to claim 5, characterized in that: A plurality of material falling partition plates are connected between the first baffle plates and the second baffle plates, the plurality of material falling partition plates are arranged in a uniform distribution mode around the roller powder removing machine spindle in a circumferential direction, and the first baffle plates, the second baffle plates and the material falling partition plates form a material falling port.
7. A cylinder shaker main shaft adjustment mechanism according to claim 6, characterized in that: Reinforcing rib plates are arranged on the outer side walls of the first baffle plates and the second baffle plates and connected with the roller powder removing machine spindle, and a plurality of reinforcing rib plates are arranged in a uniform distribution mode around the roller powder removing machine spindle in a circumferential direction.