Rotary multi-stage color master batch vibrating screen
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 苏州御冠新材料科技有限公司
- Filing Date
- 2025-04-14
- Publication Date
- 2026-06-02
Smart Images

Figure CN224308918U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vibrating screen technology, specifically a rotary multi-stage color masterbatch vibrating screen. Background Technology
[0002] A vibrating screen is a high-precision fine powder screening machine. It features low noise, high efficiency, and quick screen replacement (3-5 minutes). Its fully enclosed structure makes it suitable for screening and filtering granular, powdery, and viscous materials. The vibrating screen uses a vertical motor as the excitation source. Eccentric weights are installed at both the upper and lower ends of the motor, converting the motor's rotational motion into three-dimensional motion (horizontal, vertical, and inclined), which is then transmitted to the screen surface. Adjusting the phase angle at the upper and lower ends changes the trajectory of the material on the screen surface.
[0003] However, the current vibrating screens for masterbatch have the following problems: it is not easy to provide efficient support and protection for the screen disc, and it is not possible to improve the service life of the vibrating screen while ensuring vibration. Improvements are needed. Utility Model Content
[0004] The purpose of this invention is to provide a rotary multi-stage color masterbatch vibrating screen to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a rotary multi-stage color masterbatch vibrating screen, comprising a screening structure and a vibration treatment structure, wherein the upper end of the vibration treatment structure is limited and connected to the screening structure, and the vibration treatment structure controls the screening treatment of the screening structure.
[0006] The screening processing structure includes a guide cylinder, a protective shell, a first screen plate, a second screen plate, a connecting sleeve, a first guide outlet, and a second guide outlet. The connecting sleeve is provided with the first screen plate and the second screen plate. The first screen plate and the second screen plate can rotate at the upper limit of the connecting sleeve. The connecting sleeve is provided with a first guide outlet at the side end of the first screen plate and a second guide outlet at the side end of the second screen plate. The upper end of the connecting sleeve is fixedly connected to the protective shell, and the protective shell is provided with a guide cylinder.
[0007] Specifically, the guide cylinder is connected to the connecting sleeve through a protective shell, and the first screen plate and the second screen plate adopt a two-stage screening structure.
[0008] Specifically, the first guide port is used for guiding material on the first screen plate, and the second guide port is used for guiding material on the second screen plate.
[0009] Specifically, the vibration treatment structure includes a bearing plate frame, a first driven hydraulic rod, a support base block, a rotary motor, and a vibration motor. The rotary motor is installed at the center of the support base block, and the rotary motor controls the rotation and adjustment of the second screen plate.
[0010] Specifically, a vibration motor is provided near the rotating motor of the support plate frame, and the vibration motor is vibrating in conjunction with the support plate frame.
[0011] Specifically, the bearing plate frame is provided with a first driven hydraulic rod at a position away from the rotating motor, and the first driven hydraulic rod is hinged to the bearing plate frame, with the lower end of the first driven hydraulic rod hinged to the support base block.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] 1. By installing a screening structure, the guide cylinder inside the screening structure is connected to the connecting sleeve through a protective shell, which can guide the masterbatch into the interior of the connecting sleeve. At this time, the vibration treatment structure can control the rotation of the screening structure, and at the same time, the vibration treatment structure can drive the screening structure to vibrate, so as to carry out efficient screening work through the screening structure. A rod is provided between the first screen plate and the second screen plate, and the lower end of the second screen plate is connected to the rotary motor to perform rotation processing. The first screen plate and the second screen plate rotate on the connecting sleeve, and the connecting sleeve ensures that the position remains unchanged. The material is guided and processed through the first guide outlet and the second guide outlet.
[0014] Second, by installing a vibration treatment structure, the rotating motor inside the vibration treatment structure controls the rotation of the first and second screen discs. The vibration motor can drive the screening treatment structure to perform vibration adjustment through the support plate frame. At the same time, the side end of the support plate frame is hinged with a first driven hydraulic rod, and the lower end of the first driven hydraulic rod is hinged to the support base block, which can ensure the stability of the structure and at the same time provide efficient vibration adjustment capability. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of the present utility model;
[0016] Figure 2 This is a perspective view of the screening and processing structure of this utility model;
[0017] Figure 3 This is an exploded view of the screening and processing structure of this utility model;
[0018] Figure 4 This is a perspective view of the vibration treatment structure of this utility model.
[0019] In the figure: 1-screening structure; 2-vibration structure; 3-guide cylinder; 4-protective shell; 5-first screen plate; 6-second screen plate; 7-connecting sleeve; 8-first guide outlet; 9-second guide outlet; 10-bearing plate frame; 11-first driven hydraulic rod; 12-supporting base block; 13-rotary motor; 14-vibration motor. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figure 1-4 This utility model provides a technical solution: a rotary multi-stage color masterbatch vibrating screen, including a screening structure 1 and a vibration structure 2, wherein the upper end of the vibration structure 2 is limited and connected to the screening structure 1, and the vibration structure 2 controls the screening process of the screening structure 1.
[0022] The screening structure 1 includes a guide cylinder 3, a protective shell 4, a first screen plate 5, a second screen plate 6, a connecting sleeve 7, a first guide outlet 8, and a second guide outlet 9. The connecting sleeve 7 is equipped with the first screen plate 5 and the second screen plate 6, which rotate within the upper limit of the connecting sleeve 7. The connecting sleeve 7 has a first guide outlet 8 at the side end of the first screen plate 5 and a second guide outlet 9 at the side end of the second screen plate 6. The upper end of the connecting sleeve 7 is fixedly connected to the protective shell 4, which has a guide cylinder 3. By installing the screening structure 1, the guide cylinder within the screening structure 1... 3. The protective shell 4 is connected to the connecting sleeve 7, which can guide the masterbatch into the interior of the connecting sleeve 7. At this time, the vibration treatment structure 2 can control the rotation of the screening treatment structure 1. At the same time, the vibration treatment structure 2 can drive the screening treatment structure 1 to vibrate, and the screening treatment structure 1 can perform efficient screening. A rod is provided between the first screen plate 5 and the second screen plate 6, and the lower end of the second screen plate 6 is connected to the rotary motor 13 to perform rotation processing. The first screen plate 5 and the second screen plate 6 rotate on the connecting sleeve 7, and the connecting sleeve 7 ensures that the position remains unchanged. The material is guided and processed through the first guide port 8 and the second guide port 9.
[0023] The feed cylinder 3 is connected to the connecting sleeve 7 through the protective shell 4, and the first screen plate 5 and the second screen plate 6 adopt a two-stage screening structure.
[0024] The first guide port 8 is used for guiding the material on the first screen plate 5, and the second guide port 9 is used for guiding the material on the second screen plate 6.
[0025] The vibration treatment structure 2 includes a support plate frame 10, a first driven hydraulic rod 11, a support base block 12, a rotary motor 13, and a vibration motor 14. The rotary motor 13 is installed at the center of the support base block 12. The rotary motor 13 controls the rotation and adjustment of the second screen plate 6. By installing the vibration treatment structure 2, the rotary motor 13 in the vibration treatment structure 2 controls the rotation of the first screen plate 5 and the second screen plate 6. The vibration motor 14 can drive the screening treatment structure 1 to perform vibration adjustment through the support plate frame 10. At the same time, the first driven hydraulic rod 11 is hinged to the side end of the support plate frame 10. The lower end of the first driven hydraulic rod 11 is hinged to the support base block 12, which can ensure the stability of the structure and provide efficient vibration adjustment capability.
[0026] A vibration motor 14 is provided near the rotary motor 13 on the support plate 10, and the vibration motor 14 is vibrating in conjunction with the support plate 10.
[0027] The bearing plate frame 10 is provided with a first driven hydraulic rod 11 at a position away from the rotary motor 13, and the first driven hydraulic rod 11 is hinged to the bearing plate frame 10. The lower end of the first driven hydraulic rod 11 is hinged to the support base block 12.
[0028] Working Principle: When operation is required, the screening structure 1 is installed. The guide cylinder 3 inside the screening structure 1 is connected to the connecting sleeve 7 through the protective shell 4, allowing the masterbatch to be guided into the interior of the connecting sleeve 7. At this time, the vibration structure 2 controls the rotation of the screening structure 1, and simultaneously drives the screening structure 1 to vibrate, thus performing efficient screening through the screening structure 1. A rod is provided between the first screen disk 5 and the second screen disk 6, and the lower end of the second screen disk 6 is connected to the rotary motor 13 for rotation. The first screen disk 5 and the second screen disk 6 rotate on the connecting sleeve 7, which maintains its position. The material is guided through the first guide outlet 8 and the second guide outlet 9. By installing the vibration structure 2, the rotary motor 13 inside the vibration structure 2 controls the rotation of the first screen disk 5 and the second screen disk 6. The vibration motor 14 is designed to support the rotation of the first screen disk 5 and the second screen disk 6. The disc frame 10 drives the screening structure 1 to vibrate and adjust. At the same time, the side end of the bearing disc frame 10 is hinged with a first driven hydraulic rod 11. The lower end of the first driven hydraulic rod 11 is hinged to the supporting base block 12, which can ensure the stability of the structure and provide efficient vibration adjustment. The user introduces the raw material through the guide cylinder 3. At this time, the rotary motor 13 drives the first screen disc 5 and the second screen disc 6 to rotate. At the same time, the vibration motor 14 drives the bearing disc frame 10 to vibrate. The vibration is transmitted through the bearing disc frame 10 to the connecting sleeve 7, which drives the first screen disc 5 and the second screen disc 6 to follow the vibration, realizing synchronous adjustment of rotation and vibration to ensure screening effect. The setting of the first driven hydraulic rod 11 can provide support for the bearing disc frame 10 and improve the vibration transmission capability. The material on the first screen disc 5 can be discharged through the first guide port 8, and the material on the second screen disc 6 can be discharged through the second guide port 9, completing the work.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotary multi-stage color masterbatch vibrating screen, characterized in that: It includes a screening processing structure (1) and a vibration processing structure (2), wherein the upper end of the vibration processing structure (2) is limited and connected to the screening processing structure (1), and the vibration processing structure (2) controls the screening processing structure (1) to perform screening processing. The screening processing structure (1) includes a guide cylinder (3), a protective shell (4), a first screen plate (5), a second screen plate (6), a connecting sleeve (7), a first guide outlet (8), and a second guide outlet (9). The connecting sleeve (7) is provided with the first screen plate (5) and the second screen plate (6). The first screen plate (5) and the second screen plate (6) are rotated at the upper limit on the connecting sleeve (7). The connecting sleeve (7) is provided with the first guide outlet (8) at the side end of the first screen plate (5). The connecting sleeve (7) is provided with the second guide outlet (9) at the side end of the second screen plate (6). The upper end of the connecting sleeve (7) is fixedly connected to the protective shell (4), and the protective shell (4) is provided with the guide cylinder (3).
2. The rotary multi-stage masterbatch vibrating screen according to claim 1, characterized in that: The feed guide cylinder (3) is connected to the connecting sleeve (7) through the protective shell (4), and the first screen plate (5) and the second screen plate (6) adopt a two-stage screening structure.
3. The rotary multi-stage masterbatch vibrating screen according to claim 2, characterized in that: The first guide port (8) is used for guiding the material on the first screen plate (5), and the second guide port (9) is used for guiding the material on the second screen plate (6).
4. A rotary multi-stage masterbatch vibrating screen according to claim 3, characterized in that: The vibration treatment structure (2) includes a bearing plate frame (10), a first driven hydraulic rod (11), a support base block (12), a rotary motor (13) and a vibration motor (14). The rotary motor (13) is installed at the center of the support base block (12), and the rotary motor (13) controls the rotation adjustment of the second screen plate (6).
5. A rotary multi-stage masterbatch vibrating screen according to claim 4, characterized in that: The support plate frame (10) is provided with a vibration motor (14) near the rotary motor (13), and the vibration motor (14) and the support plate frame (10) are vibrating.
6. A rotary multi-stage masterbatch vibrating screen according to claim 5, characterized in that: The bearing plate frame (10) is provided with a first driven hydraulic rod (11) at a position away from the rotary motor (13), and the first driven hydraulic rod (11) is hinged to the bearing plate frame (10). The lower end of the first driven hydraulic rod (11) is hinged to the support base block (12).