Color master batch vibration drying tool
By designing a masterbatch vibration drying tool, uniform drying is achieved using a vibrating motor and heating pipe, and combined with mesh screening, the problems of uneven drying and separate drying screening are solved, and efficiency is improved.
Patent Information
- Application Number
- CN202421529356.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-01
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-01
AI Technical Summary
The masterbatch is unevenly drying, and the drying and screening process are separated, making the efficiency inefficient.
A masterbatch vibration drying tool was designed, using a vibrating motor to drive the work box to vibrate, and the heating pipes were heated and dried. At the same time, screening was used for screening, combining the drying and screening process to improve efficiency.
The uniform drying of the masterbatch is achieved, and the working efficiency is improved by combining the drying and screening process, the method of use is simple and the adjustment is convenient.
Smart Images

Figure CN222920899U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of vibration drying tool design, in particular to a vibration drying tool for masterbatch. Background Technique
[0002] Masterbatch, also called colorant, is a new type of special colorant for polymer materials, which is used in plastics. Masterbatch consists of three basic elements: pigment or dye, carrier and additive. It is an aggregate obtained by uniformly loading an excessive amount of pigment into resin, and can be called pigment concentrate. Therefore, its coloring power is higher than that of the pigment itself. The masterbatch reaches an ideal dryness for easy storage and transportation.
[0003] Considering efficiency, there will inevitably be a stacking problem in the drying process of masterbatch. Due to the stacking, the drying effect of the masterbatch located in the central part is often poor. In addition, there are requirements for the particle size of masterbatch. For those with specific specification requirements, screening is needed. The drying and screening processes are originally separate. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is uneven drying. In addition, combining the screening and drying processes can improve efficiency.
[0005] To solve the above problems, the technical solution adopted by the utility model is as follows: The utility model is a vibration drying tool for masterbatch, which includes a vibration motor, and also includes a support structure, a vibration assembly and a drying structure. The vibration assembly is arranged on the support structure. There are multiple groups of the vibration assembly. The drying structure is arranged on multiple groups of vibration assemblies. The support structure includes a base, a support frame, a support plate, a connecting frame and a locator. The support frame is arranged on the base. The support plate is hinged on the support frame. The connecting frame is installed on the support plate. Threaded holes are arranged on both sides of the connecting frame. The locator is arranged on the base, and there are two groups of the locator symmetrically.
[0006] Further, the locator includes a support column, a clamping seat and a fixing bolt. The support column is arranged on the base. The clamping seat is arranged on the support column. The lower part of the connecting frame is located in the clamping seat. The fixing bolt is threadedly connected through the clamping seat and threadedly connected in the threaded hole.
[0007] Further, a hydraulic telescopic rod is hinged between the support plate and the base.
[0008] Further, the vibration assembly includes a positioning shaft and a spring. The positioning shaft is arranged on the support plate. The spring is arranged on the support plate and outside the positioning shaft.
[0009] Furthermore, the drying structure includes a working box, heating pipes, a first mesh plate, and a second mesh plate. The working box is disposed on a plurality of springs and is installed and connected to a vibration motor. The working box is arranged in a hollow structure with an open top. The heating pipes are penetrated and arranged at the lower part of the working box. The first mesh plate is arranged on the working box and above the heating pipes. The second mesh plate is arranged on the working box and above the first mesh plate. The diameter of the mesh holes of the second mesh plate is larger than that of the first mesh plate.
[0010] Furthermore, an upper cover is installed on the working box, and an air duct is penetrated through the upper cover.
[0011] Furthermore, a feeding frame is arranged on one side of the working box.
[0012] Furthermore, two sets of plug covers are penetrated through one side of the working box. One set of the plug covers is located above the second mesh plate, and the other set of the plug covers is located between the first mesh plate and the second mesh plate.
[0013] The beneficial effects achieved by the present utility model with the above structure are as follows:
[0014] 1. The vibration motor drives the working box to vibrate. The heating pipes play a role in heating and drying. Moreover, the first mesh plate and the second mesh plate can perform screening work while drying and vibrating. By combining the two processes, the working efficiency is improved.
[0015] 2. The hydraulic telescopic rod is used to facilitate the discharge of the dried color masterbatch. The usage method is very simple and the adjustment is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall structure of a color masterbatch vibration drying tool proposed by the present utility model;
[0017] Figure 2 is a schematic diagram of the structure of another perspective of a color masterbatch vibration drying tool proposed by the present utility model;
[0018] Figure 3 is a side view of a color masterbatch vibration drying tool proposed by the present utility model;
[0019] Figure 4 is a schematic diagram of the structure of the drying structure of a color masterbatch vibration drying tool proposed by the present utility model;
[0020] Figure 5 is a schematic diagram of the structure of the support structure of a color masterbatch vibration drying tool proposed by the present utility model.
[0021] Among them, 1. Vibration motor, 2. Support structure, 3. Vibration component, 4. Drying structure, 5. Base, 6. Support frame, 7. Support plate, 8. Connecting frame, 9. Positioner, 10. Support column, 11. Clamping seat, 12. Fixing bolt, 13. Hydraulic telescopic rod, 14. Positioning shaft, 15. Spring, 16. Working box, 17. Heating pipe, 18. Second mesh plate, 19. Upper cover, 20. Air duct, 21. Feeding frame, 22. Plug cover. Detailed implementation mode
[0022] As Figures 1 to 5 Shown in the figure, the utility model is a vibration drying tool for masterbatch, including a vibration motor 1, and also including a support structure 2, a vibration component 3 and a drying structure 4. The vibration component 3 is arranged on the support structure 2, and multiple groups of vibration components 3 are provided. The drying structure 4 is arranged on multiple groups of vibration components 3. The support structure 2 includes a base 5, a support frame 6, a support plate 7, a connecting frame 8 and a positioner 9. The support frame 6 is arranged on the base 5, the support plate 7 is hinged on the support frame 6, the connecting frame 8 is installed on the support plate 7, threaded holes (not shown in the figure) are arranged on both sides of the connecting frame 8, the positioner 9 is arranged on the base 5, and two groups of positioners 9 are symmetrically arranged.
[0023] The positioner 9 includes a support column 10, a clamping seat 11 and a fixing bolt 12. The support column 10 is arranged on the base 5, the clamping seat 11 is arranged on the support column 10, the lower part of the connecting frame 8 is located in the clamping seat 11, and the fixing bolt 12 is threadedly connected through the clamping seat 11 and threadedly connected in the threaded hole. A hydraulic telescopic rod 13 is hinged between the support plate 7 and the base 5, which is convenient for positioning and disassembly, and can also push the drying structure 4 to tilt.
[0024] The vibration component 3 includes a positioning shaft 14 and a spring 15. The positioning shaft 14 is arranged on the support plate 7, and the spring 15 is arranged on the support plate 7 and located outside the positioning shaft 14.
[0025] The drying structure 4 includes a working box 16, a heating pipe 17, a first mesh plate (not shown in the figure) and a second mesh plate 18. The working box 16 is arranged on multiple groups of springs 15 and is installed and connected with the vibration motor 1. The working box 16 is arranged in a hollow structure with an open top. The heating pipe 17 penetrates through the lower part of the working box 16. The first mesh plate is arranged on the working box 16 and is located above the heating pipe 17. The second mesh plate 18 is arranged on the working box 16 and is located above the first mesh plate 18. The mesh hole diameter of the second mesh plate 18 is larger than that of the first mesh plate. If there is too much material on the first mesh plate, it may affect heat diffusion, so special attention needs to be paid to selecting the mesh hole diameter of the mesh plate. Heating pipes 17 can also be installed on the side wall of the working box when needed.
[0026] An upper cover 19 is installed on the working box 16. An air duct 20 penetrates through the upper cover 19. A feeding frame 21 is arranged on one side of the working box 16. Two sets of plug covers 22 penetrate through one side of the working box 16. One set of plug covers 22 is located above the second mesh plate 18, and the other set of plug covers 22 is located between the first mesh plate and the second mesh plate 18, which facilitates discharging.
[0027] During specific use: Pour the masterbatch into the working box 16 from the feeding frame 21. Start the heating tube 17 and the vibration motor 1. With the cooperation of the spring 15, the working box 16 vibrates, and the masterbatch vibrates and dries in the working box 16, making the drying more uniform. And after being screened by the first mesh plate and the second mesh plate 18, after completion, turn off the vibration motor 1, remove the fixing bolts 12, start the hydraulic telescopic rod 13 to extend, push up and tilt the working box 16, and then open the plug covers 22 in sequence to discharge the materials.
[0028] It should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A masterbatch vibration drying tool, characterized in that: It includes a vibration motor, a supporting structure, a vibration component and a drying structure. The vibration component is arranged on the supporting structure, and the vibration component is provided with multiple groups. The drying structure is arranged on multiple groups of vibration components. The supporting structure includes a base, a supporting frame, a supporting plate, a connecting frame and a positioner. The supporting frame is arranged on the base, the supporting plate is hinged on the supporting frame, the connecting frame is installed on the supporting plate, threaded holes are provided on both sides of the connecting frame, and the positioner is arranged on the base, and the positioner is symmetrically provided in two groups.
2. A masterbatch vibration drying tool according to claim 1, characterized in that: The positioner includes a support column, a snap-in seat and a fixing bolt, the support column is arranged on the base, the snap-in seat is arranged on the support column, the lower part of the connecting frame is located in the snap-in seat, and the fixing bolt is threadedly connected and penetrates the snap-in seat and is threadedly connected in the threaded hole.
3. A masterbatch vibration drying tool according to claim 1, characterized in that: The support plate and the base are hingedly connected to a hydraulic telescopic rod.
4. A masterbatch vibration drying tool according to claim 1, characterized in that: The vibration component comprises a positioning shaft and a spring. The positioning shaft is arranged on a support plate, and the spring is arranged on the support plate and outside the positioning shaft.
5. A masterbatch vibration drying tool according to claim 1, characterized in that: The drying structure includes a working box, a heating tube, a first mesh plate and a second mesh plate. The working box is arranged on multiple groups of springs and is installed and connected to a vibration motor. The working box is arranged in a hollow structure with an opening at the top. The heating tube is arranged through the lower part of the working box. The first mesh plate is arranged on the working box and is located above the heating tube. The second mesh plate is arranged on the working box and is located above the first mesh plate. The mesh diameter of the second mesh plate is larger than the mesh diameter of the first mesh plate.
6. A masterbatch vibration drying tool according to claim 5, characterized in that: An upper cover is installed on the working box, and an air duct is penetrated through the upper cover.
7. A masterbatch vibration drying tool according to claim 6, characterized in that: A feeding frame is provided on one side of the working box.
8. A masterbatch vibration drying tool according to claim 7, characterized in that: Two groups of plug covers are provided through one side of the working box, one group of the plug covers is located above the second mesh plate, and the other group of the plug covers is located between the first mesh plate and the second mesh plate.